Kokornaczyk Maria Olga, Dinelli Giovanni, Betti Lucietta
Department of Agroenvironmental Sciences and Technologies, University of Bologna, Viale Fanin 42, 40127, Bologna, Italy.
Naturwissenschaften. 2013 Jan;100(1):111-5. doi: 10.1007/s00114-012-0999-9. Epub 2012 Nov 24.
The present paper reports on an observation that dendrite-like polycrystalline structures from evaporating droplets of wheat grain leakages exhibit bilateral symmetry. The exactness of this symmetry, measured by means of fluctuating asymmetry, varies depending on the cultivar and stress factor influence, and seems to correspond to the seed germination rate. In the bodies of plants, animals, and humans, the exactness of bilateral symmetry is known to reflect the environmental conditions of an organism's growth, its health, and its success in sexual selection. In polycrystalline structures, formed under the same conditions, the symmetry exactness depends on the properties of the crystallizing solution such as the composition and viscosity; however, it has never been associated with sample quality. We hypothesize here that, as in living nature, the exactness of approximate bilateral symmetry might be considered a quality indicator also in crystallographic methods applied to food quality analysis.
本文报道了一项观察结果,即小麦籽粒渗漏蒸发液滴形成的树枝状多晶结构呈现双侧对称性。通过波动不对称性测量的这种对称性的精确程度,会因品种和胁迫因素的影响而有所不同,并且似乎与种子发芽率相对应。在植物、动物和人体中,双侧对称性的精确程度已知反映了生物体生长的环境条件、其健康状况以及在性选择中的成功程度。在相同条件下形成的多晶结构中,对称性精确程度取决于结晶溶液的性质,如成分和粘度;然而,它从未与样品质量相关联。我们在此假设,如同在生物界一样,近似双侧对称性的精确程度在应用于食品质量分析的晶体学方法中也可能被视为质量指标。