首页> 美国卫生研究院文献>International Journal of Microbiology >Morphological and Genetic Diversity of Rhizobia Nodulating Cowpea (Vigna unguiculata L.) from Agricultural Soils of Lower Eastern Kenya
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Morphological and Genetic Diversity of Rhizobia Nodulating Cowpea (Vigna unguiculata L.) from Agricultural Soils of Lower Eastern Kenya

机译:肯尼亚下东部农业土壤中根瘤菌根瘤菌Cow豆(Vigna unguiculata L.)的形态和遗传多样性

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摘要

Limited nitrogen (N) content in the soil is a major challenge to sustainable and high crop production in many developing countries. The nitrogen fixing symbiosis of legumes with rhizobia plays an important role in supplying sufficient N for legumes and subsequent nonleguminous crops. To identify rhizobia strains which are suitable for bioinoculant production, characterization of rhizobia is a prerequisite. The objective of this study was to assess the morphological and genetic diversity of rhizobia that nodulates cowpea in agricultural soils of lower eastern Kenya. Twenty-eight rhizobia isolates were recovered from soil samples collected from farmers' fields in Machakos, Makueni, and Kitui counties in lower eastern Kenya and characterized based on morphological characteristics. Thirteen representative isolates were selected and characterized using BOX repetitive element PCR fingerprinting. Based on the dendrogram generated from morphological characteristics, the test isolates were distributed into two major clusters at a similarity of 75%. Phylogenetic tree, based on BOX repetitive element PCR, grouped the isolates into two clusters at 90% similarity level. The clustering of the isolates did not show a relationship to the origin of soil samples, although the isolates were genetically diverse. This study is a prerequisite to the selection of suitable cowpea rhizobia to develop bioinoculants for sustainable crop production in Kenya.
机译:在许多发展中国家,土壤中氮(N)含量有限是可持续和高产量作物的主要挑战。带有根瘤菌的豆科植物的固氮共生在为豆类及随后的非豆类作物提供足够的氮方面起着重要作用。为了鉴定适合于生产生物菌剂的根瘤菌菌株,表征根瘤菌是先决条件。这项研究的目的是评估根瘤菌的形态和遗传多样性,这种根瘤菌在肯尼亚东部东部的农业土壤中结节了cow豆。从肯尼亚东部东部Machakos,Makueni和Kitui县农民田地收集的土壤样品中回收了28种根瘤菌分离株,并根据形态特征进行了表征。选择了13个代表性分离株,并使用BOX重复元件PCR指纹图谱进行了表征。根据形态特征生成的树状图,将测试分离株以75%的相似性分布到两个主要簇中。基于BOX重复元素PCR的系统进化树将分离物分为90%相似度的两个簇。分离株的聚类与土壤样品的起源没有关系,尽管分离株在遗传上是多样的。这项研究是选择合适的cow豆根瘤菌以开发肯尼亚可持续作物生产生物抑制剂的先决条件。

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