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苔藓虫幼虫饥饿与摄食期间幼体原基及变态能力的丧失与获得

Loss and gain of the juvenile rudiment and metamorphic competence during starvation and feeding of bryozoan larvae.

作者信息

Strathmann Richard R, Foley Gerard P, Hysert Alana N

机构信息

Friday Harbor Laboratories, University of Washington, 620 University Road, Friday Harbor, WA 98250, USA.

出版信息

Evol Dev. 2008 Nov-Dec;10(6):731-6. doi: 10.1111/j.1525-142X.2008.00287.x.

DOI:10.1111/j.1525-142X.2008.00287.x
PMID:19021744
Abstract

In many animals, larval structures and juvenile rudiments develop independently. One advantage of this independence is that juvenile rudiments can be expended as a nutrient reserve or for energy conservation. When bryozoan cyphonautes larvae were starved, structures required for settlement and metamorphosis shrank. When the larvae were again fed, these structures grew back. Starvation reduced the size of both the internal sac, a rudiment of postlarval juvenile structures, and the pyriform organ, which functions in sensing and crawling on the substratum at settlement. In contrast, starvation affected neither the size of the larval shell nor the lengths of the ciliary bands used in swimming and feeding. Starved larvae that had reduced the pyriform organ and internal sac did not metamorphose in response to stimuli from a laminarian alga. The laminarian alga did stimulate metamorphosis of the same larvae after renewed feeding, when the larvae had regrown these structures. Thus starved larvae expended body parts needed for settlement and metamorphosis when food was scarce while retaining structures for feeding, swimming, and defense. Starved larvae thereby retained the capacity to regrow structures needed for settlement and metamorphosis when they again encountered food. Advantages from expendable juvenile rudiments may enhance selection for their being developmentally distinct from structures for larval swimming and feeding.

摘要

在许多动物中,幼虫结构和幼体雏形是独立发育的。这种独立性的一个优势在于,幼体雏形可以作为营养储备被消耗,或者用于保存能量。当苔藓虫类的裸腹幼虫饥饿时,用于附着和变态的结构会萎缩。当幼虫再次进食时,这些结构又会重新生长。饥饿减小了内囊(幼虫后幼体结构的雏形)和梨形器官的大小,梨形器官在附着时用于感知和在基质上爬行。相比之下,饥饿既不影响幼虫外壳的大小,也不影响用于游泳和进食的纤毛带的长度。减少了梨形器官和内囊的饥饿幼虫不会对海带藻的刺激产生变态反应。当幼虫重新进食后,这些结构重新生长,此时海带藻确实刺激了相同幼虫的变态。因此,饥饿的幼虫在食物稀缺时会消耗用于附着和变态所需的身体部位,同时保留用于进食、游泳和防御的结构。饥饿的幼虫由此保留了在再次遇到食物时重新生长附着和变态所需结构的能力。可消耗的幼体雏形带来的优势可能会增强这样一种选择,即它们在发育上与幼虫游泳和进食的结构不同。

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