服(fu)務(wu)熱線(xian)
產品(pin)展示(shi)PRODUCTS
FL3500多功能(neng)葉綠素熒光(guang)儀
FL3500多功能(neng)葉綠素熒光(guang)儀是專(zhuan)門(men)用於(yu)對(dui)藍綠藻或綠(lv)藻等(deng)微藻,葉綠(lv)體(ti)或(huo)類(lei)囊體懸(xuan)浮物,乃至葉片進行(xing)光(guang)合(he)作用研究的強大(da)科研工(gong)具。儀器具(ju)備雙(shuang)通道測(ce)量控(kong)制(zhi),可(ke)控(kong)制(zhi)測(ce)量樣品(pin)的溫(wen)度,並(bing)配(pei)備(bei)單(dan)翻轉光(STF),內(nei)置(zhi)多種(zhong)可用戶自行修(xiu)改的測(ce)量程序(xu),可(ke)進行(xing)目(mu)前上對(dui)於(yu)葉(ye)綠(lv)素熒光(guang)的各種深入機(ji)理研(yan)究。其核(he)心結(jie)構是包(bao)含了壹個懸(xuan)浮液(ye)標準(zhun)樣品(pin)杯的光學(xue)測(ce)量頭(tou),內(nei)置(zhi)3組LED光源(yuan)和1個500 kHz/16位 AD 轉換的PIN二極管信(xin)號檢測(ce)器。AD轉換的增(zeng)益(yi)和積分時(shi)間可以通過(guo)軟件(jian)控(kong)制(zhi)。檢測(ce)器測(ce)量葉(ye)綠(lv)素熒光(guang)信(xin)號(hao)的時(shi)間分辨(bian)率可(ke)高(gao)達(da)4 μs(快速版為1μs)。系統(tong)配(pei)置(zhi)的光合(he)放(fang)氧(yang)測(ce)量模(mo)塊(kuai),使(shi)其可(ke)以對(dui)放(fang)氧(yang)復(fu)合(he)物的狀態轉換做(zuo)更深(shen)入研(yan)究。
FL3500多功能(neng)葉綠素熒光(guang)儀配(pei)備(bei)有(you)4種(zhong)測(ce)量室(shi):標準(zhun)版、快速版、葉(ye)夾(jia)版、水(shui)下版。主(zhu)機(ji)為雙(shuang)通道設(she)計,可(ke)同(tong)時(shi)連接(jie)任意兩種測(ce)量室(shi),大(da)大(da)擴(kuo)展了葉綠(lv)素熒光(guang)測(ce)量的應用範圍,可(ke)以對(dui)任何類(lei)型的植物樣品(pin)進行(xing)葉(ye)綠素(su)熒光(guang)測(ce)量。
應用領域:
·植(zhi)物光合(he)特性和(he)代謝(xie)紊(wen)亂(luan)篩(shai)選(xuan)
·生(sheng)物和非(fei)生(sheng)物脅迫的檢測(ce)
·植(zhi)物抗脅迫能力(li)或(huo)者(zhe)易(yi)感性研(yan)究
·代謝(xie)混(hun)亂研究
·光合(he)系(xi)統工(gong)作機(ji)理研(yan)究
·受脅迫植物光合(he)生(sheng)理應(ying)對(dui)策(ce)略(lve)研究
典型(xing)樣品(pin):
·藍(lan)藻(藍細(xi)菌)
·綠(lv)藻
·葉(ye)綠(lv)體懸(xuan)浮物
· 類(lei)囊體懸(xuan)浮物
·植(zhi)物碎(sui)片(pian)
功能(neng)特點(dian):
·具備(bei)雙(shuang)通道測(ce)量控(kong)制(zhi),可(ke)以與(yu)各種(zhong)測(ce)量單(dan)元(yuan)如標準(zhun)版、快速版、葉(ye)夾(jia)式(shi)及(ji)水(shui)下測(ce)量頭(tou)等(deng)配(pei)合(he)使(shi)用,各版本(ben)的測(ce)量頭(tou)可(ke)互換(huan)使(shi)用
·內(nei)置(zhi)多種(zhong)可用戶自行修(xiu)改的測(ce)量程序(xu),涵(han)蓋目(mu)前上對(dui)於(yu)葉(ye)綠(lv)素熒光(guang)的各種壹般性研(yan)究和(he)深(shen)入機(ji)理研(yan)究
·配(pei)備(bei)單(dan)翻轉光(STF),可(ke)進行(xing)QA–再氧化動(dong)力(li)學(xue)、S狀態轉換等(deng)光合(he)機(ji)理研(yan)究
·配(pei)備(bei)高(gao)靈(ling)敏度(du)檢測(ce)器,可(ke)進行(xing)OJIP快速熒光(guang)動(dong)力(li)學(xue)分析(xi)
·可(ke)控(kong)制(zhi)測(ce)量樣品(pin)的溫(wen)度並(bing)進行(xing)磁(ci)力(li)攪(jiao)拌(ban)
技術參數(shu):
