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首页> 外文期刊>Photosynthesis Research: An International Journal >Regulation of peroxiredoxin expression versus expression of Halliwell-Asada-Cycle enzymes during early seedling development of Arabidopsis thaliana
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Regulation of peroxiredoxin expression versus expression of Halliwell-Asada-Cycle enzymes during early seedling development of Arabidopsis thaliana

机译:拟南芥幼苗早期发育过程中过氧化物酶表达与Halliwell-Asada-Cycle酶表达的调控

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摘要

During early seedling development of oil seed plants, the transition from lipid based heterotrophic to photoautotrophic carbohydrate metabolism is accompanied with a biphasic control of the chloroplast antioxidant system. In continuous light, organellar peroxiredoxins (Prx) and thylakoid-bound ascorbate peroxidase (tAPx) are activated early in seedling development, while stromal ascorbate peroxidase (sAPx), Cu/Zn-superoxide dismutase-2 (Csd2) and monodehydroascorbate reductase (MDHAR) and the cytosolic peroxiredoxins PrxIIB, PrxIIC and PrxIID are fully activated between 2.5 and 3 days after radicle emergence (DARE). Discontinuous light synchronized the expression of chloroplast antioxidant enzymes, but defined diurnally specific typeII-Prx-patterns in the cytosol and initiated chloroplast senescence around 2.5 DARE. Carbohydrate feeding uncoupled sAPx expression from the light pattern. In contrast, sucrose-feeding did not significantly impact on Prx transcript amounts. It is concluded that upon post-germination growth Prxs are activated endogenously to provide early antioxidant protection, which is supported by the Halliwell-Asada-Cycle, whose expressional activation depends on metabolic signals provided only later in development or in day-night-cycles.
机译:在油料种子植物的早期幼苗发育过程中,从脂质基异养型向光养型碳水化合物代谢的过渡伴随着叶绿体抗氧化剂系统的双相控制。在连续光照下,苗期发育早期激活了细胞器过氧化物氧还蛋白(Prx)和类囊体结合的抗坏血酸过氧化物酶(tAPx),而基质抗坏血酸过氧化物酶(sAPx),Cu / Zn超氧化物歧化酶-2(Csd2)和单脱氢抗坏血酸还原酶(MDHAR)被激活。并且在胚根出现(DARE)后的2.5至3天之内,胞质过氧化物酶的PrxIIB,PrxIIC和PrxIID被完全激活。不连续的光使叶绿体抗氧化酶的表达同步,但在胞质溶胶中定义了昼夜特异性的II-Prx型,并在2.5 DARE附近引发叶绿体衰老。碳水化合物喂养从光模式解耦的sAPx表达。相反,蔗糖喂养对Prx转录物的量没有显着影响。结论是,发芽后生长,Prxs被内源性激活以提供早期抗氧化保护,这受到Halliwell-Asada-Cycle的支持,Halliwell-Asada-Cycle的表达激活取决于仅在发育后期或昼夜循环中提供的代谢信号。

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