Alterations in the root proteomes of Brassica napus cultivars under salt stress

IF 0.9 4区 生物学 Q4 PLANT SCIENCES Botanica Serbica Pub Date : 2021-01-01 DOI:10.2298/BOTSERB2101087T
H. Terzi, M. Yıldız
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Abstract

Soil salinization is an important environmental problem affecting agricultural production worldwide. Seed germination is a critical process, and seedling establishment under saline conditions can be achieved by successful germination. In the present study, comparative proteomics combined with physiological analyses were used to investigate the protein alterations in germinating Brassica napus cultivars (Caravel and Sary) under NaCl stress. Seed germination declined with the increasing NaCl concentration. However, Caravel exhibited better performance in terms of seed germination and seedling growth under salinity stress. Therefore, Caravel was found to be more tolerant to salinity than Sary. The root proteins were extracted from B. napus cultivars germinating on a plant growth medium with or without 100 mM NaCl for seven days. After the root proteins had been separated by two-dimensional (2-D) gel electrophoresis, the differentially accumulated proteins were identified using MALDI-TOF/TOF MS. The comparative proteomics analysis revealed 12 and 27 statistically significant proteins accumulated in the NaCl-treated roots of Caravel and Sary, respectively. The identified proteins were mostly involved in protein metabolism, stress defense, cytoskeleton and cell wall metabolism, and energy metabolism. The salt-sensitive cultivar Sary displayed an elevated accumulation of proteins involved in antioxidant defense and the protein catabolic process such as superoxide dismutase [Fe], L-ascorbate peroxidase 1, and different components of the proteasome system. On the other hand, the levels of molecular chaperones including 20 kDa chaperonin, chaperonin CPN60, heat shock cognate protein HSC70, and heat shock 70 kDa protein 1 were higher in Caravel than Sary under salt stress. These findings will provide the possible mechanisms which contribute to salt tolerance and may serve as the basis for improving salinity tolerance in rapeseed.
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盐胁迫下甘蓝型油菜根系蛋白质组的变化
土壤盐渍化是影响全球农业生产的重要环境问题。种子萌发是一个关键的过程,在盐水条件下成功发芽可以实现幼苗的建立。本研究采用比较蛋白质组学和生理分析相结合的方法,研究了NaCl胁迫下甘蓝型油菜(Caravel和Sary)萌发过程中蛋白质的变化。随着NaCl浓度的增加,种子萌发率下降。但在盐胁迫下,油菜种子萌发和幼苗生长表现较好。因此,卡拉维尔被发现比萨利更耐盐。研究了甘蓝型油菜在加或不加100 mM NaCl的植物生长培养基上萌发7 d后的根蛋白提取。用二维凝胶电泳分离根蛋白后,用MALDI-TOF/TOF ms鉴定差异积累蛋白。比较蛋白质组学分析显示,在nacl处理的Caravel和Sary根中,分别积累了12和27个具有统计学意义的蛋白。所鉴定的蛋白质主要参与蛋白质代谢、应激防御、细胞骨架和细胞壁代谢以及能量代谢。盐敏感品种Sary显示出参与抗氧化防御和蛋白质分解代谢过程的蛋白质积累增加,如超氧化物歧化酶[Fe], l -抗坏血酸过氧化物酶1和蛋白酶体系统的不同组分。另一方面,盐胁迫下,油菜的20 kDa伴侣蛋白、伴侣蛋白CPN60、热休克同源蛋白HSC70、热休克70 kDa蛋白1等分子伴侣蛋白水平均高于水稻。这些发现将为油菜籽耐盐性的形成提供可能的机制,并为提高油菜籽耐盐性提供依据。
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来源期刊
Botanica Serbica
Botanica Serbica Agricultural and Biological Sciences-Plant Science
CiteScore
1.40
自引率
12.50%
发文量
17
审稿时长
34 weeks
期刊介绍: Botanica Serbica publishes original research papers on all aspects of plant, fungal and microbial biology research including the disciplines of microbiology, mycology, lichenology, bryology, flora, vegetation, biogeography, systematics, taxonomy, plant biotechnology, plant cell biology, plant ecology, environmental plant biology, forestry, genomics, horticulture, limnology, metabolomics, molecular biology, proteomics, virology, plant conservation and protection, and wildlife and ecosystem management.
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