粉體行業(yè)在線展覽
煤炭行業(yè)專(zhuān)用儀器
安全防護(hù)用品
電化學(xué)儀器
儀器專(zhuān)用配件
光學(xué)儀器及設(shè)備
試驗(yàn)機(jī)
X射線儀器
常用器具/玻璃耗材
氣體檢測(cè)儀
應(yīng)急/便攜/車(chē)載
動(dòng)物實(shí)驗(yàn)儀器
臨床檢驗(yàn)儀器設(shè)備
微生物檢測(cè)儀器
芯片系統(tǒng)
泵
分離/萃取設(shè)備
恒溫/加熱/干燥設(shè)備
清洗/消毒設(shè)備
液體處理設(shè)備
制樣/消解設(shè)備
磁學(xué)測(cè)量?jī)x器
燃燒測(cè)定儀
無(wú)損檢測(cè)/無(wú)損探傷儀器
半導(dǎo)體行業(yè)專(zhuān)用儀器
紡織行業(yè)專(zhuān)用儀器
金屬與冶金行業(yè)專(zhuān)用儀器
專(zhuān)用設(shè)備
石油專(zhuān)用分析儀器
橡塑行業(yè)專(zhuān)用測(cè)試儀
3D打印機(jī)
環(huán)境試驗(yàn)箱
電子測(cè)量?jī)x器
工業(yè)在線及過(guò)程控制儀器
生物耗材
相關(guān)儀表
波譜儀器
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水質(zhì)分析
成像系統(tǒng)
分子生物學(xué)儀器
生物工程設(shè)備
細(xì)胞生物學(xué)儀器
植物生理生態(tài)儀器
純化設(shè)備
合成/反應(yīng)設(shè)備
氣體發(fā)生器/氣體處理
實(shí)驗(yàn)室家具
制冷設(shè)備
測(cè)厚儀
測(cè)量/計(jì)量?jī)x器
實(shí)驗(yàn)室服務(wù)
其他
包裝行業(yè)專(zhuān)用儀器
建筑工程儀器
鋰電行業(yè)專(zhuān)用測(cè)試系統(tǒng)
農(nóng)業(yè)和食品專(zhuān)用儀器
危險(xiǎn)化學(xué)品檢測(cè)專(zhuān)用儀器
藥物檢測(cè)專(zhuān)用儀器
面議
536
Mini-PAM——外觀Mini,但功能絕不Mini!
PNAS、Plant Cell、Plant Physiology等**期刊上經(jīng)常見(jiàn)到它的身影
Schreiber教授因發(fā)明PAM系列調(diào)制葉綠素?zé)晒鈨x而獲得首屆國(guó)際光合作用協(xié)會(huì)(ISPR)創(chuàng)新獎(jiǎng)
1983年,WALZ公司**科學(xué)家、德國(guó)烏茲堡大學(xué)的Ulrich Schreiber教授設(shè)計(jì)制造了全世界**臺(tái)調(diào)制熒光儀——PAM-101/102/103,并在植物生理、生態(tài)、農(nóng)學(xué)、林學(xué)、水生生物學(xué)等領(lǐng)域得到廣泛應(yīng)用,出版了大量高水平研究文獻(xiàn)。但該儀器比較笨重,不易帶到野外。
1992年,Ulrich Schreiber教授設(shè)計(jì)制造了全世界**臺(tái)便攜式調(diào)制熒光儀——PAM-2000(現(xiàn)已升級(jí)到PAM-2100),由于其既能在室內(nèi)使用,也方便野外使用,因此在此后十幾年中成為全球*暢銷(xiāo)的調(diào)制熒光儀。
1996年,WALZ公司在濃縮PAM-2000功能的基礎(chǔ)上,設(shè)計(jì)制造了一臺(tái)更加方便攜帶的超便攜式調(diào)制熒光儀——MINI-PAM。該儀器對(duì)PAM-2000的功能進(jìn)行了濃縮,更加適合野外操作,同時(shí)價(jià)格也更加便宜。
系統(tǒng)描述
MINI-PAM采用了獨(dú)特的調(diào)制技術(shù)和飽和脈沖技術(shù),從而可以通過(guò)選擇性的原位測(cè)量葉綠素?zé)晒鈦?lái)檢測(cè)植物光合作用的變化。MINI-PAM的調(diào)制測(cè)量光足夠低,可以只激發(fā)色素的本底熒光而不引起任何的光合作用,從而可以真實(shí)的記錄基礎(chǔ)熒光Fo。MINI-PAM具有很強(qiáng)的靈敏度和選擇性,使其即使在很強(qiáng)的、未經(jīng)濾光片處理的環(huán)境下(如全日照甚至是10000 μmol m-2 s-1的飽和光強(qiáng)下)也可測(cè)定熒光產(chǎn)量而不受到干擾。MINI-PAM是野外光合作用研究的強(qiáng)大工具。
超便攜式調(diào)制葉綠素?zé)晒鈨xMINI-PAM的特點(diǎn)在于快速、可靠的測(cè)量光合作用光化學(xué)能量轉(zhuǎn)換的實(shí)際量子產(chǎn)量。此外,MINI-PAM秉承了WALZ公司PAM系列產(chǎn)品的一貫優(yōu)點(diǎn),通過(guò)應(yīng)用調(diào)制測(cè)量光來(lái)選擇性的測(cè)量活體葉綠素?zé)晒狻;趧?chuàng)新性的光電設(shè)計(jì)和高級(jí)微處理器技術(shù),MINI-PAM在達(dá)到超便攜設(shè)計(jì)的同時(shí)可以得到靈敏、可靠的結(jié)果。同時(shí),MINI-PAM的操作非常簡(jiǎn)單。
測(cè)量光合量子產(chǎn)量只需一個(gè)按鍵(START)操作即可,儀器會(huì)自動(dòng)測(cè)量熒光產(chǎn)量(F)和**熒光(Fm),并計(jì)算光合量子產(chǎn)量(Y=ΔF/Fm),得到的數(shù)據(jù)會(huì)在液晶顯示屏上顯示同時(shí)自動(dòng)存儲(chǔ)。此外MINI-PAM還有許多模式(MODE)菜單,包括熒光淬滅分析(qP、qN和NPQ)和記錄光響應(yīng)曲線等,以滿(mǎn)足用戶(hù)的特殊需要。
連接光適應(yīng)葉夾2030-B后,可以測(cè)量光合有效輻射(PAR)、葉片溫度和相對(duì)電子傳遞速率(rETR)。內(nèi)置電池可以滿(mǎn)足1000次量子產(chǎn)量測(cè)量的需要,儀器內(nèi)存可以存儲(chǔ)4000組數(shù)據(jù)。
Windows操作軟件WinControl可以進(jìn)行數(shù)據(jù)傳輸、數(shù)據(jù)分析和遙控操作。
標(biāo)準(zhǔn)版的MINI-PAM采用紅光作為測(cè)量光。根據(jù)用戶(hù)需要,我們也可提供以藍(lán)光(470 nm)作為測(cè)量光的MINI-PAM。
特點(diǎn)1)聲譽(yù)**的PAM-2000的濃縮版
2)精巧、準(zhǔn)確、迅速、操作簡(jiǎn)便的高級(jí)光合作用檢測(cè)設(shè)備
3)可單機(jī)操作(采用內(nèi)置電腦),可連接外置電腦操作(Windows操作軟件WinControl)
4)超便攜式設(shè)計(jì),帶液晶顯示屏和8個(gè)按鍵
5)強(qiáng)大的數(shù)據(jù)收集、分析和存貯功能
6)能耗低,內(nèi)置鋰電池可滿(mǎn)足長(zhǎng)時(shí)間野外工作需要,并可連接外置12 V電池
7)多種葉夾可供選擇,**設(shè)計(jì)的光適應(yīng)葉夾2030-B可同時(shí)記錄PAR和溫度變化
8)光源選擇:自然光,內(nèi)置光源(提供測(cè)量光、光化光和飽和脈沖),可選外置鹵素?zé)艄庠矗ㄌ貏e適合野外研究)
功能1)可測(cè)熒光誘導(dǎo)曲線并進(jìn)行淬滅分析(Fo, Fm, Fv/Fm, F, Fm', ΔF/Fm’, qP, qN, NPQ, rETR, PAR和葉溫等)
2)可測(cè)光響應(yīng)曲線和快速光曲線(RLC)
3)51個(gè)內(nèi)置模式菜單,方便參數(shù)設(shè)置和標(biāo)準(zhǔn)測(cè)量
4)可在線監(jiān)測(cè)植物、微藻、地衣、苔蘚等的光合作用變化
5)功能強(qiáng)大,特別適合野外操作,實(shí)驗(yàn)室內(nèi)利用WinControl控制時(shí)可自編程序
應(yīng)用領(lǐng)域
儀器設(shè)計(jì)特別適合野外使用,可用于研究光合作用機(jī)理、各種環(huán)境因子(光、溫、營(yíng)養(yǎng)等)對(duì)植物生理狀態(tài)的影響、植物抗逆性(干旱、冷、熱、澇、UV、病毒、污染、重金屬等)、植物的長(zhǎng)期生態(tài)學(xué)變化等。在植物生理學(xué)、植物生態(tài)學(xué)、植物病理學(xué)、農(nóng)學(xué)、林學(xué)、園藝學(xué)、水生生物學(xué)、環(huán)境科學(xué)、毒理學(xué)、微藻生物技術(shù)、極地植物光合作用研究等領(lǐng)域有著廣泛應(yīng)用。
系統(tǒng)組成
MINI-PAM的基本組成包括主機(jī)(1)和光纖(2)。主機(jī)內(nèi)置大容量可充電鋰電池(12 V/2 Ah),可供長(zhǎng)時(shí)間野外操作(約1000次量子產(chǎn)量測(cè)定)。標(biāo)準(zhǔn)系統(tǒng)還包括一個(gè)電池充電器(3)和一個(gè)“距離葉夾”(4),以及一個(gè)運(yùn)輸箱(5)。
可選附件包括:可在測(cè)量熒光參數(shù)的同時(shí)測(cè)量PAR和溫度的光適應(yīng)葉夾2030-B(6);微型光量子/溫度傳感器2060-M(7),可用于測(cè)量非葉片狀樣品的PAR和溫度;可安裝2030-B或2060-M的三角架ST-2101A(8);暗適應(yīng)葉夾DLC-8(9),帶滑片開(kāi)關(guān),重4 g;微光纖(10),可用于測(cè)量微型樣品,或與便攜式光合作用測(cè)量系統(tǒng)GFS-3000的葉室連用在自然光下同步測(cè)量氣體交換和葉綠素?zé)晒狻?/p>
可與光合儀連用,同步測(cè)量氣體交換和熒光
MINI-PAM可以利用微光纖與便攜式光合作用測(cè)量系統(tǒng)GFS-3000連用,在完全不遮蔭的自然光下同步測(cè)量氣體交換與葉綠素?zé)晒?/strong>,特別適合野外生理、生態(tài)學(xué)研究。
技術(shù)參數(shù)測(cè)量光:紅色發(fā)光二極管(LED),650 nm;標(biāo)準(zhǔn)光強(qiáng)0.15 μmol m-2 s-1PAR;調(diào)制頻率0.6或20 kHz,自動(dòng)轉(zhuǎn)換。
光化光:鹵素?zé)簦?V/20W,藍(lán)色增強(qiáng),λ<710 nm,**連續(xù)光強(qiáng)6000 μmol m-2 s-1par。
飽和脈沖:鹵素?zé)簦?V/20W,藍(lán)色增強(qiáng),λ<710 nm,**飽和閃光強(qiáng)度18000 μmol m-2 s-1par。
信號(hào)檢測(cè):PIN-光電二極管,帶短波截止濾光片(標(biāo)準(zhǔn)版:λ>710 nm;MINI-PAM/B:λ>650 nm);選擇性鎖相放大器(**設(shè)計(jì))。
數(shù)據(jù)存儲(chǔ):CMOS RAM 128 KB,可存儲(chǔ)4000組數(shù)據(jù)
