昆虫学报 ›› 2024, Vol. 67 ›› Issue (11): 1439-1450.doi: 10.16380/j.kcxb.2024.11.001

• 研究论文 •    下一篇

真菌源水平转移的载脂蛋白D基因影响二斑叶螨的寿命与生殖

陈磊, 余心悦, 郭丽雪, 陈煜炜, 邴孝利, 胡琪琪, 孙荆涛, 洪晓月*   

  1. (南京农业大学植物保护学院昆虫学系, 南京 210095)
  • 出版日期:2024-11-20 发布日期:2024-12-19

Apolipoprotein D genes horizontally transferred from fungi affect the longevity and reproduction of Tetranychus urticae (Acari: Tetranychidae)

CHEN Lei, YU Xin-Yue, GUO Li-Xue, CHEN Yu-Wei, BING Xiao-Li, HU Qi-Qi, SUN Jing-Tao, HONG Xiao-Yue*   

  1.  (Department of Entomology, College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China)
  • Online:2024-11-20 Published:2024-12-19

摘要: 【目的】载脂蛋白D(apolipoprotein D, ApoD)是一类参与代谢、组织发育、免疫和抗氧化等多项生物功能的胞外蛋白,是抗衰老和延长寿命的重要分子基础。本研究旨在解析ApoD基因在叶螨基因组中的复制与扩张程度及其系统发育,探讨多功能ApoD基因对二斑叶螨Tetranychus urticae的寿命和生殖的影响。【方法】联合使用BLASTP, HMMER, TBLASTN和GEMOMA鉴定番茄刺皮瘿螨Aculops lycopersici、截形叶螨Tetranychus truncatus和二斑叶螨基因组中ApoD家族基因;采用最大似然法构建细菌、真菌、植物、哺乳动物、昆虫、瘿螨和叶螨的ApoD系统发育树;依据二斑叶螨在不同发育阶段(卵、若螨、1日龄雌成螨和5日龄雌成螨)和不同寄主植物(菜豆、拟南芥Arabidopsis thaliana、番茄、茄子、棉花和黄瓜)上若螨或成螨的ApoD家族基因表达谱,挑选出ApoDR2, ApoD9, ApoD17和ApoD24 4个基因,采用dsRNA浸泡法对新羽化的二斑叶螨雌成螨进行ApoDR2, ApoD9, ApoD17和ApoD24的RNAi,并检测10 d内的存活率和单雌日均产卵量。【结果】二斑叶螨基因组中鉴定到68个ApoD基因,近缘种截形叶螨有33个ApoD基因,番茄刺皮瘿螨仅有1个ApoD基因,叶螨科之外的生物普遍拥有1~10个ApoD基因。系统发育分析结果表明,叶螨的ApoD家族主要分为三大簇,分别与昆虫、瘿螨和真菌的脂质转运蛋白基因聚类;叶螨中剧烈扩张的ApoD支系与真菌ApoD基因存在多个特有的一致性位点,且最大似然树显示亲缘关系近。大部分ApoD基因在二斑叶螨若螨和成螨期高水平表达,在二斑叶螨取食不同寄主植物时呈现多样的表达调控模式。与对照相比,沉默ApoDR2和ApoD9对二斑叶螨的适合度无显著影响,沉默ApoD17和ApoD24显著降低了二斑叶螨10 d内存活率和单雌日均产卵量,其中沉默ApoD17对二斑叶螨的存活率和单雌日产卵量影响较大。【结论】推测真菌源水平转移后获得的ApoD基因在叶螨基因组中剧烈扩张,并且对二斑叶螨的寿命和生殖产生了不同程度的影响,但是其在叶螨中的多功能性有待进一步研究。

关键词: 二斑叶螨, 载脂蛋白D, 水平转移, 基因复制与扩张, 寿命, 生殖

Abstract:  【Aim】 Apolipoprotein D (ApoD) is an extracellular protein involved in various biological functions, including metabolism, tissue development, immunity and antioxidation. It serves as a crucial molecular basis for anti-aging and lifespan extension. This study aims to elucidate the duplication and expansion extent, and phylogenesis of ApoD genes in the genomes of spider mites and explore the impact of multifunctional ApoD genes on the longevity and reproduction of Tetranychus urticae.【Methods】 A combined approach utilizing BLASTP, HMMER, TBLASTN and GEMOMA was employed to identify the members of the ApoD gene family in the genomes of Aculops lycopersici, Tetranychus truncatus and T. urticae. The phylogenetic tree of ApoDs from bacteria, fungi, plants, mammals, insects, gall mites and spider mites was constructed with the maximum likelihood method. Based on the expression profiles of the ApoD family genes of T. urticae in different developmental stages (egg, nymph, 1-day-old female adult and 5-day-old female adult) and nymphs or adults on different host plants (bean, Arabidopsis thaliana, tomato, eggplant, cotton and cucumber), four genes (ApoDR2, ApoD9, ApoD17 and ApoD24) were selected for further RNAi. The RNAi of ApoDR2, ApoD9, ApoD17, and ApoD24 in the newly molted adult females was conducted through immersion in dsRNA, and the survival rate and the daily average number of eggs laid per female within 10 d were monitored. 【Results】 A total of 68 ApoD genes in the T. urticae genome were identified. There were 33 of 68 ApoD genes in the closely related T. truncatus and one in A. lycopersici. Outside the Tetranychidae family, organisms typically possessed 1-10 ApoD genes. Phylogenetic analysis result revealed that the ApoD gene family in spider mites clustered into three major clades, aligning with lipid transport protein genes of insects, gall mites and fungi, respectively. The expanded ApoD lineage of spider mites exhibited multiple unique conserved sites shared with fungal ApoD genes, and the maximum likelihood tree suggested a close evolutionary relationship between them. Most of these ApoD genes exhibited high expression levels in nymph and adult and displayed diverse expression regulation patterns in T. urticae fed on different host plants. The silencing of ApoDR2 and ApoD9 showed no significant impact on the fitness of T. urticae, while the silencing of ApoD17 and ApoD24 significantly reduced the survival rate and daily average number of eggs laid per female of T. urticae, with the silencing of ApoD17 exhibiting greater effects on the survival rate and daily average number of eggs laid per female withing 10 d compared with the control. 【Conclusion】 The ApoD genes, likely acquired from fungal horizontal transfer, underwent substantial expansion in the genomes of spider mites, showing varying degrees of impacts on the longevity and reproduction of T. urticae. However, the multifunctionality of ApoD genes in spider mites requires further investigation.

Key words: Tetranychus urticae, apolipoprotein D, horizontal transfer, gene duplication and expansion, longevity, reproduction