Genome-Wide Identification of the DGK Gene Family in Kiwifruit (Actinidia valvata Dunn) and an Expression Analysis of Their Responses to Waterlogging Stress

Author:

Zhang Meijuan12,Liu Cuixia1,Wang Faming1,Liu Shibiao3,Gao Jianyou1,Li Jiewei1,Mo Quanhui1,Ye Kaiyu1,Qi Beibei1ORCID,Gong Hongjuan1

Affiliation:

1. Guangxi Key Laboratory of Plant Functional Phytochemicals and Sustainable Utilization, Guangxi Institute of Botany, Guangxi Zhuang Autonomous Region and Chinese Academy of Sciences, Guilin 541006, China

2. College of Biology Pharmacy and Food Engineering, Shangluo University, Shangluo 726000, China

3. College of Biology and Environmental Sciences, Jishou University, Xiangxi 416000, China

Abstract

Diacylglycerol kinase (DGK) is a lipid kinase that phosphorylates diacylglycerol (DAG) to generate phosphatidic acid (PA). Based on converting one important signaling molecule (DAG) to another (PA), DGK plays an important role in plant responses to abiotic stress, including waterlogging stress. However, no studies have been reported on the characterization of the DGK gene family in the waterlogging-tolerant kiwifruit germplasm Actinidia valvata Dunn. In this study, we identified 18 AvDGK genes in the A. valvata genome. The phylogenetic analysis showed that AvDGKs can be classified into three clusters, and members within the same cluster have similar domain distributions, exon-intron structures, and conserved motif compositions. The chromosome localization analysis revealed that all AvDGK genes are located across 18 different chromosomes. There were 29 duplicated gene pairs in A. valvata and all had undergone purifying selection during evolution. The promoter cis-element analysis revealed that the cis-elements within AvDGK genes are associated with multiple functions, including phytohormone signal transduction, stress responses, and plant growth and development. The expression pattern analyses indicated that AvDGKs play important roles in fruit development and plant responses to waterlogging stress. The AvDGK gene family in the tetraploid A. valvata genome might promote PA synthesis and subsequent signal transduction both under short- and long-term waterlogging stresses. These results provide information regarding the structural characteristics and potential function of AvDGK genes within A. valvata and lay a fundamental basis for further research into breeding to enhance the kiwifruit’s tolerance to waterlogging stress.

Funder

National Natural Science Foundation of China

Guangxi Science and Technology Program

Guilin Innovation Platform and Talent Plan

Fundamental Research Fund of Guangxi Institute of Botany

Guangxi Science and Technology Major Project

Earmarked Fund for China Agriculture Research System

Doctoral Research Funding from Shangluo University

Natural Science Foundation of Hunan Province

Publisher

MDPI AG

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