日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Absence of conserved immune signalling pathways and increased pathogen susceptibility associated to photosymbiosis in acoels

无肠动物光合共生导致保守免疫信号通路缺失和病原体易感性增加。

Pinton, Francesca; Rimskaya-Korsakova, Nadezhda N; Felbel, Katja; Grimmer, Elisabeth; Hejnol, Andreas

Molecular evidence from xenacoelomorph gonopore formation supports homology with the bilaterian anus

来自异涡虫生殖孔形成的分子证据支持其与两侧对称动物肛门的同源性

Andrikou, Carmen; Pang, Kevin; Børve, Aina; Lu, Tsai-Ming; Hejnol, Andreas

Diarylamidine activation of a brachiopod DEG/ENaC/ASIC channel

二芳脒激活腕足动物 DEG/ENaC/ASIC 通道

Josep Martí-Solans, Aina Børve, Andreas Hejnol, Timothy Lynagh

Comparative Analysis of Maternal Gene Expression Patterns Unravels Evolutionary Signatures Across Reproductive Modes

母系基因表达模式的比较分析揭示了不同繁殖方式的进化特征

Kagan, Ferenc; Hejnol, Andreas

Combinatorial Wnt signaling landscape during brachiopod anteroposterior patterning

腕足动物前后轴模式形成过程中Wnt信号的组合分布图谱

Vellutini, Bruno C; Martín-Durán, José M; Børve, Aina; Hejnol, Andreas

Annelid functional genomics reveal the origins of bilaterian life cycles

环节动物功能基因组学揭示了两侧对称动物生命周期的起源

Francisco M Martín-Zamora #, Yan Liang #, Kero Guynes, Allan M Carrillo-Baltodano, Billie E Davies, Rory D Donnellan, Yongkai Tan, Giacomo Moggioli, Océane Seudre, Martin Tran, Kate Mortimer, Nicholas M Luscombe, Andreas Hejnol, Ferdinand Marlétaz, José M Martín-Durán

Peripheral and central employment of acid-sensing ion channels during early bilaterian evolution

早期两侧对称动物进化过程中酸敏感离子通道的外周和中心应用

Josep Martí-Solans, Aina Børve, Paul Bump, Andreas Hejnol, Timothy Lynagh

The localization of Toll and Imd pathway and complement system components and their response to Vibrio infection in the nemertean Lineus ruber

Toll 和 Imd 通路以及补体系统成分的定位及其对纽形动物红线虫(Lineus ruber)弧菌感染的反应

Orús-Alcalde, Andrea; Børve, Aina; Hejnol, Andreas

Marine animal evolutionary developmental biology-Advances through technology development

海洋动物进化发育生物学——技术发展带来的进展

Stracke, Katharina; Hejnol, Andreas

Brachiopod and mollusc biomineralisation is a conserved process that was lost in the phoronid-bryozoan stem lineage

腕足动物和软体动物的生物矿化作用是一个保守的过程,但在帚虫-苔藓动物干系中消失了。

Wernström, Joel Vikberg; Gąsiorowski, Ludwik; Hejnol, Andreas