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Plant Biol (Stuttg) ; 24(6): 1066-1075, 2022 Oct.
Article in English | MEDLINE | ID: mdl-35779251

ABSTRACT

Breeding for flower cold resistance is a priority for flower breeding research in northern China. The identification of cold resistance genes will not only provide genetic resources for cold resistance breeding, but also form a basis for the study of plant cold resistance mechanisms. Based on the flower transcriptome of Iris laevigata, 20 R2R3-MYBs were identified and comprehensive analysis, including conservative domain, phylogenetic analyses and functional distribution, were performed for R2R3-MYBs. Expression patterns of the abiotic stress genes under cold stress were detected, the upregulated gene was genetically transformed into tobacco, and the related physiological indicators of the transgenic tobacco were measured. A novel cold resistance gene, IlMYB306, was obtained. qRT-PCR indicated that IlMYB306 was dramatically induced by cold stress and was significantly upregulated in roots. The free proline content, MDA, SOD and POD activity of the transgenic tobacco improved after cold stress, and the chlorophyll content decreased slowly. In addition, overexpression of IlMYB306 improved cold resistance of the seeds. SEM results showed leaves of transgenic tobacco had obvious folds, more grooves and bulges on the lower leaf surface. Overall, we report a novel cold resistance R2R3-MYB gene, IlMYB306, in the flower of I. laevigata, which could improve tobacco cold stress tolerance by thickening the waxy layer, increasing antioxidant activity and the content of proline.


Subject(s)
Iris Plant , Nicotiana , Antioxidants/metabolism , Chlorophyll/metabolism , Flowers/genetics , Flowers/metabolism , Gene Expression Regulation, Plant , Genes, myb , Iris Plant/genetics , Iris Plant/metabolism , Phylogeny , Plant Breeding , Plant Proteins/genetics , Plant Proteins/metabolism , Plants, Genetically Modified/metabolism , Proline/metabolism , Superoxide Dismutase/metabolism , Nicotiana/metabolism , Transcription Factors/genetics , Transcription Factors/metabolism
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