Melatonin promotes Al3+ compartmentalization via H+ transport and ion gradients inMalus hupehensis

Author:

Wang Caihong12ORCID,Bian Chuanjie12ORCID,Li Jianyu12ORCID,Han Lei123ORCID,Guo Dianming12ORCID,Wang Tianchao12ORCID,Sun Zhijuan4,Ma Changqing12ORCID,Liu Xiaoli12ORCID,Tian Yike123ORCID,Zheng Xiaodong123ORCID

Affiliation:

1. College of Horticulture, Qingdao Agricultural University , Qingdao 266109 , China

2. Engineering Laboratory of Genetic Improvement of Horticultural Crops of Shandong Province , Qingdao Agricultural University, Qingdao 266109 , China

3. Academy of Dongying Efficient Agricultural Technology and Industry on Saline and Alkaline Land in Collaboration with Qingdao Agricultural University, Qingdao Agricultural University , Dongying 257347 , China

4. Laboratory for Agricultural Molecular Biology, College of Life Science, Qingdao Agricultural University , Qingdao 266109 , China

Abstract

AbstractSoil acidification in apple (Malus domestica) orchards results in the release of rhizotoxic aluminum ions (Al3+) into soil. Melatonin (MT) participates in plant responses to abiotic stress; however, its role in AlCl3 stress in apple remains unknown. In this study, root application of MT (1 μM) substantially alleviated AlCl3 stress (300 μM) in Pingyi Tiancha (Malus hupehensis), which was reflected by higher fresh and dry weight, increased photosynthetic capacity, and longer and more roots compared with plants that did not receive MT treatment. MT functioned mainly by regulating vacuolar H+/Al3+ exchange and maintaining H+ homeostasis in the cytoplasm under AlCl3 stress. Transcriptome deep sequencing analysis identified the transcription factor gene SENSITIVE TO PROTON RHIZOTOXICITY 1 (MdSTOP1) was induced by both AlCl3 and MT treatments. Overexpressing MdSTOP1 in apple increased AlCl3 tolerance by enhancing vacuolar H+/Al3+ exchange and H+ efflux to the apoplast. We identified 2 transporter genes, ALUMINUM SENSITIVE 3 (MdALS3) and SODIUM HYDROGEN EXCHANGER 2 (MdNHX2), as downstream targets of MdSTOP1. MdSTOP1 interacted with the transcription factor NAM ATAF and CUC 2 (MdNAC2) to induce MdALS3 expression, which reduced Al toxicity by transferring Al3+ from the cytoplasm to the vacuole. Furthermore, MdSTOP1 and MdNAC2 coregulated MdNHX2 expression to increase H+ efflux from the vacuole to the cytoplasm to promote Al3+ compartmentalization and maintain cation balance in the vacuole. Taken together, our findings reveal an MT-STOP1 + NAC2-NHX2/ALS3-vacuolar H+/Al3+ exchange model for the alleviation of AlCl3 stress in apple, laying a foundation for practical applications of MT in agriculture.

Funder

National Natural Science Foundation of China

Breeding Plan of Shandong Provincial Qingchuang Research Team

Funds for Modern Agricultural Industry Technology System in Shandong Province, China

Science & Technology Specific Projects in Agricultural High-tech Industrial Demonstration Area of the Yellow River Delta

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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