首页> 外文期刊>Theoretical and Applied Genetics >Molecular dissection of interspecific variation between Gossypium hirsutum and Gossypium barbadense (cotton) by a backcross-self approach: I. Fiber elongation
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Molecular dissection of interspecific variation between Gossypium hirsutum and Gossypium barbadense (cotton) by a backcross-self approach: I. Fiber elongation

机译:利用回交自交方法对陆地棉与巴巴棉(棉)之间的种间变异进行分子解剖:I.纤维伸长

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摘要

The current study is the first installment of an effort to explore the secondary gene pool for the enhancement of Upland cotton (Gossypium hirsutum L.) germplasm. We developed advanced-generation backcross populations by first crossing G. hirsutum cv. Tamcot 2111 and G. barbadense cv. Pima S6, then independently backcrossing F1 plants to the G. hirsutum parent for three cycles. Genome-wide mapping revealed introgressed alleles at an average of 7.3% of loci in each BC3F1 plant, collectively representing G. barbadense introgression over about 70% of the genome. Twenty-four BC3F1 plants were selfed to generate 24 BC3F2 families of 22–172 plants per family (totaling 2,976 plants), which were field-tested for fiber elongation and genetically mapped. One-way analysis of variance detected 22 non-overlapping quantitative trail loci (QTLs) distributed over 15 different chromosomes. The percentage of variance explained by individual loci ranged from 8% to 28%. Although the G. barbadense parent has lower fiber elongation than the G. hirsutum parent, the G. barbadense allele contributed to increased fiber elongation at 64% of the QTLs. Two-way analysis of variance detected significant (P<0.001) among-family genotype effects and genotype×family interactions in two and eight regions, respectively, suggesting that the phenotypic effects of some introgressed chromosomal segments are dependent upon the presence/absence of other chromosomal segments.
机译:当前的研究是探索二级基因库以增强陆地棉(陆地棉)种质的努力的第一部分。我们通过首次杂交G. hirsutum cv开发了先进的回交种群。 Tamcot 2111和G.barbadense简历。皮马S6,然后将F1 植物独立回交至hirsutum亲本三个周期。全基因组图谱揭示了每个BC3 F1 植物中平均等位基因的渗入等位基因为7.3%,共同代表了约70%的巴巴德氏酵母基因渗入。自交二十四株BC3 F1 植物自交以生成24个BC3 F2 家族,每科22-172株(共2,976株),并对其纤维进行了现场测试。延伸和遗传图谱。对方差的单向分析检测到分布在15个不同染色体上的22个非重叠定量追踪基因座(QTL)。由单个基因座解释的差异百分比范围为8%至28%。尽管巴巴德氏菌亲本的纤维伸长率比hirsutum亲本低,但巴巴氏菌等位基因在64%的QTL上促进了纤维伸长率的增加。双向方差分析分别在两个和八个区域检测到家族基因型效应和基因型×家族相互作用的显着(P <0.001),表明某些渐渗的染色体区段的表型效应取决于其他染色体区段的存在/不存在。染色体片段。

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  • 来源
    《Theoretical and Applied Genetics》 |2005年第4期|757-763|共7页
  • 作者单位

    Plant Genome Mapping Laboratory University of GeorgiaDepartment Crop and Soil Sciences University of GeorgiaDepartment Soil and Crop Sciences Texas AM University;

    Department Soil and Crop Sciences Texas AM UniversityUniversité catholique de Louvain;

    Department Soil and Crop Sciences Texas AM University;

    Department Soil and Crop Sciences Texas AM University;

    Department Soil and Crop Sciences Texas AM University;

    Department Soil and Crop Sciences Texas AM University;

    Department Soil and Crop Sciences Texas AM University;

    Plant Genome Mapping Laboratory University of GeorgiaDepartment Crop and Soil Sciences University of GeorgiaDepartment Soil and Crop Sciences Texas AM University;

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