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Loss of Nuclear Gene Expression during the Phytochrome A-Mediated Far-Red Block of Greening Response

机译:植物色素A介导的绿色响应的远红块期间核基因表达的损失。

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摘要

We have examined the expression of the HEMA1 gene, which encodes the key chlorophyll synthesis enzyme glutamyl-tRNA reductase, during the phytochrome A-mediated far-red light (FR) block of greening response in Arabidopsis. Our results demonstrate that the FR block of greening comprises two separate responses: a white light (WL) intensity-independent response that requires 3 d of FR and is associated with a loss of expression of the nuclear genes HEMA1 and Lhcb following the transfer to WL (transcriptionally coupled response) and a WL intensity-dependent response that is induced by 1 d of FR and is transcriptionally uncoupled. Both responses required phytochrome A. The transcriptionally uncoupled response correlated with a deregulation of tetrapyrrole synthesis and potential photooxidative damage and was inhibited by cytokinin. The transcriptionally coupled FR response was additive with the loss of expression following Norflurazon-induced photobleaching and was absent in the presence of sucrose or after lower fluence rate (1 μmol m−2 s−1) FR treatments. Both pathways leading to the loss of nuclear gene expression were inhibited by overexpression of NADPH:protochlorophyllide oxidoreductase, indicating a role for plastid signaling in the FR-mediated pathway. The significance of identifying a distinct phytochrome A-mediated plastid signaling pathway is discussed.
机译:我们已经检查了拟南芥中绿化反应中植物色素A介导的远红光(FR)阻滞过程中HEMA1基因的表达,该基因编码关键的叶绿素合成酶谷氨酰-tRNA还原酶。我们的结果表明,FR的绿化阻止包括两个单独的响应:白光(WL)强度独立响应,需要3 d FR,并且与转移到WL后核基因HEMA1和Lhcb的表达缺失有关(转录偶联反应)和1 d FR诱导且转录解偶联的WL强度依赖性应答。两种反应都需要植物色素A。转录不偶联反应与四吡咯合成的失控和潜在的光氧化损伤有关,并被细胞分裂素抑制。转录偶联的FR反应在诺氟拉松诱导的光致漂白后增加表达的损失,在蔗糖存在下或较低的通量率(1μmolm -2 s -1 < / sup>)FR处理。导致核基因表达丧失的两种途径均被NADPH:原叶绿素内酯氧化还原酶的过表达抑制,表明质体信号在FR介导的途径中发挥了作用。讨论了识别独特的植物色素A介导的质体信号传导途径的意义。

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