Proteomic Analysis Reveals a Critical Role of the Glycosyl Hydrolase 17 Protein in Panax ginseng Leaves under Salt Stress

Author:

Jung Ju-Young1,Min Cheol Woo1ORCID,Jang Jeong Woo1,Gupta Ravi2ORCID,Kim Ji-Hyun3,Kim Young-Hun3,Cho Sung Won4,Song Young Hun4,Jo Ick-Hyun5ORCID,Rakwal Randeep67ORCID,Kim Yu-Jin3ORCID,Kim Sun Tae1ORCID

Affiliation:

1. Department of Plant Bioscience, Pusan National University, Miryang 50463, Republic of Korea

2. College of General Education, Kookmin University, Seoul 02707, Republic of Korea

3. Department of Life Science and Environmental Biochemistry, Pusan National University, Miryang 50463, Republic of Korea

4. Department of Agricultural Biotechnology, Seoul National University, Seoul 08826, Republic of Korea

5. Department of Herbal Crop Research, Rural Development Administration, Eumseong 369-873, Republic of Korea

6. Faculty of Health and Sport Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba 305-8574, Japan

7. Research Laboratory for Biotechnology and Biochemistry (RLABB), GPO 13265, Kathmandu 44600, Nepal

Abstract

Ginseng, an important crop in East Asia, exhibits multiple medicinal and nutritional benefits because of the presence of ginsenosides. On the other hand, the ginseng yield is severely affected by abiotic stressors, particularly salinity, which reduces yield and quality. Therefore, efforts are needed to improve the ginseng yield during salinity stress, but salinity stress-induced changes in ginseng are poorly understood, particularly at the proteome-wide level. In this study, we report the comparative proteome profiles of ginseng leaves at four different time points (mock, 24, 72, and 96 h) using a label-free quantitative proteome approach. Of the 2484 proteins identified, 468 were salt-responsive. In particular, glycosyl hydrolase 17 (PgGH17), catalase-peroxidase 2, voltage-gated potassium channel subunit beta-2, fructose-1,6-bisphosphatase class 1, and chlorophyll a-b binding protein accumulated in ginseng leaves in response to salt stress. The heterologous expression of PgGH17 in Arabidopsis thaliana improved the salt tolerance of transgenic lines without compromising plant growth. Overall, this study uncovers the salt-induced changes in ginseng leaves at the proteome level and highlights the critical role of PgGH17 in salt stress tolerance in ginseng.

Funder

Rural Development Administration

National Research Foundation of Korea

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference79 articles.

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