首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Discovery and identification of a novel Ligon lintless-like mutant (Lix) similar to the Ligon lintless (Li1) in allotetraploid cotton.
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Discovery and identification of a novel Ligon lintless-like mutant (Lix) similar to the Ligon lintless (Li1) in allotetraploid cotton.

机译:在异源四倍体棉花中发现和鉴定了一种类似于无绒毛新品(Li 1 )的新型无绒毛样新品。

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摘要

Mutants are a powerful resource for studying gene structure, function, and evolution. In this present study, a novel Ligon lintless-like mutant (Lix), that has short fibers and deformed leaves and stems, was isolated from the progeny of transgenic cottons. The Lix mutant is similar in morphology to the Ligon lintless (Li1) mutant. Genetic analysis and molecular mapping were performed for the Lix and Li1 mutants. These two mutants are monogenic dominant mutants with distorted growth of vegetative and reproductive structures. Seedlings of the dominant homozygote Li1 Li1 genotype are lethal, while LixLix plants are viable but show no reproductive growth. Molecular tagging showed that the Lix gene is located on Chr. 04 in a 30.9-cM region spanned by NAU8376 and NAU3469. In a previous study, the Li1 gene was mapped to Chr. 22, and Chr. 04 and Chr. 22 are homoelogous chromosomes in tetraploid cotton. So, we propose that Lix and Li1 mutants have similar mutated morphology, and Lix is mapped to a homoelogous chromosome carrying Li1 . The identification and genetic mapping of Lix/Li1 genes using mutants provides a foundation for isolating these genes. In turn, this will permit studies to elucidate the functional and evolutionary roles for these genes in cotton growth and development.
机译:突变体是研究基因结构,功能和进化的强大资源。在本研究中,从转基因棉花的后代中分离出一种新的无短绒毛Ligon样突变体(Lix),该突变体具有短纤维和变形的叶和茎。 Lix突变体的形态与Ligonless无绒(Li1)突变体相似。对Lix和Li 1 突变体进行了遗传分析和分子作图。这两个突变体是单基因显性突变体,其营养和生殖结构的生长畸变。显性纯合子Li 1 Li 1 基因型的幼苗具有致死性,而LixLix植物是可行的,但没有繁殖生长。分子标记显示Lix基因位于Chr上。 NAU8376和NAU3469跨度为30.9-cM区域中的04。在先前的研究中,Li 1 基因被定位到Chr。 22和Chr。 04和Chr。四倍体棉中有22条同源染色体。因此,我们建议Lix和Li 1 突变体具有相似的突变形态,并将Lix映射到携带Li 1 的同源染色体。利用突变体对Lix / Li 1 基因进行鉴定和遗传定位为分离这些基因提供了基础。反过来,这将使研究能够阐明这些基因在棉花生长发育中的功能和进化作用。

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