Huge thanks to my amazing co-authors, to AG Saur and AG Döhlemann, and to all our collaborators for their fantastic contributions. @MerleBS4@IzzySaur@gun_doe@Grandpa_Hiro@ChemicalSara82 &Matthieu Pierre Platre.
https://t.co/x8g8yrnIPU
Newly published in Advanced Science | We established a simple protocol for reliable, high-throughput infection with R. solani in the field. This helps us identify maize malate dehydrogenase as a new resistance gene by enhancing mtROS accumulation. https://t.co/lJEsyIGEFg
I am excited to share my research is now published! 📚
An apoplastic fungal effector disrupts N-glycosylation of ZmLecRK1, inducing its degradation to suppress disease resistance in maize
https://t.co/quqwkMZLtB
@SN and #SNAuthor.
Our preprint is now published! It tells a story of regulating paired NLRs through domain shuffling. Great collaboration with @Hailong Guo lab. Thanks for the support of our previous supervisor @jonathandgjones https://t.co/bOTAI2U2X8
Exzellente #Lehre: #UniHohenheim zeichnet Top-Dozenten mit Hohenheimer Lehrpreis aus. Glückwunsch an Jun.-Prof. Dr. Chang Liu vom Fachgebiet Epigenetik! | https://t.co/crLrpa43GD
Thrilled to see our recent work on the broad-spectrum disease-resistance gene ZmLecRK1 in maize is highlighted in Mol Plant @MPlantPCom by Miguel-Ángel Torres and Lucía Jordá. #spotlight https://t.co/tNSudyjQLi; #research https://t.co/lySNoyFMXR
Excited to see our work on maize broad-spectrum gene ZmLecRK1 out in Mol Plant @MPlantPcom: 1) a single SNP determines its interaction with ZmBAK1; 2) the susceptible allele is conserved in the grass, while the resistance allele is only present in maize.
Thrilled to share our latest work on preprint! We demonstrate: 1) effector AvrPtoB suppresses helper NLRs ADR1s; 2) the counteractive strategies by plants; 3) the long sought-after function of NLR protein SNC1. (1/9)
https://t.co/hme8pj1p0d