Please use this identifier to cite or link to this item: https://hdl.handle.net/20.500.14279/29027
Title: Melatonin delays dark-induced leaf senescence by inducing miR171b expression in tomato
Authors: Wang, Kaixin 
Cai, Shuyu 
Xing, Qufan 
Qi, Zhenyu 
Fotopoulos, Vasileios 
Yu, Jingquan 
Zhou, Jie 
Major Field of Science: Agricultural Sciences
Field Category: Agricultural Biotechnology
Keywords: Carbon starvation;Chlorophyll;Growth;miRNAs;Resistance;Starch degradation;α-glucan water dikinase (GWD)
Issue Date: Apr-2022
Source: Journal of Pineal Research, 2022, vol. 22, no. 3, articl. no. e12792
Volume: 72
Issue: 3
Journal: Journal of Pineal Research 
Abstract: Melatonin functions in multiple aspects of plant growth, development, and stress response. Nonetheless, the mechanism of melatonin in plant carbon metabolism remains largely unknown. In this study, we investigated the influence of melatonin on the degradation of starch in tomato leaves. Results showed that exogenous melatonin attenuated carbon starvation-induced chlorophyll degradation and leaf senescence. In addition, melatonin delayed leaf starch degradation and inhibited the transcription of starch-degrading enzymes after sunset. Interestingly, melatonin-alleviated symptoms of leaf senescence and starch degradation were compromised when the first key gene for starch degradation, α-glucan water dikinase (GWD), was overexpressed. Furthermore, exogenous melatonin significantly upregulated the transcript levels of several microRNAs, including miR171b. Crucially, the GWD gene was identified as a target of miR171b, and the overexpression of miR171b ameliorated the carbon starvation-induced degradation of chlorophyll and starch, and inhibited the expression of the GWD gene. Taken together, these results demonstrate that melatonin promotes plant tolerance against carbon starvation by upregulating the expression of miR171b, which can directly inhibit GWD expression in tomato leaves.
URI: https://hdl.handle.net/20.500.14279/29027
ISSN: 1600079X
DOI: 10.1111/jpi.12792
Rights: © Wiley
Type: Article
Affiliation : Cyprus University of Technology 
Zhejiang University 
Publication Type: Peer Reviewed
Appears in Collections:Άρθρα/Articles

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