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

Pangenome analysis of transposable element insertion polymorphisms reveals features underlying cold tolerance in rice

转座元件插入多态性的泛基因组分析揭示了水稻耐寒性的潜在特征。

Qian, Yongqing; Zhou, Zuwen; Ouyang, Tianmin; Li, Dongao; Li, Ru; Gan, Ping; Qiao, Renfei; Tan, Yingying; Qian, Mingchao; Liu, Liezhao; Li, Jiana; Lu, Kun; Luo, Jijing; Chen, Ling-Ling; Song, Jia-Ming

Multifactor Analysis of a Genome-Wide Selection System in Brassica napus L

甘蓝型油菜(Brassica napus L.)全基因组选择系统的多因素分析

Tan, Wanqing; Wang, Zhiyuan; Wang, Jia; Bilgrami, Sayedehsaba; Liu, Liezhao

Harnessing Streptomyces for the Management of Clubroot Disease of Chinese Cabbage (Brassica rapa subsp. Pekinensis).

利用链霉菌防治大白菜(Brassica rapa subsp. Pekinensis)根肿病

Chen Shan, Zheng Yang, Wang Qing, Mu Rong, Sun Xianchao, Ma Guanhua, Liu Liezhao, Ren Jiequn, Huang Kuo, Chen Guokang

Overexpression of BnaA10.WRKY75 Decreases Cadmium and Salt Tolerance via Increasing ROS Accumulation in Arabidopsis and Brassica napus L

BnaA10.WRKY75 的过表达通过增加拟南芥和甘蓝型油菜中活性氧的积累来降低其对镉和盐的耐受性

Ping, Xiaoke; Ye, Qianjun; Yan, Mei; Wang, Jia; Zhang, Taiyuan; Chen, Sheng; Siddique, Kadambot H M; Cowling, Wallace A; Li, Jiana; Liu, Liezhao

Screening of microRNAs and target genes involved in Sclerotinia sclerotiorum (Lib.) infection in Brassica napus L

筛选参与甘蓝型油菜(Brassica napus L.)中核盘菌(Sclerotinia sclerotiorum (Lib.))感染的microRNA及其靶基因

Xie, Ling; Jian, Hongju; Dai, Haoxi; Yang, Youhong; Liu, Yiling; Wei, Lijuan; Tan, Min; Li, Jiana; Liu, Liezhao

Comparative transcriptome and co-expression network analysis revealed the genes associated with senescence and polygalacturonase activity involved in pod shattering of rapeseed

比较转录组和共表达网络分析揭示了与油菜荚裂相关的衰老和多聚半乳糖醛酸酶活性基因

Mahmood, Umer; Li, Xiaodong; Qian, Mingchao; Fan, Yonghai; Yu, Mengna; Li, Shengting; Shahzad, Ali; Qu, Cunmin; Li, Jiana; Liu, Liezhao; Lu, Kun

Knockout of the lignin pathway gene BnF5H decreases the S/G lignin compositional ratio and improves Sclerotinia sclerotiorum resistance in Brassica napus

敲除木质素合成途径基因BnF5H可降低甘蓝型油菜籽的S/G木质素组成比例,并提高其对核盘菌的抗性。

Cao, Yanru; Yan, Xingying; Ran, Shuyao; Ralph, John; Smith, Rebecca A; Chen, Xueping; Qu, Cunmin; Li, Jiana; Liu, Liezhao

Genetic mapping and physiological analysis of chlorophyll-deficient mutant in Brassica napus L

甘蓝型油菜(Brassica napus L.)叶绿素缺陷突变体的遗传定位和生理分析

Lin, Na; Gao, Yumin; Zhou, Qingyuan; Ping, Xiaoke; Li, Jiana; Liu, Liezhao; Yin, Jiaming

Whole-genome resequencing reveals Brassica napus origin and genetic loci involved in its improvement

全基因组重测序揭示了甘蓝型油菜的起源及其改良过程中涉及的基因位点

Lu, Kun; Wei, Lijuan; Li, Xiaolong; Wang, Yuntong; Wu, Jian; Liu, Miao; Zhang, Chao; Chen, Zhiyou; Xiao, Zhongchun; Jian, Hongju; Cheng, Feng; Zhang, Kai; Du, Hai; Cheng, Xinchao; Qu, Cunming; Qian, Wei; Liu, Liezhao; Wang, Rui; Zou, Qingyuan; Ying, Jiamin; Xu, Xingfu; Mei, Jiaqing; Liang, Ying; Chai, You-Rong; Tang, Zhanglin; Wan, Huafang; Ni, Yu; He, Yajun; Lin, Na; Fan, Yonghai; Sun, Wei; Li, Nan-Nan; Zhou, Gang; Zheng, Hongkun; Wang, Xiaowu; Paterson, Andrew H; Li, Jiana

Genome-wide exploration and characterization of miR172/euAP2 genes in Brassica napus L. for likely role in flower organ development

对甘蓝型油菜(Brassica napus L.)中 miR172/euAP2 基因进行全基因组探索和表征,以探究其在花器官发育中的潜在作用

Wang, Tengyue; Ping, Xiaoke; Cao, Yanru; Jian, Hongju; Gao, Yumin; Wang, Jia; Tan, Yingchao; Xu, Xinfu; Lu, Kun; Li, Jiana; Liu, Liezhao