Genomic–proteomic analysis of a novel Bacillus thuringiensis strain: toxicity against two lepidopteran pests, abundance of Cry1Ac5 toxin, and presence of InhA1 virulence factor

Bacillus thuringiensis ( Bt ) is a biological alternative to the indiscriminate use of chemical insecticides in agriculture. Due to resistance development on insect pests to Bt crops, isolating novel Bt strains is a strategy for screening new pesticidal proteins or strains containing toxin profile v...

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Published in:Archives of microbiology Vol. 205; no. 4; p. 143
Main Authors: Alves, Giselly Batista, de Oliveira, Eugênio Eduardo, Jumbo, Luis Oswaldo Viteri, dos Santos, Gil Rodrigues, dos Santos, Manoel Mota, Ootani, Marcio Akio, Ribeiro, Bergmann Morais, Aguiar, Raimundo Wagner de Souza
Format: Journal Article
Language:English
Published: Berlin/Heidelberg Springer Berlin Heidelberg 01-04-2023
Springer Nature B.V
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Abstract Bacillus thuringiensis ( Bt ) is a biological alternative to the indiscriminate use of chemical insecticides in agriculture. Due to resistance development on insect pests to Bt crops, isolating novel Bt strains is a strategy for screening new pesticidal proteins or strains containing toxin profile variety that can delay resistance. Besides, the combined genomic and proteomic approaches allow identifying pesticidal proteins and virulence factors accurately. Here, the genome of a novel Bt strain ( Bt TOL651) was sequenced, and the proteins from the spore–crystal mixture were identified by proteomic analysis. Toxicity bioassays with the spore–crystal mixture against larvae of Diatraea saccharalis and Anticarsia gemmatalis , key pests of sugarcane and soybean, respectively, were performed. The toxicity of Bt TOL651 varies with the insect; A. gemmatalis (LC 50  = 1.45 ng cm −2 ) is more susceptible than D. saccharalis (LC 50  = 73.77 ng cm −2 ). Phylogenetic analysis of the gyrB gene indicates that TOL651 is related to Bt kenyae strains. The genomic analysis revealed the presence of cry1Aa18 , cry1Ac5 , cry1Ia44 , and cry2Aa9 pesticidal genes. Virulence factor genes such as phospholipases ( plcA , piplc ), metalloproteases ( inhA ), hemolysins ( cytK , hlyIII , hblA , hblC , hblD ), and enterotoxins ( nheA , nheB , nheC ) were also identified. The combined use of the genomic and proteomic data indicated the expression of Cry1Aa18, Cry1Ac5, and Cry2Aa9 proteins, with Cry1Ac5 being the most abundant. InhA1 also was expressed and may contribute to Bt TOL651 pathogenicity. These results provide Bt TOL651 as a new tool for the biocontrol of lepidopteran pests.
AbstractList Bacillus thuringiensis (Bt) is a biological alternative to the indiscriminate use of chemical insecticides in agriculture. Due to resistance development on insect pests to Bt crops, isolating novel Bt strains is a strategy for screening new pesticidal proteins or strains containing toxin profile variety that can delay resistance. Besides, the combined genomic and proteomic approaches allow identifying pesticidal proteins and virulence factors accurately. Here, the genome of a novel Bt strain (Bt TOL651) was sequenced, and the proteins from the spore-crystal mixture were identified by proteomic analysis. Toxicity bioassays with the spore-crystal mixture against larvae of Diatraea saccharalis and Anticarsia gemmatalis, key pests of sugarcane and soybean, respectively, were performed. The toxicity of Bt TOL651 varies with the insect; A. gemmatalis (LC  = 1.45 ng cm ) is more susceptible than D. saccharalis (LC  = 73.77 ng cm ). Phylogenetic analysis of the gyrB gene indicates that TOL651 is related to Bt kenyae strains. The genomic analysis revealed the presence of cry1Aa18, cry1Ac5, cry1Ia44, and cry2Aa9 pesticidal genes. Virulence factor genes such as phospholipases (plcA, piplc), metalloproteases (inhA), hemolysins (cytK, hlyIII, hblA, hblC, hblD), and enterotoxins (nheA, nheB, nheC) were also identified. The combined use of the genomic and proteomic data indicated the expression of Cry1Aa18, Cry1Ac5, and Cry2Aa9 proteins, with Cry1Ac5 being the most abundant. InhA1 also was expressed and may contribute to Bt TOL651 pathogenicity. These results provide Bt TOL651 as a new tool for the biocontrol of lepidopteran pests.
