首页> 美国卫生研究院文献>Genome Biology and Evolution >Partnering With a Pest: Genomes of Hemlock Woolly Adelgid Symbionts Reveal Atypical Nutritional Provisioning Patterns in Dual-Obligate Bacteria
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Partnering With a Pest: Genomes of Hemlock Woolly Adelgid Symbionts Reveal Atypical Nutritional Provisioning Patterns in Dual-Obligate Bacteria

机译:与害虫的伙伴关系:Hemlock Woolly Adelgid共生体的基因组揭示了双专性细菌中的非典型营养供应模式。

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摘要

Nutritional bacterial symbionts enhance the diets of sap-feeding insects with amino acids and vitamins missing from their diets. In many lineages, an ancestral senior symbiont is joined by a younger junior symbiont. To date, an emergent pattern is that senior symbionts supply a majority of amino acids, and junior symbionts supply a minority. Similar to other hemipterans, adelgids harbor obligate symbionts, but have higher diversity of bacterial associates, suggesting a history of symbiont turnover. The metabolic roles of dual symbionts in adelgids and their contributions to the consortium are largely unexplored. Here, we investigate the symbionts of Adelges tsugae, the hemlock woolly adelgid (HWA), an invasive species introduced from Japan to the eastern United States, where it kills hemlock trees. The response of hemlocks to HWA feeding has aspects of a defensive reaction against pathogens, and some have speculated that symbionts may be involved. We sequenced the genomes of “Ca. Annandia adelgestsuga” and “Ca. Pseudomonas adelgestsugas” symbionts to detail their metabolic capabilities, infer ages of relationship, and search for effectors of plant defenses. We also tested the relationship of “Ca. Annandia” to symbionts of other insects. We find that both symbionts provide nutrients, but in more balanced proportions than dual symbionts of other hemipterans. The lesser contributions of the senior “Ca. Annandia” support our hypothesis for symbiont replacements in adelgids. Phylogenomic results were ambiguous regarding the position of “Ca. Annandia”. We found no obvious effectors of plant defenses related to insect virulence, but hypothetical proteins in symbionts are unknown players.
机译:营养性细菌共生体通过饮食中缺少的氨基酸和维生素来增强汁液喂养昆虫的饮食。在许多世系中,祖先的高级共生体由年轻的初级共生体组成。迄今为止,一种新兴的模式是高级共生体提供大多数氨基酸,而初级共生体提供少数氨基酸。与其他半足动物相似,阿德吉德犬具有共生共生体,但细菌缔合体的多样性更高,这表明有共生体更新的历史。双共生体在阿德莱奇氏菌中的代谢作用及其对财团的贡献在很大程度上尚待研究。在这里,我们调查了铁杉毛加长木(AWA)的共生体,该铁杉是从日本引入美国东部的入侵物种,在这里杀死铁杉。铁杉对HWA饲喂的反应具有针对病原体的防御反应,有些人推测共生体可能参与其中。我们对“Ca。 Annandia adelgestsuga”和“ Ca. “ Pseudomonas adelgestsugas”的共生分子详细说明了它们的代谢能力,推断出亲缘年龄,并寻找植物防御因子。我们还测试了“ Ca.安纳迪亚(Annanndia)”与其他昆虫的共生体。我们发现两种共生体均能提供营养,但比例要比其他半参的双重共生体更均衡。资深“ Ca. 《 Annannadia》支持我们关于阿德吉德族共生体置换的假设。关于“Ca。安南迪亚”。我们没有发现与昆虫毒力相关的植物防御的明显效应子,但是共生菌中的假设蛋白是未知的参与者。

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