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Loss of salt tolerance during tomato domestication conferred by variation in a Na+ /K+ transporter.

Zhen WangYechun HongGuangtao ZhuYumei LiQingfeng NiuJuanjuan YaoKai HuaJinjuan BaiYingfang ZhuHuazhong ShiSanwen HuangJian-Kang Zhu
Published in: The EMBO journal (2020)
Domestication has resulted in reduced salt tolerance in tomato. To identify the genetic components causing this deficiency, we performed a genome-wide association study (GWAS) for root Na+ /K+ ratio in a population consisting of 369 tomato accessions with large natural variations. The most significant variations associated with root Na+ /K+ ratio were identified within the gene SlHAK20 encoding a member of the clade IV HAK/KUP/KT transporters. We further found that SlHAK20 transports Na+ and K+ and regulates Na+ and K+ homeostasis under salt stress conditions. A variation in the coding sequence of SlHAK20 was found to be the causative variant associated with Na+ /K+ ratio and confer salt tolerance in tomato. Knockout mutations in tomato SlHAK20 and the rice homologous genes resulted in hypersensitivity to salt stress. Together, our study uncovered a previously unknown molecular mechanism of salt tolerance responsible for the deficiency in salt tolerance in cultivated tomato varieties. Our findings provide critical information for molecular breeding to improve salt tolerance in tomato and other crops.
Keyphrases
  • genome wide association study
  • healthcare
  • copy number
  • gene expression
  • transcription factor
  • heat stress
  • replacement therapy
  • amino acid
  • genome wide analysis
  • drug induced
  • health information