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Role of water mobility on mold spore germination.

机译:水分流动对霉菌孢子萌发的作用。

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A sugar transport defected strain of Aspergillus nidulans (biA-1 sorA-2) was tested for spore germination in nutrient media containing various water activity (a(w)) values and varying amounts of non-nutritive, nontoxic carbohydrates (L-sorbose and cellulose). Freeze-dried media [containing the same nutrient level but different in sorbose/cellulose (s:c) ratio] were adjusted to 0.75-0.97a(w) at 25 degrees C before inoculation. Minimum a(w) for germination varied with s:c ratio. Because both sorbose and cellulose were not metabolizable and unable to be transported into the cells, the results reflected the molecular mobility of water. (2)H NMR T(2) relaxation time correlated well with spore germination time, and it distinguished the difference between water sorbed to cellulose and water in a solution associated with dissolved sorbose. On the other hand, mold germination time correlated poorly with a(w). It was highly dependent on the s:c ratio. Water mobility was found to correlate better with biological activity than a(w) because it differentiated the availability between water in dissolved sorbose and adsorbed water in cellulose.
机译:测试了含糖转运缺陷的曲霉(biA-1 sorA-2)菌株在营养介质中的孢子萌发情况,该营养介质包含各种水分活度(a(w))值和不同量的非营养性,无毒碳水化合物(L-山梨糖和纤维素)。在接种前,在25摄氏度下将冷冻干燥的培养基[营养成分相同但山梨糖/纤维素(s:c)比例不同)调整为0.75-0.97a(w)。发芽的最小a(w)随s:c比率而变化。因为山梨糖和纤维素都不能代谢,也无法转运到细胞中,所以结果反映了水的分子迁移性。 (2)H NMR T(2)弛豫时间与孢子萌发时间密切相关,并且它区分了吸附到纤维素上的水和与溶解山梨糖有关的溶液中的水之间的差异。另一方面,霉菌发芽时间与a(w)的相关性很差。它高度依赖于s:c比率。与a(w)相比,水的流动性与生物活性的相关性更好,因为它区分了溶解的山梨糖中的水和纤维素中的吸附水之间的可用性。

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