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The High Light Response in Arabidopsis Involves ABA Signaling between Vascular and Bundle Sheath Cells.

机译:拟南芥中的高光响应涉及血管和束鞘细胞之间的ABA信号传导。

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摘要

Previously, it has been shown that Arabidopsis thaliana leaves exposed to high light accumulate hydrogen peroxide (HO) in bundle sheath cell (BSC) chloroplasts as part of a retrograde signaling network that induces ASCORBATE PEROXIDASE2 (APX2). Abscisic acid (ABA) signaling has been postulated to be involved in this network. To investigate the proposed role of ABA, a combination of physiological, pharmacological, bioinformatic, and molecular genetic approaches was used. ABA biosynthesis is initiated in vascular parenchyma and activates a signaling network in neighboring BSCs. This signaling network includes the Gl subunit of the heterotrimeric G protein complex, the OPEN STOMATA1 protein kinase, and extracellular HO, which together coordinate with a redox-retrograde signal from BSC chloroplasts to activate APX2 expression. High light-responsive genes expressed in other leaf tissues are subject to a coordination of chloroplast retrograde signaling and transcellular signaling activated by ABA synthesized in vascular cells. ABA is necessary for the successful adjustment of the leaf to repeated episodes of high light. This process involves maintenance of photochemical quenching, which is required for dissipation of excess excitation energy.
机译:以前,已经证明暴露于高光下的拟南芥叶在束鞘细胞(BSC)叶绿体中积累过氧化氢(HO),作为诱导ASCORBATE PEROXIDASE2(APX2)的逆行信号网络的一部分。假定脱落酸(ABA)信号传导参与该网络。为了研究ABA的拟议作用,使用了生理,药理,生物信息学和分子遗传学方法的组合。 ABA生物合成在血管实质中启动,并激活邻近BSC中的信号网络。该信号网络包括异三聚体G蛋白复合物的G1亚基,OPEN STOMATA1蛋白激酶和细胞外HO,它们与来自BSC叶绿体的氧化还原还原信号一起协同激活APX2表达。在其他叶片组织中表达的高光响应基因受叶绿体逆行信号和血管细胞中合成的ABA激活的跨细胞信号的协调作用。 ABA对于成功地调节叶子以适应高强度重复发作是必要的。该过程涉及光化学猝灭的维持,这是耗散过量激发能量所必需的。

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