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首页> 外文期刊>Frontiers in Plant Science >Mapping QTLs Controlling Flowering Time and Important Agronomic Traits in Pearl Millet
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Mapping QTLs Controlling Flowering Time and Important Agronomic Traits in Pearl Millet

机译:定位控制粟米开花时间和重要农艺性状的QTL

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Pearl millet [ Pennisetum glaucum (L.) R. Br.] is a staple crop for the people of arid and semi-arid regions of the world. It is fast gaining importance as a climate resilient nutricereal. Exploiting the bold seeded, semi-dwarf, and early flowering genotypes in pearl millet is a key breeding strategy to enhance yield, adaptability, and for adequate food in resource-poor zones. Genetic variation for agronomic traits of pearl millet inbreds can be used to dissect complex traits through quantitative trait locus (QTL) mapping. This study was undertaken to map a set of agronomically important traits like flowering time (FT), plant height (PH), panicle length (PL), and grain weight (self and open-pollinated seeds) in the recombinant inbred line (RIL) population of ICMB 841-P3 × 863B-P2 cross. Excluding grain weight (open pollinated), heritabilities for FT, PH, PL, grain weight (selfed) were in high to medium range. A total of six QTLs for FT were detected on five chromosomes, 13 QTLs for PH on six chromosomes, 11 QTLs for PL on five chromosomes, and 14 QTLs for 1,000-grain weight (TGW) spanning five chromosomes. One major QTL on LG3 was common for FT and PH. Three major QTLs for PL, one each on LG1, LG2, and LG6B were detected. The large effect QTL for TGW (self) on LG6B had a phenotypic variance ( R ~(2)) of 62.1%. The R ~(2)for FT, TGW (self), and PL ranged from 22.3 to 59.4%. A total of 21 digenic interactions were discovered for FT ( R ~(2)= 18–40%) and PL ( R ~(2)= 13–19%). The epistatic effects did not reveal any significant QTL × QTL × environment (QQE) interactions. The mapped QTLs for flowering time and other agronomic traits in present experiment can be used for marker-assisted selection (MAS) and genomic selection (GS) breeding programs.
机译:珍珠小米[Pennisetum glaucum(L.)R. Br。]是世界干旱和半干旱地区人民的主要农作物。作为具有气候适应性的营养食品,它的重要性正在迅速提高。在珍珠粟中利用大胆的种子,半矮化和早花基因型是提高资源产量,适应性和资源贫乏地区粮食供应的关键育种策略。珍珠粟近交自交系农艺性状的遗传变异可用于通过数量性状基因座(QTL)作图分析复杂性状。进行这项研究的目的是绘制重组自交系(RIL)中一组重要的农艺性状,如开花时间(FT),株高(PH),穗长(PL)和粒重(自种和开放授粉的种子) ICMB 841-P3×863B-P2的人口。除谷粒重量(开放授粉)外,FT,PH,PL,谷粒重量(自交)的遗传力均处于中高范围。在5条染色体上共检出6个FT QTL,在6条染色体上检出13个PH的QTL,在5条染色体上检出PL的11个QTL,以及跨越5条染色体的1,000粒重(TGW)的14个QTL。 FT和PH是LG3的一个主要QTL。检测到三个主要的PL QTL,在LG1,LG2和LG6B中每个QTL。 TGW(自身)对LG6B的大效应QTL具有62.1%的表型差异(R〜(2))。 FT,TGW(自身)和PL的R〜(2)范围为22.3%至59.4%。 FT(R〜(2)= 18–40%)和PL(R〜(2)= 13–19%)共发现21种双基因相互作用。上位性效应未显示任何显着的QTL×QTL×环境(QQE)相互作用。本实验中绘制的开花时间和其他农艺性状的QTL可以用于标记辅助选择(MAS)和基因组选择(GS)育种程序。

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