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

Analysis of allohexaploid wheatgrass genome reveals its Y haplome origin in Triticeae and high-altitude adaptation

对异源六倍体小麦草基因组的分析揭示了其Y单倍体起源于小麦族,并具有高海拔适应性。

Xiong, Yi; Yuan, Shuai; Xiong, Yanli; Li, Lizuiyue; Peng, Jinghan; Zhang, Jin; Fan, Xing; Jiang, Chengzhi; Sha, Li-Na; Wang, Zhaoting; Peng, Xue; Zhang, Zecheng; Yu, Qingqing; Lei, Xiong; Dong, Zhixiao; Liu, Yingjie; Zhao, Junming; Li, Guangrong; Yang, Zujun; Jia, Shangang; Li, Daxu; Sun, Ming; Bai, Shiqie; Liu, Jianquan; Yang, Yongzhi; Ma, Xiao

A reference genome assembly of the alpine forage grass Elymus nutans

高山牧草垂穗披碱草(Elymus nutans)的参考基因组组装

Chang, Dan; Jia, Shangang; Sun, Ming; Huang, Tao; Lu, Huanhuan; Yan, Jiajun; Zhang, Changbing; You, Minghong; Zhang, Jianbo; Yan, Lijun; Gou, Wenlong; Lei, Xiong; Ji, Xiaofei; Li, Yingzhu; Mao, Decai; Wu, Qi; Li, Ping; Zheng, Hongkun; Ma, Xiao; Yan, Xuebin; Liu, Quanlan; He, Xiaofan; Xie, Wengang; Li, Daxu; Bai, Shiqie

Chromosome-level genome and annotation of the tetraploid Rhodiola kirilowii

四倍体红景天(Rhodiola kirilowii)的染色体水平基因组及其注释

Zhang, Jianbo; Zhao, Wenji; Tang, Xiaohui; Jia, Guofu; Li, Daxu; Xia, Chongjing; Bai, Shiqie

The impact of awn length on seed yield and drought resistance in Elymus sibiricus L. and the molecular mechanism underlying awn length regulation

芒长对西伯利亚披碱草种子产量和抗旱性的影响及其调控芒长分子机制

Song, Daping; Chen, Meixiu; Li, Yingzhu; Li, Mingfeng; Bai, Shiqie; Yan, Jiajun

Transcriptomic and physiological analyses reveal that cytokinin is involved in the compound leaf development of alfalfa

转录组学和生理学分析表明,细胞分裂素参与了苜蓿复叶的发育。

Mei, Hongyao; Yan, Jiajun; Jia, Xuexin; Wang, Weilin; Li, Shuangshuang; Sun, Ruiqi; Jiang, Hongjiao; Xie, Lijun; Zhou, Chuanen; Bai, Shiqie; Han, Lu

An initial exploration of core collection construction and DNA fingerprinting in Elymus sibiricus L. using SNP markers.

利用 SNP 标记对西伯利亚披碱草 (Elymus sibiricus L.) 的核心种质资源构建和 DNA 指纹图谱进行初步探索

Li Xinrui, Song Daping, Li Mingfeng, Li Daxu, You Minghong, Peng Yan, Yan Jiajun, Bai Shiqie

The molecular regulatory mechanism of reed canary grass under salt, waterlogging, and combined stress was analyzed by transcriptomic analysis

通过转录组分析,探讨了芦苇在盐胁迫、涝胁迫和复合胁迫下的分子调控机制。

Jia, Xuejie; Xiong, Yi; Xiong, Yanli; Li, Daxu; Ji, Xiaofei; Lei, Xiong; You, Minghong; Bai, Shiqie; Zhang, Jianbo; Ma, Xiao

Metabolomic Analysis of Elymus sibiricus Exposed to UV-B Radiation Stress

对暴露于UV-B辐射胁迫下的西伯利亚披碱草进行代谢组学分析

Zhang, Fei; Sun, Ming; Li, Daxu; You, Minghong; Yan, Jiajun; Bai, Shiqie

Molecular Mechanism of Cold Tolerance of Centipedegrass Based on the Transcriptome

基于转录组的蜈蚣草耐寒分子机制研究

Liu, Yingjie; Xiong, Yi; Zhao, Junming; Bai, Shiqie; Li, Daxu; Chen, Limin; Feng, Junjie; Li, Yingzhu; Ma, Xiao; Zhang, Jianbo

Integrating Full-Length Transcriptome and RNA Sequencing of Siberian Wildrye (Elymus sibiricus) to Reveal Molecular Mechanisms in Response to Drought Stress

整合西伯利亚野麦(Elymus sibiricus)全长转录组和RNA测序数据,揭示其应对干旱胁迫的分子机制

Yu, Qingqing; Xiong, Yi; Su, Xiaoli; Xiong, Yanli; Dong, Zhixiao; Zhao, Junming; Shu, Xin; Bai, Shiqie; Lei, Xiong; Yan, Lijun; Ma, Xiao