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首页> 外文期刊>Insect Molecular Biology >Genomic evidence for complementary purine metabolism in the pea aphid, Acyrthosiphon pisum, and its symbiotic bacterium Buchnera aphidicola. (Special Issue: The aphid genome.)
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Genomic evidence for complementary purine metabolism in the pea aphid, Acyrthosiphon pisum, and its symbiotic bacterium Buchnera aphidicola. (Special Issue: The aphid genome.)

机译:豌豆蚜虫(Acyrthosiphon pisum)和其共生细菌蚜虫(Buchnera aphidicola)互补嘌呤代谢的基因组证据。 (特刊:蚜虫基因组。)

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摘要

The purine salvage pathway recycles purines to nucleotides, promoting efficient utilization of purine nucleotides. Exceptionally among animals with completely sequenced genomes, the pea aphid lacks key purine recycling genes that code for purine nucleoside phosphorylase and adenosine deaminase, indicating that the aphid can neither metabolize nucleosides to the corresponding purines, nor adenosine to inosine. Purine metabolism genes in the symbiotic bacterium Buchnera complement aphid genes, and Buchnera can meet its nucleotide requirement from aphid-derived guanosine. Buchnera demand for nucleosides may have relaxed the selection for purine recycling in the aphid, leading to the loss of key aphid purine salvage genes. Further, the coupled purine metabolism of aphid and Buchnera could contribute to the dependence of the pea aphid on this symbiosis.
机译:嘌呤挽救途径将嘌呤再循环至核苷酸,从而促进了嘌呤核苷酸的有效利用。在具有完全测序基因组的动物中,豌豆蚜虫缺乏编码嘌呤核苷磷酸化酶和腺苷脱氨酶的关键嘌呤回收基因,这表明蚜虫既不能将核苷代谢成相应的嘌呤,也不能将腺苷代谢成肌苷。共生细菌 Buchnera 中的嘌呤代谢基因与蚜虫基因互补,而 Buchnera 可以满足蚜虫衍生的鸟苷中核苷酸的需要。布希纳拉对核苷的需求可能已经放宽了蚜虫对嘌呤回收的选择,导致重要的蚜虫嘌呤挽救基因丢失。此外,蚜虫和 Buchnera 的嘌呤代谢耦合可能有助于豌豆蚜虫对这种共生的依赖性。

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