Bio-detoxification of ricin in castor bean (Ricinus communis L.) seeds
Биодетоксикация рицина в семенах клещевины (Ricinus communis L.)
2017-11-07
SCID: 54.1/8h5r4j2h
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RNA interferencecastor bean cakegenetically modified castor beanricin detoxificationricin gene silencing
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Abstract (AI)
Ricin is a highly toxic ribosome-inactivating lectin occurring in the seeds of castor bean (Ricinus communis L.). Castor bean grows throughout tropical and sub-tropical regions and is a very important crop due to its high seed content of ricinoleic acid, an unusual fatty acid, which has several industrial applications. However, due to the presence of the toxin, castor bean can cause death after the exposure of animals to low doses of ricin through skin contact, injection, inhalation or oral routes. Aiming to generate a detoxified genotype, we explored the RNAi concept in order to silence the ricin coding genes in the endosperm of castor bean seeds. Results indicated that ricin genes were effectively silenced in genetically modified (GM) plants, and ricin proteins were not detected by ELISA. Hemagglutination activity was not observed with proteins isolated from GM seeds. In addition, we demonstrated that seed proteins from GM plants were not toxic to rat intestine epithelial cells or to Swiss Webster mice. After oil extraction, bio-detoxified castor bean cake, which is very rich in valuable proteins, can be used for animal feeding. Gene silencing would make castor bean cultivation safer for farmers, industrial workers and society.
Key Findings
1
Bio-detoxified castor bean cake remaining after oil extraction could potentially be used as protein-rich animal feed.
2
RNA interference effectively silenced ricin-coding genes in the endosperm of genetically modified castor bean plants.
3
Ricin gene silencing may improve safety for castor bean farmers, industrial workers, and society.
4
Ricin proteins were undetectable by ELISA, and proteins from genetically modified seeds showed no hemagglutination activity.
5
Seed proteins from genetically modified plants were non-toxic to rat intestinal epithelial cells and Swiss Webster mice.
Research Object
Ricin-producing castor bean (Ricinus communis L.) seeds and genetically modified castor bean plants
Research Subject
RNAi-mediated silencing of ricin genes and the resulting detoxification, including loss of ricin protein, hemagglutination activity, and toxicity
Publication Details
Publication Date
2017-11-07
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