Comparative transcriptomics provides insights into the pathogenic immune response of brown leaf spots in weeping forsythia

Author:

Yuan Wang-Jun12ORCID,He Zhi-Yin1,Zhang Su-Ping1,Zheng Yan-Ping1,Zhang Xiao-Qian1,He She-Qi1,He Yan-Xia3ORCID,Li Yong45

Affiliation:

1. School of Pharmacy, Henan University , Kaifeng, North street of Jinming Road, Henan 475004 , China

2. Henan Province Engineering Research Center of High Value Utilization to Natural Medical Resource in Yellow River Basin , Kaifeng, North street of Jinming Road, Henan 475004 , China

3. School of Life Sciences, Henan University , Kaifeng, North street of Jinming Road, Henan 475004 , China

4. College of Life Science and Technology, Inner Mongolia Normal University , Huhehaote, Zhaowuda Road No. 81 , China

5. State Key Laboratory of Tree Genetics and Breeding, Chinese Academy of Forestry , Beijing, Dongxiaofu Road No. 1 , China

Abstract

Abstract Weeping forsythia is an important ornamental, ecological and medicinal plant. Brown leaf spots limit the large-scale production of weeping forsythia as a medicinal crop. Alternaria alternata is a pathogen causing brown leaf spots in weeping forsythia; however, its pathogenesis and the immune response mechanisms of weeping forsythia remain unclear. In this study, we identified two mechanisms based on morphological anatomy, physiological indexes and gene expression analyses. Our results showed that A. alternata induced leaf stomata to open, invaded the mesophyll, dissolved the cell wall, destroyed the cell membrane and decreased the number of chloroplasts by up-regulating the expression of auxin-activated signaling pathway genes. Alternaria alternata also down-regulated iron-ion homeostasis and binding-related genes, which caused an increase in the levels of iron ions and reactive oxygen species in leaves. These processes eventually led to programmed cell death, destroying palisade and spongy tissues and causing the formation of iron rust spots. Alternaria alternata also caused defense and hypersensitive responses in weeping forsythia through signaling pathways mediated by flg22-like and elf18-like polypeptides, ethylene, H2O2 and bacterial secretion systems. Our study provides a theoretical basis for the control of brown leaf spots in weeping forsythia.

Funder

Open Fund of State Key Laboratory of Tree Genetics and Breeding

Henan Science and Technology Research Project

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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