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Long-term nitrogen addition causes the evolution of less-cooperative mutualists

机译:长期添加氮会导致不那么合作的互惠主义者的进化

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Human activities have altered the global nitrogen (N) cycle, and as a result, elevated N inputs are causing profound ecological changes in diverse ecosystems. The evolutionary consequences of this global change have been largely ignored even though elevated N inputs are predicted to cause mutualism breakdown and the evolution of decreased cooperation between resource mutualists. Using a long-term (22 years) N-addition experiment, we find that elevated N inputs have altered the legume-rhizobium mutualism (where rhizobial bacteria trade N in exchange for photosynthates from legumes), causing the evolution of less-mutualistic rhizobia. Plants inoculated with rhizobium strains isolated from N-fertilized treatments produced 17-30% less biomass and had reduced chlorophyll content compared to plants inoculated with strains from unfertilized control plots. Because the legume-rhizobium mutualism is the major contributor of naturally fixed N to terrestrial ecosystems, the evolution of less-cooperative rhizobia may have important environmental consequences.
机译:人类活动已经改变了全球氮(N)循环,因此,氮输入的增加在各种生态系统中引起了深刻的生态变化。即使预测增加的氮投入会导致共产主义崩溃以及资源互惠主义者之间合作减少的演变,但这种全球变化的进化后果已被很大程度上忽略。通过长期(22年)的氮添加实验,我们发现升高的氮输入量已改变了豆科植物-根瘤菌的共生关系(其中,根瘤菌利用N交换豆类植物的光合产物),从而导致互不共生的根瘤菌的进化。与从未施肥对照样地接种的植物相比,接种从N施肥处理中分离的根瘤菌菌株的植物产生的生物量减少了17-30%,叶绿素含量降低。由于豆科植物-根瘤菌的共生是自然固定氮对陆地生态系统的主要贡献,因此合作性较差的根瘤菌的进化可能会对环境产生重要影响。

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