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Spatio-temporal control of mutualism in legumes helps spread symbiotic nitrogen fixation

机译:豆科植物共生的时空控制有助于传播共生固氮

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摘要

Mutualism is of fundamental importance in ecosystems. Which factors help to keep the relationship mutually beneficial and evolutionarily successful is a central question. We addressed this issue for one of the most significant mutualistic interactions on Earth, which associates plants of the leguminosae family and hundreds of nitrogen (N2)-fixing bacterial species. Here we analyze the spatio-temporal dynamics of fixers and non-fixers along the symbiotic process in the Cupriavidus taiwanensis-Mimosa pudica system. N2-fixing symbionts progressively outcompete isogenic non-fixers within root nodules, where N2-fixation occurs, even when they share the same nodule. Numerical simulations, supported by experimental validation, predict that rare fixers will invade a population dominated by non-fixing bacteria during serial nodulation cycles with a probability that is function of initial inoculum, plant population size and nodulation cycle length. Our findings provide insights into the selective forces and ecological factors that may have driven the spread of the N2-fixation mutualistic trait.
机译:互惠关系在生态系统中至关重要。哪些因素有助于使关系互惠互利并在进化上取得成功是一个中心问题。我们针对地球上最重要的相互作用之一解决了这个问题,该相互作用将豆科植物与数百种固定氮(N2)的细菌物种相关联。在这里,我们分析了台湾铜杯-含羞草共生系统中固定剂和非固定剂沿共生过程的时空动态。 N2固定共生菌逐渐超过根瘤中的等基因非固定剂,即使它们共享相同的根瘤,也会发生N2固定。数值模拟得到实验验证的支持,预测稀有固定剂将在连续结瘤周期中侵入以非固定细菌为主的种群,其概率是初始接种量,植物种群大小和结瘤周期长度的函数。我们的发现提供了对可能推动N2固定互惠性状传播的选择力和生态因素的见解。

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