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The impact of intra-specific diversity in the rhizobia-legume symbiosis

机译:特定内部多样性在根瘤菌豆类共生中的影响

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Rhizobia - nitrogen-fixing, root-nodulating bacteria - play a critical role in both plant ecosystems and sustainable agriculture. Rhizobia form intracellular infections within legumes roots where they produce plant accessible nitrogen from atmospheric nitrogen and thus reduce the reliance on industrial inputs. The rhizobia-legume symbiosis is often treated as a pairwise relationship between single genotypes, both in research and in the production of rhizobial inoculants. However in nature individual plants are infected by a high diversity of rhizobia symbionts. How this diversity affects productivity within the symbiosis is unclear. Here, we use a powerful statistical approach to assess the impact of diversity within the Rhizobium leguminosarum - clover symbiosis using a biodiversity-ecosystem function framework. Statistically, we found no significant impact of rhizobium diversity. However this relationship was weakly positive - rather than negative - indicating that there is no significant cost to increasing inoculant diversity. Productivity was influenced by the identity of the strains within an inoculant; strains with the highest individual performance showed a significant positive contribution within mixed inoculants. Overall, inoculant effectiveness was best predicted by the individual performance of the best inoculant member, and only weakly predicted by the worst performing member. Collectively, our data suggest that the Rhizobium leguminosarum - clover symbiosis displays a weak diversity-function relationship, but that inoculant performance can be improved through the inclusion of high performing strains. Given the wide environmental dependence of rhizobial inoculant quality, multi-strain inoculants could be highly successful as they increase the likelihood of including a strain well adapted to local conditions across different environments.
机译:根瘤菌 - 氮素固定,根瘤性细菌 - 在植物生态系统和可持续农业中发挥关键作用。根瘤菌在豆类根部内形成细胞内感染,其中它们从大气氮气产生植物可接近的氮,从而减少对工业投入的依赖。 Rhizobia-Megume共生通常被视为单一基因型之间的成对关系,在研究和根瘤菌接种子的生产中。然而,在自然中,个体植物受到大样的根瘤菌共生的感染。这种多样性如何影响共生内的生产力尚不清楚。在这里,我们使用强大的统计方法来评估利用生物多样性 - 生态系统函数框架来评估流石杆杆菌 - 三叶子系统中的多样性的影响。统计上,我们发现无菌多样性没有显着影响。然而,这种关系是弱积极的 - 而不是消极的 - 表明不显着的成本增加了占植物多样性。生产率受孕育株中的菌株的身份的影响;具有最高性能的菌株在混合抗原体内显示出显着的正贡献。总体而言,最好的含有成员的个性性能最佳地预测植入的效果,并且只有最糟糕的表演成员略微预测。统称,我们的数据表明,Rhizobiumosarum - 三叶草共生显示出弱的多样性功能关系,但通过包含高表现菌株,可以改善孕育性能。鉴于无根瘤菌植入质量的广泛环境依赖性,多菌株孕育剂可能非常成功,因为它们增加了适应于不同环境的局部条件的含量良好的可能性。

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