Apple vacuolar processing enzyme 4 is regulated by cysteine protease inhibitor and modulates fruit disease resistance

Author:

Dong Chaohua1,Li Ronghui1,Wang Nan1,Liu Yingshuang2,Zhang Yugang2,Bai Suhua134

Affiliation:

1. College of Life Sciences, Qingdao Agricultural University , Qingdao , China

2. College of Horticulture, Qingdao Agricultural University , Qingdao , China

3. Key Laboratory of Plant Biotechnology of Shandong Province , Qingdao , China

4. Shandong Province Key Laboratory of Applied Mycology , Qingdao , China

Abstract

Abstract Ring rot is a destructive apple disease caused by Botryosphaeria dothidea. The resistance mechanism of apple plants to B. dothidea remains unclear. Here, we show that APPLE VACUOLAR PROCESSING ENZYME 4 (MdVPE4) is involved in resistance to B. dothidea. MdVPE4 silencing reduced fruit disease resistance, whereas its overexpression improved resistance. Gene expression analysis revealed that MdVPE4 influenced the expression of fruit disease resistance-related genes, such as APPLE POLYGALACTURONASE 1 (MdPG1), APPLE POLYGALACTURONASE INHIBITOR PROTEIN 1 (MdPGIP1), APPLE ENDOCHITINASE 1 (MdCHI1), and APPLE THAUMATIN-LIKE PROTEIN 1 (MdTHA1). The expression of the four genes responding to B. dothidea infection decreased in MdVPE4-silenced fruits. Further analysis demonstrated that B. dothidea infection induced MdVPE4 expression and enzyme activation in apple fruits. Moreover, MdVPE4 activity was modulated by apple cysteine proteinase inhibitor 1 (MdCPI1), which also contributed to resistance towards B. dothidea, as revealed by gene overexpression and silencing analysis. MdCPI1 interacted with MdVPE4 and inhibited its activity. However, MdCPI1 expression was decreased by B. dothidea infection. Taken together, our findings indicate that the interaction between MdVPE4 and MdCPI1 plays an important role in modulating fruit disease resistance to B. dothidea.

Funder

National Key Research and Development Program of China

Natural Science of Shandong Province

Agricultural Variety Improvement Project of Shandong Province

Program for Modern Agricultural Industrial Technology System of China

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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