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红藻门紫球藻目的贮藏α-葡聚糖的变异

Variation in storage alpha-glucans of the Porphyridiales (Rhodophyta).

作者信息

Shimonaga Takahiro, Konishi Mai, Oyama Yasunori, Fujiwara Shoko, Satoh Aya, Fujita Naoko, Colleoni Christophe, Buléon Alain, Putaux Jean-Luc, Ball Steven G, Yokoyama Akiko, Hara Yoshiaki, Nakamura Yasunori, Tsuzuki Mikio

机构信息

School of Life Sciences, Tokyo University of Pharmacy and Life Sciences, Hachioji, Tokyo, 192-0392 Japan.

出版信息

Plant Cell Physiol. 2008 Jan;49(1):103-16. doi: 10.1093/pcp/pcm172. Epub 2007 Dec 13.

DOI:10.1093/pcp/pcm172
PMID:18079144
Abstract

Storage glucans were analyzed in the Porphyridiales which include the most primitive and phylogenetically diverged species in the Rhodophyta, to understand early evolution of the glucan structure in the Rhodophyta. The storage glucans of both Galdieria sulphuraria and Cyanidium caldarium consisted of glycogen, while those of Rhodosorus marinus, Porphyridium purpureum, P. sordidum and Rhodella violacea could be defined as semi-amylopectin. X-ray diffraction analysis of the glucans demonstrated variation in the crystalline structure: the patterns in P. purpureum and R. violacea were of A- and B-types, respectively, while alpha-glucans of R. marinus and P. sordidum displayed structures with lower crystallinity. Electron microscopic observations indicated that the alpha-glucans of P. sordidum consisted of two kinds of granules; a minor component of more dense granules with crystalline leaflets and a major component of softer ones without crystalline structure. Gel permeation chromatography showed that all the species containing the semi-amylopectin-type glucans also contained amylose, although the relative amounts of this fraction were different depending on the species. Our results are consistent with two distinct evolution scenarios defined either by the independent acquisition of semi-crystalline starch-like structures in the different plant lineages or more probably by the loss of starch and reversion to glycogen synthesis in cyanidian algae growing in hot and acid environments.

摘要

为了解红藻中葡聚糖结构的早期进化,对红藻门中最原始且系统发育差异最大的紫球藻目进行了贮藏葡聚糖分析。硫化加尔迪藻和嗜热栖热放线菌的贮藏葡聚糖均由糖原组成,而海紫红藻、紫球藻、污色紫球藻和紫红红藻的贮藏葡聚糖可定义为半支链淀粉。葡聚糖的X射线衍射分析表明晶体结构存在差异:紫球藻和紫红红藻的衍射图谱分别为A型和B型,而海紫红藻和污色紫球藻的α-葡聚糖显示出较低结晶度的结构。电子显微镜观察表明,污色紫球藻的α-葡聚糖由两种颗粒组成;一种是含有结晶薄片的较致密颗粒的次要成分,另一种是没有晶体结构的较软颗粒的主要成分。凝胶渗透色谱显示,所有含有半支链淀粉型葡聚糖的物种也含有直链淀粉,尽管该组分的相对含量因物种而异。我们的结果与两种不同的进化情景一致,这两种情景要么是由不同植物谱系中独立获得半结晶淀粉样结构定义的,要么更可能是由在炎热和酸性环境中生长的蓝藻中淀粉的丧失和向糖原合成的逆转定义的。

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