TaNF-Y-PRC2 orchestrates temporal control of starch and protein synthesis in wheat

Author:

Chen Jinchao,Zhao Long,Li Haoran,Yang Changfeng,Wang Dongzhi,Lin Xuelei,Lin Yujing,Zhang Hao,Bie Xiaomin,Zhao Peng,Xu Shengbao,Zhang Xiansheng,Zhang XueyongORCID,Yao YingyinORCID,Xiao Jun

Abstract

AbstractThe endosperm in cereal grains is instrumental in determining grain yield and seed quality, as it controls the production of starch and protein. In this study, we identified a specific TaNF-Y trimeric complex, consisting of TaNF-YA3-D, TaNF-YB7-B, and TaNF-YC6-B, exhibiting robust expression within endosperm during grain filling stage in wheat. Knock-down of eitherTaNF-YA3orTaNF-YC6led to less starch but more gluten proteins. Detailed analyses have unveiled that the TaNF-Y indirectly boosts starch biosynthesis genes by reducing TaNAC019, a repressor ofTaAGPS1a, TaSuS2, thereby regulating starch biosynthesis. Conversely, the TaNF-Y directly inhibits the expression of gliadin and low molecular weight (LMW)-GS coding genes, includingTaGli-γ-700andTaLMW-400. Furthermore, the TaNF-Y components interact with TaSWN, the histone methyltransferase subunit of Polycomb repressive complex 2 (PRC2), to repress the expression ofTaNAC019,TaGli-γ-700, andTaLMW-400through H3K27me3 modification. Notably, weak mutation ofTaFIE, core subunit of PRC2, has reduced starch but elevated gliadin and LMW-GS levels. Intriguingly, DNA variations of TaNF-Y components are widely associated with seed developmental traits. In particular, variation within the coding region ofTaNF-YB7-Bis linked to differences in starch and protein content. Distinct haplotypes ofTaNF-YB7-Baffect its interaction with TaSWN, influencing the repression of targets likeTaNAC019andTaGli-γ-700. Our findings illuminate the intricate molecular mechanisms governing epigenetic regulation by the TaNF-Y-PRC2 for wheat endosperm development. Manipulating the TaNF-Y complex holds potential for optimizing grain yield and enhancing quality.

Publisher

Cold Spring Harbor Laboratory

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