The regulatory roles of MYC TFs in plant stamen development
S Li, Y Hu, H Yang, S Tian, D Wei, Q Tang, Y Yang… - Plant Science, 2023 - Elsevier
The stamen, as the male reproductive organ of flowering plants, plays a critical role in
completing the life cycle of plants. MYC transcription factors are members of the bHLH IIIE …
completing the life cycle of plants. MYC transcription factors are members of the bHLH IIIE …
Transcriptome analysis of flax (Linum usitatissimum L.) undergoing osmotic stress
J Wu, Q Zhao, D Sun, G Wu, L Zhang, H Yuan… - Industrial Crops and …, 2018 - Elsevier
Abstract Flax (Linum usitatissimum L.), an important industrial crop, is frequently decimated
by pathogens, insect pests and adverse environmental conditions. Identification of flax …
by pathogens, insect pests and adverse environmental conditions. Identification of flax …
Integrative analysis of transcriptomic and proteomic changes related to male sterility in Tagetes erecta
N Tang, W Liu, W Zhang, D Tang - Physiology and Molecular Biology of …, 2020 - Springer
Male sterile and male fertile two-type lines are important in heterosis utilization and breeding
in Tagetes erecta, but the genes and pathways involved in male sterility are poorly …
in Tagetes erecta, but the genes and pathways involved in male sterility are poorly …
Investigation of the genes associated with a male sterility mutant (msm) in Chinese cabbage (Brassica campestris ssp. pekinensis) using RNA-Seq
S Huang, S Peng, Z Liu, C Li, C Tan, R Yao… - Molecular Genetics and …, 2020 - Springer
In Chinese cabbage, hybrid seed production is performed using male sterility lines, an
important approach to heterosis utilization. In this study, a stably inherited male sterile …
important approach to heterosis utilization. In this study, a stably inherited male sterile …
Screening and analysis of proteins interacting with OsMADS16 in rice (Oryza sativa L.)
L Kong, Y Duan, Y Ye, Z Cai, F Wang, X Qu, R Qiu… - PLoS …, 2019 - journals.plos.org
OsMADS16, a class B floral organ identity gene, plays a pivotal role in stamen formation in
rice. To date, little is known about the interacting partners of OsMADS16 except for several …
rice. To date, little is known about the interacting partners of OsMADS16 except for several …
Combining Metabolomics and Transcriptomics to Reveal the Regulatory Mechanism of Taproot Enlargement in Panax ginseng
M Zhang, Y Sun, P Di, M Han, L Yang - International Journal of Molecular …, 2023 - mdpi.com
Ginseng is regarded as the “king of herbs” in China, with its roots and rhizomes used as
medicine, and it has a high medicinal value. In order to meet the market demand, the …
medicine, and it has a high medicinal value. In order to meet the market demand, the …
Transcriptomic and Metabolomic Differences Between Two Saposhnikovia divaricata (Turcz.) Schischk Phenotypes With Single- and Double-Headed Roots
T Zhang, Y Chen, Q Zhang, P Yu, Q Li, W Qi… - … in Bioengineering and …, 2021 - frontiersin.org
Saposhnikovia divaricata is derived from the dried roots of Saposhnikovia divaricata (Turcz.)
Schischk and used as a Chinese herbal medicine for treating respiratory, immune, and …
Schischk and used as a Chinese herbal medicine for treating respiratory, immune, and …
基于转录组和WGCNA 筛选大葱雄性不育相关基因.
岳丽昕, 王清华, 刘泽洲, 孔素萍… - Biotechnology …, 2024 - search.ebscohost.com
[目的] 挖掘大葱雄性不育相关的特异性模块并筛选核心基因, 为后续深入解析大葱雄性不育分子
机制提供理论依据.[方法] 以大葱可育株MF 和不育株MS 不同发育时期的花蕾为研究对象 …
机制提供理论依据.[方法] 以大葱可育株MF 和不育株MS 不同发育时期的花蕾为研究对象 …
高通量转录组测序技术在植物雄性不育研究中的应用
刘永明, 张玲, 邱涛, 赵卓凡, 曹墨菊 - 遗传, 2016 - chinagene.cn
植物雄性不育是指植物雄蕊发育受阻不能产生正常有功能花粉的现象. 植物雄性不育不仅是生殖
生理研究的宝贵材料, 也是植物杂种优势利用的重要工具. 由于高通量转录组测序技术几乎可以 …
生理研究的宝贵材料, 也是植物杂种优势利用的重要工具. 由于高通量转录组测序技术几乎可以 …
Characterization of the ZmbHLH122 transcription factor and its potential collaborators in maize male reproduction
Y Liu, Z Zhao, G Wei, P Zhang, H Lan, S Zhang… - Plant Growth …, 2018 - Springer
Abstract OsEAT1 (DTD), a stamen-specific bHLH transcription factor, is a master regulator in
rice male reproduction. To elucidate its functional mechanism in maize male reproduction …
rice male reproduction. To elucidate its functional mechanism in maize male reproduction …