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Article

Regulatory Mechanism through Which Old Soybean Leaves Respond to Mn Toxicity Stress

1
Department of Biotechnology, College of Coastal Agricultural Sciences, Guangdong Ocean University, Zhanjiang 524088, China
2
Department of Agronomy, College of Coastal Agricultural Sciences, Guangdong Ocean University, Zhanjiang 524088, China
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Int. J. Mol. Sci. 2024, 25(10), 5341; https://doi.org/10.3390/ijms25105341
Submission received: 16 April 2024 / Revised: 9 May 2024 / Accepted: 12 May 2024 / Published: 14 May 2024
(This article belongs to the Special Issue Plant Responses to Heavy Metals: From Deficiency to Excess)

Abstract

Manganese (Mn) is a heavy metal that can cause excessive Mn poisoning in plants, disrupting microstructural homeostasis and impairing growth and development. However, the specific response mechanisms of leaves to Mn poisoning have not been fully elucidated. This study revealed that Mn poisoning of soybean plants resulted in yellowing of old leaves. Physiological assessments of these old leaves revealed significant increases in the antioxidant enzymes activities (peroxidase (POD), superoxide dismutase (SOD), ascorbate peroxidase (APX), and catalase (CAT)) and elevated levels of malondialdehyde (MDA), proline, indoleacetic acid (IAA), and salicylic acid (SA), under 100 μM Mn toxicity. Conversely, the levels of abscisic acid (ABA), gibberellin 3 (GA3), and jasmonic acid (JA) significantly decreased. The Mn content in the affected leaves significantly increased, while the levels of Ca, Na, K, and Cu decreased. Transcriptome analysis revealed 2258 differentially expressed genes in the Mn-stressed leaves, 744 of which were upregulated and 1514 were downregulated; these genes included genes associated with ion transporters, hormone synthesis, and various enzymes. Quantitative RT-PCR (qRT-PCR) verification of fifteen genes confirmed altered gene expression in the Mn-stressed leaves. These findings suggest a complex gene regulatory mechanism under Mn toxicity and stress, providing a foundation for further exploration of Mn tolerance-related gene regulatory mechanisms in soybean leaves. Using the methods described above, this study will investigate the molecular mechanism of old soybean leaves’ response to Mn poisoning, identify key genes that play regulatory roles in Mn toxicity stress, and lay the groundwork for cultivating high-quality soybean varieties with Mn toxicity tolerance traits.
Keywords: Glycine max; old leaves; manganese poisoning; molecule mechanism; hormone regulation Glycine max; old leaves; manganese poisoning; molecule mechanism; hormone regulation

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MDPI and ACS Style

Pan, Y.; Shi, J.; Li, J.; Zhang, R.; Xue, Y.; Liu, Y. Regulatory Mechanism through Which Old Soybean Leaves Respond to Mn Toxicity Stress. Int. J. Mol. Sci. 2024, 25, 5341. https://doi.org/10.3390/ijms25105341

AMA Style

Pan Y, Shi J, Li J, Zhang R, Xue Y, Liu Y. Regulatory Mechanism through Which Old Soybean Leaves Respond to Mn Toxicity Stress. International Journal of Molecular Sciences. 2024; 25(10):5341. https://doi.org/10.3390/ijms25105341

Chicago/Turabian Style

Pan, Yuhu, Jianning Shi, Jianyu Li, Rui Zhang, Yingbin Xue, and Ying Liu. 2024. "Regulatory Mechanism through Which Old Soybean Leaves Respond to Mn Toxicity Stress" International Journal of Molecular Sciences 25, no. 10: 5341. https://doi.org/10.3390/ijms25105341

APA Style

Pan, Y., Shi, J., Li, J., Zhang, R., Xue, Y., & Liu, Y. (2024). Regulatory Mechanism through Which Old Soybean Leaves Respond to Mn Toxicity Stress. International Journal of Molecular Sciences, 25(10), 5341. https://doi.org/10.3390/ijms25105341

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