Transcriptome mining and expression analysis of ABC transporter genes in a monophagous herbivore, Leucinodes orbonalis (Crambidae: Lepidoptera)

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Santoshkumar Singamshetty , Upasna Selvapandian , Selva Babu Selvamani , Suman Talya Chandrashekara , Jyoti Pathak , Aditi Agarwal , Venkatesan Thiruvengadam , Gandhi Gracy Ramasamy , Satya Nand Sushil , Muralimohan Kamanur , Nagesha Nara , Muthugounder Mohan
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Abstract

Insecticide resistance is a global concern and requires immediate attention to manage dreadful insect pests. One of the resistance mechanisms adopted by insects is through ATP-binding cassette (ABC) transporter proteins. These proteins rapidly transport and eliminate the insecticidal molecules across the lipid membranes (Phase III detoxification mechanism). In the present study, we investigated the potential role of ABC transporter genes in imparting insecticide resistance in field-collected insecticide resistant larvae of eggplant shoot and fruit borer (Leucinodes orbonalis; Crambidae: Lepidoptera). Dose-mortality bioassays against five insecticidal molecules revealed moderate to high levels of insecticide resistance (32.2. to 134.1-fold). Thirty-one genes encoding ABC transporter proteins were mined from the transcriptome resources of L. orbonalis. They were classified under eight sub-families (ABCA to ABCH). Phylogenetic analysis indicated ABCG is the most divergent, composed of nine genes as compared to many other insects. Transcriptome analysis of the insecticide resistant and susceptible strains of L. orbonalis revealed differential expression of 13 ABC transporter genes. The altered expression of these genes was further validated using qRT-PCR. The knockdown studies indicated the involvement of ABCD1 and ABCG2 genes in chlorantraniliprole resistance in the insecticide-resistant strain of L. orbonalis. This study unveils the additional mechanisms employed by L. orbonalis in resisting insecticide toxicity through accelerated excretion mode. These ABCD and ABCG family genes could be candidate targets in developing genome-assisted pest management strategies in the future.

Abstract Image

单食性食草动物 Leucinodes orbonalis(蟹科:鳞翅目)中 ABC 转运体基因的转录组挖掘和表达分析
杀虫剂的抗药性是一个全球关注的问题,需要立即引起重视,以控制可怕的害虫。昆虫的抗药性机制之一是通过 ATP 结合盒(ABC)转运蛋白产生的。这些蛋白能迅速通过脂质膜转运并消除杀虫分子(第三阶段解毒机制)。在本研究中,我们调查了 ABC 转运体基因在田间采集的茄子嫩梢和果实螟(Leucinodes orbonalis; Crambidae: Lepidoptera)抗杀虫剂幼虫中赋予杀虫剂抗性的潜在作用。针对五种杀虫分子的剂量-死亡率生物测定显示了中等至高水平的杀虫剂抗药性(32.2 至 134.1 倍)。从 L. orbonalis 的转录组资源中挖掘出 31 个编码 ABC 转运体蛋白的基因。它们被归入八个亚家族(ABCA 至 ABCH)。系统发育分析表明,与许多其他昆虫相比,ABCG 的差异最大,由 9 个基因组成。对 L. orbonalis 的抗杀虫剂株系和易感株系进行转录组分析后发现,13 个 ABC 转运体基因的表达存在差异。利用 qRT-PCR 技术进一步验证了这些基因表达的变化。基因敲除研究表明,ABCD1 和 ABCG2 基因参与了抗虫株 L. orbonalis 的氯酯抗性。这项研究揭示了 L. orbonalis 通过加速排泄模式抵抗杀虫剂毒性的其他机制。这些 ABCD 和 ABCG 家族基因可能是未来开发基因组辅助害虫管理策略的候选目标。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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