Isolating an active and inactive CACTA transposon from lettuce color mutants and characterizing their family

Author:

Gurdon Csanad1ORCID,Kozik Alexander2ORCID,Tao Rong2ORCID,Poulev Alexander1,Armas Isabel1ORCID,Michelmore Richard W2ORCID,Raskin Ilya1ORCID

Affiliation:

1. Department of Plant Biology, Rutgers University, New Brunswick, New Jersey 08901-8520, USA

2. UC Davis Genome Center, Davis, California 95616, USA

Abstract

Abstract Dietary flavonoids play an important role in human nutrition and health. Flavonoid biosynthesis genes have recently been identified in lettuce (Lactuca sativa); however, few mutants have been characterized. We now report the causative mutations in Green Super Lettuce (GSL), a natural light green mutant derived from red cultivar NAR; and GSL-Dark Green (GSL-DG), an olive-green natural derivative of GSL. GSL harbors CACTA 1 (LsC1), a 3.9-kb active nonautonomous CACTA superfamily transposon inserted in the 5′ untranslated region of anthocyanidin synthase (ANS), a gene coding for a key enzyme in anthocyanin biosynthesis. Both terminal inverted repeats (TIRs) of this transposon were intact, enabling somatic excision of the mobile element, which led to the restoration of ANS expression and the accumulation of red anthocyanins in sectors on otherwise green leaves. GSL-DG harbors CACTA 2 (LsC2), a 1.1-kb truncated copy of LsC1 that lacks one of the TIRs, rendering the transposon inactive. RNA-sequencing and reverse transcription quantitative PCR of NAR, GSL, and GSL-DG indicated the relative expression level of ANS was strongly influenced by the transposon insertions. Analysis of flavonoid content indicated leaf cyanidin levels correlated positively with ANS expression. Bioinformatic analysis of the cv Salinas lettuce reference genome led to the discovery and characterization of an LsC1 transposon family with a putative transposon copy number greater than 1,700. Homologs of tnpA and tnpD, the genes encoding two proteins necessary for activation of transposition of CACTA elements, were also identified in the lettuce genome.

Funder

National Institutes of Health under a T32 Fellowship from the National Center for Complementary and Integrative Health

USA–Spain Fulbright Commission and a research assistantship from Rutgers University

NIH-NCCIH and Office of Dietary Supplements

University of California Davis

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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