Establishment of a Homologous Silencing System with Intact-Plant Infiltration and Minimized Operation for Studying Gene Function in Herbaceous Peonies

Author:

Zhang Kaijing1,Wang Xiaobin1ORCID,Chen Xiaoxuan1,Zhang Runlong1,Guo Junhong1,Wang Qiyao1,Li Danqing1ORCID,Shao Lingmei1,Shi Xiaohua2,Han Jingtong1,Liu Zhiyang3,Xia Yiping1ORCID,Zhang Jiaping1

Affiliation:

1. Genomics and Genetic Engineering Laboratory of Ornamental Plants, Department of Horticulture, Institute of Landscape Architecture, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China

2. Zhejiang Institute of Landscape Plants and Flowers, Hangzhou 311251, China

3. Harbin Academy of Agricultural Sciences, Harbin 150029, China

Abstract

Gene function verification is a crucial step in studying the molecular mechanisms regulating various plant life activities. However, a stable and efficient homologous genetic transgenic system for herbaceous peonies has not been established. In this study, using virus-induced gene silencing technology (VIGS), a highly efficient homologous transient verification system with distinctive advantages was proposed, which not only achieves true “intact-plant” infiltration but also minimizes the operation. One-year-old roots of the representative species, Paeonia lactiflora Pall., were used as the materials; prechilling (4 °C) treatment for 3–5 weeks was applied as a critical precondition for P. lactiflora to acquire a certain chilling accumulation. A dormancy-related gene named HOMEOBOX PROTEIN 31 (PlHB31), believed to negatively regulate bud endodormancy release (BER), was chosen as the target gene in this study. GFP fluorescence was detected in directly infiltrated and newly developed roots and buds; the transgenic plantlets exhibited remarkably earlier budbreak, and PlHB31 was significantly downregulated in silenced plantlets. This study established a homologous transient silencing system featuring intact-plant infiltration and minimized manipulation for gene function research, and also offers technical support and serves as a theoretical basis for gene function discovery in numerous other geophytes.

Funder

National Natural Science Foundation of China

Zhejiang Provincial Natural Science Foundation of China

Harbin science and technology research plan

Publisher

MDPI AG

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