PubMed 33526582

PubMed ID: 33526582

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APETALA2 functions as a temporal factor together with BLADE-ON-PETIOLE2 and MADS29 to control flower and grain development in barley.
Authors: Shoesmith Jennifer R, Solomon Charles Ugochukwu, Yang Xiujuan, Wilkinson Laura G, Sheldrick Scott, van Eijden Ewan, Couwenberg Sanne, Pugh Laura M, Eskan Mhmoud, Stephens Jennifer, Barakate Abdellah, Drea Sinéad, Houston Kelly, Tucker Matthew R, McKim Sarah M
Journal: Development (Cambridge, England) (Development), Vol.148(5), 2021‑Mar‑09

DOI: 10.1242/dev.194894

Abstract
Cereal grain develops from fertilised florets. Alterations in floret and grain development greatly influence grain yield and quality. Despite this, little is known about the underlying genetic control of these processes, especially in key temperate cereals such as barley and wheat. Using a combination of near-isogenic mutant comparisons, gene editing and genetic analyses, we reveal that HvAPETALA2 (HvAP2) controls floret organ identity, floret boundaries, and maternal tissue differentiation and elimination during grain development. These new roles of HvAP2 correlate with changes in grain size and HvAP2-dependent expression of specific HvMADS-box genes, including the B-sister gene, HvMADS29 Consistent with this, gene editing demonstrates that HvMADS29 shares roles with HvAP2 in maternal tissue differentiation. We also discovered that a gain-of-function HvAP2 allele masks changes in floret organ identity and grain size due to loss of barley LAXATUM.A/BLADE-ON-PETIOLE2 (HvBOP2) gene function. Taken together, we reveal novel pleiotropic roles and regulatory interactions for an AP2-like gene controlling floret and grain development in a temperate cereal.
Publication Types
Journal Article Research Support, Non-U.S. Gov't
Keywords
AP2 B-sister BOP1/2 Barley CRISPR/Cas9 Floret Grain Integument MADS-box Nucellus
Grant Support
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