Litcius/Paper detail

Genetic variation in <scp><i>ZmKW1</i></scp> contributes to kernel weight and size in dent corn and popcorn

Long Zhang, Miaomiao Fu, Wenyu Li, Yongbin Dong, Qiang Zhou, Qilei Wang, Xinyu Li, Jie Gao, Yan Wang, Han Wang, Yayong Li, Yayong Li, Jiechen Wang, Yongrui Wu, Yuling Li, Yuling Li

2024Plant Biotechnology Journal13 citationsDOIOpen Access PDF

Abstract

Summary Kernel weight is a critical factor that essentially affects maize ( Zea mays ) yield. In natural inbred lines, popcorn kernels exhibit overtly smaller sizes compared to dent corn kernels, and kernel weight, which is controlled by multiple genetic loci, varies widely. Here, we characterized a major quantitative trait locus on chromosome 1, responsible for controlling kernel weight ( qKW1 ) and size. The qKW1 locus encodes a protein containing a seven in absentia domain with E3 ubiquitin ligase activity, expressed prominently from the top to the middle region of the endosperm. The presence and function of qKW1 were confirmed through ZmKW1 gene editing, where the mutations in ZmKW1 within dent corn significantly increased kernel weight, consistent with alterations in kernel size, while overexpression of ZmKW1 had the opposite effect. ZmKW1 acts as a negative regulator of kernel weight and size by reducing both the number and size of the endosperm cells and impacting endosperm filling. Notably, the popcorn allele qKW1 N and the dent corn allele qKW1 D encode identical proteins; however, the differences in promoter activity arise due to the insertion of an Indel‐1346 sequence in the qKW1 N promoter, resulting in higher expression levels compared to qKW1 D , thus contributing to the variation in kernel weight and size between popcorn and dent corn kernels. Linkage disequilibrium analysis of the 2.8 kb promoter region of ZmKW1 in a dataset comprising 111 maize association panels identified two distinct haplotypes. Our results provide insight into the mechanisms underlying kernel development and yield regulation in dent corn and popcorn, with a specific focus on the role of the ubiquitination system.

Topics & Concepts

BiologyEndospermGeneticsLocus (genetics)AlleleInbred strainIndelZea maysGeneGenotypeAgronomySingle-nucleotide polymorphismGenetic Mapping and Diversity in Plants and AnimalsGenetics and Plant BreedingWheat and Barley Genetics and Pathology