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Antibiotic-producing symbionts dynamically transition between plant pathogenicity and insect-defensive mutualism

机译:产生抗生素的共生体在植物致病性和昆虫防御共生之间动态转换

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摘要

Pathogenic and mutualistic bacteria associated with eukaryotic hosts often lack distinctive genomic features, suggesting regular transitions between these lifestyles. Here we present evidence supporting a dynamic transition from plant pathogenicity to insect-defensive mutualism in symbiotic Burkholderia gladioli bacteria. In a group of herbivorous beetles, these symbionts protect the vulnerable egg stage against detrimental microbes. The production of a blend of antibiotics by B. gladioli, including toxoflavin, caryoynencin and two new antimicrobial compounds, the macrolide lagriene and the isothiocyanate sinapigladioside, likely mediate this defensive role. In addition to vertical transmission, these insect symbionts can be exchanged via the host plant and retain the ability to initiate systemic plant infection at the expense of the plant's fitness. Our findings provide a paradigm for the transition between pathogenic and mutualistic lifestyles and shed light on the evolution and chemical ecology of this defensive mutualism.
机译:与真核生物宿主相关的致病性和共生细菌通常缺乏独特的基因组特征,表明这些生活方式之间有规律的过渡。在这里,我们提供支持共生伯克霍尔德氏剑兰细菌从植物致病性向昆虫防御共生的动态过渡的证据。在一组草食性甲虫中,这些共生体可保护脆弱的卵期免受有害微生物的侵害。剑兰芽孢杆菌产生的抗生素混合物,包括毒黄素,癌霉素和两种新的抗菌化合物,大环内酯lagriene和异硫氰酸盐芥子苷,可能介导了这种防御作用。除垂直传播外,这些昆虫共生体还可以通过宿主植物进行交换,并保留以植物适合度为代价而引发系统性植物感染的能力。我们的发现为病原性和共生生活方式之间的转变提供了范例,并为这种防御性共生主义的演变和化学生态学提供了启示。

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