Stacked mutations in wheat homologues of rice SEMI-DWARF1 confer a novel semi-dwarf phenotype

Author:

Ndreca Barbora1,Huttly Alison1,Bibi Sajida1,Bayon Carlos1,Lund George1,Ham Joshua1,Alarcón-Reverte Rocío1,Addy John1,Tarkowská Danuše2,Pearce Stephen1,Hedden Peter1,Thomas Stephen G.1,Phillips Andrew L.1

Affiliation:

1. Rothamsted Research

2. Czech Academy of Sciences and Palacky University

Abstract

Abstract

Background Semi-dwarfing alleles are used widely in cereals to confer improved lodging resistance and assimilate partitioning. The most widely deployed semi-dwarfing alleles in rice and barley encode the gibberellin (GA)-biosynthetic enzyme GA 20-OXIDASE2 (GA20OX2). The hexaploid wheat genome carries three homoeologous copies of GA20OX2, and because of functional redundancy, loss-of-function alleles of a single homoeologue would not be selected in wheat breeding programmes. Instead, approximately 70% of wheat cultivars carry gain-of-function mutations in REDUCED HEIGHT 1 (RHT1) genes that encode negative growth regulators and are degraded in response to GA. Semi-dwarf Rht-B1b or Rht-D1b alleles encode proteins that are insensitive to GA-mediated degradation. However, because RHT1 is expressed ubiquitously these alleles have pleiotropic effects that confer undesirable traits in some environments. Results We have applied reverse genetics to combine loss-of-function alleles in all three homoeologues of wheat GA20OX2 and its paralogue GA20OX1 and evaluated their performance in three years of field trials. ga20ox1 mutants exhibited a mild height reduction (approximately 3%) suggesting GA20OX1 plays a minor role in stem elongation in wheat. ga20ox2 mutants have reduced GA1 content and are 12-32% shorter than their wild-type segregants, comparable to the effect of the Rht-D1b ‘Green Revolution’ allele. The ga20ox2 mutants showed no significant negative effects on yield components, although these alleles should be evaluated in different genetic backgrounds and environments. Conclusions Our study demonstrates that induced mutagenesis can expand genetic variation in polyploid crops to uncover novel alleles and that mutations in GA20OX2 could have utility in wheat breeding as alternative semi-dwarfing alleles.

Publisher

Research Square Platform LLC

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