首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Interspecific chromosomal effects on agronomic traits in Gossypium hirsutum by AD analysis using intermated G-barbadense chromosome substitution lines
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Interspecific chromosomal effects on agronomic traits in Gossypium hirsutum by AD analysis using intermated G-barbadense chromosome substitution lines

机译:种间染色体对陆地棉农艺性状的影响通过使用确定的G-barbadense染色体替代系进行AD分析

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摘要

The untapped potential of the beneficial alleles from Gossypium barbadense L. has not been well utilized in G. hirsutum L. (often referred to as Upland cotton) breeding programs. This is primarily due to genomic incompatibility and technical challenges associated with conventional methods of interspecific introgression. In this study, we used a hypoaneuploid-based chromosome substitution line as a means for systematically introgressing G. barbadense doubled-haploid line '3-79' germplasm into a common Upland genetic background, inbred 'Texas marker-1' ('TM-1'). We reported on the chromosomal effects, lint percentage, boll weight, seedcotton yield and lint yield in chromosome substitution CS-B (G. barbadense L.) lines. Using an additive-dominance genetic model, we studied the interaction of alleles located on two alien substituted chromosomes versus one alien substituted chromosome using a partial diallel mating design of selected CS-B lines (CS-B05sh, CS-B06, CS-B09, CS-B10, CS-B12, CS-B17 and CS-B18). Among these parents, CS-B09 and CS-B10 were reported for the first time. The donor parent 3-79, had the lowest additive effect for all of the agronomic traits. All of the CS-B lines had significant additive effects with boll weight and lint percentage. CS-B10 had the highest additive effects for lint percentage, and seedcotton and lint yield among all of the lines showing a transgressive genetic mode of inheritance for these traits. CS-B09 had greater additive genetic effects on lint yield, while CS-B06, CS-B10 and CS-B17 had superior additive genetic effects on both lint and seedcotton yield compared to TM-1 parent. The 3-79 line had the highest dominance effects for boll weight (0.513 g) and CS-B10 had the lowest dominance effect for boll weight (-0.702). Some major antagonistic genetic effects for the agronomic traits were present with most of the substituted chromosomes and chromosome arms, a finding suggested their recalcitrance to conventional breeding efforts. The results revealed that the substituted chromosomes and arms of 3-79 carried some cryptic beneficial alleles with potential to improve agronomic traits including yield, whose effects were masked at the whole genome level in 3-79.
机译:棉(Gossypium barbadense L.)有益等位基因的未开发潜力尚未在陆地棉(通常称为陆地棉)育种计划中得到充分利用。这主要是由于基因组不相容性和与种间渗入的常规方法相关的技术挑战。在这项研究中,我们使用了基于次非整倍体的染色体替代系作为将G. barbadense双单倍体系'3-79'种质系统渗入普通陆地棉遗传背景的一种方法,即近交'Texas marker-1'('TM- 1')。我们报道了染色体替代CS-B(G. barbadense L.)品系的染色体效应,皮棉百分比,棉铃重,籽棉产量和皮棉产量。使用加性优势遗传模型,我们使用部分CS-B系(CS-B05sh,CS-B06,CS-B09, CS-B10,CS-B12,CS-B17和CS-B18)。在这些父母中,首次报告了CS-B09和CS-B10。供体亲本3-79对所有农艺性状具有最低的加和作用。所有CS-B品系的棉铃重和皮棉百分比均具有显着的累加效果。在所有品系中,CS-B10对皮棉百分比,籽棉和皮棉产量的加和效应最高,显示出这些性状的侵袭性遗传模式。与TM-1亲本相比,CS-B09对皮棉产量具有更大的加性遗传效应,而CS-B06,CS-B10和CS-B17对皮棉和籽棉产量具有更好的加性遗传效应。 3-79品系对铃重具有最高的优势作用(0.513 g),而CS-B10则对铃重具有最低的优势作用(-0.702)。大多数被替代的染色体和染色体臂都表现出对农艺性状的一些主要拮抗遗传效应,这一发现表明它们对常规育种工作不服。结果表明,3-79的替代染色体和臂携带了一些隐性的有益等位基因,具有改善包括产量在内的农艺性状的潜力,其作用在3-79的全基因组水平上被掩盖了。

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