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培养的束毛藻(蓝藻门)与野外鉴定物种的比较(1)。

COMPARISON OF CULTURED TRICHODESMIUM (CYANOPHYCEAE) WITH SPECIES CHARACTERIZED FROM THE FIELD(1).

作者信息

Hynes Annette M, Webb Eric A, Doney Scott C, Waterbury John B

机构信息

Massachusetts Institute of Technology-Woods Hole Oceanographic Institution, Joint Program in Oceanography/Applied Ocean Science and Engineering, Woods Hole, Massachusetts, USA Department of Biology, Woods Hole Oceanographic Institution, 266 Woods Hole Rd., Woods Hole, Massachusetts 02543, USADepartment of Biological Sciences, University of Southern California, 3616 Trousdale Parkway AHF 331, Los Angeles, California 90089, USADepartment of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, 266 Woods Hole Rd., Woods Hole, Massachusetts 02543, USADepartment of Biology, Woods Hole Oceanographic Institution, 266 Woods Hole Rd., Woods Hole, Massachusetts 02543, USA.

出版信息

J Phycol. 2012 Feb;48(1):196-210. doi: 10.1111/j.1529-8817.2011.01096.x. Epub 2011 Dec 14.

Abstract

The filamentous, colonial cyanobacterium Trichodesmium has six well-described species, but many more names. Traditional classification was based on field samples using morphological characteristics such as cell width and length, gas vesicle distribution, and colony morphology. We used the Woods Hole Trichodesmium culture collection to identify 21 cultured strains to species using cell morphology; phycobiliprotein absorption spectra; and sequences of the 16S rRNA gene, the 16S-23S internal transcribed spacer (ITS), and the heterocyst differentiation gene hetR. We compared our results to previous studies of field specimens and found similar clades, though not all phylogenetic groups were represented in culture. Our culture collection represented two of the four major clades of Trichodesmium: clade I, made up of Trichodesmium thiebautii Gomont, Trichodesmium tenue Wille, Katagnymene spiralis Lemmerm., and Trichodesmium hildebrandtii Gomont; and clade III, consisting of Trichodesmium erythraeum Ehrenb. and Trichodesmium contortum Wille. These clades were genetically coherent with similar phycobiliprotein composition, but morphologically diverse. In the continual revision of cyanobacterial taxonomy, genetic and biochemical information is useful and informative complements to morphology for the development of a functional classification scheme.

摘要

丝状群体蓝细菌束毛藻有六个已被充分描述的物种,但还有更多的名称。传统分类基于野外样本,依据细胞宽度和长度、气泡分布以及群体形态等形态特征。我们利用伍兹霍尔束毛藻培养物保藏中心,通过细胞形态、藻胆蛋白吸收光谱以及16S rRNA基因、16S - 23S内转录间隔区(ITS)和异形胞分化基因hetR的序列,将21个培养菌株鉴定到物种。我们将结果与之前对野外样本的研究进行比较,发现了相似的进化枝,尽管并非所有系统发育组都在培养物中有所代表。我们的培养物保藏中心代表了束毛藻四个主要进化枝中的两个:进化枝I,由蒂氏束毛藻Gomont、细束毛藻Wille、螺旋卡塔念珠藻Lemmerm.和希氏束毛藻Gomont组成;进化枝III,由红海束毛藻Ehrenb.和扭曲束毛藻Wille组成。这些进化枝在遗传上具有一致性,藻胆蛋白组成相似,但形态多样。在蓝细菌分类学的不断修订中,遗传和生化信息对于制定功能分类方案而言,是对形态学有用且信息丰富的补充。

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