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基部海带阿留申金藻的祖先繁殖结构。

Ancestral reproductive structure in basal kelp Aureophycus aleuticus.

作者信息

Kawai Hiroshi, Hanyuda Takeaki, Ridgway L Michelle, Holser Karin

机构信息

Kobe University Research Center for Inland Seas, Rokkodai, Kobe 657-8501, Japan.

出版信息

Sci Rep. 2013;3:2491. doi: 10.1038/srep02491.

Abstract

Laminarialean species (so-called kelps) are the largest photosynthetic organisms in aquatic environments, constituting significant ecological components of coastal ecosystems. The largest kelps such as Macrocystis exhibit differentiation between stipe and blade, as well as buoyancy to maintain the distal portion at the water's surface for photosynthesis, while bearing reproductive structures only near the base on special blades (sporophylls). There is a considerable gap between basic kelps such as Chorda and derived kelps, and the evolution of kelp specialization remains unclear. Here we report novel reproductive adaptations in the recently discovered species Aureophycus aleuticus; unlike any known kelps, A. aleuticus forms zoidangia only on the expanded, disc-shaped holdfast. Molecular phylogeny suggests that A. aleuticus is most basal among derived kelps. Because Aureophycus lacks any of the elaborate anatomical structures found in other derived kelps, we suggest that it exhibits some of the most ancestral morphological features of kelps.

摘要

海带目物种(即所谓的大型褐藻)是水生环境中最大的光合生物,是沿海生态系统的重要生态组成部分。像巨藻这样的大型海带在柄和叶片之间表现出分化,并且具有浮力,可将远端部分维持在水面进行光合作用,而仅在基部附近的特殊叶片(孢子叶)上承载生殖结构。像绳藻这样的基础海带与衍生海带之间存在相当大的差距,海带特化的进化仍不清楚。在这里,我们报告了最近发现的阿留申金藻的新的繁殖适应性;与任何已知的海带不同,阿留申金藻仅在扩展的盘状固着器上形成游动孢子囊。分子系统发育表明,阿留申金藻在衍生海带中是最基部的。由于金藻缺乏其他衍生海带中发现的任何精细解剖结构,我们认为它表现出了海带一些最原始的形态特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da39/3749548/a2bd0c102607/srep02491-f1.jpg

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