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豌豆蚜(Acyrthosiphon pisum (Harris))对鞣酸的转录反应和 ABC 转运蛋白的功能分析。

Transcriptional response and functional analysis of ATP-binding cassette transporters to tannic acid in pea aphid, Acyrthosiphon pisum (Harris).

机构信息

Biocontrol Engineering Laboratory of Crop Diseases and Pests of Gansu Province, College of Plant Protection, Gansu Agricultural University, No. 1 Yingmen Village, Anning District, Lanzhou 730070, Gansu Province, China.

Biocontrol Engineering Laboratory of Crop Diseases and Pests of Gansu Province, College of Plant Protection, Gansu Agricultural University, No. 1 Yingmen Village, Anning District, Lanzhou 730070, Gansu Province, China.

出版信息

Int J Biol Macromol. 2022 Nov 1;220:250-257. doi: 10.1016/j.ijbiomac.2022.08.091. Epub 2022 Aug 16.

Abstract

Although tannins are widely distributed in broad beans and alfalfa, the pea aphid (Acyrthosiphon pisum) can still destroy them. The ATP binding cassette (ABC) transporters participate in the metabolism of plant secondary metabolites and pesticides in insects. However, whether ABC transporter genes play a role in the metabolism of tannins in the pea aphid is unclear. Here, we found that verapamil (an ABC transporter inhibitor) significantly increased the mortality of tannic acid to pea aphid, which indicated that ABC transporter gene was related to the metabolism of tannic acid by pea aphid. Then, we identified 54 putative ABC transporter genes from the genome database of A. pisum. These genes were divided into eight subfamilies, ApABCA to ApABCH, of which subfamily G has the largest number of genes with 19, followed by the subfamily C with 14. RT-qPCR results show that the expression levels of ApABCA2, ApABCC7, ApABCG2, and ApABCG3 were highly expressed in the first instar, while those of ApABCA3, ApABCG6, ApABCG7, ApABCH3, and ApABCH4 were highly expressed in adults. Furthermore, transcription levels of many ABC transporter genes were induced by tannic acid. Especially, ApABCG17 and ApABCH2 were obviously induced after being exposed to tannic acid. Meanwhile, knockdown of ApABCG17 by RNA interference resulted in increased sensitivity of pea aphid to tannic acid. These results suggest that ApABCG17 may be involved in tannic acid metabolism in pea aphid. This study will help us to understand the mechanism of tannic acid metabolism in pea aphid, and provides a basis for further research on the physiological function of ABC transporter genes in pea aphid.

摘要

尽管单宁广泛存在于蚕豆和紫花苜蓿中,但豌豆蚜(Acyrthosiphon pisum)仍然可以破坏它们。ATP 结合盒(ABC)转运蛋白参与昆虫中植物次生代谢物和农药的代谢。然而,ABC 转运蛋白基因是否在豌豆蚜单宁代谢中发挥作用尚不清楚。在这里,我们发现维拉帕米(一种 ABC 转运蛋白抑制剂)显著增加了单宁酸对豌豆蚜的致死率,这表明 ABC 转运蛋白基因与豌豆蚜单宁酸的代谢有关。然后,我们从豌豆蚜的基因组数据库中鉴定出 54 个推定的 ABC 转运蛋白基因。这些基因分为八个亚家族,ApABCA 到 ApABCH,其中亚家族 G 拥有最多的基因,有 19 个,其次是亚家族 C,有 14 个。RT-qPCR 结果显示,ApABCA2、ApABCC7、ApABCG2 和 ApABCG3 的表达水平在一龄期高度表达,而 ApABCA3、ApABCG6、ApABCG7、ApABCH3 和 ApABCH4 的表达水平在成虫期高度表达。此外,许多 ABC 转运蛋白基因的转录水平受到单宁酸的诱导。特别是,ApABCG17 和 ApABCH2 在暴露于单宁酸后明显被诱导。同时,RNA 干扰使 ApABCG17 沉默导致豌豆蚜对单宁酸的敏感性增加。这些结果表明,ApABCG17 可能参与了豌豆蚜中单宁酸的代谢。这项研究将有助于我们了解单宁酸在豌豆蚜中的代谢机制,并为进一步研究 ABC 转运蛋白基因在豌豆蚜中的生理功能提供依据。

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