Obayashi Keiko, Kodama Yuuki
Major in Agricultural and Life Sciences, Graduate School of Natural Science and Technology, Shimane University, Matsue-Shi, Japan.
Institute of Agricultural and Life Sciences, Academic Assembly, Shimane University, Matsue-Shi, Japan.
Protoplasma. 2025 Mar;262(2):331-340. doi: 10.1007/s00709-024-01996-1. Epub 2024 Oct 8.
Paramecium bursaria is a ciliate species that has a symbiotic relationship with Chlorella spp. This study aimed to elucidate the dynamics of digestive vacuole (DV) differentiation in P. bursaria, using yeast stained with a pH indicator. Previously, DV differentiation in P. bursaria has been classified into eight periods based on fixed-cell observations. However, to understand the behavior and physiology of P. bursaria in its natural state, it is essential to observe living cells. This study presented a novel method using Cornig® Cell-Tak™ to immobilize living P. bursaria cells, which enabled long-term observation of the same cell from the same direction. This technique allowed for real-time observation of DV differentiation, including the relationship between changes in the internal pH of DV and the diameter of DV, yeast budding from the DV membrane by a single cell into the cytoplasm, and separation of a DV containing multiple yeasts into two DVs. This study provides new insights into the dynamic process of DV differentiation in P. bursaria. These findings contribute to a better understanding of the cellular mechanisms underlying the symbiotic relationship between the two organisms and shed light on the complex process of intracellular digestion in ciliates.
草履虫是一种与小球藻属具有共生关系的纤毛虫物种。本研究旨在利用用pH指示剂染色的酵母,阐明草履虫中消化液泡(DV)分化的动态过程。此前,基于固定细胞观察,草履虫中的DV分化已被分为八个时期。然而,为了了解草履虫在自然状态下的行为和生理机能,观察活细胞至关重要。本研究提出了一种使用Cornig® Cell-Tak™固定活的草履虫细胞的新方法,该方法能够从同一方向对同一个细胞进行长期观察。这项技术允许对DV分化进行实时观察,包括DV内部pH值变化与DV直径之间的关系、单个细胞的DV膜上酵母出芽进入细胞质以及包含多个酵母的一个DV分离为两个DV。本研究为草履虫中DV分化的动态过程提供了新的见解。这些发现有助于更好地理解这两种生物之间共生关系的细胞机制,并揭示纤毛虫细胞内消化的复杂过程。