The ABA-induced NAC transcription factor MdNAC1 interacts with a bZIP-type transcription factor to promote anthocyanin synthesis in red-fleshed apples

Author:

Liu Wenjun1,Mei Zhuoxin1,Yu Lei1,Gu Tingting2,Li Zhiqiang1,Zou Qi1,Zhang Shuhui1,Fang Hongcheng3,Wang Yicheng4,Zhang Zongying1,Chen Xuesen1,Wang Nan1

Affiliation:

1. Shandong Agricultural University National Key Laboratory of Crop Biology, College of Horticulture Science and Engineering, , Tai’an, Shandong 271018, China

2. Shandong Agricultural and Engineering University College of Agricultural Science and Technology, , Jinan, Shandong 250100, China

3. Shandong Agricultural University StateForestry and Grassland Administration Key Laboratory of Silviculture in the Downstream Areas of the Yellow River, College of Forestry, , Tai’an, Shandong 271018, China

4. Nanjing Agricultural University State Key Laboratory of Crop Genetics and Germplasm Enhancement, , Nanjing 210095, China

Abstract

Abstract Anthocyanins are valuable compounds in red-fleshed apples. The MdMYB10 transcription factor is an important regulator of the anthocyanin synthesis pathway. However, other transcription factors are key components of the complex network controlling anthocyanin synthesis and should be more thoroughly characterized. In this study, we used a yeast-based screening technology to identify MdNAC1 as a transcription factor that positively regulates anthocyanin synthesis. The overexpression of MdNAC1 in apple fruits and calli significantly promoted the accumulation of anthocyanins. In binding experiments, we demonstrated that MdNAC1 combines with the bZIP-type transcription factor MdbZIP23 to activate the transcription of MdMYB10 and MdUFGT. Our analyses also indicated that the expression of MdNAC1 is strongly induced by ABA because of the presence of an ABRE cis-acting element in its promoter. Additionally, the accumulation of anthocyanins in apple calli co-transformed with MdNAC1 and MdbZIP23 increased in the presence of ABA. Therefore, we revealed a novel anthocyanin synthesis mechanism involving the ABA-induced transcription factor MdNAC1 in red-fleshed apples.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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