With the boom of artificial intelligence in recent years, the general public has come to know terminology such as large language models, of which tools like ChatGPT are the most famous representative, and machine learning (e.g. self-driving cars and autocorrect when typing on your smartphone). RNA-based pesticides (dsRNA/siRNA-based) promise to deliver species-specific pest control with minimal off-target impacts. In simpler terms, these new biopesticides are designed to target only harmful pest organisms and leave other beneficial insects unaffected.
How RNA pesticides work
This technology is called RNA interference. It works by delivering these RNAs to insect cells, where they bind to messenger RNAs (mRNAs), blocking their translation into proteins and damaging the organism’s system, possibly leading to its death. The problem arises when the short interfering RNA (siRNA), the 21-base-pairs long RNA used in these kinds of pesticides, encounters tens of thousands of different mRNAs inside the cell, each averaging 2000 base pairs. The RNA can exert its function even when binding is not perfect, creating thousands of possible target mRNAs within a single organism. To have biopesticides that work effectively and specifically against pest insects, we need to ensure these products target the right organisms, but assessing all possible interactions between each candidate siRNA and every insect every time in the wet lab would be costly and time-consuming.
