Abalone genomics reveals an ancient asymmetry axis and the multifunctionality of the mantle

Abstract Gastropod diversification represents one of the most spectacular evolutionary radiations, underpinned by a fundamentally asymmetric body plan and diverse pigmentation patterns. To understand the genetic underpinnings of these cardinal traits, we constructed a chromosome-level genome assembly for the rainbow abalone, Haliotis iris . Integrating systematic genomics, histoembryology, and molecular assays, we uncover an ancient regulatory axis, conserved for over 544 million years, in which the long non-coding RNA lncRNA1 functions as a competing endogenous RNA to shield pitx transcripts from miRNA-mediated degradation, thereby driving the establishment of asymmetric body patterning, including the mantle. Furthermore, we identify a wnt-mitf-tyr cascade as the driver of melanogenesis and demonstrate that the mantle is the primary site of melanin synthesis. Concurrently, we reveal the mantle as a multifunctional organ possessing mechanosensory capabilities. These findings elucidate the ancient genetic toolkit governing trait evolution in gastropods. Teaser A deeply conserved RNA switch directs gastropod body plans and reveals the mantle’s hidden talents.

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Publication Details

Journal
Science Advances
Published
2026-09-04
DOI
https://doi.org/10.1126/sciadv.aeb8392
Primary Topic
Developmental Biology and Gene Regulation
Type
article
Field-Weighted Citation Impact
0.00

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article

Abalone genomics reveals an ancient asymmetry axis and the multifunctionality of the mantle

Yaqiong Liu, Wenshi Xue, Chenglong Zhu, Ximing Guo et al.
Science Advances
Developmental Biology and Gene Regulation
article

Abalone genomics reveals an ancient asymmetry axis and the multifunctionality of the mantle

Yaqiong Liu, Wenshi Xue, Chenglong Zhu, Ximing Guo, Mengqiang Yuan, T. Chen, Xiaotong Wang, Peidong Xin, Lin Li, Qiang Qiu, Lei Wei, Yijing Han, Zhiyong Yue, Xuekai Zhang, Chunhui Li, Baoyu Huang, Wenchao Yu, Chenguang Feng, Meiwei Zhang, Siyi Li, Wenjie Xu, Deyang Tian, Jiyan Qi, Peng Zhang, Kun Wang
article en

Abstract

Abstract Gastropod diversification represents one of the most spectacular evolutionary radiations, underpinned by a fundamentally asymmetric body plan and diverse pigmentation patterns. To understand the genetic underpinnings of these cardinal traits, we constructed a chromosome-level genome assembly for the rainbow abalone, Haliotis iris . Integrating systematic genomics, histoembryology, and molecular assays, we uncover an ancient regulatory axis, conserved for over 544 million years, in which the long non-coding RNA lncRNA1 functions as a competing endogenous RNA to shield pitx transcripts from miRNA-mediated degradation, thereby driving the establishment of asymmetric body patterning, including the mantle. Furthermore, we identify a wnt-mitf-tyr cascade as the driver of melanogenesis and demonstrate that the mantle is the primary site of melanin synthesis. Concurrently, we reveal the mantle as a multifunctional organ possessing mechanosensory capabilities. These findings elucidate the ancient genetic toolkit governing trait evolution in gastropods. Teaser A deeply conserved RNA switch directs gastropod body plans and reveals the mantle’s hidden talents.

Science AdvancesVol. 12(36)
Rutgers, The State University of New Jersey (US), Northwestern Polytechnical University (CN), Xi'an International Studies University (CN), Ludong University (CN), Aquatic Systems (United States) (US), China Agricultural University (CN)
Northwestern University, National Natural Science Foundation of China, Northwestern Polytechnical University, Key Technology Research and Development Program of Shandong, National Key Research and Development Program of China, Fundamental Research Funds for the Central Universities, Modern Agricultural Technology Industry System of Shandong province
Openalex Percentile: Top 98%
Developmental Biology and Gene Regulation
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