A Simple and Efficient Agrobacterium rhizogenes-Mediated Root Transformation System for Highbush Blueberry [0.03%]
一种简单的 hairy root 变异系统用于高丛蓝莓遗传学研究
Weikun Wang,Changchun Wang,Jiaqi Chen et al.
Weikun Wang et al.
Highbush blueberry (Vaccinium corymbosum) is an important horticultural crop of significant nutritional, therapeutic, and economic value. However, the development of elite cultivars via genetic transformation has been severely restricted by...
Leaf Habit Drives Divergent Leaf Hydraulic Strategies in Gardening Trees From a Subtropical City in China [0.03%]
叶片习性驱动的中国亚热带城市园林树种的叶水力策略分化
Ming-Hui Xie,Ying-Ying Zhang,Xue Zhou et al.
Ming-Hui Xie et al.
Leaf hydraulics are crucial for understanding plant water use, yet the leaf hydraulic traits of gardening trees remain poorly quantified compared to forest trees. In this study, we investigated leaf hydraulic conductivity, vulnerability, an...
Can Phosphite Substitute for Phosphate in ptxD Rice? Evidence From Uptake and Agronomic Performance [0.03%]
水稻中磷ites能否替代磷酸盐的证据来自吸收和 agronomic 表现
Clenya Carla Leandro de Oliveira,André Luís da Silva Parente Nogueira,José Nivaldo de Oliveira Sátiro et al.
Clenya Carla Leandro de Oliveira et al.
Engineering crops to metabolize phosphite (Phi) as a phosphorus (P) source has been reported as a promising strategy to enhance nutrient use efficiency and enable innovative crop management. Here, we evaluated rice (Oryza sativa L.) plants ...
Holobiont Plasticity Under Abiotic Stress: A Systems Biology Perspective on Plant-Bacteria-Fungi Interactions [0.03%]
非生物胁迫下的 holobiont 塑形:植物-细菌-真菌互作的系统生物学视角
Sudhir Kumar Upadhyay
Sudhir Kumar Upadhyay
Abiotic stress frequency and intensity are increasing, severely impacting plants' health, hence leading to significant crop yield losses (~20%-40% globally). In addition to modifying their genetic and physiological traits to increase stress...
The NAC Transcription Factor SlNAP2 Enhances Tomato Resistance to Ralstonia solanacearum [0.03%]
SlNAP2转录因子通过增强番茄对青枯菌的抗性促进其生长发育
Na Chen,Hongwei Xiao,Jiajun Wu et al.
Na Chen et al.
Bacterial wilt caused by Ralstonia solanacearum is a devastating soil-borne disease threatening tomato production with limited control strategies. NAC transcription factors play vital roles in plant stress responses, but their function in t...
Invasive Plant Conyza canadensis Exacerbates Wheat Susceptibility to Aphids and Disease Under Drought and Nitrogen Addition [0.03%]
加拿大一枝黄花加重干旱和氮添加条件下小麦对蚜虫和病害的敏感性
Miao Wu,Huiyuan Liu,Yingli Zhang et al.
Miao Wu et al.
Biological invasion and environmental stress such as drought and nitrogen (N) deposition can affect crop plant-insect interactions, threatening the stability of agricultural ecosystems. However, the combined effects of invasive plants and e...
Regulatory Crosstalk Between Tocopherol Biosynthesis and Chlorophyll Metabolism in Plants: Current Insights [0.03%]
植物生育酚生物合成和叶绿素代谢之间的调控交叉通讯的最新研究进展
Deshika Panapitiya,Maria Stefanie Dwiyanti
Deshika Panapitiya
Plants produce a wide array of bioactive compounds that are essential for both plants and humans. Among those compounds, tocopherols (vitamin E) are lipid-soluble antioxidants that play key roles in plant protection and human health. Precur...
Genome-Wide Identification of m6A Regulatory Gene Family in Kenaf and Reveals HcYTH21 as a Positive Regulator of Salt Stress [0.03%]
基于全基因组鉴定木棉m6A甲基化调节基因家族并揭示其盐胁迫响应中的作用机制
Caijin Wang,Yan Liu,Jiao Yue et al.
Caijin Wang et al.
N6-methyladenosine (m6A) regulatory genes are widespread in plants and play crucial roles in abiotic stress responses. However, these genes remain largely unexplored in kenaf (Hibiscus cannabinus L.), an economically important fiber crop. I...
Functional Divergence of the PAL Gene Family in Salt and Cadmium Stress Responses of Populus alba [0.03%]
白杨PAL基因家族在盐和镉胁迫响应中的功能分化
Jing Xue,Xiu-Xing Zhang,Yu-Wen Wang et al.
Jing Xue et al.
Phenylalanine ammonia-lyase (PAL) is the rate-limiting enzyme initiating the phenylpropanoid metabolic pathway and plays a central role in regulating plant secondary metabolism and stress responses. In this study, five PoalbPAL genes were i...
Integrated Transcriptomic and Metabolomic Profiling Reveals Developmental Reprogramming of Flavonoid Biosynthesis in Styphnolobium japonicum Flowers [0.03%]
集成转录组和代谢组学分析揭示了日本紫荆花黄酮生物合成的重编程现象
Huiyuan Liu,Yu Zhang,Miao Wu et al.
Huiyuan Liu et al.
Styphnolobium japonicum is valued for its flavonoid-rich flowers, yet the developmental regulation of these metabolites remains unclear. Here, we integrated transcriptomic and metabolomic analyzes across four floral stages to reveal dynamic...