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首页> 外文期刊>Australasian Plant Pathology >Genetic variation among Sclerotium isolates from Benin and South Africa, determined using mycelial compatibility and ITS rDNA sequence data.
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Genetic variation among Sclerotium isolates from Benin and South Africa, determined using mycelial compatibility and ITS rDNA sequence data.

机译:使用菌丝相容性和ITS rDNA序列数据确定了来自贝宁和南非的菌核菌之间的遗传变异。

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摘要

Damping-off and stem rot of cowpea caused by Sclerotium rolfsii has previously been reported in Benin, where the pathogen showed variation in growth and sclerotia production among isolates. Pathogenicity, mycelial compatibility group (MCG) tests and rDNA sequence analyses were conducted on different isolates of S. rolfsii and S. delphinii collected from different hosts and geographical areas in Benin and South Africa. All the isolates, when inoculated into soil and planted with cowpea, caused damping-off and stem rot symptoms. Aggressiveness among isolates varied depending on the host from which each was isolated. Isolates originating from cowpea produced the highest disease incidence followed by isolates from peanuts. Four MCGs were distinguished among 66 isolates. Isolates from the same hosts tended to group into the same MCG. The incidence of damping-off and stem rot of cowpea, expressed as percentage diseased plants, varied among MCGs. Plants inoculated with MCG2 displayed the highest disease incidence, whereas MCG4 resulted in the least. Parsimony analysis of ITS DNA sequence data supported a close affinity of the Sclerotium spp. but showed genetic variation among isolates with no grouping based on host of origin.
机译:贝宁以前曾报道过由菌核菌引起的cow豆的阻尼和茎腐病,在贝宁,病原体在菌株之间显示出生长和菌核生长的变化。对从贝宁和南非的不同寄主和地理区域收集的罗氏链球菌和德氏链球菌的不同分离株进行了致病性,菌丝相容性组(MCG)测试和rDNA序列分析。所有分离株接种到土壤中并种植cow豆时,会引起减毒和茎腐病症状。分离株之间的攻击性取决于分离出宿主的宿主。源自cow豆的分离株发病率最高,其次是花生分离株。在66个分离株中区分了四个MCG。来自相同主机的隔离株倾向于归入相同的MCG。 MC豆的衰减和茎腐病发生率(以患病植物的百分比表示)在MCG之间有所不同。接种了MCG2的植物显示出最高的病害发生率,而MCG4导致的病害发生率最低。 ITS DNA序列数据的简约分析支持菌核菌的紧密亲和力。但显示出分离株之间的遗传变异,没有基于来源宿主的分组。

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