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Slow arm regeneration in the Antarctic brittle star Ophiura crassa (Echinodermata, Ophiuroidea)

机译:南极脆星Ophiura crassa(Echinodermata,Ophiuroidea)中的慢臂再生

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ABSTRACT: Regeneration of arms in brittle stars is thought to proceed slowly in low temperature environments. Here a survey of natural arm damage and arm regeneration rates is documented in the Antarctic brittle star Ophiura crassa. This relatively small ophiuroid, a detritivore found amongst red macroalgae, displays high levels of natural arm damage and repair. This is largely thought to be due to ice damage in the shallow waters it inhabits. The time scale of arm regeneration was measured in an aquarium-based 10 mo experiment. There was a delayed regeneration phase of 7 mo before arm growth was detectable in this species. This is 2 mo longer than the longest time previously described, which was in another Antarctic ophiuroid, Ophionotus victoriae. The subsequent regeneration of arms in O. crassa occurred at a rate of approximately 0.16 mm mo−1. To date, this is the slowest regeneration rate known of any ophiuroid. The confirmation that such a long delay before arm regeneration occurs in a second Antarctic species provides strong evidence that this phenomenon is yet another characteristic feature of Southern Ocean species, along with deferred maturity, slowed growth and development rates. It is unclear whether delayed initial regeneration phases are adaptations to, or limitations of, low temperature environments.
机译:摘要:人们认为,在低温环境中,脆性恒星中臂的再生缓慢进行。这里记录了对南极脆性星星 Ophiura crassa 的自然手臂损伤和手臂再生速率的调查。这种相对较小的蛇形类,在红色大型藻类中发现的一种有害生物,显示出很高水平的自然手臂损伤和修复。在很大程度上,这被认为是由于其所居住的浅水区的冰层破坏所致。在基于水族馆的10 mo实验中测量了手臂再生的时间尺度。在该物种中检测到手臂生长之前,有一个7 mo的延迟再生阶段。这比先前描述的最长时间长了2个月,后者是另一个南极蛇形虫 Ophionotus victoriae 。 O中随后的臂再生。 crassa 的发生速率约为0.16 mm mo -1 。迄今为止,这是已知的任何蛇形生物中最慢的再生速率。在第二个南极物种发生臂再生之前如此长的延迟的证实提供了有力的证据,表明这种现象是南大洋物种的又一个特征,并且具有成熟期推迟,生长发育速度减慢的问题。目前尚不清楚延迟的初始再生阶段是否适应或限制了低温环境。

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