The HD-Zip transcription factor SlHB15A regulates abscission by modulating jasmonoyl-isoleucine biosynthesis

Author:

Liu Xianfeng12ORCID,Cheng Lina12,Li Ruizhen12,Cai Yue12ORCID,Wang Xiaoyang12,Fu Xin12,Dong Xiufen12ORCID,Qi Mingfang12ORCID,Jiang Cai-Zhong34ORCID,Xu Tao12ORCID,Li Tianlai12ORCID

Affiliation:

1. College of Horticulture, Shenyang Agricultural University , Shenyang 110866, China

2. Key Laboratory of Protected Horticulture of Ministry of Education , Shenyang 110866, China

3. Department of Plant Sciences, University of California at Davis , Davis, California 95616, USA

4. Crops Pathology and Genetic Research Unit, USDA-ARS , Davis, California 95616, USA

Abstract

Abstract Plant organ abscission, a process that is important for development and reproductive success, is inhibited by the phytohormone auxin and promoted by another phytohormone, jasmonic acid (JA). However, the molecular mechanisms underlying the antagonistic effects of auxin and JA in organ abscission are unknown. We identified a tomato (Solanum lycopersicum) class III homeodomain-leucine zipper transcription factor, HOMEOBOX15A (SlHB15A), which was highly expressed in the flower pedicel abscission zone and induced by auxin. Knocking out SlHB15A using clustered regularly interspaced short palindromic repeats-associated protein 9 technology significantly accelerated abscission. In contrast, overexpression of microRNA166-resistant SlHB15A (mSlHB15A) delayed abscission. RNA sequencing and reverse transcription-quantitative PCR analyses showed that knocking out SlHB15A altered the expression of genes related to JA biosynthesis and signaling. Furthermore, functional analysis indicated that SlHB15A regulates abscission by depressing JA-isoleucine (JA-Ile) levels through inhabiting the expression of JASMONATE-RESISTANT1 (SlJAR1), a gene involved in JA-Ile biosynthesis, which could induce abscission-dependent and abscission-independent ethylene signaling. SlHB15A bound directly to the SlJAR1 promoter to silence SlJAR1, thus delaying abscission. We also found that flower removal enhanced JA-Ile content and that application of JA-Ile severely impaired the inhibitory effects of auxin on abscission. These results indicated that SlHB15A mediates the antagonistic effect of auxin and JA-Ile during tomato pedicel abscission, while auxin inhibits abscission through the SlHB15A–SlJAR1 module.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Liaoning Revitalization Talent Program

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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