測(cè)量參數(shù):Fo, Fm, Fm’, F, Fv/Fm(max. Yield), ΔF/Fm’(Yield), qP, qN, NPQ, ETR, PAR和葉溫等。
環(huán)境溫度:-5~+40℃,在極地研究中得到成功應(yīng)用
部分文獻(xiàn)
1.Anjum MA: Response of Cleopatra mandarin seedlings to a polyamine-biosynthesis inhibitor under salt stress. Acta Physiologiae Plantarum2010:in press.[MINI-PAM]
2.Beniwal RS, Langenfeld-Heyser R, Polle A: Ectomycorrhiza and hydrogel protect hybrid poplar from water deficit and unravel plastic responses of xylem anatomy Environmental and Experimental Botany2010:in press.[MINI-PAM, HCM-1000]
3.Doyle SM, Diamond M, McCabe PF: Chloroplast and reactive oxygen species involvement in apoptotic-like programmed cell death in Arabidopsis suspension cultures. Journal of Experimental Botany2010, 61(2):473-482.[MINI-PAM]
4.Du N, Guo W, Zhang X, Wang R: Morphological and physiological responses of Vitex negundo L. var.heterophylla (Franch.) Rehd. to drought stress. Acta Physiologiae Plantarum2010:in press.[GFS-3000, MINI-PAM]
5.Fleck I, Peña-Rojas K, Aranda X: Mesophyll conductance to CO2 and leaf morphological characteristics under drought stress during Quercus ilex L. resprouting. Ann For Sci2010, 67(3):308.[MINI-PAM]
6.Führs H, Behrens C, Gallien S, Heintz D, Van Dorsselaer A, Braun H-P, Horst WJ: Physiological and proteomic characterization of manganese sensitivity and tolerance in rice (Oryza sativa) in comparison with barley (Hordeum vulgare). Annals of Botany2010:in press.[MINI-PAM]
7.Hasunuma T, Harada K, Miyazawa S-I, Kondo A, Fukusaki E, Miyake C: Metabolic turnover analysis by a combination of in vivo 13C-labelling from 13CO2 and metabolic profiling with CE-MS/MS reveals rate-limiting steps of the C3 photosynthetic pathway in Nicotiana tabacum leaves. Journal of Experimental Botany2010, 61(4):1041-1051.[MINI-PAM]
8.Ibaraki Y, Matsumura K, Gupta SD: Low-cost photochemical reflectance index measurements of micropropagated plantlets using image analysis Computers and Electronics in Agriculture2010, 71(2):170-175.[MINI-PAM]
9.Jin ZL, Zhang F, Ahmed ZI, Rasheed M, Naeem MS, Ye QF, Zhou WJ: Differential morphological and physiological responses of two oilseedBrassica species to a new herbicide ZJ0273 used in rapeseed fields. Pesticide Biochemistry and Physiology2010:in press.[MINI-PAM]
10.Jubany-Marí T, Prinsen E, Munné-Bosch S, Alegre L: The timing of methyl jasmonate, hydrogen peroxide and ascorbate accumulation during water deficit and subsequent recovery in the Mediterranean shrubCistus albidus L. . Environmental and Experimental Botany2010, 69(1):47-55.[MINI-PAM]
11.Kao W-Y, Lin B-L: Phototropic leaf movements and photosynthetic performance in an amphibious fern, Marsilea quadrifolia. Journal of Plant Research2010:in press.[MINI-PAM]
12.Kontunen-Soppela S, Sillanpää M, Tuhkanen E, Sutinen S, Kangasjärvi J, Vapaavuori E, Häggman H: Photosynthetic characteristics in genetically modified sense-RbcS silver birch lines Journal of Plant Physiology2010:in press.[MINI-PAM]
13.Liu F, Pang SJ: Stress tolerance and antioxidant enzymatic activities in the metabolisms of the reactive oxygen species in two intertidal red algae Grateloupia turuturu and Palmaria palmata Journal of Experimental Marine Biology and Ecology2010, 382(2):82-87.[MINI-PAM]
14.Liu F, Pang SJ: Performances of growth, photochemical efficiency, and stress tolerance of young sporophytes from seven populations ofSaccharina japonica (Phaeophyta) under short-term heat stress. Journal of Applied Phycology2010, 22:221-229.[MINI-PAM]
15.Liu F, Pang SJ, Chopin T, Xu N, Shan TF, Gao SQ, Sun S: The dominantUlva strain of the 2008 green algal bloom in the Yellow Sea was not detected in the coastal waters of Qingdao in the following winter. Journal of Applied Phycology2010:in press.[MINI-PAM]
16.Nikiforou C, Manetas Y: Strength of winter leaf redness as an indicator of stress vulnerable individuals in Pistacia lentiscus. Flora2010:in press.[MINI-PAM]
17.Pietrini F, Zacchini M, Iori V, Pietrosanti L, Bianconi D, Massacci A: Screening of Poplar Clones for Cadmium Phytoremediation Using Photosynthesis, Biomass and Cadmium Content AnalysesInternal Journal of Phytoremediation2010, 12(1):105-120.[MINI-PAM]
18.Sanches MC, Ribeiro SP, Dalvi VC, Junior MBdS, Sousa HCd, Lemos-Filho JPd: Differential leaf traits of a neotropical tree Cariniana legalis (Mart.) Kuntze (Lecythidaceae): comparing saplings and emergent trees Trees - Structure and Function2010, 24(1):79-88.[MINI-PAM]
19.Vervliet-Scheebaum M, Straus A, Tremp H, Hamer M, Maund SJ, Wagner E, Schulz R: A microcosm system to evaluate the toxicity of the triazine herbicide simazine on aquatic macrophytes. Environmental Pollution2010, 158:615-623.[MINI-PAM]
20.桂仁意, 劉亞迪, 郭小勤, 季海寶, 賈月, 余明增, 方偉: 不同劑量137Cs-γ輻射對(duì)毛竹幼苗葉片葉綠素?zé)晒鈪?shù)的影響. 植物學(xué)報(bào)2010, 45(1):66-72.[MINI-PAM]
21.Cela J, Arrom L, Munné-Bosch S: Diurnal changes in photosystem II photochemistry, photoprotective compounds and stress-related phytohormones in the CAM plant, Aptenia cordifolia Plant Science2009, 177(5):404-410.[MINI-PAM]
