首页> 外文期刊>EvoDevo >Ontogenetic differences in localization of glutamine transporter ApGLNT1 in the pea aphid demonstrate that mechanisms of host/symbiont integration are not similar in the maternal versus embryonic bacteriome
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Ontogenetic differences in localization of glutamine transporter ApGLNT1 in the pea aphid demonstrate that mechanisms of host/symbiont integration are not similar in the maternal versus embryonic bacteriome

机译:豌豆蚜中谷氨酰胺转运蛋白ApGLNT1定位的个体发育差异表明,宿主/共生体整合的机制在母体和胚胎细菌组中并不相似

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Background Obligate intracellular symbionts of insects are metabolically and developmentally integrated with their hosts. Typically, reproduction fails in many insect nutritional endosymbioses when host insects are cured of their bacterial symbionts, and yet remarkably little is known about the processes that developmentally integrate host and symbiont. Here in the best studied insect obligate intracellular symbiosis, that of the pea aphid, Acyrthosiphon pisum , with the gammaproteobacterium Buchnera aphidicola, we tracked the expression and localization of amino acid transporter ApGLNT1 gene products during asexual embryogenesis. Recently being characterized as a glutamine transporter, ApGLNT1 has been proposed to be a key regulator of amino acid biosynthesis in A. pisum bacteriocytes. To determine when this important mediator of the symbiosis becomes expressed in aphid embryonic bacteriocytes, we applied whole-mount in situ hybridization and fluorescent immunostaining with a specific anti-ApGLNT1 antibody to detect the temporal and spatial expression of ApGLNT1 gene products during asexual embryogenesis. Results During embryogenesis, ApGLNT1 mRNA and protein localize to the follicular epithelium that surrounds parthenogenetic viviparous embryos, where we speculate that it functions to supply developing embryos with glutamine from maternal hemolymph. Unexpectedly, in the embryonic bacteriome ApGLNT1 protein does not localize to the membrane of bacteriocytes, a pattern that leads us to conclude that the regulation of amino acid metabolism in the embryonic bacteriome mechanistically differs from that in the maternal bacteriome. Paralleling our earlier report of punctate cytoplasmic localization of ApGLNT1 in maternal bacteriocytes, we find ApGLNT1 protein localizing as cytoplasmic puncta throughout development in association with Buchnera . Conclusions Our work that documents ontogenetic shifts in the localization of ApGLNT1 protein in the host bacteriome demonstrates that maternal and embryonic bacteriomes are not equivalent. Significantly, the persistent punctate cytoplasmic localization of ApGLNT1 in association with Buchnera in embryos prior to bacteriocyte formation and later in both embryonic and maternal bacteriomes suggests that ApGLNT1 plays multiple roles in this symbiosis, roles that include amino acid transport and possibly nutrient sensing.
机译:背景技术昆虫的专性细胞内共生体与其宿主代谢和发育整合。通常,当宿主昆虫治愈细菌共生体时,在许多昆虫营养内共生体中繁殖均会失败,但对于发育整合宿主和共生体的过程知之甚少。在最深入研究的昆虫专一性细胞内共生中,豌豆蚜虫,蚜虫和蚜虫布氏支原体蚜虫的共生中,我们追踪了无性胚胎发生过程中氨基酸转运蛋白ApGLNT1基因产物的表达和定位。最近被认为是谷氨酰胺转运蛋白的ApGLNT1被认为是Pisum细菌细胞中氨基酸生物合成的关键调节剂。为了确定这种重要的共生介质何时在蚜虫胚胎细菌细胞中表达,我们应用了原位杂交和荧光免疫染色与特定的抗ApGLNT1抗体,以检测无性胚胎发生过程中ApGLNT1基因产物的时空表达。结果在胚胎发生过程中,ApGLNT1 mRNA和蛋白定位于围绕单性生殖胎生卵的卵泡上皮细胞,我们推测其功能是向发育中的胚胎提供来自母体淋巴的谷氨酰胺。出乎意料的是,在胚胎细菌学组中,ApGLNT1蛋白未定位在细菌细胞膜上,这种模式使我们得出结论:胚胎细菌学组中氨基酸代谢的调控机制与母亲细菌学中的调控不同。平行于我们先前关于母体细菌细胞中ApGLNT1的点状细胞质定位的报告,我们发现ApGLNT1蛋白在整个发育过程中都定位为细胞质点,与Buchnera有关。结论我们的工作记录了宿主细菌基因组中ApGLNT1蛋白定位的遗传变化,表明母体细菌和胚胎细菌并不相同。值得注意的是,ApGLNT1与布氏杆菌在细菌细胞形成之前以及随后在胚胎和母体细菌中的持续点状细胞质定位与细菌在这一共生中起着多重作用,包括氨基酸转运和可能的营养感应。

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