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Sensory, chemical and bacteriological changes in vacuum-packed pressurised squid mantle (Todaropsis eblanae) stored at 4°C

机译:真空包装的加压鱿鱼地幔(Todaropsis eblanae)在4°C下的感官,化学和细菌学变化

摘要

Sensory, chemical and bacteriological changes were studied in vacuum-packed squid mantles (Todaropsis eblanae) that were pressurised at 150, 200, 300 and 400 megapascal (MPa) for 15 min at ambient temperature and stored at 4°C. Sensory analysis showed that the higher the pressurisation the longer the shelf-life. Thus, the lot pressurised at 400 MPa was rejected after 28 days' storage compared with 7 days for the untreated lot. The chemical results generally corresponded with the sensory ones. Furthermore, ammonia (NH3) and trimethylamine (TMA) were produced in the pressurised lots after a pressure dependent delay. Urea decreased to low levels in all lots with the exception of the 400 MPa lot. Onset of production of agmatine, the dominant amine in this species, and other biogenic amines was delayed by increasing pressure, but still, high concentrations of these amines were detected in pressurised lots of acceptable sensory quality. Microbial counts conducted after 1 day of storage showed that the bacterial load was reduced by all pressures, reaching levels below the detection limit in the lots treated with 200-400 MPa. However, growth was resumed in all lots after a pressure dependent delay. Luminous bacteria predominated initially in the lots pressurised at 300 and 400 MPa, but were outnumbered by Enterobacteriaceae and lactic acid bacteria at the time of sensory rejection of these lots. All colonies isolated prior to pressurisation were identified as Photobacterium phosphoreum. This bacterium also resumed growth faster than other members of the endogenous microflora after pressurisation. All luminous colonies were identified as P. phosphoreum. Lactic acid bacteria isolated at the final sampling point of the lot pressurised at 400 MPa were identified as Carnobacterium piscicola and Carnobacterium divergens, while Serratia liquefaciens and Proteus vulgaris make up Enterobacteriaceae. © 2002 Elsevier Science B.V. All rights reserved.
机译:在真空包装的鱿鱼地衣(Todaropsis eblanae)中研究了感官,化学和细菌学变化,将其在环境温度下分别于150、200、300和400兆帕(MPa)加压15分钟,并保存在4°C下。感官分析表明,加压程度越高,保质期越长。因此,与未处理批次的7天相比,在储存28天后被加压至400 MPa的批次被拒收。化学结果通常与感官结果一致。此外,在压力依赖性延迟后,在加压批次中产生了氨(NH3)和三甲胺(TMA)。除400 MPa批次外,所有批次的尿素均降至较低水平。压力增加,胍丁胺,该物种中的主要胺以及其他生物胺的生产开始被延迟,但是仍然在可接受的感官质量的加压批次中检测到高浓度的这些胺。储存1天后进行的微生物计数显示,在所有压力下细菌载量均降低,在200-400 MPa处理的批次中达到低于检测极限的水平。但是,在依赖压力的延迟之后,所有批次都恢复了生长。最初在300和400 MPa加压的批次中,发光细菌占主导地位,但在这些批次的感官排斥时,肠杆菌科细菌和乳酸菌的数量要多于发光细菌。加压之前分离出的所有菌落均被鉴定为磷细菌。加压后,该细菌还比内源微生物群的其他成员恢复更快的生长。所有发光菌落均被鉴定为磷光体。在压力为400 MPa的批次的最终采样点分离出的乳酸菌被鉴定为Pinocis piscicola和divergen的Carnobacterium divergens,而液化沙雷氏菌和寻常变形杆菌组成了肠杆菌科。 ©2002 Elsevier Science B.V.保留所有权利。

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