22.Cela J, Falk J, Munné-Bosch S: Ethylene signaling may be involved in the regulation of tocopherol biosynthesis inArabidopsis thaliana. FEBS Letters2009, 583(6):992-996.[MINI-PAM]
23.Dai Y, Shao M, Hannaway D, Wang L, Liang J, Hua L, Lu H: Effect of Thrips tabaci on anatomical features, photosynthetic characteristics and chlorophyll fluorescence of Hypericum sampsonii leaves Crop Protection2009, 28(4):327-332.[MINI-PAM]
24.Dai Y-J, Shen Z-G, Liu Y, Wang L-L, Hannaway D, Lu H-F: Effects of shade treatments on the photosynthetic capacity, chlorophyll fluorescence, and chlorophyll content of Tetrastigma hemsleyanum Diels et Gilg Environmental and Experimental Botany2009, 65(2-3):177-182.[GFS-3000, MINI-PAM]
25.Granath G, Strengbom J, Breeuwer A, Heijmans MMPD, Berendse F, Rydin H: Photosynthetic performance in Sphagnum transplanted along a latitudinal nitrogen deposition gradient Oecologia2009, 159(4):705-715.[MINI-PAM]
26.Kläring H-P, Zude M: Sensing of tomato plant response to hypoxia in the root environment Scientia Horticulturae2009, 122(1):17-25.[MINI-PAM]
27.Li X, Huang H, Lian J, Huang L, Dong J: Effects of the multiple stressors high temperature and reduced salinity on the photosynthesis of the hermatypic coral Galaxea fascicularis Acta Ecologica Sinica2009, 29(3):155-159.[MINI-PAM]
28.Moreira ASFP, Filho JPdL, Zotz G, Isaias RMdS: Anatomy and photosynthetic parameters of roots and leaves of two shade-adapted orchids, Dichaea cogniauxiana Shltr. and Epidendrum secundum Jacq. . Flora - Morphology, Distribution, Functional Ecology of Plants2009, 204(8):604-611.[MINI-PAM]
29.Ogawa T, Nishimura K, Aoki T, Takase H, Tomizawa K-I, Ashida H, Yokota A: pfkB-type carbohydrate kinase family protein, NARA5, for massive expressions of plastid-encoded photosynthetic genes in Arabidopsis thaliana. Plant Physiology2009, 151(1):114-128.[MINI-PAM]
30.Oh S-J, Kim YS, Kwon C-W, Park HK, Jeong JS, Kim J-K: Overexpression of the Transcription FactorAP37 in Rice Improves Grain Yield under Drought Conditions. Plant Physiology2009, 150:1368-1379.[MINI-PAM]
31.Okuda K, Chateigner-Boutin A-L, Nakamura T, Delannoy E, Sugita M, Myouga F, Motohashi R, Shinozaki K, Small I, Shikanai T: Pentatricopeptide Repeat Proteins with the DYW Motif Have Distinct Molecular Functions in RNA Editing and RNA Cleavage in Arabidopsis Chloroplasts. The Plant Cell2009, 21:146-156.[MINI-PAM]
32.Oñate M, Munné-Bosch S: Influence of plant maturity, shoot reproduction and sex on vegetative growth in the dioecious plantUrtica dioica. Annals of Botany2009, 104(5):945-956.[MINI-PAM]
33.Pembleton KG, Rawnsley RP, Donaghy DJ, Volenec JJ: Water Deficit Alters Canopy Structure but not Photosynthesis during the Regrowth of Alfalfa. Crop Science2009, 49:722-731.[MINI-PAM]
34.Prider J, Watling J, Facelli JM: Impacts of a native parasitic plant on an introduced and a native host species: implications for the control of an invasive weed. Annals of Botany2009, 103:107-115.[MINI-PAM]
35.Shi G, Cai Q: Leaf plasticity in peanut (Arachis hypogaea L.) in response to heavy metal stress Environmental and Experimental Botany2009, 67(1):112-117.[MINI-PAM]
36.Shi G, Cai Q: Cadmium tolerance and accumulation in eight potential energy crops Biotechnology Advances2009, 27(5):555-561.[MINI-PAM]
37.Shi GR, Cai QS, Liu QQ, Wu L: Salicylic acid-mediated alleviation of cadmium toxicity in hemp plants in relation to cadmium uptake, photosynthesis, and antioxidant enzymes Acta Physiologiae Plantarum2009, 31(5):969-977.[MINI-PAM]
38.Then C, Herbinger K, Luis VC, Heerdt C, Matyssek R, Wieser G: Photosynthesis, chloroplast pigments, and antioxidants in Pinus canariensis under free-air ozone fumigation Environmental Pollution2009, 157(2):392-395.[MINI-PAM]
39.Wu Y-Y, Liu C-Q, Li P-P, Wang J-Z, Xing D, Wang B-L: Photosynthetic characteristics involved in adaptability to Karst soil and alien invasion of paper mulberry (Broussonetia papyrifera (L.) Vent.) in comparison with mulberry (Morus alba L.) Photosynthetica2009, 47(1):155-160.[MINI-PAM]
40.Xu F, Guo W, Wang R, Xu W, Du N, Wang Y: Leaf movement and photosynthetic plasticity of black locust (Robinia pseudoacacia) alleviate stress under different light and water conditions Acta Physiologiae Plantarum2009, 31(3):553-563.[MINI-PAM]
41.Zhang H, Dong H, Li W, Sun Y, Chen S, Kong X: Increased glycine betaine synthesis and salinity tolerance inAhCMO transgenic cotton lines Molecular Breeding2009, 23(2):289-298.[MINI-PAM]
42.黃鵬云, 羅麗娟: 水稻矮桿鞘包穗突變體A846的葉綠素?zé)晒馓匦匝芯? 中國(guó)農(nóng)學(xué)通報(bào)2009, 25(12):122-125.[MINI-PAM]
43.紀(jì)建偉, 解飛, Harbinson J: LED激發(fā)光源葉綠素?zé)晒鈪?shù)在線監(jiān)控系統(tǒng). 農(nóng)業(yè)工程學(xué)報(bào)2009, 25(4):145-149.[MINI-PAM]
44.雷新明, 黃暉, 王華接, 李秀保, 練健生: 造礁石珊瑚共生藻對(duì)富營(yíng)養(yǎng)的響應(yīng)研究. 海洋通報(bào)2009, 28(1):43-49.[MINI-PAM]
45.呂洪飛, 皮二旭, 王嵐嵐, 沈虹: 遮蔭處理的白英光合作用和葉綠素?zé)晒馓匦匝芯? 浙江師范大學(xué)學(xué)報(bào)2009, 32(1):1-6.[GFS-3000, MINI-PAM]
46.張玉榮, 劉峰, 單體鋒, 逄少軍: 利用葉綠素?zé)晒饧夹g(shù)揭示人工培育的銅藻幼苗對(duì)脅迫溫度、光照和鹽度的反應(yīng). 南方水產(chǎn)2009, 5(2):1-9.[MINI-PAM]
