Results 161 to 170 of about 15,868 (283)
H3K27me3‐Mediated Epigenetic Silencing of FgHMG1 Enables Fungal Host Immune Evasion
ABSTRACT Histone H3 lysine 27 trimethylation (H3K27me3) is essential for fungal pathogenicity, yet its contribution to pathogen–host interactions remains incompletely understood. Here, we profiled H3K27me3 dynamics in Fusarium graminearum during infection and identified 132 H3K27me3‐marked genes (FgHMGs).
Xiaozhen Zhao +17 more
wiley +1 more source
Autoactive MtDMI1 Reprogrammes Immunity and Development in Tomato via Ethylene Signalling
ABSTRACT The Common Symbiosis Signalling Pathway (CSSP) underpins interactions between plants and microbes, yet its potential for crop improvement remains underexplored. Here, we investigated the gain‐of‐function mutant SPD1 (MtDMI1S760N), which constitutively activates the symbiotic signalling pathway in Medicago truncatula, by expressing it in tomato
Haiyue Liu, Ji Xu, Fang Xie
wiley +1 more source
Enhancement of Shikalkin Production in Arnebia euchroma Callus by a Fungal Elicitor, Rhizoctonia solani. [PDF]
Arghavani P, Haghbeen K, Mousavi A.
europepmc +1 more source
Effect of two fungal elicitor fractions on different host-parasite systems
Deux fractions élicitrices, issues de Phytophthora capsici et partiellement purifiées, G4 et G5 sont appliquées sur organes foliaires en survie de Capsicum annuum et de Cucumis melo. Elles ont pour effet non seulement de réduire l’infection fongique par P. capsici (tabl. 1) ou Colletotrichum lagenarium (tabl.
Molot, Paul-Michel +3 more
openaire +1 more source
ABSTRACT Pokkah Boeng disease (PBD), caused by Fusarium sacchari, has severely impacted the yield and quality of sugarcane, resulting in significant economic losses. However, the molecular interaction mechanisms between F. sacchari and sugarcane remain poorly understood.
Deng Wu +8 more
wiley +1 more source
ABSTRACT Protein‐based biopesticides and biostimulants are critical for the future of sustainable agriculture, yet their utility is severely limited by inefficient delivery into plant cells. Traditional cell‐penetrating peptides enable protein uptake but lack the efficiency, systemic activity and scalability required for crop production.
Jiyang Wang +12 more
wiley +1 more source
AhBWR15, A Novel RLK Gene, Confers Resistance to Ralstonia solanacearum in Peanut
ABSTRACT Bacterial wilt (BW), a severe soil‐borne disease caused by Ralstonia solanacearum, significantly impedes global peanut production. Despite its impact, the mechanisms underlying BW resistance in peanut remain unclear. Herein, we selected the highly resistant variety Nongdahua108 (H108) and the susceptible variety Nongdahua107 (H107) to develop ...
Zenghui Cao +16 more
wiley +1 more source
Plant Peptides on the Rise: From Historical Insight to Future Applications
ABSTRACT Plant peptides constitute a rapidly expanding class of signalling molecules essential to plant physiology, mediating key processes such as development, stress adaptation, and immune responses. This review traces the history of plant peptide research, from the seminal discovery of systemin to the recent identification of non‐canonical peptides (
Shunxi Wang +5 more
wiley +1 more source
ABSTRACT Plant viruses frequently cause severe economic losses in worldwide crop production. Developing broad‐spectrum resistance is the most efficient approach for controlling plant viral diseases. In this work, we found that the 17K protein of barley yellow dwarf viruses (BYDVs), which has multiple functions in viral pathogenesis including acting as ...
Zhaohui Wang +16 more
wiley +1 more source
MdRLKT1–MdRAX2–MdMKS1 Module Positively Regulating Resistance to Cytospora mali in Apple
ABSTRACT Valsa canker (caused by Cytospora mali = Valsa mali. C. mali) is one of the most destructive diseases affecting apple cultivation. The scarcity of natural germplasm resources with high resistance and immunity underscores the importance of exploring plant immune regulation factors of disease‐resistant breeding.
Yanan Tang +5 more
wiley +1 more source

