Dynamic Changes of Endogenous Hormones in Different Seasons of Idesia polycarpa Maxim

Author:

Huang Song1,Zheng Wei1ORCID,Wang Yanmei2,Yan Huiping2,Zhou Chenbo1,Ma Tianxiao1

Affiliation:

1. College of Forestry, Xinyang Agricultural and Forestry University, Xinyang 464000, China

2. College of Forestry, Henan Agricultural University, Zhengzhou 450002, China

Abstract

Idesia polycarpa Maxim is a native dioecious tree from East Asia cultivated for its fruits and as an ornamental plant throughout temperate regions. Given the economic potential, comparative studies on cultivated genotypes are of current interest. This study aims to discover the dynamic changes and potential functions of endogenous hormones in I. polycarpa, as well as the differences in endogenous hormone contents in different growth stages among different I. polycarpa provenances. We used High-Performance Liquid Chromatography (HPLC) to measure and compare the levels of abscisic acid (ABA), indole-3-acetic acid (IAA), gibberellin A3 (GA3), and trans-Zeatin-riboside (tZR) in the leaves, flowers, and fruits of I. polycarpa from various provenances between April and October. Our findings indicated that changes in the ABA and GA3 content of plants from Jiyuan and Tokyo were minimal from April to October. However, the levels of these two hormones in Chengdu plants vary greatly at different stages of development. The peak of IAA content in the three plant materials occurred primarily during the early fruit stage and the fruit expansion stage. The concentration of tZR in the three plant materials varies greatly. Furthermore, we discovered that the contents of endogenous hormones in I. polycarpa leaves, flowers, and fruits from Chengdu provenances were slightly higher than those from Tokyo and Jiyuan provenances. The content of IAA was higher in male flowers than in female flowers, and the content of ABA, GA3, and tZR was higher in female flowers than in male flowers. According to the findings, the contents of these four endogenous hormones in I. polycarpa are primarily determined by the genetic characteristics of the trees and are less affected by cultivation conditions. The gender of I. polycarpa had a great influence on these four endogenous hormones. The findings of this study will provide a theoretical foundation and practical guidance for artificially regulating the flowering and fruiting of I. polycarpa.

Funder

Forestry Science and Technology Development Project, the Science and Technology Development Center of State Forestry and Grassland Administration

Science and Technology Revitalization Forestry Project of Henan Provincial Department of Forestry

Dabie Mountain Forestry Resources Innovation Theory and Technology innovation team of Xinyang Agriculture and Forestry University

Publisher

MDPI AG

Subject

Paleontology,Space and Planetary Science,General Biochemistry, Genetics and Molecular Biology,Ecology, Evolution, Behavior and Systematics

Reference58 articles.

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3. Effect of temperature and photoperiod on the branching after sprouted from buds in Iidesia polycarpa;Chen;J. Northwest Univ.,2019

4. A Y-encoded suppressor of feminization arose via lineage-specific duplication of a cytokinin response regulator in kiwifruit;Akagi;Plant Cell,2018

5. Diversity analysis on characters of spikes and fruits of Idesia Polycarpa;Su;J. Plant Resour. Environ.,2021

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