The Nereid on the rise: Platynereis as a model system.

The Nereid on the rise: Platynereis as a model system.
复制标题

DOI:
10.1186/s13227-021-00180-3
复制
发表时间:
2021-09-27
期刊:
影响因子:
4.1
通讯作者:
Arendt D
Arendt D
中科院分区:
生物学2区
文献类型:
--
作者:
Özpolat BD;Randel N;Williams EA;Bezares-Calderón LA;Andreatta G;Balavoine G;Bertucci PY;Ferrier DEK;Gambi MC;Gazave E;Handberg-Thorsager M;Hardege J;Hird C;Hsieh YW;Hui J;Mutemi KN;Schneider SQ;Simakov O;Vergara HM;Vervoort M;Jékely G;Tessmar-Raible K;Raible F;Arendt D

文献摘要

参考文献

被引文献

相似文献

沙蚕Platynereis dumerilii(Audouin和Milne Edwards(Annales des Sciences Naturelles 1:195-269,1833))是属于沙蚕科的海洋环节动物,沙蚕科是一种游走的多毛类蠕虫。沙蚕显示了一个远洋底栖生活史:作为Lophotrochozoa/Spiralia超门的一般特征,它具有发育成游泳担轮幼虫的分裂胚胎。幼虫然后变形为生活在大型藻类上的自旋转管中的底栖蠕虫。Platynereis被用作遗传学,再生,生殖生物学,发育,进化,时间生物学,神经生物学,生态学,生态毒理学的模型,最近也用于连接组学和单细胞基因组学。对沙蚕的研究始于19世纪和20世纪初对眼睛发育和螺旋胚胎发育的研究。过渡到分子时代,Platynereis的研究集中在后部生长和再生,神经内分泌学,昼夜节律和月亮周期,受精和卵母细胞成熟。其他工作包括分割,光感受器和其他感觉细胞,肾管和人口动态。最近,沙蚕幼虫的全身体积电子显微镜和单细胞测序的独特优势变得明显,使其绳梯样中枢神经系统中的所有神经元的跟踪,和多模式细胞图谱的建设。在这里,我们提供了当前主题和方法的概述P. dumerilii,以激发进一步的兴趣到我们独特的模式和扩大活跃和充满活力的Platynereis社区的目的。在线版本包含补充材料,可通过10.1186/s13227-021-00180-3获得。
The Nereid Platynereis dumerilii (Audouin and Milne Edwards (Annales des Sciences Naturelles 1:195–269, 1833) is a marine annelid that belongs to the Nereididae, a family of errant polychaete worms. The Nereid shows a pelago-benthic life cycle: as a general characteristic for the superphylum of Lophotrochozoa/Spiralia, it has spirally cleaving embryos developing into swimming trochophore larvae. The larvae then metamorphose into benthic worms living in self-spun tubes on macroalgae. Platynereis is used as a model for genetics, regeneration, reproduction biology, development, evolution, chronobiology, neurobiology, ecology, ecotoxicology, and most recently also for connectomics and single-cell genomics. Research on the Nereid started with studies on eye development and spiralian embryogenesis in the nineteenth and early twentieth centuries. Transitioning into the molecular era, Platynereis research focused on posterior growth and regeneration, neuroendocrinology, circadian and lunar cycles, fertilization, and oocyte maturation. Other work covered segmentation, photoreceptors and other sensory cells, nephridia, and population dynamics. Most recently, the unique advantages of the Nereid young worm for whole-body volume electron microscopy and single-cell sequencing became apparent, enabling the tracing of all neurons in its rope-ladder-like central nervous system, and the construction of multimodal cellular atlases. Here, we provide an overview of current topics and methodologies for P. dumerilii, with the aim of stimulating further interest into our unique model and expanding the active and vibrant Platynereis community. The online version contains supplementary material available at 10.1186/s13227-021-00180-3.
DOI: 10.1073/pnas.1910262116
发表时间: 2020-01-14
影响因子: 11.1
作者:
Andreatta,Gabriele;Broyart,Caroline;Raible,Florian
通讯作者: Raible,Florian
DOI: 10.1016/j.celrep.2015.06.052
发表时间: 2015-07-28
期刊: CELL REPORTS
影响因子: 8.8
作者:
Bauknecht, Philipp;Jekely, Gaspar
通讯作者: Jekely, Gaspar
DOI: 10.7554/elife.36262
发表时间: 2018-12-14
期刊: ELIFE
影响因子: 7.7
作者:
Bezares-Calderon, Luis A.;Berger, Juergen;Jekely, Gaspar
通讯作者: Jekely, Gaspar
DOI: 10.1002/jmor.10375
发表时间: 2005-12-01
影响因子: 1.5
作者:
Ackermann, C;Dorresteijn, A;Fischer, A
通讯作者: Fischer, A
DOI: 10.7554/elife.19607
发表时间: 2016-12-01
期刊: ELIFE
影响因子: 7.7
作者:
Brunet, Thibaut;Fischer, Antje H. L.;Arendt, Detlev
通讯作者: Arendt, Detlev