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首页> 外文期刊>Molecular Plant-Microbe Interactions >Salicylic Acid and Jasmonic Acid Signaling Defense Pathways Reduce Natural Bacterial Diversity on Arabidopsis thaliana
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Salicylic Acid and Jasmonic Acid Signaling Defense Pathways Reduce Natural Bacterial Diversity on Arabidopsis thaliana

机译:水杨酸和茉莉酸信号传导途径减少了拟南芥的天然细菌多样性

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摘要

Terrestrial plants serve as large and diverse habitats for a wide range of pathogenic and nonpathogenic microbes, yet these communities are not well described and little is known about the effects of plant defense on microbial communities in nature. We designed a field experiment to determine how variation in two plant defense signaling pathways affects the size, diversity, and composition of the natural endophytic and epiphytic bacterial communities of Arabidopsis thaliana. To do this, we provide an initial characterization of these bacterial communities in one population in southwestern Michigan, United States, and we compare these two communities among A. thaliana mutants deficient in salicylic acid (SA) and jasmonic acid (JA) signaling defense pathways, controls, and plants with artificially elevated levels of defense. We identified 30 distinct bacterial groups on A. thaliana that differ in colony morphology and 16S rRNA sequence. We show that induction of SA-mediated defenses reduced endophytic bacterial community diversity, whereas plants deficient in JA-mediated defenses experienced greater epiphytic bacterial diversity. Furthermore, there was a positive relationship between total community size and diversity, indicating that relatively susceptible plants should, in general, harbor higher bacterial diversity. This experiment provides novel information about the ecology of bacteria on A. thaliana and demonstrates that variation in two specific plant-signaling defense pathways can influence bacterial diversity on plants.
机译:陆地植物作为各种致病和非致病微生物的栖息地,然而这些社区对植物防御对微生物社区的影响很少,但这些社区对微生物社区的影响很少。我们设计了一个现场实验,以确定两种植物防御信号通路的变异如何影响拟南芥的自然内生物和外膜细菌群落的大小,多样性和组成。要做到这一点,我们在美国西南部,美国西南部的人口中提供了这些细菌社区的初步表征,我们将这两个社区与缺乏水杨酸(SA)和茉莉酸(JA)信号传导途径缺乏的林地突变体进行比较,控制和植物具有人为升高的防御水平。我们鉴定了在菌落形态和16s rRNA序列不同的植物中的30个不同的细菌组。我们表明SA介导的防御诱导降低了内生细菌群落多样性,而JA介导的防御缺乏的植物经历了更大的外膜细菌多样性。此外,共有社区规模和多样性之间存在正相关关系,表明植物相对敏感,通常是含有更高细菌多样性的植物。该实验提供了有关A.拟南芥对细菌生态学的新颖信息,并证明了两种特定植物 - 信号传导途径的变异可以影响植物的细菌多样性。

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