Chromosome‐level genome and population genomic analysis provide insights into the evolution and environmental adaptation of Jinjiang oysterCrassostrea ariakensis

生物 群体基因组学 人口 进化生物学 有效人口规模 局部适应 基因组 牡蛎 基因流 遗传变异 生态学 遗传学 基因组学 基因 社会学 人口学
作者
Biao Wu,Xi Chen,Mengjun Yu,Jianfeng Ren,Jie Hu,Changwei Shao,Liqing Zhou,Xiujun Sun,Tao Yu,Yanxin Zheng,Yan Wang,Zhenyuan Wang,He Zhang,Guangyi Fan,Zhihong Liu
出处
期刊:Molecular Ecology Resources [Wiley]
卷期号:22 (4): 1529-1544 被引量:36
标识
DOI:10.1111/1755-0998.13556
摘要

The Jinjiang oyster Crassostrea ariakensis, naturally distributing in estuarine regions with low salinity, is an important economic and ecological species in China. However, studies on its genomics and population genetics remain lacking. Here, we assembled the chromosome-level genome of a female C. ariakensis and re-sequenced 261 individuals from five locations in China representing three typical habitats. The C. ariakensis genome was 662.9 Mb with contig N50 length of 5.9 Mb using PacBio HiFi-CCS long reads, and 99.83% sequences were anchored onto 10 pseudochromosomes using Hi-C data. A total of 26,354 protein-coding genes were predicted. We identified three significantly expanded gene families which are closely associated with osmotic pressure regulation, including CDO, SLC13 and SDR. Population structure analysis revealed that the C. ariakensis from five locations were clustered into three typical groups (northern, southern and Shanghai) (K = 3) and their phylogenetic relationship was consistently correlated to their geographical distribution. Furtherly, the differentiation between northern and southern groups was clearly demonstrated by estimated population differentiation coefficient (FST = 0.1154), and the PSMC distribution showed the two groups of effective population size separated at 0.1 Ma. Meanwhile gene flow from southern to Shanghai was detected. Selective sweep analysis between northern and southern group detected genes associated with heat response and salinity adaptation. This study could provide valuable genomic resources and information for further research on the molecular evolution, genetic breeding, biological function and evolutionary adaptation of C. ariakensis.
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