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

Regulating the expression of gene drives is key to increasing their invasive potential and the mitigation of resistance

调控基因驱动的表达是提高其入侵能力和减轻抗药性的关键。

Hammond, Andrew; Karlsson, Xenia; Morianou, Ioanna; Kyrou, Kyros; Beaghton, Andrea; Gribble, Matthew; Kranjc, Nace; Galizi, Roberto; Burt, Austin; Crisanti, Andrea; Nolan, Tony

A male-biased sex-distorter gene drive for the human malaria vector Anopheles gambiae

针对人类疟疾媒介冈比亚按蚊的雄性偏见性别扭曲基因驱动

Alekos Simoni #, Andrew M Hammond #, Andrea K Beaghton, Roberto Galizi, Chrysanthi Taxiarchi, Kyros Kyrou, Dario Meacci, Matthew Gribble, Giulia Morselli, Austin Burt, Tony Nolan, Andrea Crisanti

Integral gene drives for population replacement

整合基因驱动以实现人口更替

Nash, Alexander; Urdaneta, Giulia Mignini; Beaghton, Andrea K; Hoermann, Astrid; Papathanos, Philippos Aris; Christophides, George K; Windbichler, Nikolai

A CRISPR-Cas9 gene drive targeting doublesex causes complete population suppression in caged Anopheles gambiae mosquitoes

利用 CRISPR-Cas9 基因驱动技术靶向双性基因,可导致笼养冈比亚按蚊种群数量完全抑制。

Kyrou, Kyros; Hammond, Andrew M; Galizi, Roberto; Kranjc, Nace; Burt, Austin; Beaghton, Andrea K; Nolan, Tony; Crisanti, Andrea

Requirements for Driving Antipathogen Effector Genes into Populations of Disease Vectors by Homing

通过归巢将抗病原体效应基因导入疾病载体群体的要求

Beaghton, Andrea; Hammond, Andrew; Nolan, Tony; Crisanti, Andrea; Godfray, H Charles J; Burt, Austin

Vector control with driving Y chromosomes: modelling the evolution of resistance

利用驱动Y染色体进行媒介控制:模拟抗性的演化

Beaghton, Andrea; Beaghton, Pantelis John; Burt, Austin