Department of Agricultural and Environmental Sciences-Production, Landscape, Agroenergy (DISAA), University of Milan, 20133 Milan, Italy.
Systems Biology Group Lab, Sapienza University of Rome, 00185 Rome, Italy.
Int J Mol Sci. 2024 Aug 9;25(16):8717. doi: 10.3390/ijms25168717.
Xerosydryle belongs to a new category of materials resulting from the interaction of water with various hydrophilic polymers. These materials can exhibit different properties depending on the kind of polymer-water interaction. Previous research confirmed the existence of a solid manifestation of water at room temperature. The thermal properties of dissolved xerosydryle in water are similar to those of biological macromolecules during denaturation but with greater stability. This study investigated the biological effect of xerosydryle on a living system for the first time, using a seed germination model. The interaction was evaluated using physiological assays such as chlorophyll shifts, potassium (re)uptake during the onset of germination and a transcriptome approach. Seeds were treated with samples of xerosydryle and distilled water. Transcriptome analysis of germinating seeds highlighted differences (up- and down-regulated genes) between seeds treated with xerosydryle and those treated with distilled water. Overall, the experiments performed indicate that xerosydryle, even at low concentrations, interferes with seedling growth in a manner similar to an osmotic modulator. This work paves the way for a more comprehensive exploration of the active biological role of xerosydryle and similar compounds on living matter and opens up speculation on the interactions at the boundaries between physics, chemistry, and biology.
Xerosydryle 属于一类新型材料,源于水与各种亲水性聚合物相互作用的结果。这些材料可根据聚合物与水相互作用的类型呈现出不同的性质。先前的研究证实了室温下固态水的存在。溶解在水中的 Xerosydryle 的热性质与生物大分子在变性过程中的相似,但稳定性更高。本研究首次使用种子萌发模型研究了 Xerosydryle 对活系统的生物学效应。通过叶绿素变化、萌发开始时钾(再)吸收等生理测定以及转录组方法来评估相互作用。种子用 Xerosydryle 样品和蒸馏水进行处理。萌发种子的转录组分析突出了用 Xerosydryle 处理的种子与用蒸馏水处理的种子之间的差异(上调和下调基因)。总的来说,所进行的实验表明,Xerosydryle 即使在低浓度下,也以类似于渗透调节剂的方式干扰幼苗生长。这项工作为更全面地探索 Xerosydryle 和类似化合物对生命物质的活性生物学作用铺平了道路,并引发了对物理、化学和生物学边界相互作用的推测。