A Chromosome-Level Genome Assembly of Wild Castor Provides New Insights into its Adaptive Evolution in Tropical Desert

被引:0
|
作者
Lu, Jianjun [1 ,3 ]
Pan, Cheng [1 ,4 ]
Fan, Wei [2 ]
Liu, Wanfei [2 ]
Zhao, Huayan [5 ]
Li, Donghai [1 ,3 ]
Wang, Sen [2 ]
Hu, Lianlian [1 ,3 ]
He, Bing [2 ]
Qian, Kun [2 ]
Qin, Rui [2 ]
Ruan, Jue [2 ]
Lin, Qiang [2 ]
Lu, Shiyou [5 ]
Cui, Peng [2 ]
机构
[1] Chinese Acad Sci, CAS Key Lab Plant Germplasm Enhancement & Specialt, Wuhan Bot Garden, Wuhan 430074, Peoples R China
[2] Chinese Acad Agr Sci, Guangdong Lab Lingnan Modern Agr, Genome Anal Lab, Shenzhen Branch,Agr Genom Inst Shenzhen,Minist Agr, Shenzhen 518120, Peoples R China
[3] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[4] Chinese Acad Sci, Sino Africa Joint Res Ctr, Wuhan 430074, Peoples R China
[5] Hubei Univ, Sch Life Sci, State Key Lab Biocatalysis & Enzyme Engn, Wuhan 434200, Peoples R China
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
Ricinus communis L; Adaptive evolution; Selection signature; Genetic variation; Genome assembly; ZINC-FINGER PROTEIN; DOUBLE-STRAND BREAKS; ARABIDOPSIS-THALIANA; SINGLET OXYGEN; DRAFT GENOME; SALT STRESS; DNA-REPAIR; GENE; EXPRESSION; SEQUENCE;
D O I
暂无
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Wild castor grows in the high-altitude tropical desert of the African Plateau, a region known for high ultraviolet radiation, strong light, and extremely dry condition. To investigate the potential genetic basis of adaptation to both highland and tropical deserts, we generated a chromosome-level genome sequence assembly of the wild castor accession WT05, with a genome size of 316 Mb, a scaffold N50 of 31.93 Mb, and a contig N50 of 8.96 Mb, respectively. Compared with cultivated castor and other Euphorbiaceae species, the wild castor exhibits positive selection and gene family expansion for genes involved in DNA repair, photosynthesis, and abiotic stress responses. Genetic variations associated with positive selection were identified in several key genes, such as LIG1, DDB2, and RECG1, involved in nucleotide excision repair. Moreover, a study of genomic diversity among wild and cultivated accessions revealed genomic regions containing selection signatures associated with the adaptation to extreme environments. The identification of the genes and alleles with selection signatures provides insights into the genetic mechanisms underlying the adaptation of wild castor to the high-altitude tropical desert and would facilitate direct improvement of modern castor varieties.
引用
收藏
页码:42 / 59
页数:18
相关论文
共 50 条
  • [21] Chromosome-level genome assembly of Niphotrichum japonicum provides new insights into heat stress responses in mosses
    Zhou, Xuping
    Peng, Tao
    Zeng, Yuying
    Cai, Yuqing
    Zuo, Qin
    Zhang, Li
    Dong, Shanshan
    Liu, Yang
    FRONTIERS IN PLANT SCIENCE, 2023, 14
  • [22] Chromosome-Level Genome Assembly of Bupleurum chinense DC Provides Insights Into the Saikosaponin Biosynthesis
    Zhang, Quanfang
    Li, Min
    Chen, Xueyan
    Liu, Guoxia
    Zhang, Zhe
    Tan, Qingqing
    Hu, Yue
    Fan, Yangyang
    Liu, Yanyan
    Zhu, Tongshan
    Yang, Xue
    Yue, Mingming
    Bu, Xun
    Zhang, Yongqing
    FRONTIERS IN GENETICS, 2022, 13
  • [23] The chromosome-level genome assembly of Gentiana dahurica (Gentianaceae) provides insights into gentiopicroside biosynthesis
    Li, Ting
    Yu, Xi
    Ren, Yumeng
    Kang, Minghui
    Yang, Wenjie
    Feng, Landi
    Hu, Quanjun
    DNA RESEARCH, 2022, 29 (02)
  • [24] A chromosome-level genome assembly provides new insights into paternal genome elimination in the cotton mealybugPhenacoccus solenopsis
    Li, Meizhen
    Tong, Haojie
    Wang, Shuping
    Ye, Wanyi
    Li, Zicheng
    Omar, Mohamed A. A.
