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关于原绿球藻(Phaeocystis globosa)和南极原绿球藻(Phaeocystis antarctica)(1)生活史的现有知识。

CURRENT KNOWLEDGE OF THE LIFE CYCLES OF PHAEOCYSTIS GLOBOSA AND PHAEOCYSTIS ANTARCTICA (PRYMNESIOPHYCEAE)(1).

机构信息

Department of Biological Oceanography, Netherlands Institute for Sea Research/NIOZ, PO Box 59, NL-1790 AB Den Burg, the NetherlandsAlfred Wegener Institute for Polar- and Marine Research, Am Handelshafen 12, D-27570 Bremerhaven, Germany.

出版信息

J Phycol. 2012 Jun;48(3):514-7. doi: 10.1111/j.1529-8817.2012.01136.x. Epub 2012 Apr 17.

Abstract

Despite continuous efforts since the 1950s and more recent advances in culturing flagellates and nonflagellate cells of the prymnesiophyte Phaeocystis, a number of different life-cycle models exist today that appear to apply for P. globosa Scherff. and P. antarctica G. Karst., both spherical colony formers. In one such model, this life cycle consists of three different flagellates and one nonmotile cell stage that is embedded in carbohydrate matrix-forming colonies of different sizes and forms. Recently, noncolonial aggregates of diploid nonmotile cells attached to surfaces of diatoms were put forward as a new stage in the sexual life cycle of P. antarctica. However, it can be discussed that these "attached aggregates" (AAs) are an intermediate between motile diploid flagellates, with their well-known tendency to adhere to surfaces, and the young spherical colony with its diploid nonmotile cells, which in nature is commonly found attached to diatoms. A life-cycle model pertaining to both P. globosa and P. antarctica is presented.

摘要

尽管自 20 世纪 50 年代以来一直在努力,并且最近在培养甲藻的鞭毛和非鞭毛细胞方面取得了进展,但今天仍然存在许多不同的生命周期模型,这些模型似乎适用于球形群体形成的球形甲藻(Phaeocystis globosa Scherff.)和南极甲藻(P. antarctica G. Karst.)。在这样的一个模型中,这个生命周期由三种不同的鞭毛和一种非运动细胞阶段组成,这些阶段嵌入在不同大小和形式的碳水化合物基质形成的群体中。最近,附着在硅藻表面的二倍体非运动细胞的非群体聚集体被提出作为南极甲藻有性生命周期的一个新阶段。然而,可以讨论的是,这些“附着聚集体”(AA)是运动二倍体鞭毛和它们众所周知的附着表面的倾向,以及年轻的球形群体及其二倍体非运动细胞之间的中间阶段,在自然界中,这些细胞通常附着在硅藻上。本文提出了一个与 P. globosa 和 P. antarctica 都相关的生命周期模型。

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