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基因缺失、平行进化和高表达赋予了专门清洁行为的适应能力。

Gene losses, parallel evolution and heightened expression confer adaptations to dedicated cleaning behaviour.

机构信息

Swire Institute of Marine Science, School of Biological Sciences, The University of Hong Kong, Pokfulam, Hong Kong SAR, China.

MARE - Marine and Environmental Sciences Centre & ARNET - Aquatic Research Network, Laboratório Marítimo da Guia, Faculdade de Ciências, Universidade de Lisboa, Av. Nossa Senhora Do Cabo, 939, Cascais, 2750-374, Portugal.

出版信息

BMC Biol. 2023 Aug 23;21(1):180. doi: 10.1186/s12915-023-01682-3.

Abstract

BACKGROUND

Cleaning symbioses are captivating interspecific interactions in which a cleaner fish removes ectoparasites from its client, contributing to the health and diversity of natural fish communities and aquaculture systems. However, the genetic signatures underlying this specialized behaviour remain poorly explored. To shed light on this, we generated a high-quality chromosome-scale genome of the bluestreak cleaner wrasse Labroides dimidiatus, a dedicated cleaner with cleaning as primary feeding mechanism throughout its life.

RESULTS

Compared with facultative and non-cleaner wrasses, L. dimidiatus was found with notable contractions in olfactory receptors implying their limited importance in dedicated cleaning. Instead, given its distinct tactile pre-conflict strategies, L. dimidiatus may rely more heavily on touch sensory perception, with heightened gene expression in the brain in anticipation of cleaning. Additionally, a reduction in NLR family CARD domain-containing protein 3 might enhance innate immunity of L. dimidiatus, probably assisting to reduce the impacts from parasite infections. In addition, convergent substitutions for a taste receptor and bone development genes across cleaners (L. dimidiatus and facultative cleaners) may provide them with evolved food discrimination abilities and jaw morphology that differentiate them from non-cleaners. Moreover, L. dimidiatus may exhibit specialized neural signal transductions for cleaning, as evidenced by positive selection in genes related to the glutamatergic synapse pathway. Interestingly, numerous glutamate receptors also demonstrated significantly higher expression in L. dimidiatus not engaged in cleaning, as compared to those involved in cleaning. Besides, apparent contractions in L. dimidiatus for protocadherins, which are responsible for neuronal development, may further promote specialized neural signal transductions in this species.

CONCLUSIONS

This study reveals that L. dimidiatus harbours substantial losses in specific gene families, convergent evolutions across cleaners and a large-scale high gene expression in preparation for cleaning, allowing for adaptation to the dedicated cleaning behaviour.

摘要

背景

清洁共生是一种引人入胜的种间相互作用,其中清洁鱼会从客户身上清除外寄生虫,这有助于自然鱼类群落和水产养殖系统的健康和多样性。然而,这种专门行为的遗传特征仍未得到充分探索。为了阐明这一点,我们生成了一种高质量的蓝带清洁濑鱼(Labroides dimidiatus)染色体级基因组,这是一种专职清洁鱼,其一生主要以清洁为食。

结果

与兼性和非清洁濑鱼相比,蓝带清洁濑鱼的嗅觉受体明显收缩,这表明它们在专职清洁中的重要性有限。相反,由于其独特的触觉前冲突策略,蓝带清洁濑鱼可能更依赖于触觉感知,在清洁前大脑中的基因表达水平更高。此外,NLR 家族 CARD 结构域蛋白 3 的减少可能增强了蓝带清洁濑鱼的先天免疫能力,可能有助于减轻寄生虫感染的影响。此外,清洁鱼(蓝带清洁濑鱼和兼性清洁鱼)中味觉受体和骨骼发育基因的趋同进化可能为它们提供了进化的食物辨别能力和区分它们与非清洁鱼的颚形态。此外,蓝带清洁濑鱼可能表现出专门的清洁神经信号转导,这一点可以从与谷氨酰胺能突触途径相关的基因的正选择中得到证明。有趣的是,许多谷氨酸受体在未参与清洁的蓝带清洁濑鱼中表达水平也显著高于参与清洁的蓝带清洁濑鱼。此外,蓝带清洁濑鱼的原钙黏蛋白明显收缩,原钙黏蛋白负责神经元发育,这可能进一步促进了该物种的专门神经信号转导。

结论

本研究表明,蓝带清洁濑鱼在特定基因家族中存在大量缺失,在清洁鱼中存在趋同进化,并且在准备清洁时表现出大规模的高基因表达,这使其能够适应专职清洁行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67ea/10463495/12c1f001635d/12915_2023_1682_Fig1_HTML.jpg

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