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首页> 外文期刊>The Journal of Applied Ecology >Soil microbial community coalescence and fertilization interact to drive the functioning of the legume-rhizobium symbiosis
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Soil microbial community coalescence and fertilization interact to drive the functioning of the legume-rhizobium symbiosis

机译:土壤微生物群落聚结和受精交互驱动功能legume-rhizobium共生的

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1. Soil microbial community coalescence, where entire microbial communities mix and interact under new conditions, is a widespread phenomenon whose applicability for targeted root microbiome assembly has not been studied. Whether soil mixing can lead to predictable outcomes for community assembly and functioning of specific functional groups, for example, N2-fixing rhizobia, remains unknown. 2. Using a legume shrub adapted to nutrient-poor soils, we tested the effects of community coalescence on plant nutrition and growth, and its influence on the rhizobial root nodule symbiosis. We grew seedlings of rooibos [Aspalathus linearis (Burm.f.) Dahlg.] in individual rhizosphere soils collected from cultivated and wild rooibos plants and their mixtures, and included a fertilization treatment. Portions of the taxonomic gyrB and the symbiotic nodA gene makers were sequenced to characterize rhizobial communities present in rooibos root nodules under the different soil conditions. 3. Overall, community coalescence by soil mixing had positive effects on plant nutrition and growth, and interacted with fertilizer addition to concurrently change rhizobial taxonomic evenness and promote higher relative N2 fixation. We identified particular rhizobia preferentially associated with rooibos plants that showed higher N fractions from N2 fixation, raised in mixed fertilized soils. 4. These findings indicate that soil bacterial community coalescence and fertilization can have synergistic effects on plant performance, while promoting the assembly of alternative symbiotic rhizobial communities that provide improved nutritional benefits to host plants. 5. Synthesis and applications. The combination of soil mixing and fertilizer addition may be an important, but hitherto overlooked measure to improve the functioning of rhizobium symbioses in legume crops. Microbial community coalescence should gain recognition as a potentially effective mechanism to improve the functioning of plant microbiome
机译:1. 整个微生物群落结构和交互在新的条件下,是一个普遍的现象为目标的适用性根微生物大会还没有被研究过。混合会导致可预测的结果特定的社区大会和运作例如,官能团N2-fixing根瘤菌,仍然未知。灌木适应贫瘠土壤,我们测试了社区聚结的影响营养和增长,及其影响rhizobial根瘤共生关系。洛依柏丝苗[Aspalathus linearis(Burm.f)。收集的植物栽培和野生洛依柏丝和他们的混合物,包括受精治疗。共生的野田佳彦基因制造商被测序描述rhizobial社区中洛依柏丝在不同土壤根结节条件。对植物土壤混合有积极的影响营养和生长,并与之交互肥料,同时改变rhizobial分类高均匀度和促进相对N2固定。根瘤菌与洛依柏丝相关的优先植物从N2显示N分数更高固定,在混合施肥的土壤。这些研究结果表明,土壤细菌社区聚结和受精协同对装置性能的影响,同时促进替代共生的组装rhizobial社区提供改善寄主植物营养。和应用程序。和化肥增加可能是一个重要,但是迄今为止被忽视的措施来改善功能在豆科植物根瘤菌的共生,作物。获得认可作为一个潜在的有效提高工厂的运作机制微生物组

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