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不同年龄的龙舌兰韦伯蓝品种植物液泡中果聚糖活性酶(FAZY)的活性及低聚果糖的生物合成

Fructan active enzymes (FAZY) activities and biosynthesis of fructooligosaccharides in the vacuoles of Agave tequilana Weber Blue variety plants of different age.

作者信息

Mellado-Mojica Erika, González de la Vara Luis E, López Mercedes G

机构信息

Departamento de Biotecnología y Bioquímica, Centro de Investigación y de Estudios Avanzados del IPN, Unidad Irapuato. Km. 9.6 Lib. Norte Carretera Irapuato-León, Apartado Postal 629, 36821, Irapuato, Gto, Mexico.

出版信息

Planta. 2017 Feb;245(2):265-281. doi: 10.1007/s00425-016-2602-7. Epub 2016 Oct 11.

Abstract

Biosynthesis of agave fructans occurs in mesontle vacuoles which showed fluctuations in FAZY activities and synthesized a diverse spectrum of fructooligosaccharide isomers. Agave tequilana Weber Blue variety is an important agronomic crop in Mexico. Fructan metabolism in A. tequilana exhibits changes in fructan content, type, degree of polymerization (DP), and molecular structure. Specific activities of vacuolar fructan active enzymes (FAZY) in A. tequilana plants of different age and the biosynthesis of fructooligosaccharides (FOSs) were analyzed in this work. Vacuoles from mesontle (stem) protoplasts were isolated and collected from 2- to 7-year-old plants. For the first time, agave fructans were identified in the vacuolar content by HPAEC-PAD. Several FAZY activities (1-SST, 6-SFT, 6G-FFT, 1-FFT, and FEH) with fluctuations according to the plant age were found in protein vacuolar extracts. Among vacuolar FAZY, 1-SST activities appeared in all plant developmental stages, as well as 1-FFT and FEH activities. The enzymes 6G-FFT and 6-SST showed only minimal activities. Lowest and highest FAZY activities were found in 2- and 6-year-old plants, respectively. Synthesized products (FOS) were analyzed by TLC and HPAEC-PAD. Vacuolar FAZYs yielded large FOS isomers diversity, being 7-year-old plants the ones that synthesized a greater variety of fructans with different DP, linkages, and molecular structures. Based on the above, we are proposing a model for the FAZY activities constituting the FOS biosynthetic pathways in Agave tequilana Weber Blue variety.

摘要

龙舌兰果聚糖的生物合成发生在中柱液泡中,这些液泡显示出果聚糖活性酶(FAZY)活性的波动,并合成了多种低聚果糖异构体。龙舌兰韦伯蓝品种是墨西哥一种重要的农作物。龙舌兰中果聚糖代谢在果聚糖含量、类型、聚合度(DP)和分子结构方面表现出变化。本研究分析了不同年龄的龙舌兰植株中液泡果聚糖活性酶(FAZY)的比活性以及低聚果糖(FOSs)的生物合成。从中柱(茎)原生质体中分离并收集了2至7年生植株的液泡。首次通过高效阴离子交换色谱-脉冲安培检测法(HPAEC-PAD)在液泡内容物中鉴定出龙舌兰果聚糖。在液泡蛋白提取物中发现了几种随植株年龄波动的FAZY活性(1-SST、6-SFT、6G-FFT、1-FFT和FEH)。在所有植物发育阶段都出现了液泡FAZY中的1-SST活性,以及1-FFT和FEH活性。6G-FFT和6-SST酶仅表现出最低活性。分别在2年生和6年生植株中发现了最低和最高的FAZY活性。通过薄层层析(TLC)和HPAEC-PAD分析合成产物(FOS)。液泡FAZY产生了大量的FOS异构体多样性,7年生植株合成了更多具有不同DP、连接方式和分子结构果聚糖。基于以上研究,我们提出了一个构成龙舌兰韦伯蓝品种FOS生物合成途径的FAZY活性模型。

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