Mar 2026· American Journal of Biochemistry and Biotechnology· 0 citations· 18 references
TL;DR
Together, these findings highlight coordinated molecular and metabolic reprogramming that strengthens rice resistance to RFS, providing valuable candidate genes and metabolites for breeding programs.
Abstract
: Rice false smut, caused by Ustilaginoidea virens , is an important fungal disease that reduces both grain yield and quality. To dissect the molecular basis of resistance, we combined transcriptome sequencing and metabolite profiling in resistant and susceptible rice cultivars. Transcriptome sequencing revealed more than 8,500 genes with altered expression patterns after infection, while metabolite profiling detected over 700 significantly changed compounds. Resistant plants showed strong activation of immune regulators, including WRKY transcription factors, receptor-like kinases, and pathogenesis-related proteins, along with enhanced phenylpropanoid metabolism. Metabolite changes included higher levels of antifungal compounds (for example, sakuranetin, ferulic acid, caffeic acid, and luteolin). Network integration implicated salicylic acid, jasmonic acid, and MAPK signaling in coordinating cell-wall reinforcement and suppression of susceptibility pathways. Together, these findings highlight coordinated molecular and metabolic reprogramming that strengthens rice resistance to RFS, providing valuable candidate genes and metabolites for breeding programs.
Simple Summary Zanthoxylum armatum is an economically important tree species in Southwest China valued for the flavor and medicinal properties of its fruits and leaves. Leaf rust disease severely threatens its cultivation. We discovered a spontaneous branch mutant with strong rust resistance on an otherwise susceptible...
Han-Lu Hu, Cheng-Jie Shu, Xiao-Xia Sun et al.· Biology· 0 citations
These findings provide the first comprehensive evidence that alkaloid metabolism, particularly the isoquinoline alkaloid pathway, are transcriptionally and metabolically reprogrammed during blister blight infection, suggesting a potential role in tea’s defense against this pathogen.
Yanglongyu Chen, Ping Li, Yu-Qing Ma et al.· Frontiers in Plant Science· 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
Colletotrichum higginsianum (Ch) is a typical hemibiotrophic ascomycetous fungus. The diseases it causes often lead to considerable economic losses in global cruciferous crop production. However, current knowledge is still insufficient for us to gain a deeper understanding of how host plants respond at the transcriptio...
Hong Ye, Qi-Wen Gao, Yong-Jian Zou et al.· Life· 0 citations
Hemp (
Cannabis sativa
L.) faces significant weed management challenges due to limited registered herbicides. This study evaluated tolerance of hemp to eight post-emergence herbicides and investigated the molecular mechanisms underlying tolerance to bispyribac-sodium through RNA sequencing. Greenhouse screening r...
Navneet Kaur, Anil Kumar, Tabarak Malik et al.· Journal of Cannabis Research· 0 citations