47.Arena C, Vitale L, De Santo AV: Paraheliotropism in Robinia pseudoacacia L.: an efficient strategy to optimise photosynthetic performance under natural environmental conditions. Plant Biology2008, 10(2):194-201.[MINI-PAM, HCM-1000]
48.Cano L, Escarre J, Fleck I, Blanco-Moreno JM, Sans FX: Increased fitness and plasticity of an invasive species in its introduced range: a study using Senecio pterophorus. Journal of Ecology2008, 96(3):468-476.[MINI-PAM]
49.Dai Y-J, Shao M-M, Hannaway D, Wang L-L, Liang J-P, Hua L, Lu H-F: Effect ofThrips tabaci on anatomical features, photosynthetic characteristics and chlorophyll fluorescence of Hypericum sampsonii leaves. Crop Science2008, 28(4):327-332.[GFS-3000, MINI-PAM]
50.Gomes FP, Oliva MA, Mielke MS, Almeida A-AFd, Leite HG, Aquino LA: Photosynthetic limitations in leaves of young Brazilian Green Dwarf coconut (Cocos nucifera L. ‘nana’) palm under well-watered conditions or recovering from drought stress Environmental and Experimental Botany2008, 62(3):195-204.[MINI-PAM]
51.Matsubara S, Krause GH, Seltmann M, Virgo A, Kursar TA, Jahns P, Winter K: Lutein epoxide cycle, light harvesting and photoprotection in species of the tropical tree genusInga. Plant Cell and Environment2008, 31(4):548-561.[MINI-PAM]
52.Matsuda R, Ohashi-Kaneko K, Fujiwara K, Kurata K: Effects of Blue Light Deficiency on Acclimation of Light Energy Partitioning in PSII and CO2 Assimilation Capacity to High Irradiance in Spinach Leaves. Plant Cell Physiol2008, 49(4):664-670.[MINI-PAM]
53.Myouga F, Hosoda C, Umezawa T, Iizumi H, Kuromori T, Motohashi R, Shono Y, Nagata N, Ikeuchi M, Shinozaki K: A Heterocomplex of Iron Superoxide Dismutases Defends Chloroplast Nucleoids against Oxidative Stress and Is Essential for Chloroplast Development in Arabidopsis. The Plant Cell2008, 20:3148-3162.[MINI-PAM]
54.Okegawa Y, Kagawa Y, Kobayashi Y, Shikanai T: Characterization of Factors Affecting the Activity of Photosystem I Cyclic Electron Transport in Chloroplasts. Plant Cell Physiol2008, 49(5):825-834.[MINI-PAM]
55.Pang SJ, Shan TF, Zhang ZH: Responses of vegetative gametophytes of Undaria pinnatifida to high irradiance in the process of gametogenesis. Phycological Research2008, 56(4):280-287.[MINI-PAM]
56.Read J, Wevill T, Fletcher T, Deletic A: Variation among plant species in pollutant removal from stormwater in biofiltration systems Water Research2008, 42(4-5):893-902.[MINI-PAM]
57.Sack L, Dietrich EM, Streeter CM, Sánchez-Gómez D, Holbrook NM: Leaf palmate venation and vascular redundancy confer tolerance of hydraulic disruption. Proc Natl Acad Sci USA2008, 105:1567-1572.[MINI-PAM]
58.Sawada H, Shim I-S, Usui K, Kobayashi K, Fujihara S: Adaptive mechanism of Echinochloa crus-galli Beauv. var. formosensis Ohwi under salt stress: Effect of salicylic acid on salt sensitivity Plant Science2008, 174(6):583-589.[MINI-PAM]
59.Shimizu H, Peng L, Myouga F, Motohashi R, Shinozaki K, Shikanai T: CRR23/NdhL is a Subunit of the Chloroplast NAD(P)H Dehydrogenase Complex in Arabidopsis. Plant Cell Physiol2008, 49(5):835-842.[MINI-PAM]
60.Sienkiewicz-Porzucek A, Nunes-Nesi A, Sulpice R, Lisec J, Centeno DC, Carillo P, Leisse A, Urbanczyk-Wochniak E, Fernie AR: Mild Reductions in Mitochondrial Citrate Synthase Activity Result in a Compromised Nitrate Assimilation and Reduced Leaf Pigmentation But Have No Effect on Photosynthetic Performance or Growth. Plant Physiology2008, 147(1):115-127.[MINI-PAM]
61.Wang C-R, Yang A-F, Yue G-D, Gao Q, Yin H-Y, Zhang J-R: Enhanced expression of phospholipase C 1 ( ZmPLC1 ) improves drought tolerance in transgenic maize Planta2008, 227(5):1127-1140.[MINI-PAM]
62.Yunusa IAM, Manoharan V, DeSilva DL, Eamus D, Murray BR, Nissanka SP: Growth and Elemental Accumulation by Canola on Soil Amended with Coal Fly Ash. Journal of Environmental Quality2008, 37(3):1263-1270.[MINI-PAM]
63.Zhang X, Wollenweber B, Jiang D, Liu F, Zhao J: Water deficits and heat shock effects on photosynthesis of a transgenic Arabidopsis thaliana constitutively expressing ABP9, a bZIP transcription factor. J Exp Bot2008, 59(4):839-848.[MINI-PAM]
64.時(shí)翔, 譚燁輝, 黃良民, 黃小平, 李元超, 董志軍: 磷酸鹽脅迫對(duì)造礁石珊瑚共生蟲(chóng)黃藻光合作用的影響. 生態(tài)學(xué)報(bào)2008, 28(6):2581-2586.[MINI-PAM]
65.徐飛, 郭衛(wèi)華, 徐偉紅, 王仁卿: 短期干旱和復(fù)水對(duì)麻櫟幼苗光合及葉綠素?zé)晒獾挠绊? 山東林業(yè)科技2008(4):1-4.[MINI-PAM, GFS-3000]
66.Blodner C, Goebel C, Feussner I, Gatz C, Polle A: Warm and cold parental reproductive environments affect seed properties, fitness, and cold responsiveness in Arabidopsis thaliana progenies. Plant Cell and Environment2007, 30(2):165-175.[MINI-PAM]
67.Figueredo CC, Giani A, Bird DF: Does allelopathy contribute to Cylindrospermopsis raciborskii (Cyanobacteria) bloom occurrence and geographic expansion? Journal of Phycology2007, 43(2):256-265.[MINI-PAM]
68.Gielen B, Low M, Deckmyn G, Metzger U, Franck F, Heerdt C, Matyssek R, Valcke R, Ceulemans R: Chronic ozone exposure affects leaf senescence of adult beech trees: a chlorophyll fluorescence approach. J Exp Bot2007, 58(4):785-795.[MINI-PAM]
