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作 者:韩保林[1] 张洪凯[1] 刘志坚[1] 廖泳祥[1] 杜康兮[1] 彭永彬[1] 张红宇[1] 徐培洲[1] 陈晓琼[1] 吴先军[1]
机构地区:[1]四川农业大学水稻研究所/西南作物基因资源与遗传改良教育部重点实验室,四川成都611130
出 处:《杂交水稻》2016年第6期46-51,58,共7页Hybrid Rice
基 金:国家重点研发计划(2016YFD0100406);公益性行业(农业)科研专项(201403002-3)
摘 要:利用粒形及千粒重存在显著差异的2个亲本(TY319、8B)杂交构建的F3群体为作图群体,对粒长、粒宽、长宽比及千粒重进行QTL定位与上位性分析。共检测出13个影响粒形及千粒重的QTL,分别位于第1,2,4,7,8,10,12染色体,LOD值介于2.66-5.88,表型变异贡献率介于7.41%-44.93%,其中,第1染色体上控制长宽比的q LWR-1未见报道,可能是新的QTL。此外,通过上位性分析,粒长、长宽比和千粒重3个性状共检测到21个互作,粒宽未检测到互作位点。The QTL mapping and epistasis analysis were conducted on grain shape related traits including grain length (GL), grain width (GW) and grain length-width ratio (LWR) and 1 000-grain weight (TGW) with the F3 population derived from the cross of TY319 and 8B, two parents significantly different in grain shape and TGW. There were 13 QTLs detected for grain shape and TGW, which were localized on Chromosome 1, 2, 4, 7, 8, 10 and 12 with their LOD values ranging from 2.66 to 5.88 and phenotypic variation estimation (PVE) from 7.41% to 44.93 %. Among them, the qLWR-1 on Chromosome 1 controlling LWR has not been reported, so it might be a new QTL for grain shape. Besides, there were 21 times of gene interaction detected to be related to the traits of GL, LWR and TGW, but no interaction found to be related to GW, based on the epistasis analysis.
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