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RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages

The yellow stem borer (YSB), Scirpophaga incertulas, is a prominent pest in rice cultivation causing serious yield losses. The larval stage is an important stage in YSB, responsible for maximum infestation. However, limited knowledge exists on the biology and mechanisms underlying the growth and dif...

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Autores principales: Renuka, Pichili, Madhav, Maganti S., Padmakumari, Ayyagari Phani, Barbadikar, Kalyani M., Mangrauthia, Satendra K., Vijaya Sudhakara Rao, Kola, Marla, Soma S., Ravindra Babu, Vemuri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5592929/
https://www.ncbi.nlm.nih.gov/pubmed/28717048
http://dx.doi.org/10.1534/g3.117.043737
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author Renuka, Pichili
Madhav, Maganti S.
Padmakumari, Ayyagari Phani
Barbadikar, Kalyani M.
Mangrauthia, Satendra K.
Vijaya Sudhakara Rao, Kola
Marla, Soma S.
Ravindra Babu, Vemuri
author_facet Renuka, Pichili
Madhav, Maganti S.
Padmakumari, Ayyagari Phani
Barbadikar, Kalyani M.
Mangrauthia, Satendra K.
Vijaya Sudhakara Rao, Kola
Marla, Soma S.
Ravindra Babu, Vemuri
author_sort Renuka, Pichili
collection PubMed
description The yellow stem borer (YSB), Scirpophaga incertulas, is a prominent pest in rice cultivation causing serious yield losses. The larval stage is an important stage in YSB, responsible for maximum infestation. However, limited knowledge exists on the biology and mechanisms underlying the growth and differentiation of YSB. To understand and identify the genes involved in YSB development and infestation, so as to design pest control strategies, we performed de novo transcriptome analysis at the first, third, fifth, and seventh larval developmental stages employing Illumina Hi-seq. High-quality reads (HQR) of ∼229 Mb were assembled into 24,775 transcripts with an average size of 1485 bp. Genes associated with various metabolic processes, i.e., detoxification mechanism [CYP450, GSTs, and carboxylesterases (CarEs)], RNA interference (RNAi) machinery (Dcr-1, Dcr-2, Ago-1, Ago-2, Sid-1, Sid-2, Sid-3, and Sid-1-related gene), chemoreception (CSPs, GRs, OBPs, and ORs), and regulators [transcription factors (TFs) and hormones] were differentially regulated during the developmental stages. Identification of stage-specific transcripts made it possible to determine the essential processes of larval development. Comparative transcriptome analysis revealed that YSB has not evolved much with respect to the detoxification mechanism, but showed the presence of distinct RNAi machinery. The presence of strong specific visual recognition coupled with chemosensory mechanisms supports the monophagous nature of YSB. Designed expressed sequenced tags-simple-sequence repeats (EST-SSRs) will facilitate accurate estimation of the genetic diversity of YSB. This is the first report on characterization of the YSB transcriptome and the identification of genes involved in key processes, which will help researchers and industry to devise novel pest control strategies. This study also opens up a new avenue to develop next-generation resistant rice using RNAi or genome editing approaches.
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spelling pubmed-55929292017-09-14 RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages Renuka, Pichili Madhav, Maganti S. Padmakumari, Ayyagari Phani Barbadikar, Kalyani M. Mangrauthia, Satendra K. Vijaya Sudhakara Rao, Kola Marla, Soma S. Ravindra Babu, Vemuri G3 (Bethesda) Investigations The yellow stem borer (YSB), Scirpophaga incertulas, is a prominent pest in rice cultivation causing serious yield losses. The larval stage is an important stage in YSB, responsible for maximum infestation. However, limited knowledge exists on the biology and mechanisms underlying the growth and differentiation of YSB. To understand and identify the genes involved in YSB development and infestation, so as to design pest control strategies, we performed de novo transcriptome analysis at the first, third, fifth, and seventh larval developmental stages employing Illumina Hi-seq. High-quality reads (HQR) of ∼229 Mb were assembled into 24,775 transcripts with an average size of 1485 bp. Genes associated with various metabolic processes, i.e., detoxification mechanism [CYP450, GSTs, and carboxylesterases (CarEs)], RNA interference (RNAi) machinery (Dcr-1, Dcr-2, Ago-1, Ago-2, Sid-1, Sid-2, Sid-3, and Sid-1-related gene), chemoreception (CSPs, GRs, OBPs, and ORs), and regulators [transcription factors (TFs) and hormones] were differentially regulated during the developmental stages. Identification of stage-specific transcripts made it possible to determine the essential processes of larval development. Comparative transcriptome analysis revealed that YSB has not evolved much with respect to the detoxification mechanism, but showed the presence of distinct RNAi machinery. The presence of strong specific visual recognition coupled with chemosensory mechanisms supports the monophagous nature of YSB. Designed expressed sequenced tags-simple-sequence repeats (EST-SSRs) will facilitate accurate estimation of the genetic diversity of YSB. This is the first report on characterization of the YSB transcriptome and the identification of genes involved in key processes, which will help researchers and industry to devise novel pest control strategies. This study also opens up a new avenue to develop next-generation resistant rice using RNAi or genome editing approaches. Genetics Society of America 2017-07-17 /pmc/articles/PMC5592929/ /pubmed/28717048 http://dx.doi.org/10.1534/g3.117.043737 Text en Copyright © 2017 Renuka et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Renuka, Pichili
Madhav, Maganti S.
Padmakumari, Ayyagari Phani
Barbadikar, Kalyani M.
Mangrauthia, Satendra K.
Vijaya Sudhakara Rao, Kola
Marla, Soma S.
Ravindra Babu, Vemuri
RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages
title RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages
title_full RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages
title_fullStr RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages
title_full_unstemmed RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages
title_short RNA-seq of Rice Yellow Stem Borer Scirpophaga incertulas Reveals Molecular Insights During Four Larval Developmental Stages
title_sort rna-seq of rice yellow stem borer scirpophaga incertulas reveals molecular insights during four larval developmental stages
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5592929/
https://www.ncbi.nlm.nih.gov/pubmed/28717048
http://dx.doi.org/10.1534/g3.117.043737
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