The findings elucidate the molecular architecture and macromolecular interaction networks underlying rice defence against BPH, providing key targets for protein engineering and molecular breeding to enhance BPH resistance and contribute to global food security.
Brown planthopper (BPH) is a devastating rice pest worldwide, and enhancing intrinsic plant resistance represents a sustainable strategy for its control. Here, we report that OsJAC1, a gene encoding a protein harboring dirigent and jacalin-related lectin domains, positively regulates BPH resistance in rice by priming d...
Jie Wang, Na Sun, Run-Bin Zhong et al.· Plants· 0 citations
Soil salinization is a major constraint on peanut production. Here, we characterized the physiological and transcriptomic responses of peanut (Arachis hypogaea L.) seedlings exposed to 200 mM NaCl. Salt stress markedly inhibited plant growth, elevated the Na+/K+ ratio, and induced oxidative stress, as reflected by incr...
Xiaobo Zhao, Chun-Juan Li, S. Shan et al.· Agronomy· 0 citations
Together, these findings highlight coordinated molecular and metabolic reprogramming that strengthens rice resistance to RFS, providing valuable candidate genes and metabolites for breeding programs.
Yan-Min Yu, Hai-Ying Liu, Hong-Tao Wu et al.· American Journal of Biochemi...· 0 citations
Results suggest that the stronger resistance to P. nicotianae by X7 is associated with rapid coordination of defense-related transcription, phenylpropanoid and flavonoid metabolism, hormone signaling, and suppression of photosynthesis and primary metabolism.
Guo Li, Chang-Jiang Zhang, Bei Yu et al.· Plant physiology and biochem...· 0 citations
Rice production is chronically threatened by the piercing‑sucking brown planthopper (BPH) and the chewing striped stem borer (SSB). Although BPH‑resistance genes have been cloned, no endogenous SSB‑resistance gene is known, and characterized pest‑responsive microRNAs mostly confer pest‑specific rather than broad‑spectr...
Downy mildew (DM) in cucumber (Cucumis sativus L.), caused by Pseudoperonospora cubensis, severely restricts cucumber growth and yield. This study compared transcriptomic responses to P. cubensis infection between the DM-resistant cucumber cultivar ‘115’ and the DM-susceptible cultivar ‘XTMC’ at 48 and 72 h post-infect...
Qian-Yi Zhang, Ze-Bin Xu, Ji-Ran Li et al.· Plants· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.