Phospholipid production and signaling by a plant defense inducer against Podosphaera xanthii is genotype-dependent. [PDF]
Margaritopoulou T +4 more
europepmc +1 more source
Identification of Gene Responsible for Conferring Resistance against Race KN2 of Podosphaera xanthii in Melon. [PDF]
Kheng S +4 more
europepmc +1 more source
Elucidation of resistance signaling and identification of powdery mildew resistant mapping loci (ClaPMR2) during watermelon-Podosphaera xanthii interaction using RNA-Seq and whole-genome resequencing approach. [PDF]
Mandal MK, Suren H, Kousik C.
europepmc +1 more source
The mutant STAY-GREEN (<i>Cssgr</i>) in cucumber interacts with the CSEP30 protein to elicit a defense response against <i>Podosphaera xanthii</i>. [PDF]
Li H +4 more
europepmc +1 more source
Powdery mildew resistance in pumpkin sub-accessions from the vegetable germplasm bank. [PDF]
Powdery mildew is one of the most challenging diseases for pumpkin and squash production, as it can cause significant losses in fruit yield and quality.
ARAGAO, F. A. S. de +5 more
core
Geographic Distribution and Genetic Diversity of Podosphaera xanthii in Pakistan
Najam-ul-Sehar Afshan +8 more
openaire +1 more source
Transformation by growth onto agro-infiltrated tissues (TGAT), a simple and efficient alternative for transient transformation of the cucurbit powdery mildew pathogen Podosphaera xanthii. [PDF]
Martínez-Cruz J +3 more
europepmc +1 more source
Twenty-nine new host records of powdery mildew fungi (Erysiphaceae) in Taiwan with an updated checklist. [PDF]
Yeh YW, Piepenbring M, Kirschner R.
europepmc +1 more source
Machine Learning- and AI-Driven QSAR Models for the Discovery of Novel Potential Fungicides: FAPI (Fungicide Targeting Acid Phosphatase Inhibition). [PDF]
Gálvez-Llompart M +6 more
europepmc +1 more source
AI-Integrated Omics Analysis Reveals Cultivar-Specific Resistance Mechanisms to Powdery Mildew in <i>Cucurbita pepo</i>. [PDF]
Dublino R +6 more
europepmc +1 more source

