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关于成体触手冠神经系统的首批现代数据及腕足动物系统发育的当前评估

First Modern Data on the Lophophore Nervous System in Adult and a Current Assessment of Brachiopod Phylogeny.

作者信息

Temereva Elena

机构信息

Department of Invertebrate Zoology, Biological Faculty, Moscow State University, 119991 Moscow, Russia.

Faculty of Biology and Biotechnology, National Research University Higher School of Economics, 101000 Moscow, Russia.

出版信息

Biology (Basel). 2022 Mar 6;11(3):406. doi: 10.3390/biology11030406.

Abstract

Although the lophophore is regarded as the main synapomorphy of all lophophorates, the evolution of the lophophore in certain groups of lophophorates remains unclear. To date, the innervation of the lophophore has been studied with modern methods only for three brachiopod species belonging to two subphyla: Linguliformea and Rhynchonelliformea. In the third subphylum, the Craniiformea, there are data for juveniles but not for adults. In the current research, the innervation of the lophophore in adults was studied by immunocytochemistry and confocal laser scanning microscopy. In the spiral lophophore of adults of the craniiform , each arm is innervated by six brachial nerves: main, additional main, accessory, second accessory, additional lower, and lower brachial nerves. Compared with other brachiopod species, this complex innervation of the lophophore correlates with the presence of many lophophoral muscles. The general anatomy of the lophophore nervous system and the peculiarities of the organization of the subenteric ganglion of the craniiform have a lot in common with those of rhynchonelliforms but not with those of linguliforms. These findings are consistent with the "Calciata" hypothesis of the brachiopod phylogeny and are inconsistent with the inference that the Craniiformea and Linguliformea are closely related.

摘要

尽管触手冠被视为所有触手冠动物的主要共同衍征,但某些触手冠动物类群中触手冠的演化仍不清楚。迄今为止,仅对属于两个亚门的三种腕足动物——舌形亚纲和小嘴贝亚纲,采用现代方法研究了触手冠的神经支配情况。在第三个亚门,圆货贝亚纲中,有关于幼体的研究数据,但没有成体的。在当前研究中,通过免疫细胞化学和共聚焦激光扫描显微镜研究了圆货贝成体触手冠的神经支配情况。在圆货贝成体的螺旋状触手冠中,每条臂由六条臂神经支配:主神经、附加主神经、副神经、第二副神经、附加下神经和下臂神经。与其他腕足动物物种相比,这种复杂的触手冠神经支配与众多触手冠肌肉的存在相关。触手冠神经系统的总体解剖结构以及圆货贝肠下神经节的组织特点与小嘴贝亚纲有许多共同之处,但与舌形亚纲不同。这些发现与腕足动物系统发育的“钙质壳类”假说一致,与圆货贝亚纲和舌形亚纲密切相关的推断不一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10cc/8945433/c43721fb2338/biology-11-00406-g001.jpg

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