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Biology subjects

Kant, M. R.

Publications and source records attributed to Kant, M. R..

3 recordsLinked to original sources

Genome sequence and efficient CRISPR/Cas9 gene editing in the solanacea specialist pest Tetranychus evansi

Tetranychus evansi is an invasive spider mite pest of solanaceous crops worldwide. Its global expansion and ability to rapidly develop acaricide resistance highlight the need for robust genomic resources and functional genetic tools to design custom control strategies. Here, we deliver a high-quality genome assembly and establish efficient CRISPR/Cas9 editing in T. evansi to enable mechanistic studies of host adaptation and pesticide resistance. Using an inbred line and Oxford Nanopore Technologies (ONT) long-read sequencing ([~]36x), we assembled an 89 Mb genome into 13 contigs (N50 = 18.6 Mb) with high completeness and annotated 14,246 protein-coding genes. We manually curated the principal detoxification gene families (P450s, CCEs, GSTs, UGTs, ABC transporters and DOGs), revealing consistently smaller repertoires than in the highly polyphagous relative Tetranychus urticae. To enable reverse genetics, we adapted SYNCAS (saponin + branched amphiphilic peptide capsules) for maternal delivery of CRISPR/Cas9 in T. evansi. Targeting the phytoene desaturase (PD) pigmentation marker produced reliable knockouts with visible albinism and mean editing efficiencies of [~]9.6-14.7%, allowing establishment of stable mutant lines. We further applied precision gene editing to knock-in (KI) the M918T and M918L substitutions into the voltage-gated sodium channel (VGSC). While M918L was lethal in T. evansi, we generated multiple homozygous lines for M918T (mean KI [~]4.4%). Bioassays demonstrated that while the mutation caused extremely high levels of bifenthrin resistance (RR>1000), this was less so for cyfluthrin (RR=164), revealing the independent and specific role of M918T in pyrethroid resistance. Collectively, these resources establish T. evansi as a tractable system for reverse genetic analysis and provide a reference for future comparative and population genomics.

genetics↗

Genetic and phenotypic variation between Tetranychus ludeni populations from Benelux

The occurrence of the bean spider mite, Tetranychus ludeni, in The Netherlands and Belgium is reported here for the first time. Mite populations were collected from the field and established in the laboratory. Morphological and genetic analyses were performed to determine the species identity of multiple field-collected individuals. Comparing the sequence of the mitochondrial cytochrome oxidase subunit-1 (CO1) of the field populations with sequences available in NCBI revealed the extent of genetic differentiation between T. ludeni populations from around the world. The reproductive performance of mated females was assessed on various host plant species relevant to agriculture, including several leguminous species and tomato. These findings highlight the potential of T. ludeni to become an agricultural pest in Europe, particularly in the context of increasing global temperatures and agricultural practices.

evolutionary biology↗

Whitefly effector G4 interacts with tomato proteins of which MIPDB141 affects whitefly performance

The phloem-feeding insect Bemisia tabaci is an important pest, responsible for the transmission of several crop-threatening virus species. While feeding, the insect secretes a cocktail of effectors to modulate defense responses. Here, we present a set of proteins that was identified in artificial diet on which B. tabaci was salivating. We studied whether these candidate effectors can play a role in plant immune suppression. Effector G4 was the most robust suppressor of the flg22-induced ROS response when transiently expressed in Nicotiana benthamiana. In addition, G4 was able to supress ROS in Solanum lycopersicum (tomato) and Capsicum annuum (pepper). Fused to a fluorescence tag, G4 localized in the cytoplasm in N. benthamiana. A yeast two-hybrid screen combined with a luciferase bimolecular complementation and co-localization assays resulted in the identification of two target proteins in tomato: REF-like stress related protein 1 (RSP1) and meloidogyne-induced giant cell protein DB141 (MIPDB141). Silencing of MIPDB141 in tomato, using virus-induced gene silencing, reduced whitefly fecundity up to 40% demonstrating that the protein is involved in susceptibility to B. tabaci. Together our data demonstrate that effector G4 impairs tomato immunity to whiteflies by interfering with the ROS production and via a direct interaction with tomato susceptibility protein MIPDB141.

plant biology↗