首页> 外文期刊>Euphytica >Allocation of a powdery mildew resistance locus to the chromosome arm 6RL of Secale cereale L. cv. ‘Jingzhouheimai’
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Allocation of a powdery mildew resistance locus to the chromosome arm 6RL of Secale cereale L. cv. ‘Jingzhouheimai’

机译:将白粉病抗性基因座分配给Secale graine L. cv的染色体臂6RL。 ‘荆州黑麦’

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摘要

Chinese cultivar Jingzhouheimai of Secale cereale L. confers resistance to several important wheat diseases, making it a useful resource for wheat improvement. Octoploid amphiploid (2n = 8x = 56; AABBDDRR) was synthesized by hybridization of Jingzhouheimai with hexaploid wheat landrace Huixianhong and doubling of the F1 chromosome number. This amphiploid was backcrossed to the wheat parent to produce wheat-rye chromosome addition lines. The existing six disomic addition lines (all except 6R) were screened with 16 rye-specific DNA markers and three putative markers for 6R were identified. These markers were used in selection of chromosome 6R addition lines, confirmed by the genomic in situ hybridization (GISH). In this manner, seven monosomic 6R and five disomic addition were selected, as well as one mono-telosomic 6RS addition, one mono-telosomic and one ditelosomic 6RL additions. In turn these 6R addition lines were used to develop additional 15 6R-specific markers of which six were allocated to the arm 6RS and nine to 6RL. Screening for the powdery mildew resistance identified chromosome arm 6RL as the carrier of the resistance locus. Therefore, DNA markers identified as specific to the 6RL arm can be used to monitor the introgression of the resistance locus into wheat.
机译:黑麦谷物的中国品种荆州黑麦赋予了对几种重要小麦疾病的抗性,使其成为改良小麦的有用资源。通过将荆州黑麦与六倍体小麦地方品种回显红杂交并使其F1染色体数加倍,合成了八倍体二倍体(2n = 8x = 56; AABBDDRR)。将该二倍体与小麦亲本回交以产生小麦-黑麦染色体加成系。用16个黑麦特异性DNA标记筛选了现有的6个二体组添加系(除6R以外的所有系),并鉴定了3个推定的6R标记。这些标记用于染色体6R加成系的选择,已通过基因组原位杂交(GISH)确认。以这种方式,选择了7个单体型6R和5个二体组加成,以及1个单端体6RS加成,1个单端体和1个双端6RL加成。反过来,这些6R加成系用于开发另外15个6R特异性标记,其中6个分配给6RS臂,另外9个分配给6RL。筛选白粉病抗性鉴定出染色体臂6RL为抗性基因座的载体。因此,鉴定为6RL臂特异的DNA标记可用于监测抗性基因座向小麦的渗入。

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