Nontransformation methods for studying signaling pathways and genes involved in Brassica rapa pollen–stigma interactions

Author:

Zhang Lili12,Cui Xiaoshuang1,Yang Lin1,Raziq Abdul13ORCID,Hao Shiya1,Zeng Weiqing4ORCID,Huang Jiabao15ORCID,Cao Yunyun1,Duan Qiaohong1ORCID

Affiliation:

1. College of Horticulture Science and Engineering, Shandong Agricultural University , Tai’an 271018 , China

2. College of Horticulture and Landscape Architecture, Yangzhou University , Yangzhou 225009 , China

3. Directorate of Vegetable Seed Production, Agriculture Research Institute, Village Aid Sariab , Quetta, 87300 Balochistan , Pakistan

4. Health and Biosciences, International Flavors and Fragrances , Wilmington, DE 19803 , USA

5. Institute of Vegetable Science, Zhejiang University , Hangzhou 310058 , China

Abstract

Abstract Self-incompatibility (SI) is a mechanism in plants that prevents self-fertilization and promotes outcrossing. SI is also widely utilized in the breeding of Brassicaceae crops. Understanding the regulatory mechanisms of SI is essential but has been greatly restrained in most Brassicaceae crops due to inefficient transformation. In this study, we developed methods for examining signaling pathways and genes of pollen–stigma interactions in Brassicaceae crops lacking an efficient genetic transformation system. We pretreated excised stigmas of Brassica rapa (B. rapa L. ssp. Pekinensis) in vitro with chemicals to modify signaling pathways or with phosphorothioate antisense oligodeoxyribonucleotides (AS-ODNs) to modify the expression of the corresponding genes involved in pollen–stigma interactions. Using this method, we first determined the involvement of reactive oxygen species (ROS) in SI with the understanding that the NADPH oxidase inhibitor diphenyleneiodonium chloride, which inhibits ROS production, eliminated the SI of B. rapa. We further identified the key gene for ROS production in SI and used AS-ODNs targeting BrRBOHF (B. rapa RESPIRATORY-BURST OXIDASE HOMOLOGF), which encodes one of the NADPH oxidases, to effectively suppress its expression, reduce stigmatic ROS, and promote the growth of self-pollen in B. rapa stigmas. Moreover, pistils treated in planta with the ROS scavenger sodium salicylate disrupted SI and resulted in enlarged ovules with inbred embryos 12 d after pollination. This method will enable the functional study of signaling pathways and genes regulating SI and other pollen–stigma interactions in different Brassicaceae plants.

Funder

National Key Research and Development Plan-Precise Identification of Germplasm Resources of Horticultural Crops

Shandong Natural Science Foundation

Publisher

Oxford University Press (OUP)

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