Magnesium and calcium overaccumulate in the leaves of a schengen3 mutant of Brassica rapa

Author:

Alcock Thomas D123ORCID,Thomas Catherine L14,Ó Lochlainn Seosamh1,Pongrac Paula56ORCID,Wilson Michael12ORCID,Moore Christopher27ORCID,Reyt Guilhem12,Vogel-Mikuš Katarina56,Kelemen Mitja5,Hayden Rory1,Wilson Lolita1,Stephenson Pauline8,Østergaard Lars8,Irwin Judith A8,Hammond John P910ORCID,King Graham J10ORCID,Salt David E12ORCID,Graham Neil S1ORCID,White Philip J1112ORCID,Broadley Martin R1ORCID

Affiliation:

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

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

3. School of Life Sciences, Technical University of Munich, 85354 Freising, Germany

4. Department of Sustainable Agriculture Sciences, Rothamsted Research, West Common, Hertfordshire AL5 2JQ, UK

5. Jožef Stefan Institute, 1000 Ljubljana, Slovenia

6. Biotechnical Faculty, University of Ljubljana, 1000 Ljubljana, Slovenia

7. School of Life Sciences, University of Nottingham, Queen’s Medical Centre, Nottingham NG7 2UH, UK

8. Department of Crop Genetics, John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK

9. School of Agriculture, Policy and Development and the Centre for Food Security, University of Reading, Whiteknights, P.O. Box 237, Reading RG6 6AR, UK

10. Southern Cross Plant Science, Southern Cross University, Lismore, New South Wales 2480, Australia

11. Ecological Sciences, The James Hutton Institute, Invergowrie, Dundee DD2 5DA, UK

12. Distinguished Scientist Fellowship Program, King Saud University, Riyadh 11451, Saudi Arabia

Abstract

Abstract Magnesium (Mg) and calcium (Ca) are essential mineral nutrients poorly supplied in many human food systems. In grazing livestock, Mg and Ca deficiencies are costly welfare issues. Here, we report a Brassica rapa loss-of-function schengen3 (sgn3) mutant, braA.sgn3.a-1, which accumulates twice as much Mg and a third more Ca in its leaves. We mapped braA.sgn3.a to a single recessive locus using a forward ionomic screen of chemically mutagenized lines with subsequent backcrossing and linked-read sequencing of second back-crossed, second filial generation (BC2F2) segregants. Confocal imaging revealed a disrupted root endodermal diffusion barrier, consistent with SGN3 encoding a receptor-like kinase required for normal formation of Casparian strips, as reported in thale cress (Arabidopsis thaliana). Analysis of the spatial distribution of elements showed elevated extracellular Mg concentrations in leaves of braA.sgn3.a-1, hypothesized to result from preferential export of excessive Mg from cells to ensure suitable cellular concentrations. This work confirms a conserved role of SGN3 in controlling nutrient homeostasis in B. rapa, and reveals mechanisms by which plants are able to deal with perturbed shoot element concentrations resulting from a “leaky” root endodermal barrier. Characterization of variation in leaf Mg and Ca accumulation across a mutagenized population of B. rapa shows promise for using such populations in breeding programs to increase edible concentrations of essential human and animal nutrients.

Funder

Renewable Industrial Products from Rapeseed

Crop Improvement Research Club

Delivering Low-Cost, High-Throughput Root Phenotyping Screens for Arable Crops

BBSRC

Rural and Environment Science and Analytical Services Division

Scottish Government

Slovenian Research Agency

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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