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模式藻类海带(褐藻门)的低温保存

Cryopreservation of the model alga Ectocarpus (Phaeophyceae).

作者信息

Heesch H, Day J G, Yamagishi T, Kawai H, Muller D G, Hupper F C

机构信息

National University of Ireland Galway, Galway, Ireland.

出版信息

Cryo Letters. 2012 Sep-Oct;33(5):327-36.

Abstract

The brown alga Ectocarpus has recently become the first fully sequenced multicellular alga and is an important biological model. Due to the large and growing number of Ectocarpus strains isolated and maintained by the research community, including increasing numbers of mutants, there is an urgent need for developing reliable, cost-effective long-term maintenance techniques. We report here that cryopreservation constitutes an attractive option in this respect, using a simple two-step protocol employing combined DMSO 10 percent (v/v) and sorbitol 9 percent (w/v) as cryoprotectants. This model organism appears to be remarkably robust and post-cryo recovery has been observed in all strains tested in this study. Cultures can be regenerated by the germination of cryopreserved zooids (spores), or the recovery of vegetative cells. In the latter case, dividing surviving cells may grow into the cell lumen of a neighbouring dead cell, eventually regenerating a phenotypically normal thalloidal structure.

摘要

褐藻绳藻最近成为首个完成全基因组测序的多细胞藻类,是一种重要的生物学模型。由于研究群体分离和保存的绳藻菌株数量众多且不断增加,包括越来越多的突变体,因此迫切需要开发可靠、经济高效的长期保存技术。我们在此报告,在这方面,冷冻保存是一个有吸引力的选择,采用一种简单的两步方案,使用10%(v/v)二甲基亚砜和9%(w/v)山梨醇作为冷冻保护剂。这种模式生物似乎非常强健,在本研究中测试的所有菌株中均观察到冷冻后复苏情况。培养物可以通过冷冻保存的游动孢子(孢子)萌发或营养细胞复苏来再生。在后一种情况下,存活的分裂细胞可能生长到相邻死细胞的细胞腔内,最终再生出表型正常的叶状体结构。

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