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

Parasitoid wasp venom re-programs host behavior through downmodulation of brain central complex activity and motor output

寄生蜂毒液通过下调大脑中央复合体活动和运动输出来重新编程宿主的行为。

Rana, Amit; Adams, Michael E; Libersat, Frederic

Suppression of host nocifensive behavior by parasitoid wasp venom

寄生蜂毒液对宿主伤害性防御行为的抑制

Rana, Amit; Emanuel, Stav; Adams, Michael E; Libersat, Frederic

Parasitoid wasp venom manipulates host innate behavior via subtype-specific dopamine receptor activation

寄生蜂毒液通过激活亚型特异性多巴胺受体来操纵宿主的先天行为。

Nordio, Stefania; Kaiser, Maayan; Adams, Michael E; Libersat, Frederic

Regulation of Drosophila Long-Term Courtship Memory by Ecdysis Triggering Hormone

蜕皮触发激素对果蝇长期求偶记忆的调控

Lee, Sang Soo; Adams, Michael E

Parasitoid Jewel Wasp Mounts Multipronged Neurochemical Attack to Hijack a Host Brain

寄生蜂宝石蜂通过多重神经化学攻击劫持宿主大脑

Arvidson, Ryan; Kaiser, Maayan; Lee, Sang Soo; Urenda, Jean-Paul; Dail, Christopher; Mohammed, Haroun; Nolan, Cebrina; Pan, Songqin; Stajich, Jason E; Libersat, Frederic; Adams, Michael E

Endocrine regulation of airway clearance in Drosophila

果蝇气道清除的内分泌调节

Kim, Do-Hyoung; Kim, Young-Joon; Adams, Michael E

Stress-induced reproductive arrest in Drosophila occurs through ETH deficiency-mediated suppression of oogenesis and ovulation

果蝇应激诱导的生殖停滞是通过ETH缺乏介导的卵子发生和排卵抑制而发生的。

Meiselman, Matthew R; Kingan, Timothy G; Adams, Michael E

Rescheduling Behavioral Subunits of a Fixed Action Pattern by Genetic Manipulation of Peptidergic Signaling

通过基因操作肽能信号通路重新安排固定行为模式的行为亚单元

Kim, Do-Hyoung; Han, Mi-Ran; Lee, Gyunghee; Lee, Sang Soo; Kim, Young-Joon; Adams, Michael E

Functional phylogenetics reveals contributions of pleiotropic peptide action to ligand-receptor coevolution

功能系统发育学揭示了多效性肽作用对配体-受体协同进化的贡献

Jiang, Hongbo; Wei, Zhaojun; Nachman, Ronald J; Adams, Michael E; Park, Yoonseong

Secretory competence in a gateway endocrine cell conferred by the nuclear receptor βFTZ-F1 enables stage-specific ecdysone responses throughout development in Drosophila

核受体βFTZ-F1赋予门户内分泌细胞的分泌能力,使得果蝇在整个发育过程中能够产生阶段特异性的蜕皮激素反应。

Cho, Kook-Ho; Daubnerová, Ivana; Park, Yoonseong; Zitnan, Dusan; Adams, Michael E