Uncovering thousands of endosymbiont DNA transfer events within single cockroach genomes

成果类型:
Article
署名作者:
Ewart, Kyle M.; Adams, Maxim W. D.; Zhang, Zhuzhi; Baker, Louise; Fujiwara, Kokuto; Hayashi, Yoshinobu; Featherstone, Leo A.; Lu, Oscar Lo; Helbling, Jil E. S.; Moral, Maya; Maekawa, Kiyoto; Rose, Harley; Jex, Aaron; Ho, Simon Y. W.; Lo, Nathan
署名单位:
University of Sydney; University of Edinburgh; UK Research & Innovation (UKRI); University of Edinburgh; Biotechnology and Biological Sciences Research Council (BBSRC); Roslin Institute; Walter & Eliza Hall Institute; National Institute of Advanced Industrial Science & Technology (AIST); Keio University; University of New South Wales Sydney; Kirby Institute; University of New South Wales Sydney; University of Toyama; University of Melbourne
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2604240123
发表日期:
2026-06-23
页码:
e2604240123
关键词:
Blattabacterium cuenoti Blattodea endosymbiosis horizontal gene transfer insect genomics horizontal gene-transfer
摘要:
Horizontal gene transfer (HGT) between organisms can be a valuable source of genetic variation and innovation. Research on HGT in eukaryotes has hitherto focused on transfers of coding sequences; insertions of noncoding DNA remain poorly understood. Here, we investigated HGT in cockroaches, which have a long-standing evolutionary relationship with the transovarially transmitted endosymbiont Blattabacterium cuenoti, making them a valuable system for assessing the potential scale of HGT. We aligned 150-bp genomic fragments of B. cuenoti to 23 cockroach and termite genomes, including 8 genomes newly sequenced, and revealed pervasive endosymbiont DNA transfer events. Australian panesthiine and geoscapheine cockroaches were consistently found to harbor >3000 HGT inserts, more than an order of magnitude higher than the previous maximum estimate in other eukaryotes, excluding rotifers. Some inserts appear to have persisted for >= 28.7 million years in this group, which may reflect functional roles. We identified numerous chimeric inserts comprising up to nine short segments from different locations in the B. cuenoti genome. Our findings indicate pervasive HGT in eukaryote genomes, with potentially far-reaching implications for adaptation and speciation.
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