Integrated transcriptomic and metabolomic analysis provides insights into cold tolerance in lettuce (Lactuca sativa L.)

Author:

Yang Xiao1,Han Yingying2,Huo Guotao1,Ge Guojun1,He Shuping1,Yang Xiao3,Zhang Li3,Wei Shiwei1,Luo Lijun1

Affiliation:

1. Shanghai Agrobiological Gene Center

2. University of Shanghai for Science and Technology

3. Chinese Academy of Agricultural Sciences, Chengdu National Agricultural Science and Technology Center

Abstract

Abstract The popular leafy vegetable lettuce (Lactuca sativa L.) is susceptible to cold stress during the growing season, which slows growth rate, causes yellowing and necrosis of the leaves and lowers yield and quality. In this study, transcriptomic and metabolomic analyses of two cold-resistant lettuce cultivars (GWAS-W42 and F11) and two cold-sensitive lettuce cultivars (S13K079 and S15K058) were performed to identify the mechanisms involved in the cold response of lettuce. Overall, transcriptome analysis identified 605 differentially expressed genes, including significant enrichment of genes involved in the flavonoid and flavonol (CHS, CHI, F3H, FLS, CYP75B1, HCT, etc) biosynthetic pathways related to oxidation-reduction and catalytic activity. Untargeted metabolomic analysis identified fifteen flavonoid metabolites and 28 other metabolites potentially involved in the response to cold stress; genistein, quercitrin, quercetin derivatives, kaempferol derivatives, luteolin derivatives, apigenin and their derivatives accumulate at higher levels in cold-resistant cultivars. Moreover, MYBs, bHLHs, WRKYs and Dofs were also plays positively role in the low temperature response, which affected the expression of structural genes contributing to the variation of metabolites between the resistant and sensitive. These results provide valuable evidence that the metabolites and genes involved in the flavonoid biosynthesis pathway play important roles in the response of lettuce to cold stress.

Publisher

Research Square Platform LLC

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