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

Experimental Sodalis infection eliminates ancient insect symbiont

实验性索达利斯感染可消除古代昆虫共生体

Krüsemer, Ronja; Carvalho, Ana S P; Keller, Jean; Vogel, Heiko; Dale, Colin; Engl, Tobias; Kaltenpoth, Martin

Streptomyces anthophorae sp. nov. and Streptomyces nidicola sp. nov., novel actinobacteria isolated from a solitary bee

从独居蜂中分离得到的两种新型放线菌:Streptomyces anthophorae sp. nov. 和 Streptomyces nidicola sp. nov.

Christensen, Shawn M; Kaltenpoth, Martin; Vogel, Heiko; Vannette, Rachel L

Convergence in Symbiont-Induced Plant-Mediated Responses to Herbivory: Cascading Effects for Foraging Parasitoids.

共生体诱导植物对植食性昆虫反应的趋同性:对觅食寄生蜂的级联效应

Cusumano Antonino, Urbach Serge, Jouan Veronique, Vogel Heiko, Dicke Marcel, Volkoff Anne-Nathalie, Poelman Erik H

Symbionts with eroded genomes adjust gene expression according to host life-stage and environment

基因组受损的共生体会根据宿主的生命阶段和环境调整基因表达。

Carvalho, Ana S P; Wingert, Sinah T; Kirsch, Roy; Vogel, Heiko; Kölsch, Gregor; Kaltenpoth, Martin

A multi-partner symbiotic community inhabits the emerging insect pest Pentastiridius leporinus

新兴害虫兔五节蚁(Pentastiridius leporinus)体内栖息着多伙伴共生群落。

Vogel, Heiko; Weiss, Benjamin; Rama, Fortesa; Rinklef, Andre; Engl, Tobias; Kaltenpoth, Martin; Vilcinskas, Andreas

Change Your Diet: How CO(2), Plant Phenology and Genotype Alter Grapevine Quality and Affect Performance and Larval Transcriptome of an Insect Herbivore.

改变你的饮食:CO(2)、植物物候和基因型如何改变葡萄藤的品质并影响食草昆虫幼虫的转录组和性能

Becker Christine, Steingass Christof B, Vogel Heiko, Reineke Annette

Molecular basis of the explosive defence response in the bombardier beetle Brachinus crepitans

轰炸甲虫(Brachinus crepitans)爆炸性防御反应的分子基础

Vogel, Heiko; Rügen, Nicolai; Wielsch, Natalie; Twyman, Richard M; Tonk-Rügen, Miray; Vilcinskas, Andreas

Glucosinolate diversity in seven field-collected Brassicaceae species

七种野外采集的十字花科植物的硫代葡萄糖苷多样性

Pormetter, Lisa; Pfalz, Marina; Kagho, Mervic D; Klahn, Philipp; Vogel, Heiko; Kroymann, Juergen; Wittstock, Ute

Few chemoreceptor genes in the ambrosia beetle Trypodendron lineatum may reflect its specialized ecology

小蠹属昆虫(Trypodendron lineatum)中化学感受器基因数量较少,这可能反映了其特殊的生态习性。

Biswas, Twinkle; Vogel, Heiko; Biedermann, Peter H W; Lehenberger, Maximilian; Yuvaraj, Jothi Kumar; Andersson, Martin N

De Novo Genome Assembly and Annotation of Leptosia nina Provide New Insights into the Evolutionary Dynamics of Genes Involved in Host-Plant Adaptation of Pierinae Butterflies

对白粉蝶(Leptosia nina)进行从头基因组组装和注释,为粉蝶寄主植物适应相关基因的进化动态提供了新的见解。

Okamura, Yu; Vogel, Heiko