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Evolution of legume-rhizobium symbiosis for an improved ecological efficiency and genotypic specificity of partner interactions

机译:豆科-根瘤菌共生的演变,以提高生态效率和伴侣相互作用的基因型特异性

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Mathematical simulation of the evolution of polymorphic legume-rhizobium symbiosis showed that co-evolution of the partners for an improved ecological efficiency of symbiosis is greatly stimulated when low-active N2-fixing and non-N2-fixing strains of nodule bacteria are prohibited from colonizing nodules. The results of analysis of the model were collated with the comparative morphology of the infection process in various legumes, and its was assumed that mechanisms controlling bacterial reproduction in nodules arose in early evolution of symbiosis in primitive legumes owing to a transition from mixed to clonal infection. The development of such mechanisms was associated with adaptively valuable macroevolutionary transformations of symbiosis and directed its microevolution towards a parallel increase in the specificity and efficiency of mutualism. The increase was due to a reorganization of selective processes in endosymbiotic bacterial populations, which was based on changes in their genetic and spatial structures and optimized metabolic feedbacks between the partners (preferential allocation of photosynthesis products to the most active N2-fixing strains).
机译:多态豆科植物-根瘤菌共生进化的数学模拟表明,当结瘤细菌的低活性固氮和非固氮菌株被禁止定殖时,极大地促进了伴侣的共进化,从而提高了共生的生态效率。结节。该模型的分析结果与各种豆科植物的感染过程的比较形态相吻合,并假定由于从混合感染到克隆感染的过渡,原始豆类共生的早期发展中出现了控制结节中细菌繁殖的机制。 。这种机制的发展与共生的具有适应性的,有价值的宏观进化转化有关,并将其微观进化引向了共生主义的特异性和效率的平行增长。增加的原因是共生细菌共生体中选择性过程的重组,这是基于其遗传和空间结构的变化以及伙伴之间最佳的代谢反馈(将光合作用产物优先分配给最活跃的N2固定菌株)。

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