·實驗程序(xu):葉(ye)綠素熒光(guang)誘(you)導(dao)測(ce)量;PAM(脈(mai)沖(chong)調制(zhi))測(ce)量;OJIP快速熒光(guang)動(dong)力(li)學(xue)測(ce)量;QA–再氧化動(dong)力(li)學(xue);S狀態轉換;葉綠(lv)素(su)熒光(guang)淬(cui)滅(mie)
熒光(guang)參(can)數(shu):F0,Fm,Fv,F0’,Fm’,Fv’,QY(II),NPQ,ΦPSII,Fv/Fm,Fv’/Fm’,Rfd,qN,qP,ETR等(deng)50多項(xiang)葉綠(lv)素(su)熒光(guang)參(can)數(shu)與(yu)圖像(xiang),OJIP曲(qu)線(xian)與(yu)F0、FJ、Fi、Fm、Fv、VJ、Vi、Fm / F0、Fv / F0、Fv / Fm、M0、Area、Fix Area、SM、SS、N、Phi_P0、Psi_0、Phi_E0、Phi_D0、Phi_Pav、ABS / RC、TR0 / RC、ET0 / RC、DI0 / RC等(deng)20多項(xiang)相(xiang)關(guan)參(can)數(shu)
·時(shi)間分辨(bian)率(采(cai)樣頻(pin)率(lv)):高(gao)靈(ling)敏度(du)檢測(ce)器,時(shi)間分辨(bian)率達(da)4μs(快速版為1μs)
·控(kong)制(zhi)單(dan)元(yuan):雙(shuang)通道通用高(gao)度精確性自動(dong)微處理(li)器(qi),可以與(yu)各種(zhong)測(ce)量單(dan)元(yuan)如標準(zhun)版、快速版、葉(ye)夾(jia)式(shi)及(ji)水(shui)下測(ce)量頭(tou)等(deng)配(pei)合(he)使(shi)用(無需另行(xing)購買(mai)控(kong)制(zhi)單(dan)元(yuan))
·測(ce)量單(dan)元(yuan)類(lei)型:可選(xuan)擇在壹臺(tai)主(zhu)機(ji)上配(pei)備(bei)兩(liang)種(zhong)測(ce)量單(dan)元(yuan)同(tong)時(shi)工作,推(tui)薦(jian)葉(ye)夾版+標準(zhun)版/快速版或(huo)葉(ye)夾(jia)版+水(shui)下版
1.標準(zhun)版
2.快速版:時(shi)間分辨(bian)率在(zai)標準(zhun)版的基礎上提高(gao)到(dao)1 μs,可(ke)精確捕捉(zhuo)和(he)描繪快速熒光(guang)瞬(shun)變(bian)過程,使(shi)得(de)運用PAM技術對(dui)OIJP曲(qu)線(xian)和(he)光(guang)閃熒光(guang)誘(you)導(dao)的快速動(dong)力(li)學(xue)測(ce)量更(geng)加(jia)準確高(gao)效(xiao),能(neng)夠更(geng)好的計算各種相(xiang)關(guan)參(can)數(shu)。
3.葉夾版
的葉夾式(shi)測(ce)量單(dan)元(yuan),測(ce)量區(qu)域直(zhi)徑為12.7mm(0.5 inch)。葉夾(jia)式(shi)測(ce)量單(dan)元(yuan)可(ke)以無損地夾持(chi)葉片(pian)進行(xing)測(ce)量,而(er)且不會使葉片(pian)脫(tuo)離(li)其原(yuan)來(lai)的微環境。全部所(suo)需的光源(yuan)與(yu)檢測(ce)器都(dou)內(nei)置(zhi)在測(ce)量單(dan)元(yuan)進行(xing)直(zhi)接(jie)測(ce)量,避(bi)免了壹般的熒光(guang)儀使用光纖造成(cheng)檢測(ce)光信(xin)號(hao)的衰(shuai)減(jian)。
4.水(shui)下版
設(she)計用來(lai)直接(jie)在水(shui)下測(ce)量諸(zhu)如水(shui)下植(zhi)物,珊瑚(hu)或者(zhe)海(hai)藻等(deng)樣品(pin)的葉綠素熒光(guang)。的水(shui)下探(tan)頭(tou)配(pei)有(you)用於(yu)水(shui)下操作的特殊(shu)支(zhi)架,zui大(da)測(ce)量深(shen)度(du)為水(shui)下1m。
·測(ce)量光(guang)閃(shan):標準(zhun)為波(bo)長617nm的橙光或455nm的藍光,光閃時(shi)間2–5μs
·單(dan)翻轉飽和光(guang)閃(shan):標準(zhun)光(guang)源(yuan)為630nm的紅(hong)光,光(guang)閃(shan)時(shi)間20–50μs
·持(chi)續光(guang)化學(xue)光:標準(zhun)為630nm的紅(hong)光或(huo)455nm的藍光,zui大(da)光(guang)強2500 μmol(photons)/m2.s;
·遠(yuan)紅(hong)外(wai)光源(yuan)(選(xuan)配(pei)):用於(yu)激(ji)發光系(xi)統(tong)I,波(bo)長735nm
