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八放珊瑚白化期间共生体在群体内的迁移

Within-colony migration of symbionts during bleaching of octocorals.

作者信息

Parrin Austin P, Harmata Katherine L, Netherton Sarah E, Yaeger Mark A, Bross Lori S, Blackstone Neil W

机构信息

Department of Biological Sciences, Northern Illinois University, DeKalb, Ilinois 60115, USA.

出版信息

Biol Bull. 2012 Oct;223(2):245-56. doi: 10.1086/BBLv223n2p245.

Abstract

Octocorals compose a major part of cnidarian diversity. As with other symbiont-containing cnidarians, octocorals are susceptible to a stress response and subsequent "bleaching," which typically involves the loss of photosynthetic dinoflagellate symbionts. Studies of bleaching often focus on hexacorals, including sea anemones and scleractinians. The extent to which these results can be generalized to octocorals remains unclear. Bleaching was examined using two representative species of the Holaxonia-Alcyoniina clade of alcyonacean octocorals, Phenganax parrini and Sarcothelia sp. Remarkably, colonies of both species showed the same pattern in response to perturbation: symbionts in the polyps detach or die, leaving the polyps entirely bleached, yet at the same time large numbers of symbionts accumulate in the stolons. These symbionts are contained in host cells, many of which appear to attach to the stolon tissue. A comparison of living and fixed specimens suggests that these cells are loosely bound to, but not actually in, the stolonal tissue. Since gastrovascular fluid in the stolons is driven by cilia, these accumulating cells may lower fluid velocities. The accumulation of symbionts in the stolons during perturbation may have considerable relevance to how octocoral colonies recover from bleaching.

摘要

八放珊瑚构成了刺胞动物多样性的主要部分。与其他含有共生体的刺胞动物一样,八放珊瑚易受应激反应及随后的“白化”影响,白化通常涉及光合甲藻共生体的丧失。白化研究通常集中在六放珊瑚,包括海葵和石珊瑚。这些结果能在多大程度上推广到八放珊瑚仍不清楚。我们使用海鸡冠目八放珊瑚的Holaxonia - Alcyoniina分支的两个代表性物种,即帕林氏拟软柳珊瑚(Phenganax parrini)和一种肉芝软珊瑚(Sarcothelia sp.)来研究白化现象。值得注意的是,这两个物种的群体在受到扰动时表现出相同的模式:水螅体中的共生体分离或死亡,使水螅体完全白化,但与此同时大量共生体在匍匐茎中积累。这些共生体包含在宿主细胞中,其中许多似乎附着在匍匐茎组织上。对活体和固定标本的比较表明,这些细胞与匍匐茎组织松散相连,但实际上并不在其中。由于匍匐茎中的消化循环液由纤毛驱动,这些积累的细胞可能会降低液体流速。扰动期间共生体在匍匐茎中的积累可能与八放珊瑚群体如何从白化中恢复有很大关系。

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