Quantitative Proteomics Analysis Reveals Proteins Associated with High Melatonin Content in Barley Seeds under NaCl-Induced Salt Stress

被引:13
|
作者
Zhang, Guoqiang [1 ,2 ]
Yan, Yingying [3 ]
Zeng, Xingquan [2 ]
Wang, Yulin [2 ]
Zhang, Yuhong [3 ]
机构
[1] Anhui Polytech Univ, Coll Biol & Food Engn, Wuhu 241000, Anhui, Peoples R China
[2] Tibet Acad Agr & Anim Husb Sci, Lhasa 850002, Tibet, Peoples R China
[3] Tibet Acad Agr & Anim Husb Sci, Inst Agr Prod Proc & Food Sci, Lhasa 850002, Tibet, Peoples R China
基金
中国国家自然科学基金;
关键词
KEYWORDS; melatonin; TMT-based quantitative proteomics; Hull-less barley; salt stress; amino acids; seed germination; secondary metabolites; GENE-EXPRESSION; ABIOTIC STRESS; L; SEEDS; TOLERANCE; BIOSYNTHESIS; ACCUMULATION; PURINE; SALINITY; PATHWAYS; DROUGHT;
D O I
10.1021/acs.jafc.2c00466
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
ABSTRACT: Soil salinization limits hull-less barley cultivation in the Qinghai-Tibet Plateau of China. However, some wild hull-less barley seeds accumulate high melatonin (MEL) during germination with improved salt tolerance; but the mechanism of melatoninmediated salt tolerance in hull-less barley is not well understood at the protein level. This study investigated proteome changes resulting in high melatonin content in germinating hull-less barley seeds under high saline conditions. The proteome profiles of seed treatment with 240 mM-NaCl (N), water (H), and control (C) taken 7 days after germination were compared using the TMT-based quantitative proteomics. Our results indicate that salt stress-induced global changes in the proteomes of germinating hull-less barley seeds, altering the expression and abundance of proteins related to cell cycle and control, carbohydrate and energy metabolism, and amino acid transport and metabolism including proteins related to melatonin production. Furthermore, proteins associated with cellular redox homeostasis, osmotic stress response, and secondary metabolites derived primarily from amino acid metabolism, purine degradation, and shikimate pathways increased significantly in abundance and may contribute to the high melatonin content in seeds under salt stress. Consequently, triggering the robust response to oxidative stress occasioned by the NaCl-induced salt stress, improved seed germination and strong adaptation to salt stress.
引用
收藏
页码:8492 / 8510
页数:19
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