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一种随风传播害虫的基因组历史与全球迁徙

The genomic history and global migration of a windborne pest.

作者信息

Hu Qing-Ling, Zhuo Ji-Chong, Fang Gang-Qi, Lu Jia-Bao, Ye Yu-Xuan, Li Dan-Ting, Lou Yi-Han, Zhang Xiao-Ya, Chen Xuan, Wang Si-Liang, Wang Zhe-Chao, Zhang Yi-Xiang, Mazlan Norida, Oo San San, Thet Thet, Sharma Prem Nidhi, Jauharlina Jauharlina, Sukorini Ir Henik, Ibisate Michael T, Rahman S M Mizanur, Ansari Naved Ahmad, Chen Ai-Dong, Zhu Zeng-Rong, Heong Kong Luen, Lu Gang, Huang Hai-Jian, Li Jun-Min, Chen Jian-Ping, Zhan Shuai, Zhang Chuan-Xi

机构信息

State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-Products, Key Laboratory of Biotechnology in Plant Protection of Ministry of Agriculture and Zhejiang Province, Institute of Plant Virology, Ningbo University, Ningbo 315211, China.

Institute of Insect Science, Zhejiang University, Hangzhou 310058, China.

出版信息

Sci Adv. 2024 Apr 26;10(17):eadk3852. doi: 10.1126/sciadv.adk3852. Epub 2024 Apr 24.

Abstract

Many insect pests, including the brown planthopper (BPH), undergo windborne migration that is challenging to observe and track. It remains controversial about their migration patterns and largely unknown regarding the underlying genetic basis. By analyzing 360 whole genomes from around the globe, we clarify the genetic sources of worldwide BPHs and illuminate a landscape of BPH migration showing that East Asian populations perform closed-circuit journeys between Indochina and the Far East, while populations of Malay Archipelago and South Asia undergo one-way migration to Indochina. We further find round-trip migration accelerates population differentiation, with highly diverged regions enriching in a gene desert chromosome that is simultaneously the speciation hotspot between BPH and related species. This study not only shows the power of applying genomic approaches to demystify the migration in windborne migrants but also enhances our understanding of how seasonal movements affect speciation and evolution in insects.

摘要

许多害虫,包括褐飞虱(BPH),都会进行随风迁徙,这很难被观察和追踪。它们的迁徙模式仍存在争议,其潜在的遗传基础也大多未知。通过分析来自全球的360个全基因组,我们阐明了全球褐飞虱的遗传来源,并揭示了褐飞虱的迁徙图景,表明东亚种群在印度支那和远东之间进行闭环迁徙,而马来群岛和南亚的种群则单向迁徙至印度支那。我们进一步发现,往返迁徙加速了种群分化,高度分化的区域富集在一个基因荒漠染色体上,该染色体同时也是褐飞虱与相关物种之间的物种形成热点。这项研究不仅展示了应用基因组方法解开随风迁徙者迁徙之谜的力量,还增进了我们对季节性移动如何影响昆虫物种形成和进化的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f83d/11042747/02d78a2765ed/sciadv.adk3852-f1.jpg

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