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Characterization and Regulation of Aquaporin Genes of Sorghum Sorghum bicolor (L.) Moench in Response to Waterlogging Stress

机译:高粱水淹胁迫响应水淹胁迫的特征和调控。

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摘要

Waterlogging is a significant environmental constraint to crop production, and a better understanding of plant responses is critical for the improvement of crop tolerance to waterlogged soils. Aquaporins (AQPs) are a class of channel-forming proteins that play an important role in water transport in plants. This study aimed to examine the regulation of AQP genes under waterlogging stress and to characterize the genetic variability of AQP genes in sorghum (Sorghum bicolor). Transcriptional profiling of AQP genes in response to waterlogging stress in nodal root tips and nodal root basal regions of two tolerant and two sensitive sorghum genotypes at 18 and 96 h after waterlogging stress imposition revealed significant gene-specific pattern with regard to genotype, root tissue sample, and time point. For some tissue sample and time point combinations, PIP2-6, PIP2-7, TIP2-2, TIP4-4, and TIP5-1 expression was differentially regulated in tolerant compared to sensitive genotypes. The differential response of these AQP genes suggests that they may play a tissue specific role in mitigating waterlogging stress. Genetic analysis of sorghum revealed that AQP genes were clustered into the same four subfamilies as in maize (Zea mays) and rice (Oryza sativa) and that residues determining the AQP channel specificity were largely conserved across species. Single nucleotide polymorphism (SNP) data from 50 sorghum accessions were used to build an AQP gene-based phylogeny of the haplotypes. Phylogenetic analysis based on single nucleotide polymorphisms of sorghum AQP genes placed the tolerant and sensitive genotypes used for the expression study in distinct groups. Expression analyses suggested that selected AQPs may play a pivotal role in sorghum tolerance to water logging stress. Further experimentation is needed to verify their role and to leverage phylogenetic analyses and AQP expression data to improve waterlogging tolerance in sorghum.
机译:涝渍对农作物生产是一个重要的环境约束,对植物反应的更好了解对于提高作物对涝渍土壤的耐受性至关重要。水通道蛋白(AQP)是一类通道形成蛋白,在植物的水运输中起重要作用。这项研究的目的是检查在淹水胁迫下AQP基因的调控,并表征高粱(Aorghum bicolor)中AQP基因的遗传变异性。浸水胁迫施加后18和96 h,对两个耐性和两个敏感高粱基因型的根部根尖和节点根基区中的渍水压力,AQP基因的转录谱分析显示出关于基因型,根组织样品的显着基因特异性模式和时间点。对于某些组织样本和时间点组合,与敏感基因型相比,PIP2-6,PIP2-7,TIP2-2,TIP4-4和TIP5-1的表达在耐受性上有差异。这些AQP基因的差异反应表明,它们可能在缓解涝渍胁迫中发挥组织特异性作用。高粱的遗传分析表明,AQP基因与玉米(Zea mays)和水稻(Oryza sativa)中的四个亚科相同,而决定AQP通道特异性的残基在整个物种中都非常保守。来自50个高粱种的单核苷酸多态性(SNP)数据用于构建基于AQP基因的单倍型系统发育。基于高粱AQP基因单核苷酸多态性的系统发育分析将用于表达研究的耐受和敏感基因型分为不同的组。表达分析表明,选定的AQP可能在高粱耐涝胁迫中起关键作用。需要进一步的实验来验证它们的作用,并利用系统发育分析和AQP表达数据来提高高粱的耐涝性。

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