Multifaceted roles of LhWRKY44 in promoting anthocyanin accumulation in Asiatic hybrid lilies (Lilium spp.)

Author:

Bi Mengmeng1,Liang Rui12,Wang Jiawen1,Qu Yuxiao1,Liu Xin13,Cao Yuwei14,He Guoren15,Yang Yue1,Yang Panpan1,Xu Leifeng1,Ming Jun1

Affiliation:

1. Chinese Academy of Agricultural Sciences State Key Laboratory of Vegetable Biobreeding, Institute of Vegetables and Flowers, , Beijing, 100081, China

2. Shanxi Agricultural University College of Horticulture, , Taigu, 030031, China

3. Qingdao Agricultural University College of Landscape architecture and Forestry, , Qingdao, 266109, China

4. Gannan Normal University College of Chemistry and Life Science, , Ganzhou, 341000, China

5. Shanghai Normal University Shanghai Key Laboratory of Plant Molecular Science, College of Life Sciences, , Shanghai, 200233, China

Abstract

Abstract The Asiatic hybrid lily (Lilium spp.) is a horticultural crop with high commercial value and diverse anthocyanin pigmentation patterns. However, the regulatory mechanism underlying lily flower color has been largely unexplored. Here, we identified a WRKY transcription factor from lily tepals, LhWRKY44, whose expression was closely associated with anthocyanin accumulation. Functional verification indicated that LhWRKY44 positively regulated anthocyanin accumulation. LhWRKY44 physically interacted with LhMYBSPLATTER and directly bound to the LhMYBSPLATTER promoter, which enhanced the effect of the LhMYBSPLATTER-LhbHLH2 MBW complex activator on anthocyanin accumulation. Moreover, EMSA and dual-luciferase assays revealed that LhWRKY44 activated and bound to the promoters of gene LhF3H and the intracellular anthocyanin-related glutathione S-transferase gene LhGST. Interestingly, our further results showed that LhWRKY44 participated in light and drought-induced anthocyanin accumulation, and improved the drought tolerance in lily via activating stress-related genes. These results generated a multifaceted regulatory mechanism for the LhWRKY44-meditaed enhancement by the environmental signal pathway of anthocyanin accumulation and expanded our understanding of the WRKY-mediated transcriptional regulatory hierarchy modulating anthocyanin accumulation in Asiatic hybrid lilies.

Funder

Programs for National Key R & D Plan

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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