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豌豆蚜-共生菌体系中的 B 族维生素营养。

B-vitamin nutrition in the pea aphid-Buchnera symbiosis.

机构信息

Department of Entomology, Cornell University, Ithaca, NY 14853, USA.

Institute of General Microbiology, Christian-Albrechts University Kiel, Germany.

出版信息

J Insect Physiol. 2020 Oct;126:104092. doi: 10.1016/j.jinsphys.2020.104092. Epub 2020 Aug 4.

Abstract

Various insects that utilize vitamin-deficient diets derive a supplementary supply of these micronutrients from their symbiotic microorganisms. Here, we tested the inference from genome annotation that the symbiotic bacterium Buchnera aphidicola in the pea aphid Acyrthosiphon pisum provides the insect with vitamins B and B but no other B-vitamins. Contrary to expectation, aphid survival over five days of larval development on artificial diets individually lacking each B-vitamin not synthesized by Buchnera was not significantly reduced, despite significantly lower carcass B, B, B and B concentrations in the aphids on diets lacking each of these B-vitamins than on the vitamin-complete diet. Aphid survival was, however, significantly reduced on diet containing low concentrations (≤0.2 mM) or no pantothenate (B). Complementary transcriptome analysis revealed low abundance of the sense-transcript, but high abundance of the antisense transcript, of the Buchnera gene panC encoding the enzyme mediating the terminal reaction in pantothenate synthesis. We hypothesize that metabolic constraints or antisense transcripts may reduce Buchnera-mediated production of pantothenate, resulting in poor aphid performance on pantothenate-free diets. The discrepancy between predictions from genome data and empirical data illustrates the need for physiological study to test functional inferences made from genome annotations.

摘要

各种利用维生素缺乏饮食的昆虫从其共生微生物中获得这些微量营养素的补充供应。在这里,我们根据基因组注释测试了这样一个推断,即豌豆蚜 Acyrthosiphon pisum 中的共生细菌 Buchnera aphidicola 为昆虫提供了维生素 B 和 B,但不提供其他 B 族维生素。出乎意料的是,尽管在缺乏每种 B 族维生素的人工饮食中,蚜虫的尸体 B、B、B 和 B 浓度明显低于含完整维生素的饮食,但在缺乏 Buchnera 合成的每种 B 族维生素的饮食中,蚜虫在五天的幼虫发育过程中的存活率并没有明显降低。然而,当饮食中含有低浓度(≤0.2 mM)或不含泛酸盐(B)时,蚜虫的存活率显著降低。互补转录组分析显示,编码参与泛酸合成终末反应的酶的 Buchnera 基因 panC 的有意义转录物丰度较低,但反义转录物丰度较高。我们假设代谢限制或反义转录物可能会降低 Buchnera 介导的泛酸产生,从而导致蚜虫在缺乏泛酸盐的饮食中表现不佳。基因组数据预测与经验数据之间的差异说明了需要进行生理学研究来测试从基因组注释中得出的功能推断。

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