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Functional Characterization of a Drought-Responsive Invertase Inhibitor from Maize (Zea mays L.)

机译:玉米(Zea mays L.)的干旱响应型转化酶抑制剂的功能表征

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摘要

Invertases (INVs) play essential roles in plant growth in response to environmental cues. Previous work showed that plant invertases can be post-translationally regulated by small protein inhibitors (INVINHs). Here, this study characterizes a proteinaceous inhibitor of INVs in maize (Zm-INVINH4). A functional analysis of the recombinant Zm-INVINH4 protein revealed that it inhibited both cell wall and vacuolar invertase activities from maize leaves. A Zm-INVINH4::green fluorescent protein fusion experiment indicated that this protein localized in the apoplast. Transcript analysis showed that Zm-INVINH4 is specifically expressed in maize sink tissues, such as the base part of the leaves and young kernels. Moreover, drought stress perturbation significantly induced Zm-INVINH4 expression, which was accompanied with a decrease of cell wall invertase (CWI) activities and an increase of sucrose accumulation in both base parts of the leaves 2 to 7 days after pollinated kernels. In summary, the results support the hypothesis that INV-related sink growth in response to drought treatment is (partially) caused by a silencing of INV activity via drought-induced induction of Zm-INVINH4 protein.
机译:转化酶(INV)在植物生长中起着至关重要的作用,以响应环境因素。先前的工作表明,植物转化酶可以由小蛋白抑制剂(INVINHs)进行翻译后调控。在这里,这项研究的特点是玉米中INVs的蛋白质抑制剂(Zm-INVINH4)。重组Zm-INVINH4蛋白的功能分析表明,它抑制了玉米叶片的细胞壁和液泡转化酶活性。 Zm-INVINH4 ::绿色荧光蛋白融合实验表明该蛋白位于质外体中。转录本分析表明,Zm-INVINH4在玉米沉陷组织(如叶片的基部和幼核)中特异性表达。此外,干旱胁迫扰动显着诱导了Zm-INVINH4表达,伴随着授粉果粒2至7天后叶片的两个基部中细胞壁转化酶(CWI)活性的降低和蔗糖积累的增加。总而言之,这些结果支持以下假设:因干旱处理而引起的INV相关的水槽生长(部分)是由干旱诱导的Zm-INVINH4蛋白诱导的INV活性降低导致的。

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