Zhang Ru, Sharkey Thomas D
Department of Botany, University of Wisconsin-Madison, 430 Lincoln Drive, Madison, WI 53706, USA.
Photosynth Res. 2009 Apr;100(1):29-43. doi: 10.1007/s11120-009-9420-8. Epub 2009 Apr 3.
Moderate heat stress has been reported to increase PSI cyclic electron flow (CEF). We subjected leaves of Arabidopsis (Arabidopsis thaliana) mutants disrupted in the regulation of one or the other pathway of CEF flow-crr2 (chlororespiratory reduction, deficient in regulation of chloroplast NAD(P)H dehydrogenase-dependent CEF) and pgr5 (proton gradient regulation, proposed to have reduced efficiency of antimycin-A-sensitive-CEF regulation) to moderate heat stress. Light-adapted leaves were switched from 23 to 40 degrees C in 2 min. Gas exchange, chlorophyll fluorescence, the electrochromic shift (ECS), and P700 were measured. Photosynthesis of crr2 and pgr5 was more sensitive to heat and had less ability to recover than the genetic background gl. The proton conductance in light was increased by heat and it was twice as much in pgr5, which had much smaller light-induced proton motive force. We confirmed that P700 becomes more reduced at high temperature and show that, in contrast, the proportion of PSII open centers (with Q (A) oxidized) increases. The two mutants had much slower P700(+) reduction rate during and after heat than gl. The proportion of light absorbed by PSI versus PSII was increased in gl and crr2 during and after heat treatment, but not in pgr5. We propose that heat alters the redox balance away from PSII and toward PSI and that the regulation of CEF helps photosynthesis tolerate heat stress.
据报道,中度热胁迫会增加光系统I(PSI)的循环电子流(CEF)。我们对拟南芥(Arabidopsis thaliana)中CEF流动的一条或另一条途径调控被破坏的突变体叶片进行了中度热胁迫处理,这些突变体包括crr2(叶绿体呼吸减少,叶绿体NAD(P)H脱氢酶依赖性CEF调控缺陷)和pgr5(质子梯度调控,据推测抗霉素A敏感的CEF调控效率降低)。将适应光照的叶片在2分钟内从23摄氏度切换到40摄氏度。测量了气体交换、叶绿素荧光、电致变色 shift(ECS)和P700。与野生型(gl)相比,crr2和pgr5的光合作用对热更敏感,恢复能力更弱。热胁迫使光下质子传导率增加,pgr5中的增加量是野生型的两倍,而pgr5的光诱导质子动力势要小得多。我们证实高温下P700的还原程度更高,并且相反地,光系统II开放中心(Q(A)氧化)的比例增加。这两个突变体在热胁迫期间及之后P700(+)的还原速率比野生型慢得多。在热胁迫期间及之后,野生型和crr2中PSI与PSII吸收光的比例增加,但pgr5中没有。我们提出热胁迫会改变氧化还原平衡,使其远离光系统II并向光系统I倾斜,并且CEF的调控有助于光合作用耐受热胁迫。