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首页> 外文期刊>Molecular Plant-Microbe Interactions >Microbial volatile-induced accumulation of exceptionally high levels of starch in Arabidopsis leaves is a process involving NTRC and starch synthase classes III and IV.
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Microbial volatile-induced accumulation of exceptionally high levels of starch in Arabidopsis leaves is a process involving NTRC and starch synthase classes III and IV.

机译:微生物挥发物诱导的拟南芥叶片中异常高水平淀粉积累是一个涉及NTRC和III和IV类淀粉合酶的过程。

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摘要

Microbial volatiles promote the accumulation of exceptionally high levels of starch in leaves. Time-course analyses of starch accumulation in Arabidopsis leaves exposed to fungal volatiles (FV) emitted by Alternaria alternata revealed that a microbial volatile-induced starch accumulation process (MIVOISAP) is due to stimulation of starch biosynthesis during illumination. The increase of starch content in illuminated leaves of FV-treated hy1/cry1, hy1/cry2, and hy1/cry1/cry2 Arabidopsis mutants was many-fold lower than that of wild-type (WT) leaves, indicating that MIVOISAP is subjected to photoreceptor-mediated control. This phenomenon was inhibited by cordycepin and accompanied by drastic changes in the Arabidopsis transcriptome. MIVOISAP was also accompanied by enhancement of the total 3-phosphoglycerate/Pi ratio, and a two- to threefold increase of the levels of the reduced form of ADP-glucose pyrophosphorylase. Using different Arabidopsis knockout mutants, we investigated the impact in MIVOISAP of downregulation of genes directly or indirectly related to starch metabolism. These analyses revealed that the magnitude of the FV-induced starch accumulation was low in mutants impaired in starch synthase (SS) classes III and IV and plastidial NADP-thioredoxin reductase C (NTRC). Thus, the overall data showed that Arabidopsis MIVOISAP involves a photocontrolled, transcriptionally and post-translationally regulated network wherein photoreceptor-, SSIII-, SSIV-, and NTRC-mediated changes in redox status of plastidial enzymes play important roles.
机译:微生物挥发物可促进叶片中淀粉含量异常高的积累。暴露于链格孢的真菌挥发物(FV)的拟南芥叶片中淀粉积累的时程分析表明,微生物挥发物诱导的淀粉积累过程(MIVOISAP)是由于光照过程中淀粉生物合成的刺激所致。 FV处理过的hy1 / cry1,hy1 / cry2和hy1 / cry1 / cry2拟南芥突变体的光照叶片中淀粉含量的增加比野生型(WT)叶片低很多倍,表明MIVOISAP受到光感受器介导的控制。该现象被虫草素抑制,并伴随着拟南芥转录组的急剧变化。 MIVOISAP还伴随着总的3-磷酸甘油酸/ Pi比值的增加,以及还原形式的ADP-葡萄糖焦磷酸化酶水平的2到3倍的增加。使用不同的拟南芥基因敲除突变体,我们调查了与淀粉代谢直接或间接相关的基因下调对MIVOISAP的影响。这些分析表明,在淀粉合酶(SS)III和IV类和质体NADP-硫氧还蛋白还原酶C(NTRC)中受损的突变体中,FV诱导的淀粉积聚的幅度较低。因此,总体数据表明,拟南芥MIVOISAP涉及一个光控,转录和翻译后调控的网络,其中光受体,SSIII,SSIV和NTRC介导的质体酶氧化还原状态变化起重要作用。

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