Genome-wide identification and expression analysis of Na+/H+antiporter (NHX) genes in tomato under salt stress.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2023-11-13 eCollection Date: 2023-11-01 DOI:10.1002/pld3.543
Erman Cavusoglu, Ugur Sari, Iskender Tiryaki
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Abstract

Plant Na +/H + antiporter (NHX) genes enhance salt tolerance by preventing excessive Na+ accumulation in the cytosol through partitioning of Na+ ions into vacuoles or extracellular transport across the plasma membrane. However, there is limited detailed information regarding the salt stress responsive SlNHXs in the most recent tomato genome. We investigated the role of this gene family's expression patterns in the open flower tissues under salt shock in Solanum lycopersicum using a genome-wide approach. A total of seven putative SlNHX genes located on chromosomes 1, 4, 6, and 10 were identified, but no ortholog of the NHX5 gene was identified in the tomato genome. Phylogenetic analysis revealed that these genes are divided into three different groups. SlNHX proteins with 10-12 transmembrane domains were hypothetically localized in vacuoles or cell membranes. Promoter analysis revealed that SlNHX6 and SlNHX8 are involved with the stress-related MeJA hormone in response to salt stress signaling. The structural motif analysis of SlNHX1, -2, -3, -4, and -6 proteins showed that they have highly conserved amiloride binding sites. The protein-protein network revealed that SlNHX7 and SlNHX8 interact physically with Salt Overly Sensitive (SOS) pathway proteins. Transcriptome analysis demonstrated that the SlNHX2 and SlNHX6 genes were substantially expressed in the open flower tissues. Moreover, quantitative PCR analysis indicated that all SlNHX genes, particularly SlNHX6 and SlNHX8, are significantly upregulated by salt shock in the open flower tissues. Our results provide an updated framework for future genetic research and development of breeding strategies against salt stress in the tomato.

盐胁迫下番茄Na+/H+反转运蛋白(NHX)基因的全基因组鉴定及表达分析
植物Na+ /H +反转运蛋白(NHX)基因通过将Na+离子分配到液泡中或跨质膜的胞外运输来防止Na+在细胞质中过量积累,从而增强植物的耐盐性。然而,在最新的番茄基因组中,关于盐胁迫响应SlNHXs的详细信息有限。采用全基因组方法研究了该基因家族在盐胁迫下开放花组织中的表达模式。共鉴定出7个SlNHX基因,分别位于第1、4、6和10号染色体上,但未在番茄基因组中鉴定出与NHX5基因同源的基因。系统发育分析显示,这些基因可分为三个不同的组。具有10-12个跨膜结构域的SlNHX蛋白被假设定位于液泡或细胞膜中。启动子分析表明,SlNHX6和SlNHX8参与胁迫相关的MeJA激素响应盐胁迫信号。SlNHX1、-2、-3、-4和-6蛋白的结构基序分析表明,它们具有高度保守的酰胺结合位点。蛋白质网络显示,SlNHX7和SlNHX8与盐过度敏感(SOS)途径蛋白发生物理相互作用。转录组分析表明,SlNHX2和SlNHX6基因在开放花组织中大量表达。此外,定量PCR分析表明,盐胁迫下,所有SlNHX基因,尤其是SlNHX6和SlNHX8基因均显著上调。我们的研究结果为今后番茄抗盐胁迫的遗传研究和育种策略的发展提供了一个新的框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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