Quantitative RNA spatial profiling using single-molecule RNA FISH on plant tissue cryosections [0.03%]
基于植物组织冷冻切片的单分子RNA-FISH的空间定量RNA检测技术
Xue Zhang,Alejandro Fonseca,Konstantin Kutashev et al.
Xue Zhang et al.
Single-molecule fluorescence in situ hybridization (smFISH) has emerged as a powerful tool to study gene expression dynamics with unparalleled precision and spatial resolution in a variety of biological systems. Recent advancements have exp...
A chromosome-level genome assembly of Lycoris radiata unveils evolutionary origin of Amaryllidaceae alkaloids and elucidates the complete pathway of galanthamine biosynthesis [0.03%]
基于石蒜鳞茎染色体水平基因组解析的石蒜科生物碱进化起源及雪花莲碱合成途径研究
Yuhe Zhao,Peng Zeng,Pengzheng Lei et al.
Yuhe Zhao et al.
Amaryllidaceae alkaloids (AmAs) are a structurally diverse class of specialized metabolites with substantial pharmacological importance, produced exclusively within the Amaryllidoideae subfamily. However, the limited availability of high-qu...
GENIUS-LLM: an evidence-traceable, gene-centered multi-omics inference framework for plant gene function analysis [0.03%]
基于证据的植物基因功能分析泛基因组多组学推理框架GENIUS-LLM
Beizhuo Li,Jiaqi You,Jie Zheng et al.
Beizhuo Li et al.
The long non-coding RNA NEXUS arose from a chromosomal structural variation enhances drought tolerance through epigenetic regulation in allotetraploid cotton [0.03%]
源于染色体结构变异的长非编码RNA NEXUS通过表观调控增强异源四倍体棉的抗旱性
Jin Han,Yupeng Hao,Hongyu Wu et al.
Jin Han et al.
The chromosomes of allotetraploid cotton underwent extensive structural variations (SVs), which is one of the critical features for gaining the polyploid vigor and the success of cotton domestication. The molecular mechanisms underlying ben...
Pan-orchid transcriptomics sheds light on candidate regulators and the evolution of complex floral morphology and symmetry [0.03%]
泛兰科转录组学揭示了复杂花部形态和合蕊冠进化中的候选调节因子
Guojin Zhang,Yi Hu,Na Huang et al.
Guojin Zhang et al.
Complex floral traits contribute to reproductive fitness and are critical for diversification in many angiosperms, and hence explicating their evolution and molecular basis is crucial for a comprehensive understanding of angiosperms. Orchid...
AtMYB2 downstream targets AtMYB48 and AtbHLH68 redundantly regulate cambial cell proliferation and xylem differentiation in Arabidopsis thaliana [0.03%]
AtMYB2 下游目标 AtMYB48 和 AtbHLH68 在拟南芥中冗余调节维管形成层细胞增殖和木质部分化
Chong Zhang,Xiaorui Guo,Leiqian Sun et al.
Chong Zhang et al.
Xylem formation involves a series of processes, including cell division of the vascular cambium, xylem cell expansion, secondary cell wall (SCW) deposition, and programmed cell death (PCD). In this study, we identified AtMYB2, AtMYB48, and ...
GhOFP1-GhTALE-GhXTHB transcriptional cascade regulates cotton stem vascular cambium development [0.03%]
棉花茎维管形成层发育的GhOFP1-GhTALE-GhXTHB转录级联调控机制
Jinghui Xu,Linqi Li,Hang Zhao et al.
Jinghui Xu et al.
The temporally regulated morphogenesis of plant organs depends critically on the precise differentiation of meristem stem cells. This process is propelled by the orchestrated dynamics of specific stem cell populations within both the apical...
Plant immune dysregulation disrupts microbe-induced growth promotion and microbiome compatibility [0.03%]
植物免疫调节紊乱破坏微生物促生长作用及微生态相容性
Baoda Han,Anamika Rawat,Sabiha Parween et al.
Baoda Han et al.
Plants associate with diverse microbial communities that influence growth and health. Although the plant immune regulatory network balances defense activation and microbial accommodation during pathogen attack, how it coordinates beneficial...
Two FK506-binding proteins, OsFKBP57 and OsFKBP73, confer salt tolerance by enhancing the SOS pathway but decrease grain protein accumulation by inhibiting BCAT activity in rice [0.03%]
两个环孢菌素A结合蛋白OsFKBP57和OsFKBP73通过增强SOS通路赋予水稻耐盐性但通过抑制天冬氨酸氨裂解酶(BCAT)活性而减少籽粒蛋白质累积
Zhaoyang Dai,Gaoming Chen,Wenwei Zhang et al.
Zhaoyang Dai et al.
Soil salinization poses a serious threat to rice productivity and grain quality. Although moderate increases in grain protein content enhance nutritional value, excessive protein accumulation under salt stress degrades rice quality and redu...
An InDel in the FAD5 promoter confers cold tolerance by enhancing transcriptional activation of unsaturated fatty acid synthesis in grapevines [0.03%]
FAD5启动子中的一个InDel通过增强不饱和脂肪酸生物合成的转录激活来赋予葡萄抗寒性
Huimin Zhou,Qingyun Li,Darren C J Wong et al.
Huimin Zhou et al.
The ratio of unsaturated fatty acids (UFAs) in membranes is tightly associated with plant cold hardiness; however, the genetic basis underpinning UFA biosynthesis in woody perennials remains poorly understood. Using grapevines as a model sy...