69.Grams TEE, Koziolek C, Lautner S, Matyssek R, Fromm J: Distinct roles of electric and hydraulic signals on the reaction of leaf gas exchange upon re-irrigation in Zea mays L. Plant Cell and Environment2007, 30(1):79-84.[MINI-PAM]
70.Hernandez-Gonzalez O, Villarreal OB: Crassulacean acid metabolism photosynthesis in columnar cactus seedlings during ontogeny: the effect of light on nocturnal acidity accumulation and chlorophyll fluorescence. Am J Bot2007, 94(8):1344-1351.[MINI-PAM]
71.Martin R, Asner G, Sack L: Genetic variation in leaf pigment, optical and photosynthetic function among diverse phenotypes of Metrosideros polymorpha grown in a common garden. Oecologia2007, 151(3):387-400.[MINI-PAM]
72.Mussgnug JH, Thomas-Hall S, Rupprecht J, Foo A, Klassen V, McDowall A, Schenk PM, Kruse O, Hankamer B: Engineering photosynthetic light capture: impacts on improved solar energy to biomass conversion. Plant Biotechnology Journal2007, 5(6):802-814.[MINI-PAM]
73.Oh S-J, Kwon C-W, Choi D-W, Song SI, Kim J-K: Expression of barley HvCBF4 enhances tolerance to abiotic stress in transgenic rice. Plant Biotechnology Journal2007, 5(5):646-656.[MINI-PAM]
74.Okuda K, Myouga F, Motohashi R, Shinozaki K, Shikanai T: Conserved domain structure of pentatricopeptide repeat proteins involved in chloroplast RNA editing. Proceedings of the National Academy of Sciences2007, 104(19):8178-8183.[MINI-PAM]
75.Ouelhadj A, Kaminski M, Mittag M, Humbeck K: Receptor-like protein kinase HvLysMR1 of barley (Hordeum vulgare L.) is induced during leaf senescence and heavy metal stress. J Exp Bot2007, 58(6):1381-1396.[MINI-PAM]
76.Pang SJ, Jin ZH, Sun JZ, Gao SQ: Temperature tolerance of young sporophytes from two populations of Laminaria japonica revealed by chlorophyll fluorescence measurements and short-term growth and survival performances in tank culture Aquaculture2007, 262(2-4):493-503.[MINI-PAM]
77.Pang SJ, Zhang ZH, Zhao HJ, Sun JZ: Cultivation of the brown alga Hizikia fusiformis (Harvey) Okamura: stress resistance of artificially raised young seedlings revealed by chlorophyll fluorescence measurement Journal of Applied Phycology2007, 19(5):557-565.[MINI-PAM]
78.Pinto-Marijuan M, de Agazio M, Zacchini M, Santos MA, Torne JM, Fleck I: Response of transglutaminase activity and bound putrescine to changes in light intensity under natural or controlled conditions in Quercus ilex leaves. Physiologia Plantarum2007, 131(1):159-169.[MINI-PAM]
79.Shimizu H, Shikanai T: Dihydrodipicolinate reductase-like protein, CRR1, is essential for chloroplast NAD(P)H dehydrogenase in Arabidopsis. The Plant Journal2007, 52(3):539-547.[MINI-PAM]
80.Timperio AM, D'Amici GM, Barta C, Loreto F, Zolla L: Proteomics, pigment composition, and organization of thylakoid membranes in iron-deficient spinach leaves. J Exp Bot2007, 58(13):3695-3710.[MINI-PAM, PAM-100]
81.Yabuta Y, Mieda T, Rapolu M, Nakamura A, Motoki T, Maruta T, Yoshimura K, Ishikawa T, Shigeoka S: Light regulation of ascorbate biosynthesis is dependent on the photosynthetic electron transport chain but independent of sugars in Arabidopsis. J Exp Bot2007, 58(10):2661-2671.[MINI-PAM]
82.Zaragoza-Castells J, Sanchez-Gomez D, Valladares F, Hurry V, Atkin OK: Does growth irradiance affect temperature dependence and thermal acclimation of leaf respiration? Insights from a Mediterranean tree with long-lived leaves. Plant Cell and Environment2007, 30(7):820-833.[MINI-PAM]
83.譚雪蓮, 張緒成, 郭天文, 夏芳琴, 張金林: 氮素對(duì)小麥幼苗葉片氣體交換和能量轉(zhuǎn)化特性的調(diào)控. 核農(nóng)學(xué)報(bào)2007, 21(3):305-310.[MINI-PAM]
84.唐薇, 羅振, 溫四民, 董合忠, 李維江, 辛承松: 干旱和鹽脅迫對(duì)棉苗光合抑制效應(yīng)的比較. 棉花學(xué)報(bào)2007, 19(1):28-32.[MINI-PAM]
85.徐飛, 郭衛(wèi)華, 王煒, 徐偉紅, 王玉芳, 王仁卿: 黃河三角洲檉柳與蘆葦光合特性比較. 山東林業(yè)科技2007(6):29-33.[GFS-3000, MINI-PAM]
86.徐飛, 郭衛(wèi)華, 王玉芳, 王煒, 杜寧, 王仁卿: 濟(jì)南市校園6個(gè)綠化樹(shù)種光合熒光特征比較初探. 山東大學(xué)學(xué)報(bào)2007, 42(5):1-9.[GFS-3000, MINI-PAM]
87.Deeken R, Engelmann JC, Efetova M, Czirjak T, Müller T, Kaiser WM, Tietz O, Krischke M, Mueller MJ, Palme Ket al: An Integrated View of Gene Expression and Solute Profiles of Arabidopsis Tumors: A Genome-Wide Approach. The Plant Cell2006, 18:3617-3634.[MINI-PAM]
88.Fabricius KE: Effects of irradiance, flow, and colony pigmentation on the temperature microenvironment around corals: Implications for coral bleaching? Limnology and Oceanography2006, 51(1):30-37.[MINI-PAM]
89.Fernandez MD: Changes in photosynthesis and fluorescence in response to flooding in emerged and submerged leaves of Pouteria orinocoensis Photosynthetica2006, 44(1):32-38.[MINI-PAM]
90.Kytridis V-P, Manetas Y: Mesophyll versus epidermal anthocyanins as potential in vivo antioxidants: evidence linking the putative antioxidant role to the proximity of oxy-radical source. Journal of Experimental Botany2006, 57:2203-2210.[MINI-PAM]
