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昆虫菌血细胞的分子和细胞特征:共生起源初始进化阶段的互利共生与危害

Molecular and cellular profiles of insect bacteriocytes: mutualism and harm at the initial evolutionary step of symbiogenesis.

作者信息

Heddi Abdelaziz, Vallier Agnès, Anselme Caroline, Xin Huawei, Rahbe Yvan, Wäckers Felix

机构信息

Laboratoire de Biologie Fonctionnelle Insectes et Interactions, UMR INRA/INSA de Lyon, Bât. Louis Pasteur, 20 Avenue Albert Einstein, 69621 Villeurbanne Cedex, France.

出版信息

Cell Microbiol. 2005 Feb;7(2):293-305. doi: 10.1111/j.1462-5822.2004.00461.x.

Abstract

Intracellular symbiosis is considered to be a driving force in eukaryotic cell evolution. In insects, little is known about the molecular bases of the bacteria-bearing host cells (bacteriocytes), particularly in the initial steps of symbiosis, where the bacterial genome has not experienced severe gene deletions because of evolutionary constraints associated with intracellular and vertical transmission. Here, we have applied polymerase chain reaction (PCR)-subtracted cDNA and reverse Northern analysis on the bacteriocytes of a recently established endosymbiosis, the weevil Sitophilus zeamais, to discover genes of potential relevance to bacteriocyte genetics. We provide a broad characterization of bacteriocyte transcriptional responses to intracellular bacteria, including pathways covering metabolism-transport-stress (MTS), cell signalling and trafficking, growth and apoptosis, as well as innate immunity. MTS genes show an intriguing diabetes-like pathogenic profile associated with increased stress, as indicated by high levels of upregulations of carbohydrate transporters, aldose reductases and stress-related genes. A high-performance liquid chromatography (HPLC) analysis of tissue carbohydrate contents highlighted an increased carbohydrate assimilation in symbiotic insects and the prevalence of a polyol biosynthetic pathway, as indicated by the accumulation of sorbitol, mannitol and fructose in the bacteriocytes. These findings provide the first genetic perspectives on the nature of the interaction between insect and cooperative bacteria. They unravel the profound insect bacteriocyte stress associated with increased metabolism and cell trafficking, and they shed light on the potential role of the innate immunity during the pathogeny-mutualism transition at the initial stage of insect symbiogenesis.

摘要

细胞内共生被认为是真核细胞进化的驱动力。在昆虫中,关于含细菌宿主细胞(细菌细胞)的分子基础知之甚少,尤其是在共生的初始阶段,由于与细胞内和垂直传播相关的进化限制,细菌基因组尚未经历严重的基因缺失。在这里,我们对最近建立的内共生象鼻虫玉米象的细菌细胞应用了聚合酶链反应(PCR)扣除cDNA和反向Northern分析,以发现与细菌细胞遗传学潜在相关的基因。我们对细菌细胞对细胞内细菌的转录反应进行了广泛的表征,包括涵盖代谢 - 运输 - 应激(MTS)、细胞信号传导和运输、生长和凋亡以及先天免疫的途径。MTS基因显示出与应激增加相关的有趣的糖尿病样致病特征,碳水化合物转运蛋白、醛糖还原酶和应激相关基因的高水平上调表明了这一点。对组织碳水化合物含量的高效液相色谱(HPLC)分析突出了共生昆虫中碳水化合物同化的增加以及多元醇生物合成途径的普遍存在,细菌细胞中山梨醇、甘露醇和果糖的积累表明了这一点。这些发现为昆虫与共生细菌之间相互作用的本质提供了第一个遗传学视角。它们揭示了与代谢增加和细胞运输相关的深刻的昆虫细菌细胞应激,并揭示了先天免疫在昆虫共生发生初始阶段病原体 - 共生关系转变过程中的潜在作用。

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