Ripley Steven J, Baker Andrea C, Miller Peter I, Walne Anthony W, Schroeder Declan C
University of Plymouth, Drake Circus, Plymouth PL1 3DH, UK.
J Microbiol Methods. 2008 May;73(2):118-24. doi: 10.1016/j.mimet.2008.02.001. Epub 2008 Feb 15.
The coccolithophores, particularly the species Emiliania huxleyi (Lohmann) Hay & Mohler, account for the bulk of global calcium carbonate production and as such play a fundamental role in global CO2 cycling and the carbonate chemistry of the oceans. To evaluate the response of this functional group to the effects of climate change, we undertook a feasibility study to determine whether a retrospective approach could be used on archived coccolithophore datasets. We demonstrate for the first time a technique for the extraction of E. huxleyi nucleic acids from archived formalin-fixed samples of the long-term Continuous Plankton Recorder. Molecular analysis of a nine year old formalin-fixed sample reveals the presence of a diverse population of E. huxleyi genotypes within a developing coccolithophore bloom. In addition, E. huxleyi sequences were amplified from a number of formalin-fixed samples, the earliest of which was collected in August 1972. This molecular assay promises the possibility of studying global variations in the distribution and genetic make-up of E. huxleyi communities over extensive periods of time.
颗石藻,尤其是赫氏艾氏藻(Lohmann)Hay & Mohler,占全球碳酸钙产量的大部分,因此在全球二氧化碳循环和海洋碳酸盐化学中发挥着重要作用。为了评估这个功能群对气候变化影响的响应,我们进行了一项可行性研究,以确定是否可以对存档的颗石藻数据集采用回顾性方法。我们首次展示了一种从长期连续浮游生物记录器的存档福尔马林固定样本中提取赫氏艾氏藻核酸的技术。对一个九年历史的福尔马林固定样本进行分子分析,发现在一个正在发展的颗石藻水华中存在多种赫氏艾氏藻基因型。此外,从多个福尔马林固定样本中扩增出了赫氏艾氏藻序列,其中最早的样本是1972年8月采集的。这种分子检测方法有望实现对赫氏艾氏藻群落分布和遗传组成在很长一段时间内的全球变化进行研究。