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Early anthesis and delayed but fast leaf senescence contribute to individual grain dry matter and water accumulation in wheat

机译:早花期和叶片延迟但快速衰老促进了小麦籽粒干物质和水分积累。

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The physiological process of how anthesis time and leaf senescence patterns affect individual grain weight of wheat has only been partially elucidated. In this study, a recombinant inbred line mapping population of bread wheat (Triticum aestivum L. Forno') and its relative spelt (Triticum spelta L. 'Oberkulmer'), contrasting for phasic development and leaf senescence kinetics, was used to understand the physiological and genetic relationships among anthesis time, leaf senescence, grain filling processes, and individual grain weight. Phenotypic measurements were taken in the field over two growing seasons. The results showed that earlier anthesis and delayed leaf senescence were associated with larger grains. Furthermore, early anthesis and delayed but fast leaf senescence promoted grain filling rate (but shortened its duration), grain water absorption rate and maximum grain water content, while individual grain dry matter and water accumulation displayed strong relationships with individual grain weight. A total of 118 significant quantitative trait loci (QTL) were identified in this mapping population, including six QTL for anthesis dates, 24 for flag leaf senescence, 69 for grain filling traits, and 19 for individual grain weight. Frequent QTL coincidences between these traits were observed on chromosomes 2A, 3B, 4A, 4DL, 5A, 5B, 5DL and 7B. Analysis of allelic effects confirmed the above physiological relationships. Therefore, anthesis time and leaf senescence affect individual grain weight at least partly through their effects on individual grain dry matter and water accumulation, resulting from pleiotropy or tight gene linkages. Slightly early anthesis, and delayed but fast leaf senescence, can be used to maximize individual grain weight and yield potential in wheat. (C) 2015 Elsevier B.V. All rights reserved.
机译:花期时间和叶片衰老方式如何影响小麦单粒重的生理过程仅得到了部分阐明。在这项研究中,使用了重组自交系作图的面包小麦种群(Triticum aestivum L. Forno')及其亲缘种(Triticum spelta L.'Oberkulmer'),对比了其阶段性发育和叶片衰老动力学,以了解其生理特性。与花期,叶片衰老,籽粒充实过程和单粒重之间的遗传关系。在两个生长季节的田间进行表型测量。结果表明,早期花期和叶片衰老与较大的籽粒有关。此外,早花期和延迟但快速的叶片衰老促进了籽粒的灌浆速率(但缩短了其持续时间),籽粒吸水率和最大籽粒水分含量,而个体谷物干物质和水分积累表现出与个体籽粒重量的强烈关系。在该作图种群中总共鉴定出118个重要的数量性状基因座(QTL),其中包括6个花椰菜QTL,24个旗叶衰老,69个籽粒灌浆性状和19个单粒重。在2A,3B,4A,4DL,5A,5B,5DL和7B染色体上观察到这些性状之间频繁的QTL符合。等位基因效应的分析证实了上述生理关系。因此,花期和叶片衰老至少部分地通过它们对多粒性或紧密基因联系的影响而对个体谷物干物质和水分积累的影响至少部分地影响个体谷物的重量。花期较早,叶片衰老较迟但较快,可用于最大化小麦的单粒重和增产潜力。 (C)2015 Elsevier B.V.保留所有权利。

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