91.Munshi MK, Kobayashi Y, Shikanai T: CRR6 is a novel factor required for accumulation of the chloroplast NAD(P)H dehydrogenase complex in Arabidopsis. Plant Physiology2006, 141:737-744.[MINI-PAM]
92.Neto D, Carvalho LM, Cruz C, Martins-Loução MA: How do mycorrhizas affect C and N relationships in flooded Aster tripolium plants? . Plant and Soil2006, 279(1-2):51-63.[MINI-PAM]
93.Nichol CJ, Rascher U, Matsubara S, Osmond B: Assessing photosynthetic efficiency in an experimental mangrove canopy using remote sensing and chlorophyll fluorescence Trees2006, 20(1):9-15.[MINI-PAM]
94.Oguchi R, Hikosaka K, Hiura T, Hirose T: Leaf anatomy and light acclimation in woody seedlings after gap formation in a cool-temperate deciduous forest. Oecologia2006, 149(4):571-582.[MINI-PAM]
95.Ouelhadj A, Kuschk P, Humbeck K: Heavy metal stress and leaf senescence induce the barley gene HvC2d1 encoding a calcium-dependent novel C2 domain-like protein. New Phytologist2006, 170(2):261-273.[MINI-PAM]
96.Raftoyannis Y, Radoglou K, Halivopoulos G: Ecophysiology and survival of Acer pseudoplatanus L., Castanea sativa Miller. and Quercus frainetto Ten. seedlings on a reforestation site in Northern Greece New Forests2006, 31(2):151-163.[MINI-PAM]
97.Roessink I, Belgers JDM, Crum SJH, van den Brink PJ, Brock TCM: Impact of triphenyltin acetate in microcosms simulating floodplain lakes. II. Comparison of species sensitivity distributions between laboratory and semi-field. Ecotoxicology2006, 15(5):411-424.[MINI-PAM, PHYTO-PAM]
98.Abdel-Ghany SE, Müller-Moulé P, Niyogi KK, Pilon M, Shikanai T: Two P-type ATPases are required for copper delivery in Arabidopsis thaliana chloroplasts The Plant Cell2005, 17:1233-1251.[MINI-PAM]
99.Ananyev G, Kolber ZS, Klimov D, Falkowski PG, Berry JA, Rascher U, Martin R, Osmond B: Remote sensing of heterogeneity in photosynthetic efficiency, electron transport and dissipation of excess light in Populus deltoides stands under ambient and elevated CO2 concentrations, and in a tropical forest canopy, using a new laser-induced fluorescence transient device. Global Change Biology2005, 11:1195-1206.[MINI-PAM]
100.Arena C, Vitale L, De Santo AV: Photosynthetic response of Quercus ilex L. plants grown on compost and exposed to increasing photon flux densities and elevated CO2. photosynthetica2005, 43(4):615-619.[MINI-PAM]
101.Chen Z, Newman I, Zhou M, Mendham N, Zhang G, Shabala S: Screening plants for salt tolerance by measuring K+ flux: a case study for barley. Plant Cell and Environment2005, 28(10):1230-1246.[MINI-PAM]
102.El-Lithy ME, Rodrigues GC, van Rensen JJS, Snel JFH, Dassen HJHA, Koornneef M, Jansen MAK, Aarts MGM, Vreugdenhil D: Altered photosynthetic performance of a natural Arabidopsis accession is associated with atrazine resistance Journal of Experimental Botany2005, 56(416):1625-1634.[MINI-PAM]
103.Franco AC, Duarte HM, Geler A, de Mattos EA, Nahm M, Rennenberg H, Ribeiro KT, Scarano FR, Lüttge U: In situ measurements of carbon and nitrogen distribution and composition, photochemical efficiency and stable isotope ratios in Araucaria angustifolia. Trees2005, 19(4):422-430.[MINI-PAM]
104.Geßler A, Duarte HM, Franco AC, Lüttge U, de Mattos EA, Nahm M, Rodrigues PJFP, Scarano FR, Rennenberg H: Ecophysiology of selected tree species in different plant communities at the periphery of the Atlantic Forest of SE—Brazil III. Three legume trees in a semi-deciduous dry forest. Trees2005, 19(5):523-530.[MINI-PAM]
105.Geβler A, Duarte HM, Franco AC, Lüttge U, de Mattos EA, Nahm M, Scarano FR, Zaluar HLT, Rennenberg H: Ecophysiology of selected tree species in different plant communities at the periphery of the Atlantic Forest of SE-Brazil II. Spatial and ontogenetic dynamics in Andira legalis, a deciduous legume tree. Trees2005, 19(5):510-522.[MINI-PAM]
106.Hayashi M, Yagi M, Nito K, Kamada T, Nishimura M: Differential contribution of two peroxisomal protein receptors to the maintenance of peroxisomal functions in Arabidopsis. The Journal of Biological Chemistry2005, 280(15):14829-14835.[MINI-PAM]
107.Hirotsu N, Makino A, Yokota S, Mae T: The photosynthetic properties of rice leaves treated with low temperature and high irradiance Plant Cell and Physiology2005, 46(8):1377-1383.[MINI-PAM]
108.Hojo M, Tasaka M, Shikanai T: Physiological requirements of the nonmevalonate pathway for photo-acclimation in Arabidopsis. Plant Biotechnology2005, 22(1):39-45.[MINI-PAM]
109.Houter NC, Pons TL: Gap size effects on photoinhibition in understorey saplings in tropical rainforest. Plant Ecology2005, 179(1):43-51.[MINI-PAM]
110.Ishida A, Toma T, Marjenah: A comparison of in situ leaf photosynthesis and chlorophyll fluorescence at the top canopies in rainforest mature trees. JARQ2005, 39(1):57-67.[MINI-PAM]
111.Ishihara S, Yamamoto Y, Ifuku K, Sato F: Functional analysis of four members of the PsbP family in photosystem II in nicotiana tabacum using differential RNA interference. Plant Cell and Physiology2005, 46(12):1885-1893.[MINI-PAM]
