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Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves

Bivalves are species-rich mollusks with prominent protective roles in coastal ecosystems. Across these ancient lineages, colony-founding larvae anchor themselves either by byssus production or by cemented attachment. The latter mode of sessile life is strongly molded by left-right shell asymmetry du...

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Autores principales: Zhang, Yang, Mao, Fan, Xiao, Shu, Yu, Haiyan, Xiang, Zhiming, Xu, Fei, Li, Jun, Wang, Lili, Xiong, Yuanyan, Chen, Mengqiu, Bao, Yongbo, Deng, Yuewen, Huo, Quan, Zhang, Lvping, Liu, Wenguang, Li, Xuming, Ma, Haitao, Zhang, Yuehuan, Mu, Xiyu, Liu, Min, Zheng, Hongkun, Wong, Nai-Kei, Yu, Ziniu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10225672/
https://www.ncbi.nlm.nih.gov/pubmed/35091095
http://dx.doi.org/10.1016/j.gpb.2021.10.005
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author Zhang, Yang
Mao, Fan
Xiao, Shu
Yu, Haiyan
Xiang, Zhiming
Xu, Fei
Li, Jun
Wang, Lili
Xiong, Yuanyan
Chen, Mengqiu
Bao, Yongbo
Deng, Yuewen
Huo, Quan
Zhang, Lvping
Liu, Wenguang
Li, Xuming
Ma, Haitao
Zhang, Yuehuan
Mu, Xiyu
Liu, Min
Zheng, Hongkun
Wong, Nai-Kei
Yu, Ziniu
author_facet Zhang, Yang
Mao, Fan
Xiao, Shu
Yu, Haiyan
Xiang, Zhiming
Xu, Fei
Li, Jun
Wang, Lili
Xiong, Yuanyan
Chen, Mengqiu
Bao, Yongbo
Deng, Yuewen
Huo, Quan
Zhang, Lvping
Liu, Wenguang
Li, Xuming
Ma, Haitao
Zhang, Yuehuan
Mu, Xiyu
Liu, Min
Zheng, Hongkun
Wong, Nai-Kei
Yu, Ziniu
author_sort Zhang, Yang
collection PubMed
description Bivalves are species-rich mollusks with prominent protective roles in coastal ecosystems. Across these ancient lineages, colony-founding larvae anchor themselves either by byssus production or by cemented attachment. The latter mode of sessile life is strongly molded by left-right shell asymmetry during larval development of Ostreoida oysters such as Crassostrea hongkongensis. Here, we sequenced the genome of C. hongkongensis in high resolution and compared it to reference bivalve genomes to unveil genomic determinants driving cemented attachment and shell asymmetry. Importantly, loss of the homeobox gene Antennapedia (Antp) and broad expansion of lineage-specific extracellular gene families are implicated in a shift from byssal to cemented attachment in bivalves. Comparative transcriptomic analysis shows a conspicuous divergence between left-right asymmetrical C. hongkongensis and symmetrical Pinctada fucata in their expression profiles. Especially, a couple of orthologous transcription factor genes and lineage-specific shell-related gene families including that encoding tyrosinases are elevated, and may cooperatively govern asymmetrical shell formation in Ostreoida oysters.
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spelling pubmed-102256722023-05-30 Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves Zhang, Yang Mao, Fan Xiao, Shu Yu, Haiyan Xiang, Zhiming Xu, Fei Li, Jun Wang, Lili Xiong, Yuanyan Chen, Mengqiu Bao, Yongbo Deng, Yuewen Huo, Quan Zhang, Lvping Liu, Wenguang Li, Xuming Ma, Haitao Zhang, Yuehuan Mu, Xiyu Liu, Min Zheng, Hongkun Wong, Nai-Kei Yu, Ziniu Genomics Proteomics Bioinformatics Original Research Bivalves are species-rich mollusks with prominent protective roles in coastal ecosystems. Across these ancient lineages, colony-founding larvae anchor themselves either by byssus production or by cemented attachment. The latter mode of sessile life is strongly molded by left-right shell asymmetry during larval development of Ostreoida oysters such as Crassostrea hongkongensis. Here, we sequenced the genome of C. hongkongensis in high resolution and compared it to reference bivalve genomes to unveil genomic determinants driving cemented attachment and shell asymmetry. Importantly, loss of the homeobox gene Antennapedia (Antp) and broad expansion of lineage-specific extracellular gene families are implicated in a shift from byssal to cemented attachment in bivalves. Comparative transcriptomic analysis shows a conspicuous divergence between left-right asymmetrical C. hongkongensis and symmetrical Pinctada fucata in their expression profiles. Especially, a couple of orthologous transcription factor genes and lineage-specific shell-related gene families including that encoding tyrosinases are elevated, and may cooperatively govern asymmetrical shell formation in Ostreoida oysters. Elsevier 2022-12 2022-01-26 /pmc/articles/PMC10225672/ /pubmed/35091095 http://dx.doi.org/10.1016/j.gpb.2021.10.005 Text en © 2022 The Authors. Published by Elsevier B.V. and Science Press on behalf of Beijing Institute of Genomics, Chinese Academy of Sciences / China National Center for Bioinformation and Genetics Society of China. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research
Zhang, Yang
Mao, Fan
Xiao, Shu
Yu, Haiyan
Xiang, Zhiming
Xu, Fei
Li, Jun
Wang, Lili
Xiong, Yuanyan
Chen, Mengqiu
Bao, Yongbo
Deng, Yuewen
Huo, Quan
Zhang, Lvping
Liu, Wenguang
Li, Xuming
Ma, Haitao
Zhang, Yuehuan
Mu, Xiyu
Liu, Min
Zheng, Hongkun
Wong, Nai-Kei
Yu, Ziniu
Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves
title Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves
title_full Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves
title_fullStr Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves
title_full_unstemmed Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves
title_short Comparative Genomics Reveals Evolutionary Drivers of Sessile Life and Left-right Shell Asymmetry in Bivalves
title_sort comparative genomics reveals evolutionary drivers of sessile life and left-right shell asymmetry in bivalves
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10225672/
https://www.ncbi.nlm.nih.gov/pubmed/35091095
http://dx.doi.org/10.1016/j.gpb.2021.10.005
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