Northern Light Reviews - Rethinking Plant Stress Biology in a Multifactorial World [0.03%]
北方的光照评论——在多因子世界中重新思考植物逆境生物学
Lidia S Pascual,Rosa M Rivero,Sara I Zandalinas et al.
Lidia S Pascual et al.
The accelerated pace of climate change, soil degradation, environmental pollution, and pathogen outbreaks subjects trees and crops growing in different parts of the world to multiple abiotic/biotic stress conditions, simultaneously or seque...
Multi-Omics Reveal Haplotype-Specific BGC Divergence and Organ-Specific Iridoid Glycoside Accumulation in Endemic Species Rehmannia chingii [0.03%]
多组学揭示玄参属濒危物种齿叶rehmannia特异性BGC分歧及器官特异性的.iridoid糖积累
Wanbo Zhang,Ying Han,Xinjie Jin et al.
Wanbo Zhang et al.
Iridoid glycosides (IGs) are key bioactive metabolites within the genus Rehmannia. However, the molecular mechanisms underlying geographical and organ-specific divergence in IG accumulation, and the biosynthetic gene clusters (BGCs) between...
Nitrogen-Centric Molecular Mechanisms in Crop Plants Under Elevated CO2: Interactions, Responses, and Implications [0.03%]
氮氧化学分子机制在高浓度二氧化碳下的农作物中的作用:相互作用、响应和影响
Rachapudi Venkata Sreeharsha,Divya K Unnikrishnan,Shalini Mudalkar et al.
Rachapudi Venkata Sreeharsha et al.
Increasing atmospheric carbon dioxide (CO2) is transforming the climate space in which plants grow, severely affecting crop physiology and crop productivity. Elevated CO2 enhances photosynthesis and biomass; however, it can nitrogen (N) met...
Crosstalk Between the SlNAC48/SlNAC89-SlXTH23 Module and ABA Signalling Enhances Drought Tolerance in Tomato by Regulating Stomatal Closure [0.03%]
SlNAC48/SlNAC89-SlXTH23模块与ABA信号互作通过调节气孔关闭提高番茄抗旱性
Tao Liu,Lin Dong,Kexin Lu et al.
Tao Liu et al.
Drought is a major environmental constraint on crop growth, development, and yield. Xyloglucan endotransglucosylase/hydrolases (XTHs) have been reported to play important roles in plant drought tolerance. We previously identified the cold-r...
Prevalence of Drought Over Heat Stress in Modulating Physiological and Metabolic Responses of Castanea sativa Mill. Var. Martaínha [0.03%]
干旱与高温应激下Castanea sativa Mill. Var. Martaínha的生理和代谢响应差异分析
Filipa Sousa,Pedro Mateus,André Ferreira et al.
Filipa Sousa et al.
The productivity of chestnut trees (Castanea sativa Mill.) is strongly affected by high temperatures and reduced water availability, phenomena exacerbated by climate change. However, the physiological effects of heat and drought exposure in...
Genome-Wide Identification and Functional Characterization of CaGRAS43 in Enhancing Cold Stress Tolerance in Pepper [0.03%]
genome-wide识别和功能表征CaGRAS43以提高辣椒的耐冷性
Wenbin Yuan,Ikram Ullah,Rupa Mishra et al.
Wenbin Yuan et al.
Cold stress severely limits plant growth and crop productivity, necessitating the identification of key regulatory genes that enhance tolerance. In this study, we performed a genome-wide identification and expression analysis of the GRAS tr...
Physiological, Transcriptional, and Metabolic Variations During Dormancy Release Across Potato Cultivars Revealed by Integrated Multi-Omics Analysis [0.03%]
整合多组学分析揭示的马铃薯品种休眠释放过程中的生理、转录和代谢变化
Shuaibing Tian,Guocheng Wei,Xia Zhu et al.
Shuaibing Tian et al.
Tuber dormancy length is a key agronomic trait determining potato storage quality and planting suitability, yet the underlying molecular regulatory mechanisms remain poorly understood. In this study, we perform a time-course physiological, ...
Regulation Mechanism of JA Signaling on the Expansin Gene SlEXPA8 Affecting Sugar Metabolism in Tomato [0.03%]
JA信号通过调控番茄EXPANSIN基因SlEXPA8影响糖代谢的机制研究
Qi Ding,Na Cui,Hongyun Xing et al.
Qi Ding et al.
Carbohydrates are crucial for plant growth and serve as fundamental energy sources, regulated by multiple factors. In tomato, development is closely linked to hormone-mediated sugar metabolism. Although jasmonic acid (JA) is known to functi...
The PavbHLH162-Like-PavbHLH106 Module Positively Regulates Cold Tolerance in Sweet Cherry (Prunus avium L.) [0.03%]
甜樱桃(PavmL)中PavbHLH162-like-PavbHLH106模块正调控抗寒性
Jin Tang,Qiandong Hou,Yulin Shao et al.
Jin Tang et al.
bHLH transcription factors serve as crucial regulators of plant growth, development, and responses to abiotic stress. However, their specific functions in the cold resistance of sweet cherry remain elusive. In this study, we cloned PavbHLH1...