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首页> 外文期刊>Journal of Experimental Botany >Effects of drought stress and subsequent rewatering on photosynthetic and respiratory pathways in Nicotiana sylvestris wild type and the mitochondrial complex I-deficient CMSII mutant.
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Effects of drought stress and subsequent rewatering on photosynthetic and respiratory pathways in Nicotiana sylvestris wild type and the mitochondrial complex I-deficient CMSII mutant.

机译:干旱胁迫和随后的补水对樟子松野生型和线粒体复合体I缺陷型CMSII突变体光合和呼吸途径的影响。

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摘要

The interaction of photosynthesis and respiration has been studied in vivo under conditions of limited water supply and after consecutive rewatering. The role of the alternative (valt) and cytochrome (vcyt) pathways on drought stress-induced suppression of photosynthesis and during photosynthetic recovery was examined in the Nicotiana sylvestris wild type (WT) and the complex I-deficient CMSII mutant. Although photosynthetic traits, including net photosynthesis (AN), stomatal (gs) and mesophyll conductances (gm), as well as respiration (vcyt and valt) differed between well-watered CMSII and WT, similar reductions of AN, gs, and gm were observed during severe drought stress. However, total respiration (Vt) remained slightly higher in CMSII due to the still increased vcyt (to match ATP demand). valt and maximum carboxylation rates remained almost unaltered in both genotypes, while in CMSII, changes in photosynthetic light harvesting (i.e. Chl a/b ratio) were detected. In both genotypes, photosynthesis and respiration were restored after 2 d of rewatering, predominantly limited by a delayed stomatal response. Despite complex I dysfunction and hence altered redox balance, the CMSII mutant seems to be able to adjust its photosynthetic machinery during and after drought stress to reduce photo-oxidation and to maintain the cell redox state and the ATP level.
机译:在有限的供水条件下和连续补水后,已经在体内研究了光合作用和呼吸作用的相互作用。在烟叶野生型(WT)和复杂的I缺陷型CMSII突变体中研究了替代途径(valt)和细胞色素(vcyt)途径在干旱胁迫诱导的光合作用抑制和光合作用恢复过程中的作用。尽管在水分充足的CMSII和WT之间,包括净光合作用(AN),气孔(gs)和叶肉电导(gm)以及呼吸作用(vcyt和valt)在内的光合作用特征有所不同,但AN,gs和gm的减少量相似在严重干旱胁迫下观察到。但是,由于vcyt仍然增加(与ATP需求相匹配),因此CMSII中的总呼吸(Vt)仍然略高。在两种基因型中,valt和最大羧化率几乎保持不变,而在CMSII中,检测到光合光收获的变化(即Chl a / b比)。在两种基因型中,补水2 d后光合作用和呼吸恢复,主要受气孔反应延迟的限制。尽管复杂的I功能障碍并因此改变了氧化还原平衡,但CMSII突变体似乎能够在干旱胁迫期间和之后调节其光合作用机制,以减少光氧化并维持细胞的氧化还原状态和ATP水平。

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