A viroid‐derived small interfering RNA targets bHLH transcription factor MdPIF1 to regulate anthocyanin biosynthesis in Malus domestica

Author:

Zhang Zhenlu1ORCID,Li Zhao‐Yang1,Zhang Fu‐Jun12,Zheng Peng‐Fei1,Ma Ning1,Li Lianzhen1,Li Haojian1,Sun Ping1,Zhang Shuai3,Wang Xiao‐Fei1ORCID,Lu Xiao‐Yan2,You Chun‐Xiang1

Affiliation:

1. National Key Laboratory of Wheat Improvement, College of Horticulture Science and Engineering Shandong Agricultural University Tai'an China

2. Department of Horticulture, College of Agriculture Shihezi University Shihezi China

3. National Key Laboratory of Wheat Improvement, College of Chemistry and Material Science Shandong Agricultural University Tai'an China

Abstract

AbstractFruit colour is a critical determinant for the appearance quality and commercial value of apple fruits. Viroid‐induced dapple symptom severely affects the fruit coloration, however, the underlying mechanism remains unknown. In this study, we identified an apple dimple fruit viroid (ADFVd)‐derived small interfering RNA, named vsiR693, which targeted the mRNA coding for a bHLH transcription factor MdPIF1 (PHYTOCHROME‐INTERACTING FACTOR 1) to regulate anthocyanin biosynthesis in apple. 5’ RLM‐RACE and artificial microRNA transient expression system proved that vsiR693 directly targeted the mRNA of MdPIF1 for cleavage. MdPIF1 positively regulated anthocyanin biosynthesis in both apple calli and fruits, and it directly bound to G‐box element in the promoter of MdPAL and MdF3H, two anthocyanin biosynthetic genes, to promote their transcription. Expression of vsiR693 negatively regulated anthocyanin biosynthesis in both apple calli and fruits. Furthermore, co‐expression of vsiR693 and MdPIF1 suppressed MdPIF1‐promoted anthocyanin biosynthesis in apple fruits. Infiltration of ADFVd infectious clone suppressed coloration surrounding the injection sites in apple fruits, while a mutated version of ADFVd, in which the vsiR693 producing region was mutated, failed to repress fruit coloration around the injection sites. These data provide evidence that a viroid‐derived small interfering RNA targets host transcription factor to regulate anthocyanin biosynthesis in apple.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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