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首页> 外文期刊>Frontiers in Plant Science >New insights into plant glycoside hydrolase family 32 in Agave species
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New insights into plant glycoside hydrolase family 32 in Agave species

机译:龙舌兰属植物糖苷水解酶家族32的新见解

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摘要

In order to optimize the use of agaves for commercial applications, an understanding of fructan metabolism in these species at the molecular and genetic level is essential. Based on transcriptome data, this report describes the identification and molecular characterization of cDNAs and deduced amino acid sequences for genes encoding fructosyltransferases, invertases and fructan exohydrolases (FEH) (enzymes belonging to plant glycoside hydrolase family 32) from four different agave species ( A. tequilana, A. deserti, A. victoriae-reginae , and A. striata ). Conserved amino acid sequences and a hypervariable domain allowed classification of distinct isoforms for each enzyme type. Notably however neither 1-FFT nor 6-SFT encoding cDNAs were identified. In silico analysis revealed that distinct isoforms for certain enzymes found in a single species, showed different levels and tissue specific patterns of expression whereas in other cases expression patterns were conserved both within the species and between different species. Relatively high levels of in silico expression for specific isoforms of both invertases and fructosyltransferases were observed in floral tissues in comparison to vegetative tissues such as leaves and stems and this pattern was confirmed by Quantitative Real Time PCR using RNA obtained from floral and leaf tissue of A. tequilana . Thin layer chromatography confirmed the presence of fructans with degree of polymerization (DP) greater than DP three in both immature buds and fully opened flowers also obtained from A. tequilana .
机译:为了优化龙舌兰在商业应用中的使用,必须从分子和遗传的角度了解这些物种中的果聚糖代谢。根据转录组数据,本报告描述了来自四个不同的龙舌兰物种(A.A. tequilana,A.deserti,A.victoriae-reginae和A.striata)。保守的氨基酸序列和高变域允许对每种酶类型区分不同的亚型。然而,值得注意的是,没有识别出1-FFT和6-SFT编码的cDNA。在计算机分析中发现,在单个物种中发现的某些酶的不同同工型,表现出不同的水平和组织特异性表达模式,而在其他情况下,物种内以及不同物种之间的表达模式均被保守。与植物组织(如叶和茎)相比,在花卉组织中观察到了转化酶和果糖基转移酶的特定同工型的计算机表达水平较高,这种模式已通过定量实时PCR证实,这种方法使用的是从A的花和叶组织获得的RNA龙舌兰酒薄层色谱法证实在未成熟芽和完全开放的花中也都从龙舌兰中获得了聚合度(DP)大于DP 3的果聚糖。

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