首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Genetic dissection of developmental behavior of crop growth rate and its relationships with yield and yield related traits in rice
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Genetic dissection of developmental behavior of crop growth rate and its relationships with yield and yield related traits in rice

机译:水稻作物生长发育行为的遗传解剖及其与产量和产量相关性状的关系

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Crop growth rate is a dynamic character that determines the final yield in cereal crops. The objective of the current study is to reveal its genetic basis and to genetically understand its relationships with grain yield and yield related traits like heading date, grain-filling duration, 1000-grain weight and plant height in rice (Oryza sativa L.). With 258 recombinant inbred lines (RILs) derived from a cross between cv. Lemont and cv. Teqing, time-related QTL mapping was conducted. Eight QTL for crop growth rate were identified at four consecutive growth periods. These QTL individually explained 5-29% of the trait variation. The Teqing alleles increased the trait values at all the four QTL detected before heading, while Lemont contributed alleles to increase the trait values at three of the other four QTL mapped after heading, which was in agreement with the observation that Teqing was the high-value parent before heading, while Lemont became the high-value parent after heading. No common QTL was observed at different growth periods. These results implied that crop growth rate of rice might be controlled by different genes (QTL) during different time intervals. A total of 22 QTL were identified for the other five traits, and the amount of variation explained by individual QTL ranged from 3% to 26%. The interval RM25-CSU754 on chromosome 8 was identified to produce a major effect on multiple traits such as crop growth rate IV, grain yield, heading date, grain-filling duration, plant heights 11 and IV, which provided a genetic explanation for the close correlations among the traits. The implications of the results for further improvement in rice yield potential were discussed. (c) 2005 Elsevier Ireland Ltd. All rights reserved.
机译:作物生长速度是决定谷物作物最终产量的动态特征。本研究的目的是揭示其遗传基础,并从遗传角度了解其与稻米(Oryza sativa L.)的抽穗期,灌浆时间,1000粒重和株高等与产量和相关性状的关系。 258个重组自交系(RIL),衍生自简历之间的杂交。 Lemont和简历。在特庆,进行了与时间有关的QTL映射。在连续四个生育期确定了八个作物生长速率QTL。这些QTL分别解释了性状变异的5-29%。在抽穗前检测到的所有四个QTL,特清等位基因均增加了性状值,而在抽穗后映射的其他四个QTL中,莱蒙特贡献了等位基因以增加其性状值,这与以下观察结果一致:特清是高值标题之前是父母,而莱蒙特则是标题之后成为高价值父母。在不同的生长期没有观察到常见的QTL。这些结果表明,在不同的时间间隔内,水稻的作物生长速率可能受到不同基因(QTL)的控制。其他五个性状共鉴定出22个QTL,单个QTL解释的变异量为3%至26%。鉴定出第8号染色体上的间隔RM25-CSU754对多种性状如作物生长率IV,籽粒产量,抽穗日期,籽粒充实持续时间,植株高度11和IV产生重大影响,这为结实提供了遗传学解释。特征之间的相关性。讨论了结果对进一步提高水稻单产潜力的意义。 (c)2005 Elsevier Ireland Ltd.保留所有权利。

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