Pan-genomic insights into RLK family evolution and adaptation in Dioscorea alata [0.03%]
全基因组学视角下的Dioscorea alata受体样 kinase家族进化和适应性研究
Zhi-Yan Wei,Sai-Xi Li,Ming-Han Li et al.
Zhi-Yan Wei et al.
Heterologous expression of nodulation signaling pathway genes enhances grain yield in rice [0.03%]
异源表达结瘤信号途径基因可提高水稻产量
Zheng Li,Hao Li,Guoping Tang et al.
Zheng Li et al.
Reactive oxygen species production and signal transduction in response to stress triggered by Alternaria elicitors in Brassicaceae [0.03%]
由链格孢子诱发的逆境下十字花科植物中的活性氧产生及信号转导反应
Sana Munir,Ahmad N Shahzad,Avanish Rai et al.
Sana Munir et al.
Histone demethylation by JMJ family genes: insights into plant growth and adaptation [0.03%]
JMJ家族组蛋白去甲基化酶介导的表观修饰及其对植物生长和适应性的影响研究
Theboral Jeevaraj,Anisha Blessy,Sneha Krishnamoorthy et al.
Theboral Jeevaraj et al.
Og-Geum Woo,Arim Kim,Dong Hye Seo et al.
Og-Geum Woo et al.
Previous studies have shown that BPH1 represses the abscisic acid (ABA)-mediated cellular responses. To further understand the mechanism of action of BPH1 in ABA signaling, the putative binding partners of BPH1 were investigated. Arabidopsi...
Clade specific divergence, cumulative haplo-pheno analysis, and genomic prediction of cytokinin oxidase (CKX) gene family under drought stress in rice [0.03%]
水稻干旱胁迫下细胞分裂素氧化酶(CKX)基因家族的支系特异性分化、累积单倍型表型分析及全基因组预测
Nibedita Swain,Raj Kishore Sahoo,C Parameswaran et al.
Nibedita Swain et al.
Enhancing rice crop resistance against brown plant hopper infestation through the foliar application of sodium nitroprusside [0.03%]
通过叶面喷洒亚硝基铁氰化钠提高水稻对褐飞虱的抗性
Muhammad Farooq,Dan-Dan Zhao,Saleem Asif et al.
Muhammad Farooq et al.
Single-cell transcriptional profiling in Arabidopsis root exposed to boron toxicity at seedling stages [0.03%]
拟南芥种子萌发期根单细胞转录谱分析及其对硼毒性的响应
Ceyhun Kayıhan,Ebru Kocakaya,Yasin Kaymaz et al.
Ceyhun Kayıhan et al.
The transcription factor VaWRKY72 from Vitis amurensis positively regulates cold tolerance in Arabidopsis thaliana and grapevine [0.03%]
取自山葡萄的转录因子VaWRKY72在拟南芥和葡萄中的正向调控寒驯化效应
Jiahui Ma,Xiaoxiao Yan,Xingcheng Qi et al.
Jiahui Ma et al.
TaEPFL1 gene controls the development of wheat pistils and stamens by regulating ethylene synthesis [0.03%]
TaEPFL1基因通过调节乙烯合成控制小麦雌蕊和雄蕊的发育
Tianxun Nie,Yuhuan Guo,Youwei Yang et al.
Tianxun Nie et al.
Proper development of floral organs is essential for reproductive success and grain yield in wheat. However, the molecular mechanisms regulating wheat floral organ development remain largely unknown. In this study, we characterized the role...