Transgenic rice established to express corn cystatin exhibits strong inhibitory activity against insect gut proteinases

Corn cystatin (CC), a phytocystatin, shows a wide inhibitory spectrum against various cysteine proteinases. We produced transgenic rice plants by introducing CC cDNA under CaMV 35S promoter as a first step to obtain a rice plant with insecticidal activity. This attempt was based on the observation t...

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Published in:Plant molecular biology Vol. 30; no. 1; pp. 149 - 157
Main Authors: Irie, K, Hosoyama, H, Takeuchi, T, Iwabuchi, K, Watanabe, H, Abe, M, Abe, K, Arai, S
Format: Journal Article
Language:English
Published: Netherlands 1996
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Abstract Corn cystatin (CC), a phytocystatin, shows a wide inhibitory spectrum against various cysteine proteinases. We produced transgenic rice plants by introducing CC cDNA under CaMV 35S promoter as a first step to obtain a rice plant with insecticidal activity. This attempt was based on the observation that many insect pests, especially Coleoptera, have cysteine proteinases, probably digestive enzymes, and also that oryzacystatin, an intrinsic rice cystatin, shows a narrow inhibition spectrum and is present in ordinary rice seeds in insufficient amounts to inhibit the cysteine proteinases of rice insect pests. The transgenic rice plants generated contained high levels of CC mRNA and CC protein in both seeds and leaves, the CC protein content of the seed reaching ca. 2% of the total heat soluble protein. We also recovered CC activity from seeds and found that the CC fraction efficiently inhibited both papain and cathepsin H, whereas the corresponding fraction from non-transformed rice seeds showed much lower or undetectable inhibitory activities against these cysteine proteinases. Furthermore, CC prepared from transgenic rice plants showed potent inhibitory activity against proteinases that occur in the gut of the insect pest, Sitophilus zeamais.
AbstractList Corn cystatin (CC), a phytocystatin, shows a wide inhibitory spectrum against various cysteine proteinases. We produced transgenic rice plants by introducing CC cDNA under CaMV 35S promoter as a first step to obtain a rice plant with insecticidal activity. This attempt was based on the observation that many insect pests, especially Coleoptera, have cysteine proteinases, probably digestive enzymes, and also that oryzacystatin, an intrinsic rice cystatin, shows a narrow inhibition spectrum and is present in ordinary rice seeds in insufficient amounts to inhibit the cysteine proteinases of rice insect pests. The transgenic rice plants generated contained high levels of CC mRNA and CC protein in both seeds and leaves, the CC protein content of the seed reaching ca. 2% of the total heat soluble protein. We also recovered CC activity from seeds and found that the CC fraction efficiently inhibited both papain and cathepsin H, whereas the corresponding fraction from non-transformed rice seeds showed much lower or undetectable inhibitory activities against these cysteine proteinases. Furthermore, CC prepared from transgenic rice plants showed potent inhibitory activity against proteinases that occur in the gut of the insect pest, Sitophilus zeamais.
Author Arai, S
Irie, K
Iwabuchi, K
Takeuchi, T
Hosoyama, H
Abe, M
Abe, K
Watanabe, H
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/8616231$$D View this record in MEDLINE/PubMed
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Snippet Corn cystatin (CC), a phytocystatin, shows a wide inhibitory spectrum against various cysteine proteinases. We produced transgenic rice plants by introducing...
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SubjectTerms Animals
Base Sequence
cathepsins
Coleoptera
Coleoptera - enzymology
complementary DNA
Cystatins - biosynthesis
Cystatins - genetics
Cysteine Proteinase Inhibitors - biosynthesis
Cysteine Proteinase Inhibitors - genetics
Digestive System - enzymology
Dose-Response Relationship, Drug
enzyme activity
gene expression
gene transfer
Genes, Plant
immunohistochemistry
inhibition
leaves
messenger RNA
midgut
midgut proteinases
Molecular Sequence Data
Oryza - genetics
Oryza sativa
papain
plant proteins
Plants, Genetically Modified
proteinase inhibitors
RNA, Messenger - biosynthesis
RNA, Plant - biosynthesis
Sitophilus
Sitophilus zeamais
Tissue Distribution
transgenic plants
Zea mays
Zea mays - enzymology
Zea mays - genetics
Title Transgenic rice established to express corn cystatin exhibits strong inhibitory activity against insect gut proteinases
URI https://www.ncbi.nlm.nih.gov/pubmed/8616231
https://search.proquest.com/docview/17075162
https://search.proquest.com/docview/77996924
Volume 30
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