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首页> 外文期刊>The New Phytologist >Plant phenology and genetic variability in root and nodule development strongly influence genetic structuring of Rhizobium leguminosarum biovar viciae populations nodulating pea
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Plant phenology and genetic variability in root and nodule development strongly influence genetic structuring of Rhizobium leguminosarum biovar viciae populations nodulating pea

机译:根瘤和根瘤发育的植物物候学和遗传变异强烈影响根瘤菌豌豆根瘤菌生物变种蚕豆种群的遗传结构

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摘要

The symbiotic relationships between legumes and their nitrogen (N)-fixing bacterial partners (rhizobia) vary in effectiveness to promote plant growth according to both bacterial and legume genotype. To assess the selective effect of host plant on its microsymbionts, the influence of the pea (Pisum sativum) genotype on the relative nodulation success of Rhizobium leguminosarum biovar viciae (Rlv) genotypes from the soil populations during plant development has been investigated. Five pea lines were chosen for their genetic variability in root and nodule development. Genetic structure and diversity of Rlv populations sampled from nodules were estimated by molecular typing with a marker of the genomic background (rDNA intergenic spacer) and a nodulation gene marker (nodD region). Differences were found among Rlv populations related to pea genetic background but also to modification of plant development caused by single gene mutation. The growth stage of the host plant also influenced structuring of populations. A particular nodulation genotype formed the majority of nodules during the reproductive stage. Overall, modification in root and nodule development appears to strongly influence the capacity of particular rhizobial genotypes to form nodules.
机译:豆科植物与其固氮(N)细菌伴侣(根瘤菌)之间的共生关系根据细菌和豆科植物基因型的不同而在促进植物生长的有效性方面有所不同。为了评估宿主植物对其微共生体的选择性作用,研究了豌豆(Pisum sativum)基因型对植物发育过程中来自土壤种群的豆科根瘤菌(Rhizobium leguminosarum biovar viciae)基因型相对结瘤成功的影响。选择了五种豌豆系,因为它们在根和根瘤发育中具有遗传变异性。通过使用基因组背景标记(rDNA基因间隔子)和结瘤基因标记(nodD区域)进行分子分型,估计了从结节取样的Rlv种群的遗传结构和多样性。在Rlv种群之间发现了差异,这些差异与豌豆的遗传背景以及与单基因突变引起的植物发育的改变有关。寄主植物的生长阶段也影响了种群的结构。在生殖阶段,特定的结节基因型形成了大多数结节。总体而言,根和根瘤发育的改变似乎强烈影响特定根瘤菌基因型形成根瘤的能力。

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