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Genome-Wide Identification of Na + /H + Antiporter (NHX) Genes in Sugar Beet ( Beta vulgaris L.) and Their Regulated Expression under Salt Stress

机译:糖甜菜(Beta Vulgaris L.)中Na + / H +抗抗原剂(NHX)基因的基因组鉴定及其盐胁迫下的调节表达

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Salinity is one of the major environment factors that limits the growth of plants and the productivity of crops worldwide. It has been shown that Na + transporters play a central role in salt tolerance and development of plants. The objective of this study was to identify Na + /H + antiporter (NHX) genes and investigate their expression patterns in sugar beet ( Beta vulgaris L.) subjected to various concentrations of NaCl. A total of five putative NHX genes were identified and distributed on four chromosomes in sugar beet. Phylogenetic analysis revealed that these BvNHX genes are grouped into three major classes, viz Vac- ( BvNHX1 , -2 and -3 ), Endo- ( BvNHX4 ), and PM-class NHX ( BvNHX5/BvSOS1 ), and within each class the exon/intron structures are conserved. The amiloride-binding site is found in TM3 at N-terminus of Vac-class NHX proteins. Protein-protein interaction (PPI) prediction suggested that only BvNHX5 putatively interacts with calcineurin B-like proteins (CBL) and CBL-interacting protein kinases (CIPK), implying it might be the primary NHX involved in CBL-CIPK pathway under saline condition. It was also found that BvNHX5 contains one abscisic acid (ABA)-responsive element (ABRE), suggesting that BvNHX5 might be involved in ABA signal responsiveness. Additionally, the qRT-PCR analysis showed that all the BvNHX genes in both roots and leaves are significantly up-regulated by salt, and the transcription levels under high salinity are significantly higher than those under either low or moderate salinity. Taken together, this work gives a detailed overview of the BvNHX genes and their expression patterns under salt stress. Our findings also provide useful information for elucidating the molecular mechanisms of Na + homeostasis and further functional identification of the BvNHX genes in sugar beet.
机译:盐度是限制植物生长和全球作物的生产力的主要环境因素之一。已经表明,NA +运输司机在植物的耐盐和发展中起着核心作用。本研究的目的是鉴定Na + / H +抗糖浆(NHX)基因,并研究其经受各种浓度的NaCl的甜菜(βvulgaris L.)中的表达模式。共鉴定出五种推定的NHX基因并在甜菜中的四种染色体上分布。系统发育分析表明,这些BVNHX基因被分成三个主要类,Viz Vac-(BvnHX1,-2和-3),Endo-(BvnHX4)和PM-Class NHX(BVNHX5 / BVSOS1),以及在外显子的每个阶级/内含子结构是保守的。茉莉酰胺结合位点在VAC-TRAMINUS的TM3中发现在VAC类NHX蛋白的N-末端。蛋白质 - 蛋白质相互作用(PPI)预测表明,只有BVNHX5与钙碱B样蛋白(CBL)和CBL相互作用蛋白激酶(CBL相互作用的蛋白激酶(CBL相互作用,暗示它可能是盐水条件下CBL-CIPK途径中涉及的主要NHX。还发现BVNHX5含有一个脱离酸(ABA) - 夸张的元素(ABRE),表明BVNHX5可能参与ABA信号响应性。另外,QRT-PCR分析表明,根部和叶片中的所有BVNHX基因由盐显着上调,高盐度下的转录水平明显高于低或中等盐度。在一起,该工作详细概述了BVNHX基因及其在盐胁迫下的表达模式。我们的研究结果还提供了阐明Na +稳态的分子机制的有用信息,以及甜菜中BVNHX基因的进一步函数鉴定。

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