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Rickettsia Symbiont in the Pea Aphid Acyrthosiphon pisum: Novel Cellular Tropism Effect on Host Fitness and Interaction with the Essential Symbiont Buchnera

机译:豌豆蚜虫Acyrthosiphon pisum中的立克次体共生体:新型细胞趋向对宿主适应性的影响以及与基本共生体Buchnera的相互作用

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摘要

In natural populations of the pea aphid Acyrthosiphon pisum, a facultative bacterial symbiont of the genus Rickettsia has been detected at considerable infection frequencies worldwide. We investigated the effects of the Rickettsia symbiont on the host aphid and also on the coexisting essential symbiont Buchnera. In situ hybridization revealed that the Rickettsia symbiont was specifically localized in two types of host cells specialized for endosymbiosis: secondary mycetocytes and sheath cells. Electron microscopy identified bacterial rods, about 2 μm long and 0.5 μm thick, in sheath cells of Rickettsia-infected aphids. Virus-like particles were sometimes observed in association with the bacterial cells. By an antibiotic treatment, we generated Rickettsia-infected and Rickettsia-eliminated aphid strains with an identical genetic background. Comparison of these strains revealed that Rickettsia infection negatively affected some components of the host fitness. Quantitative PCR analysis of the bacterial population dynamics identified a remarkable interaction between the coexisting symbionts: Buchnera population was significantly suppressed in the presence of Rickettsia, particularly at the young adult stage, when the aphid most actively reproduces. On the basis of these results, we discussed the possible mechanisms that enable the prevalence of Rickettsia infection in natural host populations in spite of the negative fitness effects observed in the laboratory.
机译:在豌豆蚜虫豌豆蚜虫的自然种群中,在全世界以相当大的感染频率检测到立克次氏菌属的兼性细菌共生体。我们调查了立克次体共生菌对寄主蚜虫以及同时存在的必需共生菌布赫纳的影响。原位杂交揭示立克次体共生体特异性地定位于两种专门用于内共生的宿主细胞中:次生分枝细胞和鞘细胞。电子显微镜检查发现立克次体感染的蚜虫的鞘细胞中长约2μm,厚0.5μm的细菌棒。有时观察到病毒样颗粒与细菌细胞结合。通过抗生素处理,我们产生了具有相同遗传背景的立克次体感染和立克次体消除的蚜虫菌株。这些菌株的比较表明,立克次体感染对宿主健康的某些组成部分产生了负面影响。细菌种群动态的定量PCR分析确定了共存共生体之间的显着相互作用:在立克次体存在的情况下,尤其是在成年期,蚜虫最活跃繁殖时,Buchnera种群被显着抑制。根据这些结果,我们讨论了可能的机制,尽管在实验室中观察到了负面的适应性影响,但仍使自然宿主宿主中立克次体感染流行。

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