首页> 外文期刊>Journal of Molluscan Studies >THE ROLE OF SURFACE FOULING IN THE DEVELOPMENT OF ENCAPSULATED GASTROPOD EMBRYOS
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THE ROLE OF SURFACE FOULING IN THE DEVELOPMENT OF ENCAPSULATED GASTROPOD EMBRYOS

机译:表层毛毡化在囊化胃类胚胎发育中的作用

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Surface fouling is a potential environmental stress for intertidal egg masses and may be detrimental to encapsulated molluscan development. This study examines the influence of egg mass structure (capsular vs gelatinous) and spawning habitat (shaded,partially shaded and full sun) on the amount of surface algal fouling on gastropod egg masses collected along the southeastern Australian coast. In addition, we examine the effects of surface fouling on embryonic mortality and encapsulation period. Egg masses from 18 species were collected and subjected to standardized aquarium conditions under UV-blocking filters. Algal fouling levels were calculated visually (F_v) and biochemically through chlorophyll content (F_v), but only visual quantification wasdeemed appropriate. The presence or absence of protists was also recorded. The level of fouling on the egg masses was not related to the habitat in which they were spawned. Gelatinous egg masses were fouled by both algae and protists at a significantly higher rate than leathery capsules. Egg masses colonized by protists had a higher level of algal fouling, and overall these egg masses had a significantly higher incidence of embryonic mortality. No effects of protists were observed on the period of encapsulation. When the effect of algal fouling on embryonic mortality was analysed for each species separately, significant positive relationships were found for several species. As F_v increased, the embryonic mortality of Conuber sp., Austraelois ornata, Bembicium nanum and Hoplodoris nodulosa increased. Algal fouling was significantly correlated with encapsulation period in only two species. As fouling increased, encapsulation period decreased for Aplysia sydneyenis and Dendrodoris fumata. Overall, thisstudy reveals that both surface colonization and the effects of fouling on gastropod encapsulated development are species-specific.
机译:表面结垢是潮间带卵团潜在的环境压力,可能对封装的软体动物发育有害。这项研究调查了蛋质量结构(荚膜对胶状)和产卵栖息地(阴影,部分阴影和全日照)对沿澳大利亚东南沿海采集的腹足动物卵表面表面藻类结垢量的影响。此外,我们研究了表面结垢对胚胎死亡率和包囊期的影响。收集了来自18种物种的卵块,并在阻挡紫外线的过滤器下经过标准化的水族馆条件。通过目测(F_v)和生化通过叶绿素含量(F_v)计算藻类污染水平,但仅可视化定量被认为是合适的。还记录了有无生物的存在。卵块的结垢程度与产卵的栖息地无关。藻类和原生生物均对胶状蛋团造成污染,其发生率远高于皮革状胶囊。由原生生物定殖的卵块的藻类污染程度较高,总体而言,这些卵块的胚胎死亡发生率明显更高。在包封期间未观察到原生生物的作用。当分别分析每种物种的藻类结垢对胚胎死亡率的影响时,发现几种物种之间存在显着的正相关。随着F_v的增加,Conuber sp。,澳大利亚南方古猿,南本氏本草和结节霍普多利斯的胚胎死亡率增加。在只有两个物种中,藻类结垢与包封期显着相关。随着结垢的增加,海葵和烟熏树的包封期减少。总体而言,这项研究表明,表面定殖和结垢对腹足动物包囊发育的影响都是物种特异性的。

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