不同干燥方式对杏鲍菇菌丝体品质属性和微观结构的影响

Foods 2021 Pub Date : 2021-10-13 DOI:10.3390/foods2021-10950
Shubham Mandliya, H. Mishra
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引用次数: 3

摘要

人口增长和自然资源有限导致对替代膳食蛋白质的需求。需要增加世界粮食供应,以同样有限的资源养活不断增长的人口。为了克服饥饿问题,真菌“菌丝体”等替代蛋白质来源可被视为一种新型、可持续和安全的膳食蛋白质,可在资源(水、土地)有限且碳足迹较低的情况下支持健康。虽然菌丝体含有丰富的多种矿物质、维生素d2、纤维、必需氨基酸和蛋白质,但由于其含水量高(89%),其储存寿命相对较短。因此,对菌丝体进行干燥处理将有助于延长其保质期,以便进一步加工。在这个方向上,冷压作为预处理步骤进行,以减少菌丝体的初始水分,从而大大减少干燥时间和成本。然后,研究了真空(VD)、微波(MWD)和冷冻(FD)等不同干燥方法对杏鲍菇颜色、微观结构(SEM)、水溶性指数、吸水指数、体积密度和抽头密度、流动性等品质属性的影响。在5牛压力下压30秒,干燥时间减少了大约50-55%。FD的效果最好,保留了双歧杆菌的主要性状,其次是VD和MWD。SEM分析表明,FD样品含有多孔纤维结构,而MWD和VD样品含有较少或没有孔隙的硬结构。最后,尽管MWD和VD的干燥时间最短,但却破坏了青松的结构,而在所有的干燥过程中营养损失并不明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Different Drying Methods on Quality Attributes and Microstructure of Mycelium (Pleurotus eryngii)
: Expanding populations and limited natural resources are leading to demands for alternative dietary proteins. The world food supply needs to be increased to feed the increasing population with the same limited resources. To overcome the hunger problem, alternative protein sources such as fungal “Mycelium” can be regarded as a novel, sustainable and safe dietary protein to support health with limited resources (water, land) and with a lower carbon footprint. Although, mycelium is rich in various minerals, vitamin D 2 , fibers, essential amino acids along with protein, its storage life is relatively short due to its high moisture content (89% wb). Thus, drying of mycelium would facilitate shelf-life enhancement for further processing. Moving in this direction, cold pressing as a pre-processing step was conducted to reduce the initial moisture of mycelium so as to reduce the drying time and cost by a significant amount. Then, the influence of different drying techniques such as vacuum (VD), microwave (MWD) and freeze (FD) drying methods on quality attributes such as color, microstructure (SEM), water solubility index, water absorption index, bulk and tapped density, and flowability of Pleurotus eryngii was determined. Pressing at 5 N for 30 s reduced drying time by approximately 50–55%. FD was the most effective which retained the main characteristics of P. eryngii followed by VD and MWD. SEM analysis showed that FD sample contains porous fibrous structure, whereas MWD and VD samples contain a hard structure with less or no pores. Finally, despite having the shortest drying time, MWD and VD damages the structure of P. eryngii , whereas nutrient loss is not significant in all the drying processes.
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