A proteomic analysis of grain yield-related traits in wheat.

AoB Plants

Department of Agronomy, Purdue University, West Lafayette, IN, USA.

Published: October 2020

AI Article Synopsis

  • Grain yield in wheat is influenced by tillering capacity, kernel number, and kernel weight, making it a key focus for breeders and agronomists.
  • The study used label-free quantitative proteomics to analyze various wheat organs related to yield, identifying a total of 3,182 proteins across samples, with the most from spike initiation.
  • Several proteins showed differences in abundance between organs, and specific proteins like Argonaute proteins and expansins were linked to spike and kernel development, suggesting potential targets for enhancing grain yield.

Article Abstract

Grain yield, which is mainly contributed by tillering capacity as well as kernel number and weight, is the most important trait to plant breeders and agronomists. Label-free quantitative proteomics was used to analyse yield-contributing organs in wheat. These were leaf sample, tiller initiation, spike initiation, ovary and three successive kernel development stages at 5, 10 and 15 days after anthesis (DAA). We identified 3182 proteins across all samples. The largest number was obtained for spike initiation (1673), while the smallest was kernel sample at 15 DAA (709). Of the 3182 proteins, 296 of them were common to all seven organs. Organ-specific proteins ranged from 148 in ovary to 561 in spike initiation. When relative protein abundances were compared to that of leaf sample, 347 and 519 proteins were identified as differentially abundant in tiller initiation and spike initiation, respectively. When compared with ovary, 81, 35 and 96 proteins were identified as differentially abundant in kernels sampled at 5, 10 and 15 DAA, respectively. Our study indicated that two Argonaute proteins were solely expressed in spike initiation. Of the four expansin proteins detected, three of them were mainly expressed during the first 10 days of kernel development after anthesis. We also detected cell wall invertases and sucrose and starch synthases mainly during the kernel development period. The manipulation of these proteins could lead to increases in tillers, kernels per spike or final grain weight, and is worth exploring in future studies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7586745PMC
http://dx.doi.org/10.1093/aobpla/plaa042DOI Listing

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