日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

The haplotype-resolved and near-telomere-to-telomere genome assembly for the autotetraploid alfalfa

紫花苜蓿自四倍体单倍型解析和近端粒到端粒基因组组装

Sod, Bilig; Jiang, Xueqian; He, Fei; Zeng, Xiaofei; Wang, Yibin; Zheng, Yaodong; Li, Mingna; Wang, Xue; Zhang, Tiejun; Chen, Lin; Xu, Ming; Xu, Yanchao; Zhu, Kai; Zhu, He; Yu, Haojie; Kang, Junmei; Yang, Qingchuan; Zhang, Xingtan; Long, Ruicai

Dynamic DNA methylation in tea plants and its association with changes in gene expression under salt and alkali stress

茶树动态DNA甲基化及其与盐碱胁迫下基因表达变化的关系

Kong, Xiangrui; Cao, Hongli; Lou, Dandan; Yue, Chuan; Shan, Ruiyang; Zheng, Shiqin; Han, Aodi; Zhang, Xingtan; Chen, Changsong; Kong, Weilong

Comparative transcriptomic analysis of embryonic stem cells across mammalian species

对哺乳动物胚胎干细胞的转录组进行比较分析

Fang, Yifei; Su, Yue; Meisel, Richard; Walters, James R; Gamble, Tony; Randolph, Eric C; Yu, Xingtan; Shi, Meihong; Li, Guangsheng; Zhang, Jingzhi; Tian, Xiuchun Cindy; Tang, Young; Duan, Jingyue Ellie

Exploring the developmental mechanisms of tea plant trichomes using genomics and single-cell transcriptome sequencing

利用基因组学和单细胞转录组测序技术探索茶树毛状体的发育机制

Deng, Xuming; Tang, Yajun; Zhang, Qing; Kong, Weilong; Lin, Xiying; Chen, Xianyu; Chen, Zhidan; Zhang, Xingtan; Sun, Weijiang

Genomic analysis of 1,325 Camellia accessions sheds light on agronomic and metabolic traits for tea plant improvement

对1325份山茶种质资源的基因组分析揭示了茶树改良的农艺性和代谢性状。

Kong, Weilong; Kong, Xiangrui; Xia, Zhongqiang; Li, Xiaofeng; Wang, Fang; Shan, Ruiyang; Chen, Zhihui; You, Xiaomei; Zhao, Yuanyan; Hu, Yanping; Zheng, Shiqin; Zhong, Sitong; Zhang, Shengcheng; Zhang, Yanbing; Fang, Kaixing; Wang, Yinghao; Liu, Hui; Zhang, Yazhen; Li, Xinlei; Wu, Hualing; Chen, Guo-Bo; Zhang, Xingtan; Chen, Changsong

Pan-genome analysis reveals the evolution and diversity of Malus.

泛基因组分析揭示了苹果属的进化和多样性

Li Wei, Chu Chong, Zhang Taikui, Sun Haochen, Wang Shiyao, Liu Zeyuan, Wang Zijun, Li Hui, Li Yuqi, Zhang Xingtan, Geng Zhiqiang, Wang Youqing, Li Yi, Zhang Hengtao, Fan Weishu, Wang Yi, Xu Xuefeng, Cheng Lailiang, Zhang Dehui, Xiong Yao, Li Huixia, Zhou Bowen, Guan Qingmei, Deng Cecilia H, Han Yongming, Ma Hong, Han Zhenhai

Hordeum I genome unlocks adaptive evolution and genetic potential for crop improvement

大麦基因组揭示了适应性进化和作物改良的遗传潜力

Feng, Hao; Du, Qingwei; Jiang, Ying; Jia, Yong; He, Tianhua; Wang, Yibin; Chapman, Brett; Yu, Jiaxin; Zhang, Haiwen; Gu, Mengxue; Jiang, Mengwei; Gao, Shanshan; Zhang, Xinjie; Song, Yameng; Garg, Vanika; Varshney, Rajeev K; Wei, Jianhua; Li, Chengdao; Zhang, Xingtan; Li, Ruifen

Genetic Editing of Tomato Golgi-Localized Nucleotide Sugar Transporter 1.1 Promotes Immunity Against Phytophthora infestans

番茄高尔基体定位核苷酸糖转运蛋白1.1的基因编辑增强了对致病疫霉的免疫力

He, Peize; Cai, Yanling; Wang, Yanzi; Wang, Zhiqing; Lyu, Yaqing; Li, Tao; Zhang, Xingtan; Zhou, Shaoqun

RAGA: a reference-assisted genome assembly tool for efficient population-scale assembly

RAGA:一种用于高效群体规模组装的参考基因组辅助组装工具

Zhao, Ru-Peng; Luo, Yu-Hong; Xie, Wen-Zhao; Zhou, Zu-Wen; Qian, Yong-Qing; Yuan, Si-Long; Li, Dong-Ao; Li, Jiana; Lu, Kun; Zhang, Xingtan; Song, Jia-Ming; Chen, Ling-Ling

JCVI: A versatile toolkit for comparative genomics analysis

JCVI:用于比较基因组学分析的多功能工具包

Tang, Haibao; Krishnakumar, Vivek; Zeng, Xiaofei; Xu, Zhougeng; Taranto, Adam; Lomas, Johnathan S; Zhang, Yixing; Huang, Yumin; Wang, Yibin; Yim, Won Cheol; Zhang, Jisen; Zhang, Xingtan