Bacillus thuringiensis (Bt) is a biological alternative to the indiscriminate use of chemical insecticides in agriculture. Due to resistance development on insect pests to Bt crops, isolating novel Bt strains is a strategy for screening new pesticidal proteins or strains containing toxin profile variety that can delay resistance. Besides, the combined genomic and proteomic approaches allow identifying pesticidal proteins and virulence factors accurately. Here, the genome of a novel Bt strain (Bt TOL651) was sequenced, and the proteins from the spore–crystal mixture were identified by proteomic analysis. Toxicity bioassays with the spore–crystal mixture against larvae of Diatraea saccharalis and Anticarsia gemmatalis, key pests of sugarcane and soybean, respectively, were performed. The toxicity of Bt TOL651 varies with the insect; A. gemmatalis (LC50 = 1.45 ng cm−2) is more susceptible than D. saccharalis (LC50 = 73.77 ng cm−2). Phylogenetic analysis of the gyrB gene indicates that TOL651 is related to Bt kenyae strains. The genomic analysis revealed the presence of cry1Aa18, cry1Ac5, cry1Ia44, and cry2Aa9 pesticidal genes. Virulence factor genes such as phospholipases (plcA, piplc), metalloproteases (inhA), hemolysins (cytK, hlyIII, hblA, hblC, hblD), and enterotoxins (nheA, nheB, nheC) were also identified. The combined use of the genomic and proteomic data indicated the expression of Cry1Aa18, Cry1Ac5, and Cry2Aa9 proteins, with Cry1Ac5 being the most abundant. InhA1 also was expressed and may contribute to Bt TOL651 pathogenicity. These results provide Bt TOL651 as a new tool for the biocontrol of lepidopteran pests.
Bacillus thuringiensis ( Bt ) is a biological alternative to the indiscriminate use of chemical insecticides in agriculture. Due to resistance development on insect pests to Bt crops, isolating novel Bt strains is a strategy for screening new pesticidal proteins or strains containing toxin profile variety that can delay resistance. Besides, the combined genomic and proteomic approaches allow identifying pesticidal proteins and virulence factors accurately. Here, the genome of a novel Bt strain ( Bt TOL651) was sequenced, and the proteins from the spore–crystal mixture were identified by proteomic analysis. Toxicity bioassays with the spore–crystal mixture against larvae of Diatraea saccharalis and Anticarsia gemmatalis , key pests of sugarcane and soybean, respectively, were performed. The toxicity of Bt TOL651 varies with the insect; A. gemmatalis (LC 50  = 1.45 ng cm −2 ) is more susceptible than D. saccharalis (LC 50  = 73.77 ng cm −2 ). Phylogenetic analysis of the gyrB gene indicates that TOL651 is related to Bt kenyae strains. The genomic analysis revealed the presence of cry1Aa18 , cry1Ac5 , cry1Ia44 , and cry2Aa9 pesticidal genes. Virulence factor genes such as phospholipases ( plcA , piplc ), metalloproteases ( inhA ), hemolysins ( cytK , hlyIII , hblA , hblC , hblD ), and enterotoxins ( nheA , nheB , nheC ) were also identified. The combined use of the genomic and proteomic data indicated the expression of Cry1Aa18, Cry1Ac5, and Cry2Aa9 proteins, with Cry1Ac5 being the most abundant. InhA1 also was expressed and may contribute to Bt TOL651 pathogenicity. These results provide Bt TOL651 as a new tool for the biocontrol of lepidopteran pests.
