RNAi-mediated resistance to whitefly (Bemisia tabaci) in genetically engineered lettuce (Lactuca sativa).
Abdulrazak B IbrahimTatiane R MonteiroGlaucia B CabralFrancisco José Lima AragãoPublished in: Transgenic research (2017)
RNA interference (RNAi)-based transgenic technologies have evolved as potent biochemical tools for silencing specific genes of plant pathogens and pests. The approach has been demonstrated to be useful in silencing genes in insect species. Here, we report on the successful construction of RNAi-based plasmid containing an interfering cassette designed to generate dsRNAs that target a novel v-ATPase transcript in whitefly (Bemisia tabaci), an important agricultural pest in tropical and sub-tropical regions. The presence of the transgene was confirmed in T0 and T1 generations of transgenic lettuce lines, segregating in a Mendelian fashion. Seven lines were infested with whiteflies and monitored over a period of 32 days. Analysis of mortality showed that within five days of feeding, insects on transgenic plants showed a mortality rate of 83.8-98.1%. In addition, a reduced number of eggs (95 fold less) was observed in flies feeding on transgenic lettuce plants than insects on control lines. Quantitative reverse transcription PCR showed decreased expression level of endogenous v-ATPase gene in whiteflies feeding on transgenic plants. This technology is a foundation for the production of whitefly-resistant commercial crops, improving agricultural sustainability and food security, reducing the use of more environmentally aggressive methods of pest control.
Keyphrases
- climate change
- genome wide
- risk assessment
- genome wide identification
- cardiovascular events
- human health
- heavy metals
- escherichia coli
- poor prognosis
- risk factors
- transcription factor
- gene expression
- crispr cas
- type diabetes
- coronary artery disease
- bioinformatics analysis
- genome wide analysis
- copy number
- rna seq
- long non coding rna
- multidrug resistant
- binding protein
- single cell
- global health
- real time pcr