An integrative strategy used by the aphid Uroleucon formosanum to counter host sesquiterpene lactone defense: Insights from combined genomic and transcriptomic analysis.

IF 2.9 1区 农林科学 Q1 ENTOMOLOGY
Jing-Bo Li, Li-Yun Jiang, Ge-Xia Qiao, Jing Chen
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Abstract

Insect herbivores adapt and develop strategies to counteract plant chemical defenses. The aphid Uroleucon formosanum is a serious sap-sucking pest that infests lettuces containing toxic sesquiterpene lactones (STLs). Herein, we employed a combination of genome sequencing and RNA-seq transcriptome profiling to understand the mechanisms underlying phytotoxin tolerance in U. formosanum. We generated the first chromosome-level genome assembly for U. formosanum, with a total size of 453.26 Mb and a scaffold N50 of 33.22 Mb. Comparative genomic analyses revealed an enrichment of signals for positive selection and gene family expansion in immune-related pathways. Specifically, the expanded set of heat shock protein 70 (HSP70) genes showed upregulation after treatment with lactucin, suggesting that they may play a role in the immune response against STLs. The expression of takeout-like genes and cuticle-associated genes was also significantly increased in the lactucin-treated samples. Additionally, 53 cytochrome P450 monooxygenase, 30 carboxylesterase, 19 glutathione S-transferase, 32 uridine diphosphate glycosyltransferase and 63 ATP-binding cassette (ABC) transporter genes were identified in the U. formosanum genome. CYP4C1, CYP6A13 and 7 ABC genes were strongly upregulated in response to lactucin treatment, indicating the involvement of detoxifying enzymes in the tolerance of U. formosanum to STLs. Our findings suggest that the cuticle barrier, immune response and enzyme-mediated metabolic detoxification jointly enhance the tolerance of U. formosanum to phytotoxins and promote its adaptation to host plants. This study presents a valuable genomic resource and provides insights into insect adaptation to plant chemical challenges and future technological developments for pest management.

蚜虫 Uroleucon formosanum 对抗寄主倍半萜内酯防御的综合策略:基因组和转录组联合分析的启示。
昆虫中的食草动物会适应并发展抵御植物化学防御的策略。蚜虫 Uroleucon formosanum 是一种严重的吸汁害虫,会侵染含有有毒倍半萜内酯(STL)的莴苣。在本文中,我们采用了基因组测序和 RNA-seq 转录组分析相结合的方法来了解 U. formosanum 植物毒素耐受性的基本机制。我们生成了第一个染色体组水平的福寿螺基因组,其总大小为 453.26 Mb,支架 N50 为 33.22 Mb。基因组比较分析表明,在免疫相关通路中,正选择信号和基因家族扩增信号丰富。具体来说,热休克蛋白 70(HSP70)基因扩增组在乳糖素处理后出现上调,表明它们可能在针对 STL 的免疫反应中发挥作用。在乳糖素处理过的样本中,类脱落基因和角质层相关基因的表达也显著增加。此外,在福美双基因组中还发现了 53 个细胞色素 P450 单氧化酶基因、30 个羧基酯酶基因、19 个谷胱甘肽 S 转移酶基因、32 个二磷酸尿苷糖基转移酶基因和 63 个 ATP 结合盒(ABC)转运体基因。CYP4C1、CYP6A13和7个ABC基因在乳糖素处理后强烈上调,这表明解毒酶参与了甲形虫对STL的耐受性。我们的研究结果表明,角质层屏障、免疫反应和酶介导的代谢解毒共同增强了甲形虫对植物毒素的耐受性,促进了其对寄主植物的适应。这项研究提供了宝贵的基因组资源,为昆虫适应植物化学挑战和未来害虫管理技术发展提供了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Insect Science
Insect Science 生物-昆虫学
CiteScore
7.80
自引率
5.00%
发文量
1379
审稿时长
6.0 months
期刊介绍: Insect Science is an English-language journal, which publishes original research articles dealing with all fields of research in into insects and other terrestrial arthropods. Papers in any of the following fields will be considered: ecology, behavior, biogeography, physiology, biochemistry, sociobiology, phylogeny, pest management, and exotic incursions. The emphasis of the journal is on the adaptation and evolutionary biology of insects from the molecular to the ecosystem level. Reviews, mini reviews and letters to the editor, book reviews, and information about academic activities of the society are also published.
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