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豆科植物与根瘤菌共生关系中的稳定机制。

Stabilizing mechanisms in a legume-rhizobium mutualism.

作者信息

Heath Katy D, Tiffin Peter

机构信息

Department of Plant Biology, University of Minnesota, St. Paul, Minnesota 55108, USA.

出版信息

Evolution. 2009 Mar;63(3):652-62. doi: 10.1111/j.1558-5646.2008.00582.x. Epub 2008 Dec 12.

Abstract

Preferential rewarding of more beneficial partners may stabilize mutualisms against the invasion of less beneficial, that is cheater, genotypes. Recent evidence suggests that both partner choice and sanctioning may play roles in preventing the invasion of less-beneficial rhizobia in legume-rhizobium mutualisms. The importance of these mechanisms in natural communities, however, remains unclear. We grew 12 Medicago truncatula maternal families with a mixture of three rhizobium strains from their native range for three plant generations and estimated the symbiotic benefits (nodule number and size) conferred to each rhizobium strain. In this experiment, the majority of M. truncatula genotypes formed more nodules with more beneficial rhizobium strains, providing evidence for adaptive partner choice. We also found that three generations of symbiosis resulted in an increase in the relative frequency of rhizobium strains that were most beneficial to plants--suggesting that partner choice affects rhizobium fitness. By contrast, we found no evidence that plants differentially rewarded rhizobia postnodulation via sanctioning leading to differences in nodule size. Taken together, our data suggest that plants have evolved to recognize beneficial rhizobial signals during the early stages of symbiosis, and that signaling between plants and rhizobia may be subject to coevolutionary pressures.

摘要

对更有益的伙伴给予优先奖励可能会稳定共生关系,以抵御较不利的(即作弊者)基因型的入侵。最近的证据表明,伙伴选择和制裁在防止豆科植物 - 根瘤菌共生关系中较不利的根瘤菌入侵方面可能都发挥着作用。然而,这些机制在自然群落中的重要性仍不清楚。我们用来自其原生范围的三种根瘤菌菌株的混合物培育了12个蒺藜苜蓿母系家族三代,并估计了赋予每种根瘤菌菌株的共生益处(根瘤数量和大小)。在这个实验中,大多数蒺藜苜蓿基因型与更有益的根瘤菌菌株形成了更多的根瘤,为适应性伙伴选择提供了证据。我们还发现,三代共生导致对植物最有益的根瘤菌菌株的相对频率增加——这表明伙伴选择会影响根瘤菌的适合度。相比之下,我们没有发现植物通过制裁在结瘤后对根瘤菌进行差异奖励从而导致根瘤大小差异的证据。综上所述,我们的数据表明,植物在共生早期已经进化到能够识别有益的根瘤菌信号,并且植物与根瘤菌之间的信号传递可能受到协同进化压力的影响。

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