JrGA20ox1-transformed rootstocks deliver drought response signals to wild-type scions in grafted walnut

Author:

Lou Heqiang1,Wang Fengmin12,Zhang Jiaqi1,Wei Guangli1,Wei Jingjing1,Hu Hengkang1,Li Yan1,Wang Ketao1,Wang Zhengjia1,Huang Youjun12,Wu Jiasheng1,Pei Dong3,Huang Jianqin1,Zhang Qixiang12

Affiliation:

1. Zhejiang A&F University State Key Laboratory of Subtropical Silviculture, , Hangzhou, Zhejiang 311300, China

2. Zhejiang A&F University Zhejiang Provincial Key Laboratory of Forest Aromatic Plants-based Healthcare Functions, , Hangzhou, Zhejiang 311300, China

3. Chinese Academy of Forestry State Key Laboratory of Tree Genetics and Breeding, Key Laboratory of Tree Breeding and Cultivation of State Forestry and Grassland Administration, Research Institute of Forestry, , Beijing 100091, China

Abstract

Abstract Targeted regulation using transgrafting technology has become a trend. However, the mechanisms of transgene-derived signal communication between rootstocks and scions remain unclear in woody plants. Here, we grafted wild-type (WT) walnut (Juglans regia L.) on WT (WT/WT), JrGA20ox1 (encodes a gibberellin 20-oxidase)-overexpressing (WT/OE), and JrGA20ox1-RNAi transformation (WT/RNAi) walnut in vitro. We aimed to elucidate the mechanisms of JrGA20ox1-derived signal communication under PEG-simulated drought stress between rootstocks and scions in walnut. We demonstrated that JrGA20ox1-OE and JrGA20ox1-RNAi rootstocks could transport active gibberellins (GAs) and JrGA20ox1-RNAi vector-produced sRNAs to WT scions under PEG-simulated drought stress, respectively. The movement of sRNAs further led to a successive decline in JrGA20ox1 expression and active GA content. Meanwhile, unknown mobile signals may move between rootstocks and scions. These mobile signals reduced the expression of a series of GA-responsive and GA-non-responsive genes, and induced ROS production in guard cells and an increase in ABA content, which may contribute to the drought tolerance of WT/RNAi, while the opposite occurred in WT/OE. The findings suggest that JrGA20ox1-derived rootstock-to-scion movement of signals is involved in drought tolerance of scions. Our research will provide a feasible approach for studying signal communication in woody plants.

Funder

Scientific Research Startup Fund Project of Zhejiang A&F University

National Natural Science Foundation of China

Zhejiang Agriculture New Variety Breeding Major Science and Technology

National Key R&D Program of China

Publisher

Oxford University Press (OUP)

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