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Long photoperiod affects the maize transition from vegetative to reproductive stages: a proteomic comparison between photoperiod-sensitive inbred line and its recurrent parent

机译:长光周期影响玉米转变从植物转变为生殖阶段:光周期敏感近交系和其复发父母之间的蛋白质组学比较

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摘要

Maize (Zea mays L.) is a typical short-day plant that is produced as an important food product and industrial material. The photoperiod is one of the most important evolutionary mechanisms enabling the adaptation of plant developmental phases to changes in climate conditions. There are differences in the photoperiod sensitivity of maize inbred lines from tropical to temperate regions. In this study, to identify the maize proteins responsive to a long photoperiod (LP), the photoperiod-insensitive inbred line HZ4 and its near-isogenic line H496, which is sensitive to LP conditions, were analyzed under long-day conditions using isobaric tags for relative and absolute quantitation. We identified 5259 proteins in maize leaves exposed to the LP condition between the vegetative and reproductive stages. These proteins included 579 and 576 differentially accumulated proteins in H496 and HZ4 leaves, respectively. The differentially accumulated proteins (e.g., membrane, defense, and energy-and ribosome-related proteins) exhibited the opposite trends in HZ4 and H496 plants during the transition from the vegetative stage to the reproductive stage. These results suggest that the photoperiod-associated fragment in H496 plants considerably influences various proteins to respond to the photoperiod sensitivity. Overall, our data provide new insights into the effects of long-day treatments on the maize proteome, and may be useful for the development of new germplasm.
机译:玉米(Zea Mays L.)是一种典型的短日植物,作为重要的食品和工业材料生产。光周期是最重要的进化机制之一,使植物发育阶段适应气候条件的变化。从热带到温带地区的玉米自交系的光周期敏感性存在差异。在本研究中,为了响应于长光周期(LP)的响应玉米蛋白,在使用等值标签的长日条件下分析了对LP条件敏感的光周期不敏感的近亲HZ4及其近代的近代线H496相对和绝对定量。我们确定了5259蛋白玉米叶片暴露于营养和生殖阶段之间的LP条件。这些蛋白质分别包括579和576分别在H496和Hz4叶片中的差分累积蛋白。在从营养阶段转变为生殖阶段,差分累积的蛋白质(例如膜,防御和能量 - 和核糖体相关蛋白)在从营养期到生殖阶段的过渡期间表现出HZ4和H496植物的相反趋势。这些结果表明H496植物中的光周期相关片段显着影响各种蛋白质以响应光周期敏感性。总体而言,我们的数据为玉米蛋白质组的漫长日期疗效提供了新的见解,并且可能对新种质的发展有用。

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