Form and function of the mantle edge in Protobranchia (Mollusca: Bivalvia)

IF 1.6 3区 生物学 Q2 ZOOLOGY
Zoology Pub Date : 2022-08-01 DOI:10.1016/j.zool.2022.126027
Carmen Salas , Juan de Dios Bueno-Pérez , Juan Félix López-Téllez , Antonio G. Checa
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引用次数: 4

Abstract

We analyzed, by optical and transmission electron microscopy, the morphology and function of the mantle edge, including the formation of the periostracum, of ten species of protobranchs. Five species from the order Nuculida, four species from the order Nuculanida and one species from the order Solemyida were studied. A second outer fold, which seems to function as a template for the internal marginal crenulations of the valves, is present in the crenulated species of Nucula. The minute non-crenulated Ennucula aegeensis shows the glandular basal cells displaced toward the periostracal groove, resembling a minute additional fold between the outer and middle folds. Intense secretion of glycocalyx, together with active uptake of particles, have been observed in the inner epithelium of the middle mantle fold and the whole epithelium of the inner mantle fold in all the studied species. Contrary to the rest of the bivalves, all the protobranchs analyzed have two basal cells involved in the formation of the external nanometric pellicle of the periostracum, a character that would support the monophyly of protobranchs. A three-layered pattern is the general rule for the periostracum in protobranchs, like for other bivalves. The presence of pouches of translucent layer inside the tanned dark layer under periostracal folds is characteristic of the species with a folded periostracum; its function is unclear but could give flexibility to the periostracum. The non-nacreous internal shell layer and the presence of translucent pouches under periostracal folds in Sarepta speciosa resemble those found in nuculanids. However, the free periostracum is rather similar to those of N. hanleyi and E. aegeensis, with a continuous vesicular layer. All the latter supports the inclusion of Sarepta in the order Nuculanida but could indicate either a basal lineage or that the translucent vesicular layer is an adaptive trait.

Abstract Image

原鳃纲(软体动物:双壳纲)地幔边缘的形态与功能
利用光学显微镜和透射电镜分析了10种原枝的地幔边缘的形态和功能,包括地幔边缘的形成。研究了Nuculida目5种、Nuculanida目4种和Solemyida目1种。第二个外部褶皱,其功能似乎是瓣的内部边缘小圆纹的模板,存在于有小圆纹的Nucula种中。微小无圆齿的aegeensis空核显示腺体基底细胞向周沟移位,类似于外层和中间褶皱之间的微小附加褶皱。在所研究的所有物种中,中地幔褶皱的内上皮和整个内地幔褶皱的上皮都观察到糖萼的强烈分泌和颗粒的积极摄取。与其他双壳类相反,所有被分析的原枝都有两个参与外膜纳米膜形成的基底细胞,这一特征将支持原枝的单系性。像其他双壳类动物一样,原枝的骨膜一般有三层结构。在骨膜皱褶下的黝黑层内存在半透明层的小袋是骨膜皱褶的物种的特征;其功能尚不清楚,但可能使骨膜具有弹性。非珍珠质内壳层和膜褶下的半透明小袋与核桃仁相似。但其游离骨膜与汉氏和aegeensis相似,具有连续的囊泡层。所有这些都支持了Sarepta在Nuculanida目中的包含,但可能表明它是一个基系,或者半透明的囊泡层是一种适应特征。
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来源期刊
Zoology
Zoology 生物-动物学
CiteScore
3.90
自引率
0.00%
发文量
37
审稿时长
70 days
期刊介绍: Zoology is a journal devoted to experimental and comparative animal science. It presents a common forum for all scientists who take an explicitly organism oriented and integrative approach to the study of animal form, function, development and evolution. The journal invites papers that take a comparative or experimental approach to behavior and neurobiology, functional morphology, evolution and development, ecological physiology, and cell biology. Due to the increasing realization that animals exist only within a partnership with symbionts, Zoology encourages submissions of papers focused on the analysis of holobionts or metaorganisms as associations of the macroscopic host in synergistic interdependence with numerous microbial and eukaryotic species. The editors and the editorial board are committed to presenting science at its best. The editorial team is regularly adjusting editorial practice to the ever changing field of animal biology.
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