The auxin efflux carrier PIN1a regulates vascular patterning in cereal roots

Author:

Fusi Riccardo12ORCID,Milner Sara Giulia3,Rosignoli Serena3ORCID,Bovina Riccardo3,De Jesus Vieira Teixeira Cristovão14ORCID,Lou Haoyu156ORCID,Atkinson Brian S.1ORCID,Borkar Aditi N.7ORCID,York Larry M.18ORCID,Jones Dylan H.1ORCID,Sturrock Craig J.1ORCID,Stein Nils910ORCID,Mascher Martin911ORCID,Tuberosa Roberto3ORCID,O'Connor Devin12ORCID,Bennett Malcolm J.12ORCID,Bishopp Anthony1ORCID,Salvi Silvio3ORCID,Bhosale Rahul1213ORCID

Affiliation:

1. School of Biosciences University of Nottingham Sutton Bonington Campus Nottingham LE12 5RD UK

2. Future Food Beacon of Excellence University of Nottingham Sutton Bonington Campus Nottingham LE12 5RD UK

3. Department of Agricultural and Food Sciences University of Bologna Viale Fanin 44 40127 Bologna Italy

4. Laboratory of Cell and Molecular Biology, Institute of Biology University of Neuchâtel Neuchâtel Switzerland

5. School of Agriculture, Food and Wine, Waite Research Institute The University of Adelaide Urrbrae SA 5064 Australia

6. Australian Plant Phenomics Facility The University of Adelaide Waite Campus Urrbrae SA 5064 Australia

7. School of Veterinary Medicine and Science University of Nottingham LE12 5RD Nottingham UK

8. Biosciences Division Oak Ridge National Laboratory Oak Ridge TN 37830 USA

9. Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben 06466 Seeland Germany

10. Department of Crop Sciences, Center of integrated Breeding Research (CiBreed) Georg‐August‐University Von Siebold Str. 8 37075 Göttingen Germany

11. German Centre for Integrative Biodiversity Research (iDiv) Halle‐Jena‐Leipzig Leipzig Germany

12. Sainsbury Laboratory Cambridge University 47 Bateman Street Cambridge CB2 1LR UK

13. International Crops Research Institute for the Semi‐Arid Tropics (ICRISAT) Patancheru 502324 Telangana India

Abstract

Summary Barley (Hordeum vulgare) is an important global cereal crop and a model in genetic studies. Despite advances in characterising barley genomic resources, few mutant studies have identified genes controlling root architecture and anatomy, which plays a critical role in capturing soil resources. Our phenotypic screening of a TILLING mutant collection identified line TM5992 exhibiting a short‐root phenotype compared with wild‐type (WT) Morex background. Outcrossing TM5992 with barley variety Proctor and subsequent SNP array‐based bulk segregant analysis, fine mapped the mutation to a cM scale. Exome sequencing pinpointed a mutation in the candidate gene HvPIN1a, further confirming this by analysing independent mutant alleles. Detailed analysis of root growth and anatomy in Hvpin1a mutant alleles exhibited a slower growth rate, shorter apical meristem and striking vascular patterning defects compared to WT. Expression and mutant analyses of PIN1 members in the closely related cereal brachypodium (Brachypodium distachyon) revealed that BdPIN1a and BdPIN1b were redundantly expressed in root vascular tissues but only Bdpin1a mutant allele displayed root vascular defects similar to Hvpin1a. We conclude that barley PIN1 genes have sub‐functionalised in cereals, compared to Arabidopsis (Arabidopsis thaliana), where PIN1a sequences control root vascular patterning.

Funder

European Research Council

Biotechnology and Biological Sciences Research Council

Publisher

Wiley

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