Potato E3 ubiquitin ligase StRFP1 positively regulates late blight resistance by degrading sugar transporters StSWEET10c and StSWEET11

Author:

Wu Xintong1234,Lin Tianyu134,Zhou Xiaoshuang134,Zhang Wenjun134,Liu Shengxuan134,Qiu Huishan134,Birch Paul R. J.56ORCID,Tian Zhendong1234ORCID

Affiliation:

1. National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops Huazhong Agricultural University (HZAU) Wuhan 430070 China

2. Hubei Hongshan Laboratory (HZAU) Wuhan 430070 China

3. Key Laboratory of Potato Biology and Biotechnology (HZAU) Ministry of Agriculture and Rural Affairs Wuhan 430070 China

4. Potato Engineering and Technology Research Center of Hubei Province (HZAU) Wuhan 430070 China

5. Division of Plant Science, School of Life Science University of Dundee (at JHI) Invergowrie Dundee DD2 5DA UK

6. Cell and Molecular Science James Hutton Institute Invergowrie Dundee DD2 5DA UK

Abstract

Summary Potato (Solanum tuberosum) is the fourth largest food crop in the world. Late blight, caused by oomycete Phytophthora infestans, is the most devastating disease threatening potato production. Previous research has shown that StRFP1, a potato Arabidopsis Tóxicos en Levadura (ATL) family protein, positively regulates late blight resistance via its E3 ligase activity. However, the underlying mechanism is unknown. Here, we reveal that StRFP1 is associated with the plasma membrane (PM) and undergoes constitutive endocytic trafficking. Its PM localization is essential for inhibiting P. infestans colonization. Through in vivo and in vitro assays, we investigated that StRFP1 interacts with two sugar transporters StSWEET10c and StSWEET11 at the PM. Overexpression (OE) of StSWEET10c or StSWEET11 enhances P. infestans colonization. Both StSWEET10c and StSWEET11 exhibit sucrose transport ability in yeast, and OE of StSWEET10c leads to an increased sucrose content in the apoplastic fluid of potato leaves. StRFP1 ubiquitinates StSWEET10c and StSWEET11 to promote their degradation. We illustrate a novel mechanism by which a potato ATL protein enhances disease resistance by degrading susceptibility (S) factors, such as Sugars Will Eventually be Exported Transporters (SWEETs). This offers a potential strategy for improving disease resistance by utilizing host positive immune regulators to neutralize S factors.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

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