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首页> 外文期刊>Agricultural sciences in China >Inheritance of powdery mildew resistance in cucumber (Cucumis sativus L.) and development of an AFLP marker for resistance detection.
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Inheritance of powdery mildew resistance in cucumber (Cucumis sativus L.) and development of an AFLP marker for resistance detection.

机译:黄瓜(Cucumis sativus L.)白粉病抗性的遗传和用于抗性检测的AFLP标记的开发。

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Cucumber powdery mildew is one of the most destructive diseases of cucumber throughout the world. In the present study, inheritance of powdery mildew resistance in three crosses, and linkage of resistance with amplified fragment length polymorphism (AFLP) markers are studied to formulate efficient strategies for breeding cultivars resistant to powdery mildew. The joint analysis of multiple generations and AFLP technique has been applied in this study. The best model is the one with two major genes, additive, dominant, and epistatic effects, plus polygenes with additive, dominant, and epistatic effects (E-1-0 model). The heritabilities of the major genes varied from 64.26 to 97.82, and susceptibility was incompletely dominant for the two major genes in the three crosses studied. The additive effects of the two major genes and the dominant effect of the second major gene were high, and the epistatic effect of the additive-dominant between the two major genes was the highest in cross I. In cross II, the absolute value of the additive effect, dominant effect, and potential ratio of the first major gene were far higher than those of the second major gene, and the epistatic effect of the additive-additive was the highest. The genetic parameters of the two major genes in cross III were similar to those in cross II. Correlation and regression analyses showed that marker E25/M63-103 was linked to a susceptible gene controlling powdery mildew resistance. The marker could account for 19.98 of the phenotypic variation. When the marker was tested on a diverse set of 29 cucumber lines, the correlation between phenotype and genotype was not significant, which suggested cultivar specialty of gene expression or different methods of resistance to powdery mildew. The target DNA fragment was 103 bp in length, and only a small part was found to be homologous to DNA in the other species evaluated, which indicated that it was unique to the cucumber genome.
机译:黄瓜白粉病是全世界黄瓜最具破坏性的病害之一。本研究研究了3个杂交品种抗白粉病的遗传,以及抗性与扩增片段长度多态性(AFLP)标记的连锁,以制定抗白粉病品种的有效育种策略。本研究应用了多代联合分析和AFLP技术。最好的模型是具有两个主要基因的模型,即加性、显性和上位效应,以及具有加性、显性和上位效应的多基因(E-1-0 模型)。主要基因的遗传力从64.26%到97.82%不等,在研究的3个杂交中,两个主要基因的易感性不完全显性。两大基因的加性效应和第二大基因的显性效应较高,其中两大基因之间的加性显性效应在杂交I中最高。在杂交II中,第一大基因的加性效应、显性效应和潜在比值的绝对值远高于第二大基因,其中加加性-加性效应的上位效应最高。杂交III中两个主要基因的遗传参数与杂交II.相似。相关性和回归分析表明,标记物E25/M63-103与控制白粉病抗性的易感基因有关。该标记可解释表型变异的19.98%。在29个黄瓜品系上测试该标记时,表型与基因型之间的相关性不显著,提示品种基因表达特异性或抗白粉病方法不同。目标DNA片段长度为103 bp,仅发现一小部分与评估的其他物种的DNA同源,这表明它是黄瓜基因组所特有的。

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