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首页> 外文期刊>Journal of Agricultural Science >Identification of Soybean Genotypes Resistant to Charcoal Rot by Seed Inoculation With Macrophomina phaseolina
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Identification of Soybean Genotypes Resistant to Charcoal Rot by Seed Inoculation With Macrophomina phaseolina

机译:接种菜豆虫的方法鉴定抗炭腐病的大豆基因型

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摘要

Soybean charcoal rot is a widespread root disease caused by the fungus Macrophomina phaseolina, a natural soil inhabitant that has great pathogenic variability and high survival capacity under adverse conditions.There are no registered fungicides or genotypes genetically resistant to this disease, although differences in susceptibility have been observed.As the fungus is a seed-borne pathogen, screening methods based on seed inoculation are quick and efficient.The objective of this work was to assess the efficiency of soybean seed infestation by incubation for 48 h with colonies of M.phaseolina, comparing two germination environment methods (germination paper or in pots with substrate), and to correlate the relative germination of genotypes of both methods with the severity of charcoal rot observed in a field test.The results showed that 48 h were sufficient to infest seeds and reduce the germination.The germination in paper was higher at 5 days after sowing (DAS) than that in pots at 8 DAS in a greenhouse.Both environments exhibited a highly negative correlation between seed germination and field disease severity (r = -0.775 in germination paper and r = -0.779 in pots with substrate).It is recommended that the germination test be performed in germination paper due to practicality and economy of space, material, and labor besides the better control of the environment.
机译:大豆木炭腐烂是一种广泛的根系疾病,由真菌Macrophomina phaseolina引起,这是一种天然土壤居民,在不利条件下具有很大的致病性变异性和较高的生存能力,尽管易感性存在差异,但没有已注册的对这种疾病具有遗传抗性的杀菌剂或基因型。由于真菌是种子传播的病原体,因此基于种子接种的筛选方法是快速而有效的。本工作的目的是通过与菜豆分枝杆菌菌落孵育48小时来评估大豆种子侵染的效率,比较两种发芽环境方法(发芽纸或在带有基质的盆中),并将两种方法的基因型的相对发芽与在田间试验中观察到的木炭腐烂的严重程度相关联。结果表明,48 h足以侵染种子和种子。播种后第5天(DAS)纸的发芽率高于盆栽的发芽率。温室中的8种DAS。两种环境都表现出种子发芽与田间病害严重程度之间的高度负相关(发芽纸中r = -0.775,装有基质的盆中r = -0.779)。建议在发芽中进行发芽试验由于空间,材料和劳力的实用性和经济性,以及对环境的更好控制,使得纸张质量得到提高。

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