CRISPR/Cas9 Ribo nucleoprotein complex‐mediated editing of the OBP13 gene affected the response of male Bactrocera dorsalis (Diptera: Tephritidae) to methyl eugenol

Author:

Sujatha Parvathy Madhusoodanan12ORCID,Karuppannasamy Ashok13ORCID,Chalapathi Pradeep12ORCID,Dhawane Yogi1,Narasimhappa Nagesha Somakalahalli2,Narayanappa Anu Cholenahalli12,Munikrishnappa Vinay Kumar Thirumalahatti4,Chikmagalur Nagaraja Bhargava12ORCID,Thalooru Shashikala12ORCID,Kesavan Subhaharan4ORCID,Maligeppagol Manamohan1ORCID,Ramasamy Asokan1ORCID

Affiliation:

1. ICAR ‐ Indian Institute of Horticultural Research Bengaluru Karnataka India

2. University of Agricultural Sciences Bengaluru Karnataka India

3. Tamil Nadu Agricultural University Coimbatore Tamil Nadu India

4. ICAR ‐National Bureau of Agricultural Insect Resources Bengaluru Karnataka India

Abstract

AbstractThe oriental fruit fly (Bactrocera dorsalis) is an exceptionally hazardous pest that can cause up to 100% loss. Male annihilation using male attractant methyl eugenol (ME) is the most adopted control measure of this insect. The molecular process underlying this perception of insects remains unexplored. In this study, we focus on gene functionality of odorant‐binding protein 13 (OBP13) in ME perception by knockout using CRISPR/Cas9 mediated embryonic editing through microinjection. The electrophysiological study of mutant flies through electroantennogram has shown highly depressed ME perception and further the genetic‐level mutational confirmation stating that OBP13 is a major OBP involved in ME perception. The molecular docking of OBP13 with ME revealed the predicted key interactions involved, thus providing more scope in targeting gene editing and in engineering ME substitutes.

Publisher

Wiley

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