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

The Weak Worker Hypothesis: a new framework for understanding division of labour in social insects

弱工蜂假说:理解社会性昆虫劳动分工的新框架

Herman, Jacob J; Walton, Alexander; Rueppell, Olav

Susceptibility to the Neonicotinoid Pesticide Imidacloprid Is Linked to Life History Regulation in Honey Bees (Apis mellifera L.)

蜜蜂(Apis mellifera L.)对新烟碱类杀虫剂吡虫啉的敏感性与生活史调控有关

Toor, Gursimran; Lu, Robert X; Rueppell, Olav

Tissue-specific mitochondrial pathway remodeling linked to longevity in honeybee queens

组织特异性线粒体通路重塑与蜜蜂蜂后的长寿有关

Chevret, Clément Joël Lucien; Echegaray, José Francisco; Walton, Alexander; Lo, Maryam; Rueppell, Olav; Lemieux, Hélène

Transgenerational epigenetic effect of kings' aging on offspring's caste fate mediated by sperm DNA methylation in termites

白蚁精子DNA甲基化介导国王衰老对后代阶级命运的跨代表观遗传效应

Takata, Mamoru; Takahashi, Michihiko; Ishibashi, Tomoki; Tasaki, Eisuke; Rueppell, Olav; Vargo, Edward L; Matsuura, Kenji

Arising amitraz and pyrethroids resistance mutations in the ectoparasitic Varroa destructor mite in Canada

加拿大外寄生螨瓦螨(Varroa destructor)出现对阿米曲唑和拟除虫菊酯类药物的抗性突变

Bahreini, Rassol; González-Cabrera, Joel; Hernández-Rodríguez, Carmen Sara; Moreno-Martí, Sara; Muirhead, Samantha; Labuschagne, Renata B; Rueppell, Olav

Field trials of the novel varroacide, 1-allyloxy-4-propoxybenzene, against Varroa destructor in Western Canada

在加拿大西部开展新型杀螨剂1-烯丙氧基-4-丙氧基苯防治瓦螨的田间试验

Lu, Robert X; Ibrahim, Abdullah; Rueppell, Olav; Plettner, Erika; Pernal, Stephen F

Diverse Sublethal Effects of a Common Fungicide Impact the Behavior and Physiology of Honey Bees.

一种常见杀菌剂的多种亚致死效应会影响蜜蜂的行为和生理

Zhang Xufeng, Cao Qian, Wang Feng, Du Yinyin, Zhao Wen, Guo Yuan, Rueppell Olav

Testing learning as alternative to the blank slate hypothesis in the honey bee, Apis mellifera

以蜜蜂(Apis mellifera)为例,检验学习能力是否可作为“白板说”的替代方案。

Rueppell, Olav; De Jong, Kayla; Herman, Jacob J; Randall, Cleo

Alternative double strand break repair pathways shape the evolution of high recombination in the honey bee, Apis mellifera

蜜蜂(Apis mellifera)中不同的双链断裂修复途径塑造了其高重组率的进化。

Fouks, Bertrand; Miller, Katelyn J; Ross, Caitlin; Jones, Corbin; Rueppell, Olav

Life-history stage determines the diet of ectoparasitic mites on their honey bee hosts

生活史阶段决定了蜜蜂体外寄生螨的食性。

Han, Bin; Wu, Jiangli; Wei, Qiaohong; Liu, Fengying; Cui, Lihong; Rueppell, Olav; Xu, Shufa