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Comprehensive analysis of transcriptome response to salinity stress in the halophytic turf grass Sporobolus virginicus

机译:盐生草皮草Sporobolus virginicus对盐分胁迫的转录组响应的综合分析

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摘要

The turf grass Sporobolus virginicus is halophyte and has high salinity tolerance. To investigate the molecular basis of its remarkable tolerance, we performed Illumina high-throughput RNA sequencing on roots and shoots of a S. virginicus genotype under normal and saline conditions. The 130 million short reads were assembled into 444,242 unigenes. A comparative analysis of the transcriptome with rice and Arabidopsis transcriptome revealed six turf grass-specific unigenes encoding transcription factors. Interestingly, all of them showed root specific expression and five of them encode bZIP type transcription factors. Another remarkable transcriptional feature of S. virginicus was activation of specific pathways under salinity stress. Pathway enrichment analysis suggested transcriptional activation of amino acid, pyruvate, and phospholipid metabolism. Up-regulation of several unigenes, previously shown to respond to salt stress in other halophytes was also observed. Gene Ontology enrichment analysis revealed that unigenes assigned as proteins in response to water stress, such as dehydrin and aquaporin, and transporters such as cation, amino acid, and citrate transporters, and H+-ATPase, were up-regulated in both shoots and roots under salinity. A correspondence analysis of the enriched pathways in turf grass cells, but not in rice cells, revealed two groups of unigenes similarly up-regulated in the turf grass in response to salt stress; one of the groups, showing excessive up-regulation under salinity, included unigenes homologos to salinity responsive genes in other halophytes. Thus, the present study identified candidate genes involved in salt tolerance of S. virginicus. This genetic resource should be valuable for understanding the mechanisms underlying high salt tolerance in S. virginicus. This information can also provide insight into salt tolerance in other halophytes.
机译:草皮Sporobolus virginicus是盐生植物,具有较高的耐盐性。为了研究其卓越耐受性的分子基础,我们在正常和盐碱条件下对初生链霉菌基因型的根和芽进行了Illumina高通量RNA测序。 1.3亿个短读片段被组装成444,242个单基因。与水稻和拟南芥转录组的转录组的比较分析揭示了六个草皮草特异性单基因编码的转录因子。有趣的是,它们都显示出根特异性表达,其中五个编码bZIP型转录因子。维吉尼亚链球菌的另一个显着转录特征是盐分胁迫下特定途径的激活。途径富集分析表明氨基酸,丙酮酸和磷脂代谢的转录激活。还观察到了数种单基因的上调,这些基因先前已显示出对其他盐生植物中盐胁迫的响应。基因本体论富集分析表明,响应水分胁迫而被分配为蛋白质的单基因,如脱水蛋白和水通道蛋白,以及诸如阳离子,氨基酸和柠檬酸盐的转运蛋白和H + -ATPase的转运蛋白-在盐度下在芽和根中均受调节。对草皮草细胞而非水稻细胞中富集途径的对应分析表明,响应盐分胁迫,两组草皮草基因组类似地上调。其中一组显示出盐度下的过度上调,其中包括与其他盐生植物中盐度响应基因有关的单基因同源物。因此,本研究确定了候选蛋白与维吉尼亚链球菌的耐盐性有关。该遗传资源对于理解维氏链球菌高耐盐性的潜在机制应该是有价值的。这些信息还可以提供其他盐生植物耐盐性的信息。

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