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首页> 外文期刊>African Journal of Biotechnology >QTL mapping for controlling anthesis-silking interval based on RIL population in maize
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QTL mapping for controlling anthesis-silking interval based on RIL population in maize

机译:基于RIL群体的玉米花期间隔期控制的QTL定位

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摘要

Nitrogen (N) deficiency will severely affect many metabolic pathways and physiological progresses during maize (Zea mays?L.) growth and change of anthesis-silking interval (ASI) is one of the most serious consequences. To realize the genetic basis of ASI, a recombinant inbred line (RIL) population consisting of 239 RILs, derived from the cross between Mo17 and Huangzao4, was used to identify the quantitative trait loci (QTLs) controlling ASI under different N environments. As a result, 6 QTLs were detected under high N environment on chromosome 3, 6, 7 and 8 and could explain total 53.67% of phenotypic variance. While, under low N environment, only 3 QTLs were identified on chromosome 6, 7 and 8, and they could account for total 31.87% of phenotypic variance. The two QTLs?Qasihn6-1?and?Qasihn3-1, identified under high N environment, were quite near to their linked marker Phi077 and Bnlg197, respectively, with less than 1 cM of genetic distance. These results are beneficial for understanding the genetic basis of ASI in maize.
机译:氮缺乏将严重影响玉米(Zea mays?L。)生长过程中的许多代谢途径和生理进程,而改变花期的间隔时间(ASI)是最严重的后果之一。为了了解ASI的遗传基础,使用了由Mo17和Huangzao4杂交得到的239个RIL组成的重组自交系(RIL),以鉴定在不同N环境下控制ASI的数量性状基因座(QTL)。结果,在3、6、7和8号染色体上的高氮环境下检测到6个QTL,它们可以解释表型变异的53.67%。而在低氮环境下,仅在6号,7号和8号染色体上鉴定出3个QTL,它们占表型变异的31.87%。在高氮环境下鉴定出的两个QTL Qasihn6-1和Qasihn3-1分别非常接近它们的连锁标记Phi077和Bnlg197,遗传距离小于1 cM。这些结果有助于理解玉米中ASI的遗传基础。

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