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An Arabidopsis Mutant with High Cyclic Electron Flow around Photosystem I (hcef) Involving the NADPH Dehydrogenase Complex

机译:涉及NADPH脱氢酶复合物的光系统I(hcef)周围具有高循环电子流的拟南芥突变体

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摘要

Cyclic electron flow (CEFI) has been proposed to balance the chloroplast energy budget, but the pathway, mechanism, and physiological role remain unclear. We isolated a new class of mutant in Arabidopsis thaliana, hcef for high CEF1, which shows constitutively elevated CEF1. The first of these, hcef1, was mapped to chloroplast fructose-1,6-bisphosphatase. Crossing hcef1 with pgr5, which is deficient in the antimycin A–sensitive pathway for plastoquinone reduction, resulted in a double mutant that maintained the high CEF1 phenotype, implying that the PGR5-dependent pathway is not involved. By contrast, crossing hcef1 with crr2-2, deficient in thylakoid NADPH dehydrogenase (NDH) complex, results in a double mutant that is highly light sensitive and lacks elevated CEF1, suggesting that NDH plays a direct role in catalyzing or regulating CEF1. Additionally, the NdhI component of the NDH complex was highly expressed in hcef1, whereas other photosynthetic complexes, as well as PGR5, decreased. We propose that (1) NDH is specifically upregulated in hcef1, allowing for increased CEF1; (2) the hcef1 mutation imposes an elevated ATP demand that may trigger CEF1; and (3) alternative mechanisms for augmenting ATP cannot compensate for the loss of CEF1 through NDH.
机译:已经提出了循环电子流(CEFI)来平衡叶绿体能量收支,但是其途径,机理和生理作用仍不清楚。我们在拟南芥hcef中分离出一类新的突变体,用于高CEF1,这表明CEF1组成性升高。其中第一个hcef1被定位到叶绿体1,6-双磷酸果糖上。将hcef1与pgr5杂交,后者缺乏抗霉素A敏感的质体醌还原途径,导致产生了一个双突变体,该突变体保持了高CEF1表型,这意味着不涉及PGR5依赖性途径。相比之下,将hcef1与缺乏类囊体NADPH脱氢酶(NDH)复合物的crr2-2杂交,会产生高度光敏性且缺乏升高的CEF1的双重突变体,表明NDH在催化或调节CEF1中起直接作用。此外,NDH复合物的NdhI成分在hcef1中高度表达,而其他光合复合物以及PGR5则减少。我们建议(1)NDH在hcef1中被特别上调,从而导致CEF1增加; (2)hcef1突变使ATP需求增加,可能触发CEF1; (3)增强ATP的替代机制无法补偿NDH导致CEF1的损失。

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