Aug 2026· Insect Science· 0 citations· 73 references
Medicine
TL;DR
This work cloned the promoter of the housekeeping gene eukaryotic translation elongation factor 1α (EF1Α, AAEL017096) and confirmed its transcriptional activity, and truncated the U6 promoter, expanding the genetic toolkit for Ae.
Abstract
CRISPR/Cas9 has become a key tool for functional genomics and genetic control strategies in mosquitoes, with its efficiency highly dependent on precise spatiotemporal regulation of Cas9 expression. While germline-specific promoters help reduce resistance and improve drive efficiency, constitutive promoters confer higher editing efficiency due to their ubiquitous and sustained expression, making them more suitable for gene functional analysis and population-specific suppression. However, the scarcity of strong constitutive promoters in Aedes aegypti (Ae. aegypti) has limited the development of highly efficient editing systems. In this study, we cloned the promoter of the housekeeping gene eukaryotic translation elongation factor 1α (EF1Α, AAEL017096) and confirmed its transcriptional activity. RT-qPCR analysis revealed that the EF1Α promoter (EF1Αp) directed significantly higher Cas9 expression in mosquito ovaries and testes than did the germline-specific Exu promoter (Exup). Crossing EF1Ap-Cas9 transgenic lines with various gRNA-expressing lines achieved efficient editing of the marker gene white, the functional gene PNP, and the microRNA precursor miR-1174, with all double-positive progeny displaying expected loss-of-function phenotypes. To overcome vector capacity limitations, we truncated the U6 promoter. A truncated U6 promoter of only 235 bp (U6p235) supported editing efficiency comparable to the full-length 964 bp version. When U6p235-white gRNA lines were crossed with EF1Ap-Cas9 lines, all double-positive offspring exhibited a white-eye phenotype, confirming successful white gene disruption. Together, this work provides an efficient constitutive promoter and a compact U6p, expanding the genetic toolkit for Ae. aegypti and supporting advanced functional studies and multi-target control strategies.
The first isolation and characterization of the buffalo EF1α1 promoter is reported, demonstrating its strong gene expression activity both in vitro across diverse cultured cell types and in vivo across multiple mouse organs, establishing the bbEF1α1 promoter as a powerful ubiquitous driver of gene expression.
Three endogenous promoters with high expression levels in the hypocotyls and callus are identified, to replace the 35S promoter of Cas9, and enhanced sgRNA (esgRNA) enhanced CRISPR/Cas9 editing efficiency by 52.1% compared to native sgRNA.
This chapter outlines a comprehensive methodology for the design, assembly, and functional assessment of CRISPR/dCas9 systems optimized for tomato to investigate pathogen-associated responses.
Ananya Mukherjee, Shrabani Basak, Raghuvir Singh et al.· Methods in molecular biology· 0 citations
A novel highly efficient CRISPR/Cas9-based dual-sgRNA expression editing system for F. oxysporum suitable not only for single-gene editing but also for large-fragment deletion and multiplex gene editing, although the editing efficiency is somewhat lower.
Wangjie Zhu, Jiao Liao, Yuanyuan Liu et al.· ACS Synthetic Biology· 0 citations
It is indicated that higher drive conversion is associated with elevated expression of the promoter-associated gene in reproductive cells, but embryo resistance allele formation correlates with excessive female germline expression, and optimal drive performance requires restricting Cas9 expression to a tight quantitative and spatiotemporal window.
Ying Wu, Yunchen Xia, Ziyin Yao et al.· Nature Communications· 0 citations