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Within‐species trade‐offs in plant‐stimulated soil enzyme activity and growth flowering and seed size

机译:植物刺激的土壤酶活性与生长开花和种子大小的种内权衡

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摘要

Soil microbial communities affect species demographic rates of plants. In turn, plants influence the composition and function of the soil microbiome, potentially resulting in beneficial feedbacks that alter their fitness and establishment. For example, differences in the ability to stimulate soil enzyme activity among plant lineages may affect plant growth and reproduction. We used a common garden study to test differences in plant‐stimulated soil enzyme activity between lineages of the same species across developmental stages. Lineages employed different strategies whereby growth, days to flowering and seed size traded‐off with plant‐stimulated soil enzyme activity. Specifically, the smaller seeded lineage stimulated more enzyme activity at the early stage of development and flowered earlier while the larger seeded lineage sustained lower but consistent enzyme activity through development. We suggest that these lineages, which are both successful invaders, employ distinct strategies (a colonizer and a competitor) and differ in their influence on soil microbial activity. . The ability to influence the soil microbial community by plants may be an important trait that trades off with growth, flowering, and seed size for promoting plant establishment, reproduction, and invasion.
机译:土壤微生物群落影响植物的物种统计率。反过来,植物会影响土壤微生物组的组成和功能,可能会产生有益的反馈,从而改变其适应性和结构。例如,植物谱系中刺激土壤酶活性的能力差异可能影响植物的生长和繁殖。我们使用一项普通的花园研究来测试不同物种在不同发育阶段植物刺激的土壤酶活性之间的差异。世系采用不同的策略,使生长,开花天数和种子大小与植物刺激的土壤酶活性之间进行权衡。特别地,较小的种子谱系在发育的早期刺激了更多的酶活性,并且开花较早,而较大的种子谱系通过发育维持了较低但稳定的酶活性。我们建议这些都是成功的入侵者的血统,采用不同的策略(定殖者和竞争者),并且对土壤微生物活性的影响也不同。 。植物影响土壤微生物群落的能力可能是一项重要的特性,需要权衡其生长,开花和种子大小以促进植物的建立,繁殖和入侵。

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