Salt Tolerance in Machilus faberi: Elucidating Growth and Physiological Adaptations to Saline Environments

Author:

Mo Qiong1234,Liu Yang134,Wei Haohui134,Jiang Liyuan2,Wu En134,Lin Ling5,Yang Qihong134,Yu Xiaoying134,Yan Lihong12,Li Yanlin1346ORCID

Affiliation:

1. College of Horticulture, Hunan Agricultural University, Changsha 410128, China

2. Hunan Botanical Garden, Changsha 410128, China

3. Hunan Mid-Subtropical Quality Plant Breeding and Utilization Engineering Technology Research Center, Changsha 410005, China

4. Engineering Research Center for Horticultural Crop Germplasm Creation and New Variety Breeding, Ministry of Education, Changsha 410128, China

5. School of Economics, Hunan Agricultural University, Changsha 410128, China

6. School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551, Singapore

Abstract

Adversity stress is the main environmental factor limiting plant growth and development, including salt and other stress factors. This study delves into the adaptability and salt tolerance mechanisms of Machilus faberi Hemsl, a species with potential for cultivation in salinized areas. We subjected the plants to various salt concentrations to observe their growth responses and to assess key physiological and biochemical indicators. The results revealed that under high salt concentrations (500 and 700 mmol−1/L), symptoms such as leaf yellowing, wilting, and eventual death were observed. Notably, plant height and shoot growth ceased on the 14th day of exposure. Chlorophyll content (a, b, total a + b, and the a/b ratio) initially increased but subsequently decreased under varying levels of salt stress. Similarly, the net photosynthetic rate, stomatal conductance, leaf water content, and root activity significantly declined under these conditions. Moreover, we observed an increase in malondialdehyde levels and relative conductivity, indicative of cellular damage and stress. The activity of superoxide dismutase and ascorbate peroxidase initially increased and then diminished with prolonged stress, whereas peroxidase activity consistently increased. Levels of proline and soluble protein exhibited an upward trend, contrasting with the fluctuating pattern of soluble sugars, which decreased initially but increased subsequently. In conclusion, M. faberi exhibits a degree of tolerance to salt stress, albeit with growth limitations when concentrations exceed 300 mmol−1/L. These results shed light on the plant’s mechanisms of responding to salt stress and provide a theoretical foundation for its cultivation and application in salt-affected regions.

Funder

Forestry Science and Technology Innovation Foundation of Hunan Forestry Bureau science and technology innovation project

Hunan Province for Distinguished Young Scholarship

Foundation of Changsha Municipal Science and Technology Bureau

Hunan Provincial Education Department

Forestry Bureau for Industrialization Management of Hunan Province

Graduate Innovation Project of Hunan Province

College Student Innovation and Entrepreneurship Project of China

Hunan Province Philosophy and Social Science Achievements Evaluation Committee

Publisher

MDPI AG

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