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大麦(Hordeum vulgare L.)中赋予生殖期抗冻性的染色体区域的QTL定位

QTL mapping of chromosomal regions conferring reproductive frost tolerance in barley ( Hordeum vulgare L.).

作者信息

Reinheimer J L, Barr A R, Eglinton J K

机构信息

School of Agriculture and Wine, Waite Campus, University of Adelaide, South Australia 5064, Australia.

出版信息

Theor Appl Genet. 2004 Oct;109(6):1267-74. doi: 10.1007/s00122-004-1736-3. Epub 2004 Sep 9.

Abstract

Spring radiation frost is a major abiotic stress in southern Australia, reducing yield potential and grain quality of barley by damaging sensitive reproductive organs in the latter stages of development. Field-based screening methods were developed, and genetic variation for reproductive frost tolerance was identified. Mapping populations that were segregating for reproductive frost tolerance were screened and significant QTL identified. QTL on chromosome 2HL were identified for frost-induced floret sterility in two different populations at the same genomic location. This QTL was not associated with previously reported developmental or stress-response loci. QTL on chromosome 5HL were identified for frost-induced floret sterility and frost-induced grain damage in all three of the populations studied. The locations of QTL were coincident with previously reported vegetative frost tolerance loci close to the vrn- H1 locus. This locus on chromosome 5HL has now been associated with response to cold stress at both vegetative and reproductive developmental stages in barley. This study will allow reproductive frost tolerance to be seriously pursued as a breeding objective by facilitating a change from difficult phenotypic selection to high-throughput genotypic selection.

摘要

春季辐射霜冻是澳大利亚南部的一种主要非生物胁迫,它通过在发育后期损害敏感的生殖器官,降低了大麦的产量潜力和籽粒品质。已开发出基于田间的筛选方法,并鉴定出了生殖期霜冻耐受性的遗传变异。对分离生殖期霜冻耐受性的作图群体进行了筛选,并鉴定出显著的数量性状位点(QTL)。在两个不同群体的相同基因组位置,鉴定出2HL染色体上的QTL与霜冻诱导的小花不育有关。该QTL与先前报道的发育或胁迫反应位点无关。在所研究的所有三个群体中,均鉴定出5HL染色体上的QTL与霜冻诱导的小花不育和霜冻诱导的籽粒损伤有关。QTL的位置与先前报道的靠近vrn-H1位点的营养期霜冻耐受性位点一致。现在已表明,5HL染色体上的这个位点与大麦营养期和生殖期发育阶段对冷胁迫的反应有关。这项研究将有助于从困难的表型选择转变为高通量基因型选择,从而使生殖期霜冻耐受性能够作为一个育种目标得到认真研究。

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