112.Kolber Z, Klimov D, Ananyev G, Rascher U, Berry J, Osmond B: Measuring photosynthetic parameters at a distance: laser induced fluorescence transient (LIFT) method for remote measurements of photosynthesis in terrestrial vegetation. Photosynthesis Research2005, 84(1-3):121-129.[MINI-PAM]
113.Kotera E, Tasaka M, Shikanai T: A pentatricopeptide repeat protein is essential for RNA editing in chloroplasts. Nature2005, 433:326-330.[MINI-PAM]
114.Mano Ji, Belles-Boix E, Babiychuk E, Inzé D, Torii Y, Hiraoka E, Takimoto K, Slooten L, Asada K, Kushnir S: Protection against photooxidative injury of tobacco leaves by 2-alkenal reductase. Detoxication of lipid peroxide-derived reactive carbonyls. Plant Physiology2005, 139:1773-1783.[MINI-PAM]
115.Matsubara S, Naumann M, Martin R, Nichol C, Rascher U, Morosinotto T, Bassi R, Osmond B: Slowly reversible de-epoxidation of lutein-epoxide in deep shade leaves of a tropical tree legume may ‘lock-in’ lutein-based photoprotection during acclimation to strong light Journal of Experimental Botany2005, 56(411):461-468.[MINI-PAM]
116.Munné-Bosch S, Shikanai T, Asada K: Enhanced ferredoxin-dependent cyclic electron flow around photosystem I and -tocopherol quinone accumulation in water-stressed ndhB-inactivated tobacco mutants. Planta2005, 222(3):502-511.[PAM-100, MINI-PAM]
117.Norisada M, Kojima K: Photosynthetic characteristics of dipterocarp species planted on degraded sandy soils in southern Thailand Photosynthetica2005, 43(4):491-499.[MINI-PAM]
118.Oh S-J, Song SI, Kim YS, Jang H-J, Kim SY, Kim M, Kim Y-K, Nahm BH, Kim J-K: Arabidopsis CBF3/DREB1A and ABF3 in transgenic rice increased tolerance to abiotic stress without stunting growth. Plant Physiology2005, 138:341-351.[MINI-PAM]
119.Okegawa Y, Tsuyama M, Kobayashi Y, Shikanai T: The pgr1 mutation in the rieske subunit of the cytochrome b6f complex does not affect PGR5-dependent cyclic electron transport around photosystem I. The Journal of Biological Chemistry2005, 280(31):28332-28336.[MINI-PAM, PAM-100]
120.Scarano FR, Duarte HM, Franco AC, Geler A, de Mattos EA, Nahm M, Rennenberg H, Zaluar HLT, Lüttge U: Ecophysiology of selected tree species in different plant communities at the periphery of the Atlantic Forest of SE-Brazil I. Performance of three different species of Clusia in an array of plant communities. Trees2005, 19(5):497-509.[MINI-PAM]
121.Shabala S, Shabala L, van Volkenburgh E, Newman I: Effect of divalent cations on ion fluxes and leaf photochemistry in salinized barley leaves Journal of Experimental Botany2005, 56(415):1369-1378.[MINI-PAM]
122.Smethurst CF, Garnett T, Shabala S: Nutritional and chlorophyll fluorescence responses of lucerne (Medicago sativa) to waterlogging and subsequent recovery. Plant and Soil 2005, 270(1):31-45.[MINI-PAM]
123.Yamamoto A, Bhuiyan MNH, Waditee R, Tanaka Y, Esaka M, Oba K, Jagendorf AT, Takabe T: Suppressed expression of the apoplastic ascorbate oxidase gene increases salt tolerance in tobacco and Arabidopsis plants Journal of Experimental Botany2005, 56(417):1785-1796.[MINI-PAM]
124.Zaltsman A, Ori N, Adam Z: Two types of FtsH protease subunits are required for chloroplast biogenesis and photosystem II repair in ArabidopsisThe Plant Cell2005, 17:2782-2790.[MINI-PAM]
125.Baier M, Ströher E, Dietz K-J: The acceptor availability at photosystem I and ABA control nuclear expression of 2-cys peroxiredoxin-A in Arabidopsis thalianaPlant Cell and Physiology2004, 45(8):997-1006.[MINI-PAM]
126.Einhorn KS, Rosenqvist E, Leverenz JW: Photoinhibition in seedlings ofFraxinus and Fagus under natural light conditions: implications for forest regeneration? Oecologia2004, 140(2):241-251.[MINI-PAM]
127.El-Lithy ME, Clerkx EJM, Ruys GJ, Koornneef M, Vreugdenhil D: Quantitative trait locus analysis of growth-related traits in a new Arabidopsis recombinant inbred population. Plant Physiology2004, 135:444-458.[MINI-PAM]
128.Giannino D, Condello E, Bruno L, Testone G, Tartarini A, Cozza R, Innocenti AM, Bitonti MB, Mariotti D: The gene geranylgeranyl reductase of peach (Prunus persica [L.] Batsch) is regulated during leaf development and responds differentially to distinct stress factors. Journal of Experimental Botany2004, 55(405):2063-2073.[MINI-PAM]
129.Gutensohn M, Pahnke S, Kolukisaoglu U, Schulz B, Schierhorn A, Voigt A, Hust B, Rollwitz I, Stockel J, Geimer Set al: Characterization of a T-DNA insertion mutant for the protein import receptor atToc33 from chloroplasts. Molecular Genetics and Genomics2004, 272:379-396.[MINI-PAM, PAM-100]
130.Hirotsu N, Makino A, Ushio A, Mae T: Changes in the thermal dissipation and the electron flow in the water–water cycle in rice grown under conditions of physiologically low temperature Plant Cell and Physiology2004, 45(5):635-644.[MINI-PAM]
131.Hurst AC, Grams TEE, Ratajczak R: Effects of salinity, high irradiance, ozone, and ethylene on mode of photosynthesis, oxidative stress and oxidative damage in the C3/CAM intermediate plant Mesembryanthemum crystallinum L. Plant Cell and Environment2004, 27(2):187-197.[MINI-PAM]
