A novel natural variation in the promoter of GmCHX1 regulates conditional gene expression to improve salt tolerance in soybean

Author:

Li Yang123ORCID,Ye Heng2ORCID,Vuong Tri D2,Zhou Lijuan2ORCID,Do Tuyen D2,Satish Chhapekar Sushil2,Zhao Wenqian3ORCID,Li Bin3,Jin Ting3,Gu Jinbao1,Li Cong1,Chen Yanhang1,Li Yan3,Wang Zhen-Yu1,Nguyen Henry T2

Affiliation:

1. Institute of Nanfan & Seed Industry, Guangdong Academy of Science , Guangzhou, 510316 , China

2. Division of Plant Science and Technology, University of Missouri , Columbia, MO 65211 , USA

3. National Key Laboratory of Crop Genetics and Germplasm Enhancement, National Center for Soybean Improvement, Key Laboratory for Biology and Genetic Improvement of Soybean (General, Ministry of Agriculture), Jiangsu Collaborative Innovation Center for Modern Crop Production, Nanjing Agricultural University , Nanjing, 210095 , China

Abstract

Abstract Identification and characterization of soybean germplasm and gene(s)/allele(s) for salt tolerance is an effective way to develop improved varieties for saline soils. Previous studies identified GmCHX1 (Glyma03g32900) as a major salt tolerance gene in soybean, and two main functional variations were found in the promoter region (148/150 bp insertion) and the third exon with a retrotransposon insertion (3.78 kb). In the current study, we identified four salt-tolerant soybean lines, including PI 483460B (Glycine soja), carrying the previously identified salt-sensitive variations at GmCHX1, suggesting new gene(s) or new functional allele(s) of GmCHX1 in these soybean lines. Subsequently, we conducted quantitative trait locus (QTL) mapping in a recombinant-inbred line population (Williams 82 (salt-sensitive) × PI 483460B) to identify the new salt tolerance loci/alleles. A new locus, qSalt_Gm18, was mapped on chromosome 18 associated with leaf scorch score. Another major QTL, qSalt_Gm03, was identified to be associated with chlorophyll content ratio and leaf scorch score in the same chromosomal region of GmCHX1 on chromosome 3. Novel variations in a STRE (stress response element) cis-element in the promoter region of GmCHX1 were found to regulate the salt-inducible expression of the gene in these four newly identified salt-tolerant lines including PI 483460B. This new allele of GmCHX1 with salt-inducible expression pattern provides an energy cost efficient (conditional gene expression) strategy to protect soybean yield in saline soils without yield penalty under non-stress conditions. Our results suggest that there might be no other major salt tolerance locus similar to GmCHX1 in soybean germplasm, and further improvement of salt tolerance in soybean may rely on gene-editing techniques instead of looking for natural variations.

Funder

GDAS Project of Science and Technology Development

United States Department of Agriculture

Guangdong Basic and Applied Basic Research Foundation

Zhanjiang Science and Technology Plan Project

Zhanjiang innovation and entrepreneurship team ‘pilot plan’

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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