首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Genome-Wide Survey of Invertase Encoding Genes and Functional Characterization of an Extracellular Fungal Pathogen-Responsive Invertase in Glycine max
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Genome-Wide Survey of Invertase Encoding Genes and Functional Characterization of an Extracellular Fungal Pathogen-Responsive Invertase in Glycine max

机译:甘氨酸最大转化酶编码基因的全基因组调查和细胞外真菌病原反应性转化酶的功能表征

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摘要

Invertases are essential enzymes that irreversibly catalyze the cleavage of sucrose into glucose and fructose. Cell wall invertase (CWI) and vacuolar invertase (VI) are glycosylated proteins and exert fundamental roles in plant growth as well as in response to environmental cues. As yet, comprehensive insight into invertase encoding genes are lacking in Glycine max. In the present study, the systematic survey of gene structures, coding regions, regulatory elements, conserved motifs, and phylogenies resulted in the identification of thirty–two putative invertase genes in soybean genome. Concomitantly, impacts on gene expression, enzyme activities, proteins, and soluble sugar accumulation were explored in specific tissues upon stress perturbation. In combination with the observation of subcellular compartmentation of the fluorescent fusion protein that indeed exported to apoplast, heterologous expression, and purification in using Pichia pastoris system revealed that GmCWI4 was a typical extracellular invertase. We postulated that GmCWI4 may play regulatory roles and be involved in pathogenic fungi defense. The experimental evaluation of physiological significance via phenotypic analysis of mutants under stress exposure has been initiated. Moreover, our paper provides theoretical basis for elucidating molecular mechanisms of invertase in association with inhibitors underlying the stress regime, and will contribute to the improvement of plant performance to a diverse range of stressors.
机译:转化酶是不可逆地催化蔗糖裂解成葡萄糖和果糖的必需酶。细胞壁转化酶(CWI)和液泡转化酶(VI)是糖基化蛋白,在植物生长以及对环境线索的响应中起着基本作用。迄今为止,在大豆中缺乏对转化酶编码基因的全面了解。在本研究中,对基因结构,编码区,调控元件,保守基序和系统发育的系统研究导致了大豆基因组中32个推定的转化酶基因的鉴定。同时,在应力扰动下,在特定组织中探索了对基因表达,酶活性,蛋白质和可溶性糖积累的影响。结合观察到确实融合到质外体的荧光融合蛋白的亚细胞区隔,异源表达和使用巴斯德毕赤酵母系统的纯化显示GmCWI4是典型的细胞外转化酶。我们推测,GmCWI4可能发挥调节作用,并参与致病性真菌防御。已经开始通过应激暴露下的突变体的表型分析对生理学意义进行实验评估。此外,我们的论文为阐明转化酶与胁迫机制下抑制剂的分子机理提供了理论基础,并将为改善植物在各种胁迫条件下的性能做出贡献。

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