Âé¶¹ÒùÔº


This article has been reviewed according to Science X's and . have highlighted the following attributes while ensuring the content's credibility:

fact-checked

peer-reviewed publication

trusted source

proofread

Trimer complex TaNF-Y balances grain yield and quality in wheat: Study

wheat
Credit: Wikipedia

Breeding efforts have focused intensively on improving grain yield and quality in wheat (Triticum aestivum L.). Content and composition of grain starch and seed storage protein (SSP) are two critical factors that determine grain yield and quality. Starch content is closely related to grain weight, while SSP content and composition directly affect the quality of flour. However, there is often a negative correlation between SSP content (quality) and starch content (grain yield).

Recently, the research group of Xiao Jun at the Institute of Genetics and Developmental Biology of the Chinese Academy of Sciences, identified a trimer complex, TaNF-Y, which can simultaneously regulate the biosynthesis of starch and SSP.

The research results were online on September 18, 2024, in The Plant Cell with the title "NUCLEAR FACTOR-Y-POLYCOMB REPRESSIVE COMPLEX2 dynamically orchestrates starch and seed storage protein biosynthesis in wheat."

Previous studies have reported on the transcriptional regulation of wheat SSP-encoding genes and starch biosynthetic enzyme-encoding genes. However, little is known about how regulate both SSP and starch accumulation and coordinate the balance between quality and yield.

TaNF-Y includes TaNF-YA3-D, TaNF-YB7-B, and TaNF-YC6-B. These trimer complexes directly or indirectly regulate the synthesis of SSP and starch by changing their own transcription patterns.

"A decrease in starch content and an increase in storage protein content were observed after silencing the TaNF-YA3 and TaNF-YC6 genes using RNAi interference technology," said Professor Xiao.

Further analysis found that the TaNF-Y trimer complex interacts with Polycomb Repressive Complexes 2 (PRC2), recruiting histone H3K27me3 modifications and inhibit the transcription of SSP-encoding genes TaLMW-400 and TaGli-γ-700, as well as a negative regulator of starch-encoding , TaNAC019. In this way, it directly regulates wheat SSP and indirectly regulates starch accumulation.

In addition, natural variations in the coding region of TaNF-YB7-B affect its interaction with PRC2, with the haplotype TaNF-YB7-BHap2 showing higher starch contents and lower SSP contents. This has been positively selected during the breeding process, consistent with the goal of enhancing yield in China's breeding process.

More information: Jinchao Chen et al, NUCLEAR FACTOR-Y–POLYCOMB REPRESSIVE COMPLEX2 dynamically orchestrates starch and seed storage protein biosynthesis in wheat, The Plant Cell (2024).

Journal information: Plant Cell

Citation: Trimer complex TaNF-Y balances grain yield and quality in wheat: Study (2024, September 27) retrieved 26 April 2025 from /news/2024-09-trimer-complex-tanf-grain-yield.html
This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.

Explore further

Examining early grain development in bread wheat

1 shares

Feedback to editors