Institute of the Biological Problems of the North FEB RAS, Magadan, 685000, Russia.
Institute of Cytology and Genetics SB RAS, Novosibirsk, 630090, Russia.
J Comp Physiol B. 2023 Aug;193(4):391-400. doi: 10.1007/s00360-023-01500-w. Epub 2023 Jun 2.
Several earthworm species are known to be able to withstand freezing. At the biochemical level, this ability is based on cryoprotectant accumulation as well as several other mechanisms. In this study, we used H NMR to investigate metabolomic changes in two freeze-tolerant earthworm taxa, Dendrobaena octaedra and one of the genetic lineages of Eisenia sp. aff. nordenskioldi f. pallida. A total of 45 metabolites were quantified. High concentrations of glucose were present in frozen tissues of both taxa. No other putative cryoprotectants were found. We detected high levels of glycolysis end products and succinate in frozen animals, indicating the activation of glycolysis. Concentrations of many other substances also significantly increased. On the whole, metabolic change in response to freezing was much more pronounced in the specimens of Eisenia sp. aff. nordenskioldi f. pallida, including signs of nucleotide degradation.
已知有几种蚯蚓能够耐受冻结。在生化水平上,这种能力基于抗冻保护剂的积累以及其他几种机制。在这项研究中,我们使用 H NMR 研究了两种耐寒蚯蚓类群(Dendrobaena octaedra 和 Eisenia sp. aff. nordenskioldi f. pallida 的一个遗传谱系)的代谢组学变化。共定量了 45 种代谢物。两种类群的冷冻组织中均存在高浓度的葡萄糖。未发现其他潜在的抗冻剂。我们在冷冻动物中检测到高水平的糖酵解终产物和琥珀酸,表明糖酵解的激活。许多其他物质的浓度也显著增加。总的来说,Eisenia sp. aff. nordenskioldi f. pallida 标本对冻结的代谢变化更为明显,包括核苷酸降解的迹象。