Salinity Effects on Guard Cell Proteome in Chenopodium quinoa

被引:19
作者
Rasouli, Fatemeh [1 ,2 ,3 ,4 ]
Kiani-Pouya, Ali [2 ,3 ,4 ]
Shabala, Lana [1 ,2 ]
Li, Leiting [3 ,4 ]
Tahir, Ayesha [5 ]
Yu, Min [1 ]
Hedrich, Rainer [6 ]
Chen, Zhonghua [7 ]
Wilson, Richard [8 ]
Zhang, Heng [3 ,4 ]
Shabala, Sergey [1 ,2 ]
机构
[1] Foshan Univ, Int Res Ctr Environm Membrane Biol, Foshan 528000, Peoples R China
[2] Univ Tasmania, Coll Sci & Engn, Tasmanian Inst Agr, Hobart, Tas 7001, Australia
[3] Chinese Acad Sci, Shanghai Ctr Plant Stress Biol, Shanghai 201602, Peoples R China
[4] Chinese Acad Sci, CAS Ctr Excellence Mol Plant Sci, Shanghai 201602, Peoples R China
[5] COMSATS Univ Islamabad, Dept Biosci, Pk Rd, Islamabad 45550, Pakistan
[6] Univ Wurzburg, Inst Mol Plant Physiol & Biophys, D-97082 Wurzburg, Germany
[7] Western Sydney Univ, Hawkesbury Inst Environm, Sch Sci & Hlth, Penrith, NSW 2747, Australia
[8] Univ Tasmania, Cent Sci Lab, Hobart, Tas 7001, Australia
基金
美国国家科学基金会; 澳大利亚研究理事会;
关键词
quinoa; guard cell; stomata; salt stress; proteomics analysis; ABIOTIC STRESS TOLERANCE; SALT TOLERANCE; AMINO-ACIDS; ARABIDOPSIS; STOMATA; WATER; OVEREXPRESSION; PHOTOSYNTHESIS; MODULATION; MECHANISMS;
D O I
10.3390/ijms22010428
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Epidermal fragments enriched in guard cells (GCs) were isolated from the halophyte quinoa (Chenopodium quinoa Wild.) species, and the response at the proteome level was studied after salinity treatment of 300 mM NaCl for 3 weeks. In total, 2147 proteins were identified, of which 36% were differentially expressed in response to salinity stress in GCs. Up and downregulated proteins included signaling molecules, enzyme modulators, transcription factors and oxidoreductases. The most abundant proteins induced by salt treatment were desiccation-responsive protein 29B (50-fold), osmotin-like protein OSML13 (13-fold), polycystin-1, lipoxygenase, alpha-toxin, and triacylglycerol lipase (PLAT) domain-containing protein 3-like (eight-fold), and dehydrin early responsive to dehydration (ERD14) (eight-fold). Ten proteins related to the gene ontology term "response to ABA" were upregulated in quinoa GC; this included aspartic protease, phospholipase D and plastid-lipid-associated protein. Additionally, seven proteins in the sucrose-starch pathway were upregulated in the GC in response to salinity stress, and accumulation of tryptophan synthase and L-methionine synthase (enzymes involved in the amino acid biosynthesis) was observed. Exogenous application of sucrose and tryptophan, L-methionine resulted in reduction in stomatal aperture and conductance, which could be advantageous for plants under salt stress. Eight aspartic proteinase proteins were highly upregulated in GCs of quinoa, and exogenous application of pepstatin A (an inhibitor of aspartic proteinase) was accompanied by higher oxidative stress and extremely low stomatal aperture and conductance, suggesting a possible role of aspartic proteinase in mitigating oxidative stress induced by saline conditions.
引用
收藏
页码:1 / 22
页数:22
相关论文
共 69 条
[1]   Stomatal action directly feeds back on leaf turgor: new insights into the regulation of the plant water status from non-invasive pressure probe measurements [J].
Ache, Peter ;
Bauer, Hubert ;
Kollist, Hannes ;
Al-Rasheid, Khaled A. S. ;
Lautner, Silke ;
Hartung, Wolfram ;
Hedrich, Rainer .
PLANT JOURNAL, 2010, 62 (06) :1072-1082
[2]   Salt tolerance mechanisms in quinoa (Chenopodium quinoa Willd.) [J].
Adolf, Verena Isabelle ;
Jacobsen, Sven-Erik ;
Shabala, Sergey .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2013, 92 :43-54
[3]   Guard cell photosynthesis is critical for stomatal turgor production, yet does not directly mediate CO2- and ABA-induced stomatal closing [J].
Azoulay-Shemer, Tamar ;
Palomares, Axxell ;
Bagheri, Andisheh ;
Israelsson-Nordstrom, Maria ;
Engineer, Cawas B. ;
Bargmann, Bastiaan O. R. ;
Stephan, Aaron B. ;
Schroeder, Julian I. .
PLANT JOURNAL, 2015, 83 (04) :567-581
[4]   Single-cell-type quantitative proteomic and ionomic analysis of epidermal bladder cells from the halophyte model plant Mesembryanthemum crystallinum to identify salt-responsive proteins [J].
Barkla, Bronwyn J. ;
Vera-Estrella, Rosario ;
Raymond, Carolyn .
BMC PLANT BIOLOGY, 2016, 16
[5]   Chloroplast function and ion regulation in plants growing on saline soils: lessons from halophytes [J].
Bose, Jayakumar ;
Munns, Rana ;
Shabala, Sergey ;
Gilliham, Matthew ;
Pogson, Barry ;
Tyerman, Stephen D. .
JOURNAL OF EXPERIMENTAL BOTANY, 2017, 68 (12) :3129-3143
[6]   Controlling stomatal aperture in semi-arid regions-The dilemma of saving water or being cool? [J].
Chaves, M. M. ;
Costa, J. M. ;
Zarrouk, O. ;
Pinheiro, C. ;
Lopes, C. M. ;
Pereira, J. S. .
PLANT SCIENCE, 2016, 251 :54-64
[7]   Rubisco Activase Is Also a Multiple Responder to Abiotic Stresses in Rice [J].
Chen, Yue ;
Wang, Xiao-Man ;
Zhou, Li ;
He, Yi ;
Wang, Dun ;
Qi, Yan-Hua ;
Jiang, De-An .
PLOS ONE, 2015, 10 (10)
[8]   14-3-3 Proteins in Guard Cell Signaling [J].
Cotelle, Valerie ;
Leonhardt, Nathalie .
FRONTIERS IN PLANT SCIENCE, 2016, 6
[9]   Amino acids regulate salinity-induced potassium efflux in barley root epidermis [J].
Cuin, Tracey Ann ;
Shabala, Sergey .
PLANTA, 2007, 225 (03) :753-761
[10]   Plant salt tolerance: adaptations in halophytes [J].
Flowers, Timothy J. ;
Colmer, Timothy D. .
ANNALS OF BOTANY, 2015, 115 (03) :327-331