19 results on '"Dou, Daolong"'
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2. CRISPR/Cas9‐guided editing of a novel susceptibility gene in potato improves Phytophthora resistance without growth penalty
3. Plant secondary metabolite citral interferes with Phytophthora capsici virulence by manipulating the expression of effector genes
4. A pair of G‐type lectin receptor‐like kinases modulates nlp20‐mediated immune responses by coupling to the RLP23 receptor complex
5. A Nicotiana benthamiana receptor‐like kinase regulates Phytophthora resistance by coupling with BAK1 to enhance elicitin‐triggered immunity
6. Cyclophilin effector Al106 of mirid bug Apolygus lucorum inhibits plant immunity and promotes insect feeding by targeting PUB33
7. Ferroptosis induced by the biocontrol agent Pythium oligandrum enhances soybean resistance to Phytophthora sojae
8. An F‐box protein attenuates fungal xylanase‐triggered immunity by destabilizing LRR‐RLP NbEIX2 in a SOBIR1 ‐dependent manner
9. A Phytophthora capsici RXLR effector manipulates plant immunity by targeting RAB proteins and disturbing the protein trafficking pathway
10. A G‐type lectin receptor‐like kinase regulates the perception of oomycete apoplastic expansin‐like proteins
11. Vitellogenin from planthopper oral secretion acts as a novel effector to impair plant defenses
12. Phytophthora capsici CBM1‐containing protein CBP3 is an apoplastic effector with plant immunity‐inducing activity
13. Phytophthora infection signals‐induced translocation of NAC089 is required for endoplasmic reticulum stress response‐mediated plant immunity
14. A Phytophthora capsici RXLR effector targets and inhibits the central immune kinases to suppress plant immunity
15. Nicotiana benthamiana LRR‐RLP NbEIX2 mediates the perception of an EIX‐like protein from Verticillium dahliae
16. Pathogen‐informed breeding for crop disease resistance
17. A Phytophthora capsici effector suppresses plant immunity via interaction with EDS1
18. Resistance to Phytophthora pathogens is dependent on gene silencing pathways in plants
19. Genome sequence of Valsa canker pathogens uncovers a potential adaptation of colonization of woody bark
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