·氧電(dian)極(ji)(選(xuan)配(pei)):測(ce)量藻類(lei)的氧氣(qi)釋(shi)放(fang)
·每(mei)組lED光(guang)源(yuan)強度(du)和(he)時(shi)間可通關(guan)軟件(jian)調(tiao)控(kong),同(tong)時(shi)光源(yuan)可根(gen)據(ju)研(yan)究要(yao)求(qiu)選(xuan)配(pei)
·溫(wen)度控(kong)制(zhi):TR 2000溫(wen)度調(tiao)節(jie)器,控(kong)溫(wen)範圍0–70℃,精確度0.1℃
·電(dian)磁(ci)攪(jiao)拌(ban):8mm×3mm標準(zhun)磁(ci)力(li)棒
·樣品(pin)試(shi)管(guan):底面積10×10mm,容(rong)積(ji)4ml
·AD轉換器:試(shi)管(guan)式(shi)為500 kHz/16–bit
· FluorWin軟件(jian):定(ding)義或創建(jian)實(shi)驗方案(an)、光源(yuan)控(kong)制(zhi)設(she)置(zhi)、數(shu)據(ju)輸(shu)出(chu)、分析(xi)處(chu)理和(he)圖表(biao)顯示(shi)
典(dian)型應用:熒光(guang)誘(you)導(dao)過(guo)程分析(xi)


產地(di):捷(jie)克
參(can)考文獻(xian):
§ Functioning of the Bidirectional Hydrogenase in Different Unicellular Cyanobacteria, é Kiss, et al, 2013. Research for Food, Fuel and the Future
§ Excess Ca2+does not alleviate but increases the toxicity of Hg2+ to photosystem II in Synechocystis sp.(Cyanophyta), D Zhang, et al, 2013. Ecotoxicology and environmental safety
§ Inhibition of the Water Oxidizing Complex of Photosystem II and the Reoxidation of the Quinone Acceptor QA? by Pb2+, A Belatik, et al, 2013. PloS one
§ Destabilization of the Oxygen Evolving Complex of Photosystem II by Al3+, I Hasni, et al, 2013. Photochemistry and Photobiology
§ Effects of Sb (V) on growth and chlorophyll fluorescence of Microcystis aeruginosa (FACHB–905),S Wang, et al, 2012. Current Microbiology
§ Correlations between the temperature dependence of chlorophyll fluorescence and the fluidity of thylakoid membranes, A Tovuu, et al, 2012. Physiologia Plantarum
§ Developmental Defects in Mutants of the PsbP Domain Protein5 inArabidopsis thaliana. JL Roose, et al, 2011. PloS one
§ Inhibition of photosystems I and II activities in salt stress–exposed Fenugreek (Trigonella foenum graecum). M Zaghdoudi, et al, 2011. Journal of Photochemistry and Photobiology B: Biology
§ Productivity correlated to photobiochemical performance of Chlorella mass cultures grown outdoors in thin–layer cascades. J Masojídek, et al, 2011. Journal of Industrial Microbiology & Biotechnology
§ Binding Stoichiometry and Affinity of the Manganese–Stabilizing Protein Affects Redox Reactions on the Oxidizing Side of Photosystem II. JL Roose, et al, 2011. Biochemistry






