Insecticidal activity of recombinant baculovirus co-expressing Bacillus thuringiensis crystal protein and Kunitz-type toxin isolated from the venom of bumblebee Bombus ignitus

To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus (AcMNPV), using co-expression of Bacillus thuringiensis crystal protein and a Kunitz-type toxin isolated from bumblebee Bombus ignitus venom, a recombinant AcMNPV, ApPolh5-3006BiKTI, expressing Bi-KTI under the contr...

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Published inJournal of Asia-Pacific entomology Vol. 16; no. 1; pp. 75 - 80
Main Authors Choi, Jae Young, Jung, Myung-Pyo, Park, Hong-Hyun, Tao, Xue Ying, Jin, Byung Rae, Je, Yeon Ho
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.03.2013
한국응용곤충학회
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Abstract To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus (AcMNPV), using co-expression of Bacillus thuringiensis crystal protein and a Kunitz-type toxin isolated from bumblebee Bombus ignitus venom, a recombinant AcMNPV, ApPolh5-3006BiKTI, expressing Bi-KTI under the control of early promoter from Cotesia plutellae bracovirus (CpBV) was constructed. In this recombinant virus, B. thuringiensis cry1-5 crystal protein gene was introduced into the genome by the fusion of polyhedrin-cry1-5 under the control of polyhedrin gene promoter. RT-PCR analysis indicated that both Bi-KTI and polyhedrin-cry1-5 fusion protein were successfully expressed from the infected cells. In addition, SDS-PAGE revealed that polyhedrin-cry1-5 fusion protein expressed by recombinant viruses was occluded into the polyhedra. ApPolh5-3006BiKTI showed an improved insecticidal activity against larvae of Plutella xylostella and Spodoptera exigua. At low dosage rates, it was more effective against S. exigua than on P. xylostella, but more rapid insecticidal activity was shown in P. xylostella. These results strongly suggest that co-expression of Bt toxin and Kunitz-type toxins could be successfully applied to improve the insecticidal activity of baculoviruses. [Display omitted] ► A recombinant AcMNPV, ApPolh5-3006BiKTI, was constructed. ► ApPolh5-3006BiKTI expressed Bi-KTI identified in the venom of Bombus ignitus. ► ApPolh5-3006BiKTI produced polyhedra that incorporate Bt toxin, cry1-5. ► ApPolh5-3006BiKTI showed an improved insecticidal activity.
AbstractList To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus (AcMNPV), using co-expression of Bacillus thuringiensis crystal protein and a Kunitz-type toxin isolated from bumblebee Bombus ignitus venom, a recombinant AcMNPV, ApPolh5-3006BiKTI, expressing Bi-KTI under the control of early promoter from Cotesia plutellae bracovirus (CpBV) was constructed. In this recombinant virus, B. thuringiensis cry1-5 crystal protein gene was introduced into the genome by the fusion of polyhedrin-cry1-5 under the control of polyhedrin gene promoter. RT-PCR analysis indicated that both Bi-KTI and polyhedrin-cry1-5 fusion protein were successfully expressed from the infected cells. In addition, SDS-PAGE revealed that polyhedrin-cry1-5 fusion protein expressed by recombinant viruses was occluded into the polyhedra. ApPolh5-3006BiKTI showed an improved insecticidal activity against larvae of Plutella xylostella and Spodoptera exigua. At low dosage rates, it was more effective against S. exigua than on P. xylostella, but more rapid insecticidal activity was shown in P. xylostella. These results strongly suggest that co-expression of Bt toxin and Kunitz-type toxins could be successfully applied to improve the insecticidal activity of baculoviruses.
To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus, using co-expression of Bacillus thuringiensis crystal protein and a Kunitz-type toxin isolated from bumblebee Bombus ignitus venom, a recombinant AcMNPV, ApPolh5-3006BiKTI, Ezpressing Bi-KTI under the control of early promoter from Cotesia plutellae bracovirus was constructed.