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137.Walter A, Rascher U, Osmond B: Transitions in photosynthetic parameters of midvein and interveinal regions of leaves and theif importance during leaf growth and development. Plant Biology2004, 6:184-191.[MINI-PAM]
138.Woitke M, Hartung W, Gimmler H, Heilmeier H: Chlorophyll fluorescence of submerged and floating leaves of the aquatic resurrection plant Chamaegigas intrepidus. Functional Plant Biology2004, 31:53-62.[MINI-PAM]
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140.Zlatev ZS, Yordanov IT: Effects of soil drought on photosynthesis and chlorophyll fluorescence in bean plants. Bulg J Plant Physiol2004, 30(3-4):3-18.[MINI-PAM]
141.張國(guó)盛, 王林和, 李玉靈, 吉川賢, 劉海東: 切斷匍匐莖對(duì)臭柏葉綠素?zé)晒馓匦缘挠绊? 林業(yè)科學(xué)2004, 40(3):60-65.[MINI-PAM]
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144.Han Q, Shinohara K, Kakubari Y, Mukai Y: Photoprotective role of rhodoxanthin during cold acclimation in Cryptomeria japonica. Plant Cell and Environment2003, 26(5):715-723.[MINI-PAM]
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148.Luomala E-M, Laitinen K, Kellomaki S, Vapaavuori E: Variable photosynthetic acclimation in consecutive cohorts of Scots pine needles during 3 years of growth at elevated CO2 and elevated temperature. Plant Cell and Environment2003, 26(5):645-660.[MINI-PAM]
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150.Metwally A, Finkemeier I, Georgi M, Dietz K-J: Salicylic acid alleviates the cadmium toxicity in barley seedlings. Plant Physiology2003, 132:272-281.[MINI-PAM]
151.Munné-Bosch S, Alegre L: Drought-induced changes in the redox state of α-tocopherol, ascorbate, and the diterpene carnosic acid in chloroplasts of labiatae species differing in carnosic acid contents. Plant Physiology2003, 131:1816-1825.[MINI-PAM]
152.Omari BE, Fleck I, Aranda X, Abadía A, Cano A, Arnao MB: Total antioxidant activity in Quercus ilex resprouts after fire. Plant Physiology and Biochemistry2003, 41:41-47.[MINI-PAM]
153.Pannewitz S, Schlensog M, Green TGA, Sancho LG, Schroeter B: Are lichens active under snow in continental Antarctica? Oecologia2003, 135:30-38.[MINI-PAM]
154.Rascher U, Lakatos M, Büdel B, Lüttge U: Photosynthetic field capacity of cyanobacteria of a tropical inselberg of the Guiana Highlands. European Journal of Phycology2003, 38:247-256.[MINI-PAM]
155.Sack L, Cowan PD, Holbrook NM: The major veins of mesomorphic leaves revisited: tests for conductive overload in Acer saccharum (Aceraceae) and Quercus rubra (Fagaceae). American Journal of Botany2003, 90:32-39.[MINI-PAM]
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158.Thomson VP, Cunningham SA, Ball MC, Nicotra AB: Compensation for herbivory by Cucumis sativus through increased photosynthetic capacity and efficiency Oecologia2003, 134(2):167-175.[MINI-PAM]
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160.Yamazaki J-y, Suzuki A, Okuyama Y, Maruta E, Kamimura Y: Difference of high-light stress sensitivity in the two firs,Abies mariesii and Abies veitchii, in early spring. Polar Bioscience2003, 16:61-69.[MINI-PAM]
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165.Fuchs E, Zimmerman RC, Jaffe JS: The effect of elevated levels of phaeophytin in natural water on variable fluorescence measured from phytoplankton. Journal of Plankton Research2002, 24(11):1221-1229.[MINI-PAM]
166.Green AT, Schlensog M, Sancho LG, Winkler BJ, Broom FD, Schroeter B: The photobiont determines the pattern of photosynthetic activity within a single lichen thallus containing cyanobacterial and green algal sectors (photosymbiodeme) Oecologia2002, 130(2):191-198.[MINI-PAM]
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175.Fritzius T, Aeschbacher R, Wiemken A, Wingler A: Induction of ApL3 expression by trehalose complements the starch-deficient Arabidopsis mutant adg2-1 lacking ApL1, the large subunit of ADP-glucose pyrophosphorylase. Plant Physiology2001, 126:883-889.[MINI-PAM]
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182.Herrera A, Fernández MD, Taisma MA: Effects of drought on CAM and water relations in plants of Peperomia carnevalii. Annals of Botany2000, 86:511-517.[MINI-PAM]
183.McKersie BD, Murnaghan J, Jones KS, Bowley SR: Iron-superoxide dismutase expression in transgenic alfalfa increases winter survival without a detectable increase in photosynthetic oxidative stress tolerance. Plant Physiology2000, 122:1427-1438.[MINI-PAM]
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195.White AJ, Critchley C: Rapid light curves: A new fluorescence method to assess the state of the photosynthetic apparatus. Photosynthesis Research1999, 59:63-72.[PAM-2000, MINI-PAM]
196.Schreiber U, Gademann R, Ralph PJ, Larkum AWD: Assessment of photosynthetic performance of Prochloron in Lissoclinum patella in hospite by chlorophyll fluorescence measurements. Plant Cell and Physiology1997, 38:945-951.[MINI-PAM]
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