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首页> 外文期刊>EvoDevo >Further evidence that mechanisms of host/symbiont integration are dissimilar in the maternal versus embryonic Acyrthosiphon pisum bacteriome
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Further evidence that mechanisms of host/symbiont integration are dissimilar in the maternal versus embryonic Acyrthosiphon pisum bacteriome

机译:进一步证据表明,宿主/ Symbiont集成的机制在母体与胚胎亚氨基吡吡罗氏肌肌细菌中具有不同的方法

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Host/symbiont integration is a signature of evolutionarily ancient, obligate endosymbioses. However, little is known about the cellular and developmental mechanisms of host/symbiont integration at the molecular level. Many insects possess obligate bacterial endosymbionts that provide essential nutrients. To advance understanding of the developmental and metabolic integration of hosts and endosymbionts, we track the localization of a non-essential amino acid transporter, ApNEAAT1, across asexual embryogenesis in the aphid, Acyrthosiphon pisum. Previous work in adult bacteriomes revealed that ApNEAAT1 functions to exchange non-essential amino acids at the A. pisum/Buchnera aphidicola symbiotic interface. Driven by amino acid concentration gradients, ApNEAAT1 moves proline, serine, and alanine from A. pisum to Buchnera and cysteine from Buchnera to A. pisum. Here, we test the hypothesis that ApNEAAT1 is localized to the symbiotic interface during asexual embryogenesis. During A. pisum asexual embryogenesis, ApNEAAT1 does not localize to the symbiotic interface. We observed ApNEAAT1 localization to the maternal follicular epithelium, the germline, and, in late-stage embryos, to anterior neural structures and insect immune cells (hemocytes). We predict that ApNEAAT1 provisions non-essential amino acids to developing oocytes and embryos, as well as to the brain and related neural structures. Additionally, ApNEAAT1 may perform roles related to host immunity. Our work provides further evidence that the embryonic and adult bacteriomes of asexual A. pisum are not equivalent. Future research is needed to elucidate the developmental time point at which the bacteriome reaches maturity.
机译:Host / Symbiont集成是进化古代的签名,迫使indosymbioss。然而,关于在分子水平的宿主/ symbiont集成的细胞和发育机制很少。许多昆虫拥有迫使小细菌内核,提供必要的营养素。为了推进宿主和内酯的发育和代谢整合,我们跟踪非必需氨基酸转运蛋白,APNEAAT1的定位,蚜虫症状,Acyrthosiphon Pisum。以前的成人菌丝的工作揭示了APNEAAT1在A.Pisum / Buchnera蚜虫界面交换非必需氨基酸。由氨基酸浓度梯度驱动,APNEAAT1将来自A. PISUM的脯氨酸,丝氨酸和丙氨酸从Buchnera与Buchnera到A. Pisum的普罗克纳和半胱氨酸。在这里,我们测试APNEAAT1在既血管胚胎发生期间将APNEAAT1本地化到共生界面的假设。在A. Pisum Asexual胚胎发生期间,APNEAAT1不会定位于共生界面。我们观察到申请1本地化到母体滤泡上皮,种系,在后期胚胎,前期神经结构和昆虫免疫细胞(血细胞)。我们预测APNEAAT1向非必需的氨基酸提供给发展卵母细胞和胚胎,以及大脑和相关神经结构。此外,APNEAAT1可以进行与宿主免疫相关的角色。我们的作品提供了进一步证明无性A. Pisum的胚胎和成人菌丝不等同。需要未来的研究来阐明细菌组达到成熟的发育时间点。

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