Melatonin-Induced Chromium Tolerance Requires Hydrogen Sulfide Signaling in Maize

Author:

Yang Xiaoxiao12,Shi Qifeng3,Wang Xinru3,Zhang Tao1,Feng Ke3,Wang Guo3,Zhao Juan3,Yuan Xiangyang3,Ren Jianhong1ORCID

Affiliation:

1. College of Life Sciences, Shanxi Agricultural University, Jinzhong 030800, China

2. State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, College of Life Sciences, Northwest A&F University, Xianyang 712100, China

3. College of Agriculture, Shanxi Agricultural University, Jinzhong 030800, China

Abstract

Both melatonin and hydrogen sulfide (H2S) mitigate chromium (Cr) toxicity in plants, but the specific interaction between melatonin and H2S in Cr detoxification remains unclear. In this study, the interaction between melatonin and H2S in Cr detoxification was elucidated by measuring cell wall polysaccharide metabolism and antioxidant enzyme activity in maize. The findings revealed that exposure to Cr stress (100 μM K2Cr2O7) resulted in the upregulation of L-/D-cysteine desulfhydrase (LCD/DCD) gene expression, leading to a 77.8% and 27.3% increase in endogenous H2S levels in maize leaves and roots, respectively. Similarly, the endogenous melatonin system is activated in response to Cr stress. We found that melatonin had a significant impact on the relative expression of LCD/DCD, leading to a 103.3% and 116.7% increase in endogenous H2S levels in maize leaves and roots, respectively. In contrast, NaHS had minimal effects on the relative mRNA expression of serotonin-Nacetyltransferase (SNAT) and endogenous melatonin levels. The production of H2S induced by melatonin is accompanied by an increase in Cr tolerance, as evidenced by elevated gene expression, elevated cell wall polysaccharide content, increased pectin methylesterase activity, and improved antioxidant enzyme activity. The scavenging of H2S decreases the melatonin-induced Cr tolerance, while the inhibitor of melatonin synthesis, p-chlorophenylalanine (p-CPA), has minimal impact on H2S-induced Cr tolerance. In conclusion, our findings suggest that H2S serves as a downstream signaling molecule involved in melatonin-induced Cr tolerance in maize.

Funder

“scientific and technological innovation talents team of Shanxi” Project

“National Millet and Sorghum Industry Technical System” Project

Doctoral Research Start-up Foundation of Shanxi Agriculture University

Fundamental Research Program of Shanxi Province

Publisher

MDPI AG

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