首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic dissection of chromosome substitution lines of cotton to discover novel Gossypium barbadense L. alleles for improvement of agronomic traits
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Genetic dissection of chromosome substitution lines of cotton to discover novel Gossypium barbadense L. alleles for improvement of agronomic traits

机译:棉花染色体替代系的遗传解剖发现新的棉巴巴德氏棉等位基因,提高农艺性状

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We recently released a set of 17 chromosome substitution (CS-B) lines (2n = 52) that contain Gossypium barbadense L. doubled-haploid line 3-79' germplasm systematically introgressed into the Upland inbred TM-1' of G. hirsutum (L.). TM-1 yields much more than 3-79, but cotton from the latter has superior fiber properties. To explore the use of these quasi-isogenic lines in studying gene interactions, we created a partial diallel among six CS-B lines and the inbred TM-1, and characterized their descendents for lint percentage, boll weight, seedcotton yield and lint yield across four environments. Phenotypic data on the traits were analyzed according to the ADAA genetic model to detect significant additive, dominance, and additive-by-additive epistasis effects at the chromosome and chromosome-by-chromosome levels of CS-B lines. For example, line 3-79 had the lowest boll weight, seedcotton yield and lint yield, but CS-B22Lo homozygous dominance genetic effects on seedcotton and lint yield were nearly four times those of TM-1, and its hybrids with TM-1 had the highest additive-by-additive epistatic effects on seedcotton and lint yield. CS-B14sh, 17, 22Lo and 25 produced positive homozygous dominance effects on lint yield, whereas doubly heterozygous combinations of CS-B14sh with CS-B17, 22Lo and 25 produced negative dominance effects, suggesting that epistatic effects between genes in these chromosomes strongly affect lint yield. The results underscore the opportunities to systematically identify genomic regions harboring genes that impart agronomically significant effects via epistatic interactions. The chromosome-by-chromosome approach significantly complements other strategies to detect and quantify epistatic interaction effects, and the quasi-isogenic nature of families and lines from CS-B intermatings will facilitate high-resolution localization, development of markers for selection and map-assisted identification of genes involved in strong epistatic effects.
机译:我们最近发布了一组17条染色体置换(CS-B)品系(2n = 52),其中包含棉质棒状双单倍体系3-79'种质,系统地渗入陆地棉陆地棉TM-1'。 L.)。 TM-1的产量远高于3-79,但后者的棉花具有优异的纤维性能。为了探索这些准等基因系在研究基因相互作用中的用途,我们在6个CS-B系和自交TM-1之间创建了一个部分的Dialall,并对它们的后代的皮棉百分比,棉铃重,籽棉产量和皮棉产量进行了表征。四个环境。根据ADAA遗传模型分析有关性状的表型数据,以检测CS-B系的染色体和逐染色体水平的显着加性,显性和逐加性上位效应。例如,品系3-79的铃重,籽棉产量和皮棉产量最低,但CS-B22Lo对籽棉和皮棉产量的纯合优势遗传效应几乎是TM-1的四倍,而其与TM-1的杂种具有对种棉和皮棉产量的附加加性上位效应最高。 CS-B14sh,17、22Lo和25对皮棉产量产生积极的纯合优势作用,而CS-B14sh与CS-B17、22Lo和25的双杂合组合产生负面的优势作用,表明这些染色体之间基因的上位性作用强烈影响皮棉产量。结果强调了系统地鉴定具有通过上位性相互作用赋予农学上重要作用的基因的基因组区域的机会。染色体逐染色体方法大大补充了其他检测和定量上位相互作用效应的策略,CS-B鉴定的科系和系的准等基因性质将有助于高分辨率定位,选择标记的开发和地图辅助鉴定涉及强上位性效应的基因。

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