microRNA172 plays a critical role in wheat spike morphology and grain threshability

Author:

Debernardi Juan Manuel1,Lin Huiqiong1,Faris Justin D.2,Dubcovsky Jorge134ORCID

Affiliation:

1. Dept. Plant Sciences, University of California, Davis, CA 95616, USA

2. USDA–ARS Cereal Crops Research Unit, Northern Crop Science Laboratory, Fargo, ND 58102, USA

3. Howard Hughes Medical Institute, Chevy Chase, MD 20815, USA

4. Gordon and Betty Moore Foundation, Palo Alto, California, USA

Abstract

Wheat domestication from wild species involved mutations in the Q gene. The q allele (wild wheats) is associated with elongated spikes and hulled grains, whereas the mutant Q allele (domesticated wheats) confers subcompact spikes and free-threshing grains. Previous studies showed that Q encodes an AP2-like transcription factor, but the causal polymorphism of the domestication traits remained unclear. Here we show that the interaction between microRNA172 (miR172) and the Q allele is reduced by an SNP in the miRNA binding site. The inhibition of miR172 activity by a miRNA target mimic resulted in compact spikes and transition from glumes to florets in distal spikelets. By contrast, overexpression of miR172 was sufficient to induce elongated spikes and non-free-threshing grains, similar to those observed in three Q loss-of-function mutations. These lines showed transitions from florets to glumes in the basal spikelets. These localized homeotic changes were associated with opposing miR172/ Q gradients along the spike. We propose that the selection of a nucleotide change at the miR172 binding site contributed to subcompact spikes and free-threshing grains during wheat domestication.

Funder

U.S. Department of Agriculture

Howard Hughes Medical Institute

Gordon and Betty Moore Foundation

International Wheat Yield Partnership

Human Frontier Science Program

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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