Arid
DOI10.1007/s11240-015-0900-6
Antiporter NHX2 differentially induced in Mesembryanthemum crystallinum natural genetic variant under salt stress
Villicana, Claudia1; Warner, Norberto2; Arce-Montoya, Mario2; Rojas, Mario2; Angulo, Carlos2; Orduno, Andres3; Gomez-Anduro, Gracia2
通讯作者Gomez-Anduro, Gracia
来源期刊PLANT CELL TISSUE AND ORGAN CULTURE
ISSN0167-6857
EISSN1573-5044
出版年2016
卷号124期号:2页码:361-375
英文摘要

Plants exhibit several mechanisms to survive under high salinity conditions. The uptake and compartmentalization of Na+ ion by the NHX antiporter is a crucial mechanism in homeostasis maintenance. Therefore, we evaluated McNHX2 gene expression and several physiological responses induced in three natural genetic variants of ice plants under salt stress. Based on morphology and growth behavior of wild type populations from an arid region of northwestern Mexico, we identified three ice plant natural genetic variants and called P0, P9, and P11. Several physiological parameters, such as water potential, relative water content, chlorophyll, and Na+ and K+ ion contents from all natural genetic variants exhibited a differential response under high salinity conditions. Specifically, the P0 variant showed lower water potential changes and least perturbation of Na+/K+ ratio than those of the P9 and P11 variants under saline conditions, suggesting that the P0 variant is the most salt tolerant. Unexpectedly, McNHX2 expression was repressed in the P11 variant while it was upregulated in the P0 and P9 variants under saline treatments. The McNHX2 gene was sequenced showing 15 introns and 16 exons; polymorphisms were found among the cDNAs sequences from the three natural genetic variants. All these data suggest that differential responses to high salinity involve different mechanisms operating in each variant for counteracting saline stress effects.


英文关键词McNHX2 antiporter Salt stress Ice plant Polymorphisms Mesembryanthemum crystallinum
类型Article
语种英语
国家Mexico
收录类别SCI-E
WOS记录号WOS:000369948000012
WOS关键词NA+/H+ ANTIPORTERS ; SALINITY TOLERANCE ; ION HOMEOSTASIS ; MOLECULAR-CLONING ; DROUGHT-STRESS ; PLANT-GROWTH ; OVEREXPRESSION ; EXCHANGER ; EXPRESSION ; YEAST
WOS类目Biotechnology & Applied Microbiology ; Plant Sciences
WOS研究方向Biotechnology & Applied Microbiology ; Plant Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/195516
作者单位1.Univ Autonoma Yucatan UADY, Fac Ingn Quim, Campus Ciencias Exactas & Ingn,Periferico Norte K, Merida 97203, Yucatan, Mexico;
2.Ctr Invest Biol Noroeste CIBNOR, Ave Inst Politecn Nacl 195,POB 128, La Paz 23096, BCS, Mexico;
3.Ctr Invest Biol Noroeste CIBNOR, Campus Guerrero Negro Independencia & Paseo Eucal, Guerrero Negro 23940, BCS, Mexico
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Villicana, Claudia,Warner, Norberto,Arce-Montoya, Mario,et al. Antiporter NHX2 differentially induced in Mesembryanthemum crystallinum natural genetic variant under salt stress[J],2016,124(2):361-375.
APA Villicana, Claudia.,Warner, Norberto.,Arce-Montoya, Mario.,Rojas, Mario.,Angulo, Carlos.,...&Gomez-Anduro, Gracia.(2016).Antiporter NHX2 differentially induced in Mesembryanthemum crystallinum natural genetic variant under salt stress.PLANT CELL TISSUE AND ORGAN CULTURE,124(2),361-375.
MLA Villicana, Claudia,et al."Antiporter NHX2 differentially induced in Mesembryanthemum crystallinum natural genetic variant under salt stress".PLANT CELL TISSUE AND ORGAN CULTURE 124.2(2016):361-375.
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