ArticleNumber 143
Author Aguiar, Raimundo Wagner de Souza
de Oliveira, Eugênio Eduardo
Alves, Giselly Batista
Ootani, Marcio Akio
Jumbo, Luis Oswaldo Viteri
dos Santos, Manoel Mota
dos Santos, Gil Rodrigues
Ribeiro, Bergmann Morais
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  surname: Alves
  fullname: Alves, Giselly Batista
  organization: Department of Biotechnology, Universidade Federal de Tocantins
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  givenname: Eugênio Eduardo
  surname: de Oliveira
  fullname: de Oliveira, Eugênio Eduardo
  organization: Department of Entomology, Universidade Federal de Viçosa
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  givenname: Luis Oswaldo Viteri
  surname: Jumbo
  fullname: Jumbo, Luis Oswaldo Viteri
  organization: Department of Biotechnology, Universidade Federal de Tocantins, Department of Agronomy, Universidad Nacional de Loja (UNL)
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  givenname: Gil Rodrigues
  surname: dos Santos
  fullname: dos Santos, Gil Rodrigues
  organization: Laboratory of Phytopathology, Universidade Federal do Tocantins
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  givenname: Manoel Mota
  surname: dos Santos
  fullname: dos Santos, Manoel Mota
  organization: Department of Agricultural Science and Technology, Universidade Federal do Tocantins
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  givenname: Marcio Akio
  surname: Ootani
  fullname: Ootani, Marcio Akio
  organization: Department of Biotechnology, Universidade Federal de Tocantins
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  givenname: Bergmann Morais
  surname: Ribeiro
  fullname: Ribeiro, Bergmann Morais
  organization: Department of Cell Biology, Universidade de Brasília
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  givenname: Raimundo Wagner de Souza
  surname: Aguiar
  fullname: Aguiar, Raimundo Wagner de Souza
  email: rwsa@mail.uft.edu.br
  organization: Department of Biotechnology, Universidade Federal de Tocantins
BackLink https://www.ncbi.nlm.nih.gov/pubmed/36967401$$D View this record in MEDLINE/PubMed
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CitedBy_id crossref_primary_10_1186_s13568_024_01669_5
crossref_primary_10_1016_j_biotechadv_2023_108278
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ID FETCH-LOGICAL-c375t-855e30b02df3938941d01b4672a7d714ce7bf6fbf89cfbdf36ea19964b2af9043
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ISSN 0302-8933
IngestDate Sat Oct 26 00:44:37 EDT 2024
Wed Nov 06 05:53:04 EST 2024
Fri Nov 22 00:49:05 EST 2024
Wed Oct 16 00:38:54 EDT 2024
Sat Dec 16 12:09:20 EST 2023
IsPeerReviewed true
IsScholarly true
Issue 4
Keywords Lepidopteran pest
Biopesticide
Genome sequence
Toxicity
Cry proteins
Proteomic
Bacillus thuringiensis
Language English
License 2023. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
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PublicationTitle Archives of microbiology
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Snippet Bacillus thuringiensis ( Bt ) is a biological alternative to the indiscriminate use of chemical insecticides in agriculture. Due to resistance development on...
Bacillus thuringiensis (Bt) is a biological alternative to the indiscriminate use of chemical insecticides in agriculture. Due to resistance development on...
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SubjectTerms Agrochemicals
Animals
Bacillus thuringiensis
Bacillus thuringiensis - chemistry
Bacillus thuringiensis - genetics
Bacterial Proteins - genetics
Bacterial Proteins - toxicity
Bioassays
Biochemistry
Biological control
Biomedical and Life Sciences
Biotechnology
Cell Biology
DNA topoisomerase
Ecology
Endotoxins - genetics
Endotoxins - toxicity
Enterotoxins
Genes
Genomic analysis
Genomics
Hemolysin Proteins - genetics
Hemolysin Proteins - toxicity
Hemolysins
Insecta
Insecticide resistance
Insecticides
Insects
Larva
Larvae
Life Sciences
Microbial Ecology
Microbiology
Mixtures
Moths
Original Paper
Pathogenicity
Pathogens
Pest control
Pest Control, Biological - methods
Pest resistance
Pesticides
Pests
Phylogeny
Proteins
Proteomics
Soybeans
Sugarcane
Toxicity
Toxins
Virulence
Virulence factors
Virulence Factors - genetics
Title Genomic–proteomic analysis of a novel Bacillus thuringiensis strain: toxicity against two lepidopteran pests, abundance of Cry1Ac5 toxin, and presence of InhA1 virulence factor
URI https://link.springer.com/article/10.1007/s00203-023-03479-y
https://www.ncbi.nlm.nih.gov/pubmed/36967401
https://www.proquest.com/docview/2791059357
https://search.proquest.com/docview/2791707507
Volume 205
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