Guangdong Provincial Key Laboratory of Animal Molecular Design and Precise Breeding, School of Life Science and Engineering, Foshan University, Foshan 528225, China.
State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangxi University, Nanning 530005, China.
Gigascience. 2022 Dec 28;12. doi: 10.1093/gigascience/giad063. Epub 2023 Aug 17.
The swamp buffalo (Bubalus bubalis carabanesis) is an economically important livestock supplying milk, meat, leather, and draft power. Several female buffalo genomes have been available, but the lack of high-quality male genomes hinders studies on chromosome evolution, especially Y, as well as meiotic recombination.
Here, a chromosome-level genome with a contig N50 of 72.2 Mb and a fine-scale recombination map of male buffalo were reported. We found that transposable elements (TEs) and structural variants (SVs) may contribute to buffalo evolution by influencing adjacent gene expression. We further found that the pseudoautosomal region (PAR) of the Y chromosome is subject to stronger purification selection. The meiotic recombination map showed that there were 2 obvious recombination hotspots on chromosome 8, and the genes around them were mainly related to tooth development, which may have helped to enhance the adaption of buffalo to inferior feed. Among several genomic features, TE density has the strongest correlation with recombination rates. Moreover, the TE subfamily, SINE/tRNA, is likely to play a role in driving recombination into SVs.
The male genome and sperm sequencing will facilitate the understanding of the buffalo genomic evolution and functional research.
沼泽水牛(Bubalus bubalis carabanesis)是一种具有重要经济价值的家畜,可提供牛奶、肉类、皮革和役力。已经有几个雌性水牛基因组可用,但缺乏高质量的雄性基因组阻碍了对染色体进化的研究,特别是对 Y 染色体和减数分裂重组的研究。
本文报道了一个染色体水平的基因组,其重叠群 N50 为 72.2Mb,以及雄性水牛的精细重组图谱。我们发现转座元件(TEs)和结构变异(SVs)可能通过影响邻近基因的表达来促进水牛的进化。我们进一步发现,Y 染色体的假常染色体区(PAR)受到更强的净化选择。减数分裂重组图谱显示,8 号染色体上有 2 个明显的重组热点,其周围的基因主要与牙齿发育有关,这可能有助于增强水牛对劣质饲料的适应能力。在几种基因组特征中,TE 密度与重组率的相关性最强。此外,SINE/tRNA 这个 TE 亚家族可能在将重组驱动到 SVs 中发挥作用。
雄性基因组和精子测序将有助于理解水牛的基因组进化和功能研究。