陆地棉皱缩叶突变体是本项目组自主发现的一种自然突变体。前期对其表型性状的观察发现该突变体的农艺性状有别于前人已报道的皱叶突变体;通过陆陆杂交世代群体对其遗传规律的研究表明,皱缩叶突变性状是受一对完全隐性基因wr3控制的质...陆地棉皱缩叶突变体是本项目组自主发现的一种自然突变体。前期对其表型性状的观察发现该突变体的农艺性状有别于前人已报道的皱叶突变体;通过陆陆杂交世代群体对其遗传规律的研究表明,皱缩叶突变性状是受一对完全隐性基因wr3控制的质量性状。文章以皱叶突变自交系L037和海7124为亲本配置组合得到的海陆杂交F2为作图群体,利用本实验室遴选的平均覆盖棉花26对染色体上的234对SSR引物(每染色体相对等距离分布9对引物),通过对双亲以及近等基因池的筛选,共得到12对多态性引物。用这些引物检测F2作图群体每个单株的标记基因型,经Join Map 4.0分析显示,位于Chr.21的引物BNL3279与目的基因连锁,二者间的遗传距离为28.7 c M。随后对Chr.21上的其他引物进一步筛选,共得到16对与目的基因连锁的标记,其中与目的基因距离最近的标记NAU3740的遗传距离为4.8 c M,另一侧标记cgr5428的遗传距离为10.4 c M。由此推定,皱缩叶突变体基因wr3在棉花第21染色体上。展开更多
In recent years, Edwardsiella tarda has become one of the most deadly pathogens of Japanese fl ounder( Paralichthys olivaceus), causing serious annual losses in commercial production. In contrast to the rapid advances...In recent years, Edwardsiella tarda has become one of the most deadly pathogens of Japanese fl ounder( Paralichthys olivaceus), causing serious annual losses in commercial production. In contrast to the rapid advances in the aquaculture of P. o livaceus, the study of E. tarda resistance-related markers has lagged behind, hindering the development of a disease-resistant strain. Thus, a marker-trait association analysis was initiated, combining bulked segregant analysis(BSA) and quantitative trait loci(QTL) mapping. Based on 180 microsatellite loci across all chromosomes, 106 individuals from the F1333(♀: F0768 ×♂: F0915)(Nomenclature rule: F+year+family number) were used to detect simple sequence repeats(SSRs) and QTLs associated with E. tarda resistance. After a genomic scan, three markers(Scaffold 404-21589, Scaffold 404-21594 and Scaffold 270-13812) from the same linkage group(LG)-1 exhibited a signifi cant difference between DNA, pooled/bulked from the resistant and susceptible groups( P <0.001). Therefore, 106 individuals were genotyped using all the SSR markers in LG1 by single marker analysis. Two different analytical models were then employed to detect SSR markers with different levels of signifi cance in LG1, where 17 and 18 SSR markers were identifi ed, respectively. Each model found three resistance-related QTLs by composite interval mapping(CIM). These six QTLs, designated q E1–6, explained 16.0%–89.5% of the phenotypic variance. Two of the QTLs, q E-2 and q E-4, were located at the 66.7 c M region, which was considered a major candidate region for E. tarda resistance. This study will provide valuable data for further investigations of E. tarda resistance genes and facilitate the selective breeding of disease-resistant Japanese fl ounder in the future.展开更多
文摘陆地棉皱缩叶突变体是本项目组自主发现的一种自然突变体。前期对其表型性状的观察发现该突变体的农艺性状有别于前人已报道的皱叶突变体;通过陆陆杂交世代群体对其遗传规律的研究表明,皱缩叶突变性状是受一对完全隐性基因wr3控制的质量性状。文章以皱叶突变自交系L037和海7124为亲本配置组合得到的海陆杂交F2为作图群体,利用本实验室遴选的平均覆盖棉花26对染色体上的234对SSR引物(每染色体相对等距离分布9对引物),通过对双亲以及近等基因池的筛选,共得到12对多态性引物。用这些引物检测F2作图群体每个单株的标记基因型,经Join Map 4.0分析显示,位于Chr.21的引物BNL3279与目的基因连锁,二者间的遗传距离为28.7 c M。随后对Chr.21上的其他引物进一步筛选,共得到16对与目的基因连锁的标记,其中与目的基因距离最近的标记NAU3740的遗传距离为4.8 c M,另一侧标记cgr5428的遗传距离为10.4 c M。由此推定,皱缩叶突变体基因wr3在棉花第21染色体上。
基金Supported by the National Natural Science Foundation of China(No.31461163005)the Taishan Scholar Project of Shandong Province
文摘In recent years, Edwardsiella tarda has become one of the most deadly pathogens of Japanese fl ounder( Paralichthys olivaceus), causing serious annual losses in commercial production. In contrast to the rapid advances in the aquaculture of P. o livaceus, the study of E. tarda resistance-related markers has lagged behind, hindering the development of a disease-resistant strain. Thus, a marker-trait association analysis was initiated, combining bulked segregant analysis(BSA) and quantitative trait loci(QTL) mapping. Based on 180 microsatellite loci across all chromosomes, 106 individuals from the F1333(♀: F0768 ×♂: F0915)(Nomenclature rule: F+year+family number) were used to detect simple sequence repeats(SSRs) and QTLs associated with E. tarda resistance. After a genomic scan, three markers(Scaffold 404-21589, Scaffold 404-21594 and Scaffold 270-13812) from the same linkage group(LG)-1 exhibited a signifi cant difference between DNA, pooled/bulked from the resistant and susceptible groups( P <0.001). Therefore, 106 individuals were genotyped using all the SSR markers in LG1 by single marker analysis. Two different analytical models were then employed to detect SSR markers with different levels of signifi cance in LG1, where 17 and 18 SSR markers were identifi ed, respectively. Each model found three resistance-related QTLs by composite interval mapping(CIM). These six QTLs, designated q E1–6, explained 16.0%–89.5% of the phenotypic variance. Two of the QTLs, q E-2 and q E-4, were located at the 66.7 c M region, which was considered a major candidate region for E. tarda resistance. This study will provide valuable data for further investigations of E. tarda resistance genes and facilitate the selective breeding of disease-resistant Japanese fl ounder in the future.