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盐水处理对菊芋(Helianthus tuberosus)块茎产量和组成的影响。

Sugar yield and composition of tubers from Jerusalem Artichoke (Helianthus tuberosus) irrigated with saline waters.

机构信息

Department of Chemical and Environmental Engineering, Bourns College of Engineering, University of California Riverside, Riverside, California.

Center for Environmental Research and Technology (CE-CERT), Bourns College of Engineering, University of California Riverside, Riverside, California.

出版信息

Biotechnol Bioeng. 2018 Jun;115(6):1475-1484. doi: 10.1002/bit.26582. Epub 2018 Mar 15.

Abstract

Currently, major biofuel crops are also food crops that demand fertile soils and good-quality water. Jerusalem artichoke (Helianthus tuberosus, Asteraceae) produces high tonnage of tubers that are rich in sugars, mainly in the form of inulin. In this study, plants of the cultivar "White Fuseau" grown under five salinity levels were evaluated for tuber yield. Results indicated that this cultivar is moderately salt-tolerant if the goal is tuber production. Hydraulic pressings of the tubers produced juice that contained 15% (wet weight) or 55% (dry weight) free sugars, with 70% of these in the form of inulin and the rest as fructose, sucrose, and glucose. Importantly, salinity did not affect the total free sugar or inulin content of the tubers. Tubers were composed of about 12% dry washed bagasse (wet weight) or 44% (dry matter basis) and bagasse retained such high quantities of free sugars after pressing that washing was required for complete sugar recovery. Chemical composition analysis of tuber bagasse suggested that it had low lignin content (11-13 wt%), and its structural sugar composition was similar to chicory root bagasse. Because of the high hemicellulose and pectin content of the bagasse, adding xylanase and pectinase to cellulase substantially improved sugar yields from enzymatic hydrolysis compared to at the same protein loading as cellulase alone. In addition to the high total sugar yield of tuber, these first findings on the sugar and lignin content and enzymatic hydrolysis of tuber bagasse can lead to low-cost production of ethanol for transportation fuels.

摘要

目前,主要的生物燃料作物也是粮食作物,它们需要肥沃的土壤和高质量的水。菊芋(Helianthus tuberosus,菊科)产量高,块茎富含糖分,主要以菊糖的形式存在。在这项研究中,评估了五个盐度水平下种植的“White Fuseau”品种的块茎产量。结果表明,如果目标是生产块茎,该品种具有中度耐盐性。块茎的液压压榨产生的汁液含有 15%(湿重)或 55%(干重)的游离糖,其中 70%为菊糖,其余为果糖、蔗糖和葡萄糖。重要的是,盐度并不影响块茎中总游离糖或菊糖的含量。块茎由约 12%的干洗蔗渣(湿重)或 44%(干物质基础)组成,并且蔗渣在压榨后保留了如此高量的游离糖,因此需要洗涤才能完全回收糖。块茎蔗渣的化学成分分析表明,其木质素含量低(11-13wt%),其结构糖组成与菊苣根蔗渣相似。由于蔗渣中的半纤维素和果胶含量高,与单独使用纤维素酶相比,向纤维素酶中添加木聚糖酶和果胶酶可大大提高酶解的糖产量。除了块茎的总糖产量高之外,这些关于块茎的糖和木质素含量以及酶解的初步发现,可以实现用于运输燃料的低成本乙醇生产。

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