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首页> 外文期刊>Research on Crops >Mechanism of resistance to Meloidogyne incognita in sweet potato (Ipomoea batatas) cultivars 'Bosbok' and 'Mvuvhelo'
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Mechanism of resistance to Meloidogyne incognita in sweet potato (Ipomoea batatas) cultivars 'Bosbok' and 'Mvuvhelo'

机译:甘薯(Ipomoea Batatas)品种“Bosbok”和'MVUVHELO'的抗Meloidogyne Incognita的机制

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摘要

Sweet potato (Ipomoea batatas) cultivars 'Bosbok' and 'Mvuvhelo' were previously shown to be resistant to Meloidogyne incognita race 2, without information on the mechanism of resistance. Among the two mechanisms of nematode resistance, the latter is theonly one that is useful in plant breeding programmes. The objective of this study was to determine the existing nematode resistance mechanism in cultivars "Bosbok' and 'Mvuvhelo' to M. incognita race 2. Uniform rooted cuttings in 250 ml polystyrene beakers containing fine sand were inoculated with 100 second stage (J2) with four plants harvested every other day for 30 days. Roots were severed, cleaned, stained and then distained, assessed under the stereomicroscope for the existence of (1) necrotic spots, (2) poorly developed giant cells, (3) formation of rootlet interferences, (4) absence of root galls and (5) non-detectable J2 in roots. All plant variables over time exhibited quadratic relations with coefficients of determination ranging from 65 to85% and from 72 to 94% in cultivars Bosbok'and 'Mvuvhelo', respectively. In conclusion, the two cultivars were shown to contain post-infectional nematode resistant attributes and could, therefore, be candidates to serve in introgression intended for breeding nematode-resistant sweet potato cultivars.
机译:甘薯(Ipomoea Batatas)品种'Bosbok'和'MVUVHelo'以前表现出对Meloidogyne Incognita Race 2的抵抗力,没有关于抵抗机制的信息。在线虫阻力的两个机制中,后者是在植物育种计划中有用的机制。本研究的目的是确定栽培品种“Bosbok”和“MVUVHelo”的现有线虫电阻机制。Incognita Race 2.用100秒(J2)接种含有细砂的250ml聚苯乙烯烧杯中的均匀根切割。每隔一天收获四个植物30天。根部被切断,清洁,染色,然后在立体分析器下进行评估,以存在(1)坏细胞,(2)巨型细胞不良,(3)脱滴细胞形成(4)根胆汁的缺失和(5)根中未检测到的J2。所有植物变量随着时间的推移,与品种Bosbok''and'and'And'MVuvhelo'的72%至94%的测定系数的二次关系表现出二次关系分别总结。总之,显示了两种品种含有发布后的线虫抗性属性,因此可以是候选者在用于育种线虫耐薯CUL的血栓增量中服用脚轮。

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