首页> 外文期刊>Acta Physiologiae Plantarum >Comparative proteomic analysis of leaves between photoperiod-sensitive and photoperiod-insensitive maize inbred seedlings under long day treatments
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Comparative proteomic analysis of leaves between photoperiod-sensitive and photoperiod-insensitive maize inbred seedlings under long day treatments

机译:光周期敏感和光周期不敏感的玉米自交苗在长日处理下叶片的蛋白质组学比较

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摘要

Day length is an important environmental factor affecting the growth and development of maize (Zea mays), a short day (SD) plant grown in different latitudes. Leaf has been recognized as the light perceiving and signal producing organ. Under long day (LD) conditions, photoperiod-sensitive induction phase in maize begins at the fourth fully expanded leaf stage. However, the changes of maize leaf proteome in response to LD are largely unknown. To reveal maize proteome response to LD, proteins extracted from newly expanded fifth, sixth and seventh leaves from maize inbred line 496-10 (photoperiod sensitive) and Huangzao4 (HZ4, photoperiod insensitive) under LD treatments were compared via gel-based proteomic approach. As a result, eleven differentially expressed proteins were identified between 496-10 and HZ4 by mass spectrometry. This difference in protein accumulation was highly reproducible during the fifth to seventh leaf stages and most obvious at the seventh leaf stage. The identified proteins are mainly involved in circadian clock or iron metabolism, light harvesting and photosynthesis, nucleic acid metabolism and carbon fixation or energy metabolism. This study provides new insight into the influences of LD treatment on SD plants, such as maize, at proteome level.
机译:日长是影响玉米(Zea mays)生长和生长的重要环境因素,Zea mays是在不同纬度种植的短日(SD)植物。叶子已被公认为是光感知和信号产生的器官。在漫长的一天(LD)条件下,玉米的光周期敏感诱导期始于第四个完全展开的叶期。然而,玉米叶片蛋白质组响应LD的变化在很大程度上是未知的。为了揭示玉米对LD的蛋白质组反应,通过基于凝胶的蛋白质组学方法比较了在LD处理下从玉米自交系496-10(光周期敏感)和Huangzao4(HZ4,光周期不敏感)新扩展的第五,第六和第七叶片中提取的蛋白质。结果,通过质谱法在496-10和HZ4之间鉴定出11种差异表达的蛋白质。这种蛋白质积累的差异在第五至第七个叶期可高度重现,在第七个叶期最明显。鉴定出的蛋白质主要涉及昼夜节律或铁代谢,光收集和光合作用,核酸代谢和碳固定或能量代谢。这项研究为蛋白质组水平上的LD处理对SD植物(如玉米)的影响提供了新的见解。

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