Mechanism of self/nonself-discrimination in Brassica self-incompatibility

Author:

Murase Kohji,Moriwaki YoshitakaORCID,Mori TomoyukiORCID,Liu Xiao,Masaka Chiho,Takada Yoshinobu,Maesaki Ryoko,Mishima Masaki,Fujii SotaORCID,Hirano YoshinoriORCID,Kawabe Zen,Nagata KojiORCID,Terada TohruORCID,Suzuki GoORCID,Watanabe MasaoORCID,Shimizu KentaroORCID,Hakoshima ToshioORCID,Takayama SeijiORCID

Abstract

AbstractSelf-incompatibility (SI) is a breeding system that promotes cross-fertilization. In Brassica, pollen rejection is induced by a haplotype-specific interaction between pistil determinant SRK (S receptor kinase) and pollen determinant SP11 (S-locus Protein 11, also named SCR) from the S-locus. Although the structure of the B. rapa S9-SRK ectodomain (eSRK) and S9-SP11 complex has been determined, it remains unclear how SRK discriminates self- and nonself-SP11. Here, we uncover the detailed mechanism of self/nonself-discrimination in Brassica SI by determining the S8-eSRK–S8-SP11 crystal structure and performing molecular dynamics (MD) simulations. Comprehensive binding analysis of eSRK and SP11 structures reveals that the binding free energies are most stable for cognate eSRK–SP11 combinations. Residue-based contribution analysis suggests that the modes of eSRK–SP11 interactions differ between intra- and inter-subgroup (a group of phylogenetically neighboring haplotypes) combinations. Our data establish a model of self/nonself-discrimination in Brassica SI.

Funder

MEXT | Japan Society for the Promotion of Science

Ministry of Education, Culture, Sports, Science and Technology

Japan Agency for Medical Research and Development

Heiwa Nakajima Foundation

Takeda Science Foundation

Toray Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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