Now, scientists led by Jijie Chai and Paul Schulze-Lefert from the University of Cologne and the Max Planck Institute for Plant Breeding Research in Cologne, Germany, and Yuhang Chen from the Chinese Academy of Sciences, China, have decoded the structure of the Sr35 wheat protein. This allowed them to explain how Sr35 protects Einkorn wheat against Ug99.
Sr35 is an example of a nucleotide-binding leucine-rich repeat (NLR) receptor inside plant cells that detects the presence of invading pathogens. NLR activation is triggered by the recognition of pathogen “effectors”, small proteins that are delivered into plant cells by invading microorganisms in order to weaken the plant. Each NLR typically binds to one type of effector.
When Sr35 is activated, five receptors assemble together into a large protein complex, which the researchers term the “Sr35 resistosome”. Such resistosomes have the ability to act as channels in the plant cell membrane. This channel activity sets in motion powerful immune responses that culminate in the suicide of plant cells at the site of infection as a sort of self-sacrifice to protect the rest of the plant.
In this study, the researchers succeeded for the first time in resolving the structure and describing the immune function of a resistosome from a crop species.
The scientists began by synthesizing both Sr35 and its corresponding Ug99 effector in insect cells, a strategy that allowed them to isolate and purify large amounts of Sr35 resistosomes, and used cryogenic electron microscopy, a technique in which samples are frozen to cryogenic temperatures allowing for the determination of biomolecular structures at atomic resolution. Alexander Förderer, who spearheaded the study says: “In the structure of Sr35 we could identify those parts of the protein that are important for Ug99 effector recognition. With this insight, I hope that we can generate new NLRs that can be applied in the field to protect elite wheat varieties against Ug99 and in this way contribute to global food security.”
Click here to see more...