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Further genetic analysis of a major quantitative trait locus controlling root length and related traits in common wheat

机译:控制普通小麦根长和相关性状的主要数量性状基因座的进一步遗传分析

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Roots are essential for normal growth, development, and reproduction of higher plants. Consequently, improvement of root system architecture and functionality is of fundamental importance in crop improvement. However, the genetic mechanisms controlling root morphology and function are still not well understood, especially in common wheat, which possesses a complex and unsequenced hexaploid genome. Here we report a more detailed genetic analysis of qTaLRO-B1, a major quantitative trait locus (QTL) previously detected to affect root length and related traits in common wheat. A pair of QTL isolines with different qTaLRO-B1 alleles was developed. Line 178B, carrying the longer root allele, was significantly more efficient in taking up phosphate nutrient and biomass accumulation than line 178A, with the shorter root allele. We mapped qTaLRO-B1 to a 0.9-cM interval on common wheat chromosome 2BS with seven sequence-tagged-site (STS) markers developed from the genes conserved between wheat and Brachypodium distachyon. The seven STS markers were collinearly conserved in tetraploid wheat, but they covered a much larger genetic distance (22.8 cM) in the latter species. In conclusion, we have converted qTaLRO-B1 into a major gene that affects common wheat root length in a qualitative manner, and improved understanding of the genetic location of qTaLRO-B1 and the chromosomal segment carrying this important locus. The implications of our data for further study of qTaLRO-B1 are discussed.
机译:根对于高等植物的正常生长,发育和繁殖至关重要。因此,根系体系结构和功能的改进对作物改良至关重要。但是,控制根的形态和功能的遗传机制仍未得到很好的理解,特别是在普通小麦中,该小麦具有复杂且无序列的六倍体基因组。在这里,我们报告qTaLRO-B1的更详细的遗传分析,qTaLRO-B1是一个主要的定量性状基因座(QTL),先前已检测到影响普通小麦的根长和相关性状。开发了具有不同qTaLRO-B1等位基因的一对QTL等位基因。携带较长根等位基因的178B系比吸收较短根等位基因的178A系在吸收磷酸盐养分和生物量方面效率更高。我们将qTaLRO-B1映射到普通小麦2BS染色体上的0.9-cM区间,该染色体上有七个序列标记位点(STS)标记,这些标记是从小麦和短枝曲霉之间的保守基因开发而来的。这七个STS标记在四倍体小麦中共线保守,但在后者物种中它们具有更大的遗传距离(22.8 cM)。总之,我们已将qTaLRO-B1转化为以定性方式影响普通小麦根长的主要基因,并提高了对qTaLRO-B1遗传位置和携带此重要基因座的染色体片段的了解。讨论了我们的数据对qTaLRO-B1的进一步研究的意义。

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