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QTL Mapping Based on Different Genetic Systems for Essential Amino Acid Contents in Cottonseeds in Different Environments

机译:不同环境下基于不同遗传系统的棉籽必需氨基酸含量的QTL定位

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摘要

Cottonseeds are rich in various essential amino acids. However, the inheritance of them at molecular level are still not defined across various genetic systems. In the present study, using a newly developed mapping model that can analyze the embryo and maternal main effects as well as QTL × environment interaction effects on quantitative quality trait loci (QTLs) in cottonseeds, a study on QTL located in the tetraploid embryo and tetraploid maternal plant genomes for essential amino acid contents in cottonseeds under different environments was carried out, using the immortal F2 (IF2) populations from a set of 188 recombinant inbred lines derived from an intraspecific hybrid cross of two upland cotton germplasms HS46 and MARKCBUCAG8US-1-88 as experimental materials. The results showed a total of 35 QTLs associated with these quality traits in cottonseeds. Nineteen QTLs were subsequently mapped on chromosome 5, 6 and 8 in sub-A genome and chromosome 15, 18, 22 and 23 in sub-D genome. Eighteen QTLs were also found having QTL × environment (QE) interaction effects. The genetic main effects from QTLs located on chromosomes in the embryo and maternal plant genomes and their QE effects in different environments were all important for these essential amino acids in cottonseeds. The results suggested that the influence of environmental factors on the expression of some QTLs located in different genetic systems should be considered when improving for these amino acids. This study can serve as the foundation for the improvement of these essential amino acids in cottonseeds.
机译:棉籽富含各种必需氨基酸。但是,它们在分子水平上的遗传仍未在各种遗传系统中定义。在本研究中,使用新开发的映射模型,可以分析胚和母体的主要效应以及QTL×环境相互作用对棉籽定量质量性状位点(QTL)的影响,对位于四倍体胚胎和四倍体中的QTL的研究使用来自两个陆地棉种质HS46和MARKCBUCAG8US-1-的种内杂种杂交的一组188个重组自交系的不朽F2(IF2)群体,对不同环境下棉籽中必需氨基酸含量的母本植物基因组进行了研究。 88作为实验材料。结果表明,棉籽中共有35个与这些品质性状相关的QTL。随后将19个QTL定位在亚A基因组的5号,6号和8号染色体上以及亚D基因组的15、18、22和23号染色体上。还发现18个QTL具有QTL×环境(QE)交互作用。位于胚和母本植物基因组染色体上的QTL的遗传主要作用及其在不同环境中的QE作用对于棉籽中的这些必需氨基酸都很重要。结果表明,当改善这些氨基酸时,应考虑环境因素对位于不同遗传系统中的某些QTL表达的影响。这项研究可以作为改善棉籽中这些必需氨基酸的基础。

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