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感知全身的挥发性物质:榕小蜂中地理和组织特异性嗅觉受体的表达

Sensing volatiles throughout the body: geographic- and tissue-specific olfactory receptor expression in the fig wasp.

作者信息

Krishnan Sushma, Karpe Snehal Dilip, Kumar Hithesh, Nongbri Lucy B, Venkateswaran Vignesh, Sowdhamini Ramanathan, Grosse-Wilde Ewald, Hansson Bill S, Borges Renee M

机构信息

Centre for Ecological Sciences, Indian Institute of Science, Bangalore, Karnataka, India.

National Centre for Biological Sciences, Tata Institute for Fundamental Research, GKVK Campus, Bangalore, Karnataka, India.

出版信息

Insect Sci. 2025 Jun;32(3):861-880. doi: 10.1111/1744-7917.13441. Epub 2024 Aug 25.

Abstract

An essential adaptive strategy in insects is the evolution of olfactory receptors (ORs) to recognize important volatile environmental chemical cues. Our model species, Ceratosolen fusciceps, a specialist wasp pollinator of Ficus racemosa, likely possesses an OR repertoire that allows it to distinguish fig-specific volatiles in highly variable environments. Using a newly assembled genome-guided transcriptome, we annotated 63 ORs in the species and reconstructed the phylogeny of Ceratosolen ORs in conjunction with other hymenopteran species. Expression analysis showed that though ORs were mainly expressed in the female antennae, 20% were also expressed in nonantennal tissues such as the head, thorax, abdomen, legs, wings, and ovipositor. Specific upregulated expression was observed in OR30C in the head and OR60C in the wings. We identified OR expression from all major body parts of female C. fusciceps, suggesting novel roles of ORs throughout the body. Further examination of the OR expression of C. fusciceps in widely separated geographical locations, that is, South (urban) and Northeast (rural) India, revealed distinct OR expression levels in different locations. This discrepancy likely parallels the observed variation in fig volatiles between these regions and provides new insights into the evolution of insect ORs and their expression across geographical locations and tissues.

摘要

昆虫的一种基本适应性策略是进化出嗅觉受体(ORs),以识别重要的挥发性环境化学信号。我们的模式物种——榕小蜂(Ceratosolen fusciceps),是榕树(Ficus racemosa)的专一性传粉黄蜂,可能拥有一套嗅觉受体库,使其能够在高度多变的环境中区分榕树特有的挥发物。利用新组装的基因组引导转录组,我们注释了该物种中的63种嗅觉受体,并结合其他膜翅目物种重建了榕小蜂嗅觉受体的系统发育。表达分析表明,虽然嗅觉受体主要在雌蜂触角中表达,但20%也在非触角组织中表达,如头部、胸部、腹部、腿部、翅膀和产卵器。在头部的OR30C和翅膀的OR60C中观察到特异性上调表达。我们鉴定了雌性榕小蜂所有主要身体部位的嗅觉受体表达情况,这表明嗅觉受体在全身具有新的功能。进一步研究榕小蜂在印度南部(城市)和东北部(农村)等地理距离较远地区的嗅觉受体表达,发现不同地区的嗅觉受体表达水平存在明显差异。这种差异可能与这些地区观察到的榕树挥发物变化情况相似,并为昆虫嗅觉受体的进化及其在不同地理位置和组织中的表达提供了新见解。

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