A molecular framework for grain number determination in barley

Author:

Huang Yongyu1ORCID,Kamal Roop1ORCID,Shanmugaraj Nandhakumar1ORCID,Rutten Twan1ORCID,Thirulogachandar Venkatasubbu1ORCID,Zhao Shuangshuang1,Hoffie Iris1,Hensel Goetz1ORCID,Rajaraman Jeyaraman1,Moya Yudelsy Antonia Tandron1ORCID,Hajirezaei Mohammad-Reza1ORCID,Himmelbach Axel1ORCID,Poursarebani Naser1ORCID,Lundqvist Udda2,Kumlehn Jochen1ORCID,Stein Nils13ORCID,von Wirén Nicolaus1ORCID,Mascher Martin14ORCID,Melzer Michael1ORCID,Schnurbusch Thorsten15ORCID

Affiliation:

1. Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstr. 3, OT Gatersleben, 06466 Seeland, Germany.

2. Nordic Genetic Resource Center, Alnarp SE-23053, Sweden.

3. Center for Integrated Breeding Research (CiBreed), Georg-August-University, Göttingen, Germany.

4. German Centre for Integrative Biodiversity Research (iDiv) Halle-Jena-Leipzig, Leipzig, Germany.

5. Martin Luther University Halle-Wittenberg, Faculty of Natural Sciences III, Institute of Agricultural and Nutritional Sciences, 06120 Halle, Germany.

Abstract

Flowering plants with indeterminate inflorescences often produce more floral structures than they require. We found that floral primordia initiations in barley ( Hordeum vulgare L.) are molecularly decoupled from their maturation into grains. While initiation is dominated by flowering-time genes, floral growth is specified by light signaling, chloroplast, and vascular developmental programs orchestrated by barley CCT MOTIF FAMILY 4 ( HvCMF4 ), which is expressed in the inflorescence vasculature. Consequently, mutations in HvCMF4 increase primordia death and pollination failure, mainly through reducing rachis greening and limiting plastidial energy supply to developing heterotrophic floral tissues. We propose that HvCMF4 is a sensory factor for light that acts in connection with the vascular-localized circadian clock to coordinate floral initiation and survival. Notably, stacking beneficial alleles for both primordia number and survival provides positive implications on grain production. Our findings provide insights into the molecular underpinnings of grain number determination in cereal crops.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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