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

Predicting thresholds for population replacement gene drives

预测种群更替基因驱动的阈值

Janzen, Anna; Pothula, Ratnasri; Sychla, Adam; Feltman, Nathan R; Smanski, Michael J

Corrigendum: Modeling-informed Engineered Genetic Incompatibility strategies to overcome resistance in the invasive Drosophila suzukii

更正:基于模型的基因工程不相容策略克服入侵性铃木果蝇的抗性

Sychla, Adam; Feltman, Nathan R; Hutchison, William D; Smanski, Michael J

Genetically engineered insects with sex-selection and genetic incompatibility enable population suppression

利用基因工程技术培育的昆虫,通过性别选择和基因不相容性,可以抑制种群数量。

Upadhyay, Ambuj; Feltman, Nathan R; Sychla, Adam; Janzen, Anna; Das, Siba R; Maselko, Maciej; Smanski, Michael

Modeling-informed Engineered Genetic Incompatibility strategies to overcome resistance in the invasive Drosophila suzukii

利用模型指导的工程化基因不相容策略克服入侵性铃木果蝇的抗性

Sychla, Adam; Feltman, Nathan R; Hutchison, William D; Smanski, Michael J

HUGE pipeline to measure temporal genetic variation in Drosophila suzukii populations for genetic biocontrol applications

用于测量铃木果蝇种群中时间遗传变异的大型流程,以应用于基因生物防治领域

Feltman, Nathan R; Burkness, Eric C; Ebbenga, Dominique N; Hutchison, William D; Smanski, Michael J

Engineering multiple species-like genetic incompatibilities in insects.

在昆虫中构建类似多个物种的遗传不相容性

Maselko Maciej, Feltman Nathan, Upadhyay Ambuj, Hayward Amanda, Das Siba, Myslicki Nathan, Peterson Aidan J, O'Connor Michael B, Smanski Michael J