Biocatalysis Laboratory, National Institute of Technology, Ministry of Science, Technology, Innovation and Communication, Rio de Janeiro, 20081-312, RJ, Brazil.
Federal University of Rio de Janeiro, Department of Biochemistry, Rio de Janeiro, 21941-909, RJ, Brazil.
Sci Rep. 2019 Jul 29;9(1):10939. doi: 10.1038/s41598-019-47401-3.
The açaí seed corresponds to approximately 85% of the fruit's weight and represents ~1.1 million metric tons of residue yearly accumulated in the Amazon region, resulting in an acute environmental and urban problem. To extract the highest value from this residue, this study aimed to evaluate its chemical composition to determine the appropriate applications and to develop conversion methods. First, mannan was confirmed as the major component of mature seeds, corresponding to 80% of the seed's total carbohydrates and about 50% of its dry weight. To convert this high mannan content into mannose, a sequential process of dilute-acid and enzymatic hydrolysis was evaluated. Among different dilute-HSO hydrolysis conditions, 3%-acid for 60-min at 121 °C resulted in a 30% mannan hydrolysis yield and 41.7 g/L of mannose. Because ~70% mannan remained in the seed, a mannanase-catalyzed hydrolysis was sequentially performed with 2-20% seed concentration, reaching 146.3 g/L of mannose and a 96.8% yield with 20% solids. As far as we know, this is the highest reported concentration of mannose produced from a residue. Thus, this work provides fundamental data for achieving high concentrations and yields of mannose from açaí seeds, which could add commercial value to the seeds and improve the whole açaí productive chain.
巴西莓籽约占果实重量的 85%,每年在亚马逊地区积累约 110 万吨残渣,这对环境和城市造成了严重问题。为了从这些残渣中提取最高价值,本研究旨在评估其化学组成,以确定其合适的应用并开发转化方法。首先,确定成熟种子的主要成分是甘露聚糖,占种子总碳水化合物的 80%,约占其干重的 50%。为了将这种高甘露聚糖含量转化为甘露糖,我们评估了稀酸和酶水解的顺序过程。在不同的稀 HSO 水解条件下,3%-酸在 121°C 下处理 60 分钟,导致甘露聚糖水解收率为 30%,甘露糖浓度为 41.7g/L。由于种子中仍有约 70%的甘露聚糖,因此依次进行甘露聚糖酶催化水解,当种子浓度为 2-20%时,可获得 146.3g/L 的甘露糖,固体含量为 20%时的收率为 96.8%。据我们所知,这是从残渣中生产出的最高浓度的甘露糖。因此,这项工作为从巴西莓籽中获得高浓度和高收率的甘露糖提供了基础数据,这可以为种子增加商业价值,并改善整个巴西莓生产链。