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内共生 Tremblaya phenacola 通过调控雷帕霉素靶蛋白通路影响棉蚜的繁殖。

Endosymbiont Tremblaya phenacola influences the reproduction of cotton mealybugs by regulating the mechanistic target of rapamycin pathway.

机构信息

State Key Laboratory of Rice Biology & Ministry of Agriculture and Rural Affairs Key Laboratory of Molecular Biology of Crop Pathogens and Insects, Institute of Insect Sciences, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China.

Technical Centre for Animal, Plant & Food Inspection and Quarantine, Shanghai Customs, Shanghai 200135, China.

出版信息

ISME J. 2024 Jan 8;18(1). doi: 10.1093/ismejo/wrae052.

Abstract

The intricate evolutionary dynamics of endosymbiotic relationships result in unique characteristics among the genomes of symbionts, which profoundly influence host insect phenotypes. Here, we investigated an endosymbiotic system in Phenacoccus solenopsis, a notorious pest of the subfamily Phenacoccinae. The endosymbiont, "Candidatus Tremblaya phenacola" (T. phenacola PSOL), persisted throughout the complete life cycle of female hosts and was more active during oviposition, whereas there was a significant decline in abundance after pupation in males. Genome sequencing yielded an endosymbiont genome of 221.1 kb in size, comprising seven contigs and originating from a chimeric arrangement between betaproteobacteria and gammaproteobacteria. A comprehensive analysis of amino acid metabolic pathways demonstrated complementarity between the host and endosymbiont metabolism. Elimination of T. phenacola PSOL through antibiotic treatment significantly decreased P. solenopsis fecundity. Weighted gene coexpression network analysis demonstrated a correlation between genes associated with essential amino acid synthesis and those associated with host meiosis and oocyte maturation. Moreover, altering endosymbiont abundance activated the host mechanistic target of rapamycin pathway, suggesting that changes in the amino acid abundance affected the host reproductive capabilities via this signal pathway. Taken together, these findings demonstrate a mechanism by which the endosymbiont T. phenacola PSOL contributed to high fecundity in P. solenopsis and provide new insights into nutritional compensation and coevolution of the endosymbiotic system.

摘要

内共生关系的复杂进化动态导致共生体基因组具有独特的特征,这些特征深刻影响宿主昆虫的表型。在这里,我们研究了 Phenacoccus solenopsis 中的一个内共生系统,Phenacoccus solenopsis 是 Phenacoccinae 亚科的一种著名害虫。内共生体“Candidatus Tremblaya phenacola”(T. phenacola PSOL)在雌性宿主的整个生命周期中都存在,并在产卵时更为活跃,而在雄性化蛹后丰度显著下降。基因组测序产生了一个 221.1 kb 大小的内共生体基因组,由七个连续体组成,来源于β变形菌和γ变形菌之间的嵌合排列。对氨基酸代谢途径的综合分析表明,宿主和内共生体代谢之间存在互补性。通过抗生素处理消除 T. phenacola PSOL 显著降低了 P. solenopsis 的繁殖力。加权基因共表达网络分析表明,与必需氨基酸合成相关的基因与与宿主减数分裂和卵母细胞成熟相关的基因之间存在相关性。此外,改变内共生体丰度激活了宿主的机械靶标雷帕霉素途径,表明氨基酸丰度的变化通过该信号途径影响宿主的生殖能力。综上所述,这些发现表明了内共生体 T. phenacola PSOL 如何有助于 P. solenopsis 的高繁殖力,并为内共生系统的营养补偿和共同进化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13e6/11014885/8c89c311a413/wrae052f1.jpg

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