To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus (AcMNPV), using co-expression of Bacillus thuringiensis crystal protein and a Kunitz-type toxin isolated from bumblebee Bombus ignitus venom, a recombinant AcMNPV, ApPolh5-3006BiKTI, expressing Bi-KTI under the control of early promoter from Cotesia plutellae bracovirus (CpBV) was constructed. In this recombinant virus, B. thuringiensis cry1-5 crystal protein gene was introduced into the genome by the fusion of polyhedrin-cry1-5 under the control of polyhedrin gene promoter. RT-PCR analysis indicated that both Bi-KTI and polyhedrin-cry1-5 fusion protein were successfully expressed from the infected cells. In addition, SDS-PAGE revealed that polyhedrin-cry1-5 fusion protein expressed by recombinant viruses was occluded into the polyhedra. ApPolh5-3006BiKTI showed an improved insecticidal activity against larvae of Plutella xylostella and Spodoptera exigua. At low dosage rates, it was more effective against S. exigua than on P. xylostella, but more rapid insecticidal activity was shown in P. xylostella. These results strongly suggest that co-expression of Bt toxin and Kunitz-type toxins could be successfully applied to improve the insecticidal activity of baculoviruses. [Display omitted] ► A recombinant AcMNPV, ApPolh5-3006BiKTI, was constructed. ► ApPolh5-3006BiKTI expressed Bi-KTI identified in the venom of Bombus ignitus. ► ApPolh5-3006BiKTI produced polyhedra that incorporate Bt toxin, cry1-5. ► ApPolh5-3006BiKTI showed an improved insecticidal activity.
To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus (AcMNPV), using co-expression of Bacillus thuringiensis crystal protein and a Kunitz-type toxin isolated from bumblebee Bombus ignitus venom, a recombinant AcMNPV, ApPolh5-3006BiKTI, expressing Bi-KTI under the control of early promoter from Cotesia plutellae bracovirus (CpBV) was constructed. In this recombinant virus, B. thuringiensis cry1-5 crystal protein gene was introduced into the genome by the fusion of polyhedrin-cry1-5 under the control of polyhedrin gene promoter. RT-PCR analysis indicated that both Bi-KTI and polyhedrin-cry1-5 fusion protein were successfully expressed from the infected cells. In addition, SDS-PAGE revealed that polyhedrin-cry1-5 fusion protein expressed by recombinant viruses was occluded into the polyhedra. ApPolh5-3006BiKTI showed an improved insecticidal activity against larvae of Plutella xylostella and Spodoptera exigua. At lowdosage rates, it wasmore effective against S. exigua than on P. xylostella, but more rapid insecticidal activity was shown in P. xylostella. These results strongly suggest that co-expression of Bt toxin and Kunitz-type toxins could be successfully applied to improve the insecticidal activity of baculoviruses. KCI Citation Count: 3
Author Jin, Byung Rae
Jung, Myung-Pyo
Tao, Xue Ying
Je, Yeon Ho
Choi, Jae Young
Park, Hong-Hyun
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crossref_primary_10_1038_s41598_017_08987_8
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crossref_primary_10_1007_s00253_018_9130_2
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Keywords Insecticidal activity
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Kunitz-type toxin
Cry1-5
Bacillus thuringiensis
Bi-KTI
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Snippet To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus (AcMNPV), using co-expression of Bacillus thuringiensis crystal protein and...
To improve the insecticidal activity of Autographa californica nucleopolyhedrovirus, using co-expression of Bacillus thuringiensis crystal protein and a...
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SubjectTerms Autographa californica
BACILLUS THURINGIENSIS
BACULOVIRIDAE
Baculovirus
Bi-KTI
Bombus ignitus
Bracovirus
Cotesia plutellae
Cry1-5
Insecticidal activity
Kunitz-type toxin
kunitz-type toxin,insecticidal activity
Nuclear polyhedrosis virus
Plutella xylostella
Spodoptera exigua
농수해양학
Title Insecticidal activity of recombinant baculovirus co-expressing Bacillus thuringiensis crystal protein and Kunitz-type toxin isolated from the venom of bumblebee Bombus ignitus
URI https://dx.doi.org/10.1016/j.aspen.2012.11.002
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