首页> 外文期刊>Plant Breeding >Recurrent breeding method enhances the level of blackspot (Didymella pinodes (Berk. & Blox.) Vestergr.) resistance in field pea (Pisum sativum L.) in southern Australia
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Recurrent breeding method enhances the level of blackspot (Didymella pinodes (Berk. & Blox.) Vestergr.) resistance in field pea (Pisum sativum L.) in southern Australia

机译:轮作育种方法提高了澳大利亚南部豌豆(Pisum sativum L.)的黑斑病(Didymella pinodes(Berk。&Blox。)Vestergr。)抗药性水平

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摘要

Blackspot, caused by Didymella pinodes (Berk. & Blox.)Vestergr., is one of the most important diseases of field pea, causing significant reduction in seed yield and quality in southern Australia and in other parts of the world. Development of resistant germplasm has been slow because of the low level of resistance found in the available germplasm, poor reliability of screening methods and the polygenic nature of inheritance. Crosses were made between agronomically suitable lines and resistant germplasm from different sources. Their progeny were advanced through the single seed descent method and single plants were selected at F-4/F-5. The F-4/F-5 derived lines were screened against blackspot in the field under disease pressure and evaluated for grain yield at multilocations over 2 years. Despite the low level of resistance in the parental germplasm, the level of resistance has increased significantly in the new germplasm. Many of the resistant lines were late and low yielding, but lines with higher resistance and early flowering and high yield potential were also identified indicating that the disease resistance, adaptation and yield potential can be combined. However, the resistance identified in this study is only partial and suitable agronomic practices may need to be supplemented to minimise the yield loss and enhance the benefits of this partial resistance
机译:黑斑病是由迪迪米拉·品诺德斯(Berk。&Blox.Vestergr。)引起的,是豌豆最重要的病害之一,导致澳大利亚南部和世界其他地区的种子产量和质量显着下降。由于在可用种质中发现的抗性水平低,筛选方法的可靠性差以及遗传的多基因性,抗性种质的发展一直很缓慢。在农学上合适的品系和来自不同来源的抗性种质之间进行杂交。它们的后代通过单种子后代法进行繁殖,并以F-4 / F-5选择单株。 F-4 / F-5衍生品系在疾病压力下针对田间黑点进行了筛选,并评估了2年多地点的谷物产量。尽管亲本种质中的抗性水平较低,但新种质中的抗性水平却显着提高。许多抗性品系晚熟和低产,但也鉴定出具有较高抗性和早开花和高产潜力的品系,表明可以将抗病性,适应性和产量潜力结合起来。但是,本研究中确定的抗性仅是部分抗性,可能需要补充适当的农艺措施,以最大程度地减少产量损失并增强部分抗性的益处

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