Laboratoire des Substances Naturelles (LSN, LR10 INRAP02), Institut National de Recherche et d'Analyse Physico-chimique (INRAP), Pôle Technologique de Sidi Thabet, 2020 Sidi Thabet, Tunisia.
Dipartimento di Agricoltura, Alimentazione e Ambiente (Di3A), University of Catania, Via Santa Sofia 98, 95123 Catania, Italy.
Int J Food Microbiol. 2015 May 4;200:22-30. doi: 10.1016/j.ijfoodmicro.2015.01.015. Epub 2015 Jan 30.
This study assessed the ability of two bio-based films, obtained from sodium alginate (NaAlg) and locust bean gum (LBG), to protect the viability of Wickerhamomyces anomalus cells and control the growth of Penicillium digitatum. The effect of microbial cell incorporation on physical properties of the developed films was evaluated in terms of barrier, mechanical and optical properties. Furthermore, the application of these two matrices as bioactive coatings was investigated in order to evaluate their efficacy in preserving the postharvest quality of 'Valencia' oranges and inhibiting the growth of P. digitatum on artificially inoculated fruits. Results showed that NaAlg and LBG films were able to maintain more than 85% of the initial W. anomalus yeast population and that the developed films incorporating the killer yeast completely inhibited the growth of P. digitatum in synthetic medium. Likewise, NaAlg and LBG coatings enriched with W. anomalus yeast were effective at reducing weight loss and maintaining firmness of 'Valencia' oranges during storage, and reduced green mold in inoculated fruits by more than 73% after 13 days.
本研究评估了两种生物基薄膜的能力,这两种薄膜由海藻酸钠(NaAlg)和槐豆胶(LBG)制成,以保护异常威克汉姆酵母细胞的活力并控制青霉菌的生长。通过评估开发薄膜的阻隔、机械和光学性能,研究了微生物细胞掺入对其物理性能的影响。此外,还研究了这两种基质作为生物活性涂层的应用,以评估它们在保持‘瓦伦西亚’橙子的采后品质和抑制人工接种果实中青霉菌生长方面的效果。结果表明,NaAlg 和 LBG 薄膜能够保持超过 85%的初始异常威克汉姆酵母种群,并且开发的薄膜将杀酵母剂完全抑制了在合成培养基中青霉菌的生长。同样,含有异常威克汉姆酵母的 NaAlg 和 LBG 涂层能够有效减少‘瓦伦西亚’橙子在贮藏过程中的失重和保持硬度,并在 13 天后将接种果实中的青霉病减少超过 73%。