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个体发育过程中的生理过程需要类似内共生体的物质。

-Like Endosymbiont of Is Required for Physiological Processes During Ontogeny.

作者信息

Ben-Yosef Michael, Rot Asael, Mahagna Mustafa, Kapri Einat, Behar Adi, Gottlieb Yuval

机构信息

Koret School of Veterinary Medicine, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, Israel.

Kimron Veterinary Institute, Bet Dagan, Israel.

出版信息

Front Microbiol. 2020 Apr 22;11:493. doi: 10.3389/fmicb.2020.00493. eCollection 2020.

Abstract

Obligatory hematophagous arthropods such as lice, bugs, flies, and ticks harbor bacterial endosymbionts that are expected to complement missing essential nutrients in their diet. Genomic and some experimental evidence support this expectation. Hard ticks (Acari: Ixodidae) are associated with several lineages of bacterial symbionts, and very few were experimentally shown to be essential to some aspects of tick's fitness. In order to pinpoint the nature of interactions between hard ticks and their symbionts, we tested the effect of massive elimination of -like endosymbionts (CLE) by antibiotics on the development and fitness of the brown dog tick (). Administration of ofloxacin to engorged (blood fed) nymphs resulted in significant and acute reduction of their CLE loads - an effect that also persisted in subsequent life stages (aposymbiotic ticks). As a result, the post-feeding development of aposymbiotic female (but not male) nymphs was delayed. Additionally, aposymbiotic adult females needed a significantly prolonged feeding period in order to replete (detach from host), and had reduced engorgement weight and a lower capacity to produce eggs. Consequently, their fecundity and fertility were significantly reduced. Eggs produced by aposymbiotic females were free of CLE, and the resulting aposymbiotic larvae were unable to feed successfully. Our findings demonstrate that the observed fitness effects are due to CLE reduction and not due to antibiotic administration. Additionally, we suggest that the contribution of CLE is not mandatory for oocyte development and embryogenesis, but is required during feeding in females, when blood meal processing and tissue buildup are taking place. Presumably, under these extreme physiological demands, CLE contribute to through supplementing essential micro- and macronutrients. Further nutrient complementary studies are required to support this hypothesis.

摘要

obligatory hematophagous arthropods such as lice, bugs, flies, and ticks harbor bacterial endosymbionts that are expected to complement missing essential nutrients in their diet. Genomic and some experimental evidence support this expectation. Hard ticks (Acari: Ixodidae) are associated with several lineages of bacterial symbionts, and very few were experimentally shown to be essential to some aspects of tick's fitness. In order to pinpoint the nature of interactions between hard ticks and their symbionts, we tested the effect of massive elimination of -like endosymbionts (CLE) by antibiotics on the development and fitness of the brown dog tick (). Administration of ofloxacin to engorged (blood fed) nymphs resulted in significant and acute reduction of their CLE loads - an effect that also persisted in subsequent life stages (aposymbiotic ticks). As a result, the post-feeding development of aposymbiotic female (but not male) nymphs was delayed. Additionally, aposymbiotic adult females needed a significantly prolonged feeding period in order to replete (detach from host), and had reduced engorgement weight and a lower capacity to produce eggs. Consequently, their fecundity and fertility were significantly reduced. Eggs produced by aposymbiotic females were free of CLE, and the resulting aposymbiotic larvae were unable to feed successfully. Our findings demonstrate that the observed fitness effects are due to CLE reduction and not due to antibiotic administration. Additionally, we suggest that the contribution of CLE is not mandatory for oocyte development and embryogenesis, but is required during feeding in females, when blood meal processing and tissue buildup are taking place. Presumably, under these extreme physiological demands, CLE contribute to through supplementing essential micro- and macronutrients. Further nutrient complementary studies are required to support this hypothesis.

诸如虱子、臭虫、苍蝇和蜱虫等 obligatory hematophagous arthropods 体内携带有细菌内共生体,这些内共生体有望补充其饮食中缺失的必需营养物质。基因组学和一些实验证据支持了这一预期。硬蜱(蜱螨目:硬蜱科)与几种细菌共生体谱系相关,但很少有实验表明它们对蜱虫健康的某些方面是必不可少的。为了确定硬蜱与其共生体之间相互作用的性质,我们测试了用抗生素大量消除 -样内共生体(CLE)对棕狗蜱()发育和健康的影响。给饱血若虫施用氧氟沙星导致其 CLE 负荷显著且急剧降低——这种影响在随后的生命阶段(无共生体蜱虫)也持续存在。结果,无共生体雌性(而非雄性)若虫的饱血后发育延迟。此外,无共生体成年雌性需要显著延长的取食期才能饱食(从宿主身上脱落),并且饱血重量降低,产卵能力下降。因此,它们的繁殖力和生育力显著降低。无共生体雌性产生的卵不含 CLE,由此产生的无共生体幼虫无法成功进食。我们的研究结果表明,观察到的健康效应是由于 CLE 减少,而非抗生素给药所致。此外,我们认为 CLE 的贡献对于卵母细胞发育和胚胎发生并非是必需的,但在雌性进食期间,即进行血餐处理和组织构建时是必需的。据推测,在这些极端的生理需求下,CLE 通过补充必需的微量和大量营养素对 做出贡献。需要进一步的营养互补研究来支持这一假设。 (你提供的原文中存在一些未明确的表述,如“-like endosymbionts”“brown dog tick ()”中的括号内容缺失等,翻译可能会存在一定局限性。)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2c2/7188774/c45e1ff89c7c/fmicb-11-00493-g001.jpg

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