Thelohanellus kitauei transcriptome sequencing for evolutionary and phylogenetic analyses (Illumina Hiseq 2500)
收藏NIAID Data Ecosystem2026-03-14 收录
官方服务:
资源简介:
The increased taxon sampling of myxozoans is beneficial to the evolutionary and phylogenetic analyses of cnidarians.
应用场景:
创建时间:
2022-12-22
相关数据集
Myxobolus honghuensis PacBio genome sequencing and assembly. Myxobolus honghuensis
Parasite evolution has been conceptualized as a process of genetic loss and simplification. Contrary to this model, there is evidence of expansion and conservation of gene families related to essentia
NIAID Data Ecosystem50
Myxobolus ampullicapsulatus transcriptome sequencing for evolutionary and phylogenetic analyses. Myxobolus ampullicapsulatus
The increased taxon sampling of myxozoans is beneficial to the evolutionary and phylogenetic analyses of cnidarians.
NIAID Data Ecosystem30
In this study, we created several datasets using new publicly released as well as newly-generated DNA and RNA-seq data for representatives of all cnidarian classes to test all previously-proposed phylogenetic hypotheses. We explored two popular orthology assessment methods to build gene alignments for phylogenetic purposes, and compared their outcomes regarding both gene representation and phylogenetic signal (aka species trees). Our Cnidaria dataset is the most extensive to date, including sequence-rich datasets for three Staurozoa species and one Ceriantharia.
Cnidarian relationships have been a source of debate for decades with almost every possible combination of sister group relationship between major taxa proposed to date. Recent, data-rich, phylogenomi
NIAID Data Ecosystem20
Myxobolus turpisrotundus transcriptome sequencing for evolutionary and phylogenetic analyses. Myxobolus turpisrotundus
The increased taxon sampling of myxozoans is beneficial to the evolutionary and phylogenetic analyses of cnidarians.
NIAID Data Ecosystem50
Data_Sheet_6_Global Neuropeptide Annotations From the Genomes and Transcriptomes of Cubozoa, Scyphozoa, Staurozoa (Cnidaria: Medusozoa), and Octocorallia (Cnidaria: Anthozoa).PDF
During animal evolution, ancestral Cnidaria and Bilateria diverged more than 600 million years ago. The nervous systems of extant cnidarians are strongly peptidergic. Neuropeptides have been isolated
NIAID Data Ecosystem30



