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首页> 外文期刊>Theoretical and Applied Genetics >Genetic mapping of a cross between Gossypium hirsutum (cotton) and the Hawaiian endemic, Gossypium tomentosum
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Genetic mapping of a cross between Gossypium hirsutum (cotton) and the Hawaiian endemic, Gossypium tomentosum

机译:陆地棉(棉花)和夏威夷地方病毛绒球(Gossypium tomentosum)之间的杂交的遗传图谱

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摘要

The existence of five tetraploid species that derive from a common polyploidization event about 1 million years ago makes Gossypium (cotton) an attractive genus in which to study polyploid evolution and offers opportunities for crop improvement through introgression. To date, only crosses (HB) between the cultivated tetraploid cottons Gossypium hirsutum and G. barbadense have been genetically mapped. Genetic analysis of a cross (HT) between G. hirsutum and the Hawaiian endemic G. tomentosum is reported here. Overall, chromosomal lengths are closely correlated between the HB and HT maps, although there is generally more recombination in HT, consistent with a closer relationship between the two species. Interspecific differences in local recombination rates are observed, perhaps involving a number of possible factors. Our data corroborate cytogenetic evidence that chromosome arm translocations have not played a role in the divergence of polyploid cottons. However, one terminal inversion on chromosome (chr.) 3 does appear to differentiate G. tomentosum from G. barbadense; a few other apparent differences in marker order fall near gaps in the HT map and/or lack the suppression of recombination expected of inversions, and thus remain uncertain. Genetic analysis of a discrete trait that is characteristic of G. tomentosum, nectarilessness, mapped not to the classically reported location on chr. 12 but to the homoeologous location on chr. 26. We propose some hypotheses for further study to explore this incongruity. Preliminary quantitative trait locus (QTL) analysis of this small population, albeit with a high probability of false negatives, suggests a different genetic control of leaf morphology in HT than in HB, which also warrants further investigation.
机译:大约一百万年前,一个常见的多倍体化事件产生了五个四倍体物种,这使得棉(棉花)成为研究多倍体进化的引人入胜的属,并为通过渗入改良作物提供了机会。迄今为止,仅对栽培的四倍体棉花陆地棉和巴巴德棉(G.barbadense)之间的杂交(HB)进行了遗传定位。此处报道了对陆地棉和夏威夷地方性绒毛线虫之间的杂交(HT)的遗传分析。总体而言,尽管HT中的重组通常较多,但HB和HT图之间的染色体长度却密切相关,这与两个物种之间的紧密关系相符。观察到局部重组率的种间差异,可能涉及许多可能的因素。我们的数据证实了细胞遗传学证据,即染色体臂易位在多倍体棉的发散中没有起作用。然而,染色体(chr。)3上的一个末端倒置似乎确实可以区分毛绒球菌和巴巴德氏菌。标记顺序上的其他一些明显差异落在HT谱图的缺口附近和/或缺乏对反演预期的重组的抑制,因此仍然不确定。遗传特征的遗传特征分析,该特征是毛球菌(G. tomentosum)的特征,无油性,未映射到chr上经典报道的位置。 12,但到chr的同源位置。 26.我们提出了一些假设以供进一步研究以探索这种不一致。尽管极少出现假阴性,但对这一小种群的初步数量性状基因座(QTL)分析表明,HT中叶片形态的遗传控制与HB中叶形态的遗传控制不同,这也值得进一步研究。

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  • 来源
    《Theoretical and Applied Genetics》 |2005年第4期|665-676|共12页
  • 作者单位

    Plant Genome Mapping Laboratory University of GeorgiaDivision of Crop Improvement Central Institute for Cotton Research;

    Plant Genome Mapping Laboratory University of Georgia;

    Plant Genome Mapping Laboratory University of Georgia;

    Plant Genome Mapping Laboratory University of Georgia;

    Department of Ecology Evolution and Organismal Biology Iowa State University;

    Plant Genome Mapping Laboratory University of Georgia;

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