    Ao, Yan
    Ding, Simin
    Li, Zihao
    Wang, Ying
    Yin, Chuanlin
    Zhao, Xianxin
    He, Kang
    Liu, Feiling
    Chen, Xi
    Mei, Yang
    Walters, James R.
    Jiang, Mingxing
    Li, Fei
    MOLECULAR ECOLOGY RESOURCES, 2020, 20 (06) : 1733 - 1747
  • [25] A chromosome-level genome of the kuruma shrimp (Marsupenaeus japonicus) provides insights into its evolution and cold-resistance mechanism
    Ren, Xianyun
    Lv, Jianjian
    Liu, Meng
    Shao, Huixin
    Liu, Ping
    Li, Jian
    GENOMICS, 2022, 114 (03)
  • [26] A chromosome-level genome assembly of anesthetic drug-producing Anisodus acutangulus provides insights into its evolution and the biosynthesis of tropane alkaloids
    Zhou, Wei
    Wang, Can
    Hao, Xiaolong
    Chen, Fei
    Huang, Qikai
    Liu, Tingyao
    Xu, Jiang
    Guo, Shuai
    Liao, Baosheng
    Liu, Zhixiang
    Feng, Yue
    Wang, Yao
    Liao, Pan
    Xue, Jiayu
    Shi, Min
    Maoz, Itay
    Kai, Guoyin
    PLANT COMMUNICATIONS, 2024, 5 (01)
  • [27] Chromosome-level genome assembly of sea scallop Placopecten magellanicus provides insights into the genetic characteristics and adaptive evolution of large scallops
    Xie, Xi
    Teng, Weiming
    Yu, Zuoan
    Li, Dacheng
    Yang, Miao
    Zhang, Haijiao
    Zheng, Jie
    Li, Hualin
    Sun, Yongxin
    Liu, Xiangfeng
    Zhou, Zunchun
    Zhang, Xiliang
    Du, Shaojun
    Li, Qi
    Chang, Yaqing
    Zhang, Ming
    Wang, Qingzhi
    GENOMICS, 2023, 115 (06)
  • [28] The whole chromosome-level genome provides resources and insights into the endangered fish Percocypris pingi evolution and conservation
    He, Zhi
    Li, Chunxia
    Gao, Kuo
    Zheng, Xubin
    Wang, Xuanyu
    Wang, Huiling
    Chen, Qiqi
    Tang, Ziting
    Zhang, Mingwang
    Yang, Deying
    Yan, Taiming
    BMC GENOMICS, 2024, 25 (01):
  • [29] Chromosome-level pepino genome provides insights into genome evolution and anthocyanin biosynthesis in Solanaceae
    Song, Xiaoming
    Liu, Haibin
    Shen, Shaoqin
    Huang, Zhinan
    Yu, Tong
    Liu, Zhuo
    Yang, Qihang
    Wu, Tong
    Feng, Shuyan
    Zhang, Yu
    Wang, Zhiyuan
    Duan, Weike
    PLANT JOURNAL, 2022, 110 (04) : 1128 - 1143
  • [30] Chromosome-level genome assembly of Dongxiang wild rice (Oryza rufipogon) provides insights into resistance to disease and freezing
    Que, Zhiqun
    Lu, Qineng
    Shen, Chunxiu
    FRONTIERS IN GENETICS, 2022, 13