Enhanced drought and oxidative stress tolerance in transgenic sweetpotato expressing a codA gene = CodA 고발현 형질전환 고구마의 산화 및 건조 스트레스 내성 증가

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dc.contributor.authorSumg-Chul Park-
dc.contributor.authorM D Kim-
dc.contributor.authorSun Ha Kim-
dc.contributor.authorY H Kim-
dc.contributor.authorJae Cheol Jeong-
dc.contributor.authorHaeng Soon Lee-
dc.contributor.authorSang Soo Kwak-
dc.date.accessioned2017-04-19T10:05:04Z-
dc.date.available2017-04-19T10:05:04Z-
dc.date.issued2015-
dc.identifier.issn1229-2818-
dc.identifier.uri10.5010/JPB.2015.42.1.19ko
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/12608-
dc.description.abstractGlycine betaine (GB) is one of the compatible solutes that accumulate in the chloroplasts of certain halotolerant plants under salt or cold stress. The codA gene for choline oxidase, the enzyme that converts choline into GB, has been cloned from a soil bacterium Arthrobacter globiformis. We generated transgenic sweetpotato plants [Ipomoea batatas (L.) Lam] expressing codA gene in chloroplasts under the control of the SWPA2 promoter (referred to as SC plants) and evaluated SC plants under oxidative and drought stresses. SC plants showed enhanced tolerance to methyl viologen (MV)-mediated oxidative stress and drought stress due to induced expression of codA. At 5 μM of MV treatment, all SC plants showed enhanced tolerance to MV-mediated oxidative stress through maintaining low ion leakage and increased GB levels compared to wild type plants. When plants were subjected to drought conditions, SC plants showed enhanced tolerance to drought stress through maintaining high relative water contents and increased codA expression compared to wild type plants. These results suggest that the SC plants generated in this study will be useful for enhanced biomass production on global marginal lands.-
dc.publisherKorea Soc-Assoc-Inst-
dc.titleEnhanced drought and oxidative stress tolerance in transgenic sweetpotato expressing a codA gene = CodA 고발현 형질전환 고구마의 산화 및 건조 스트레스 내성 증가-
dc.title.alternativeEnhanced drought and oxidative stress tolerance in transgenic sweetpotato expressing a codA gene-
dc.typeArticle-
dc.citation.titleJournal of Plant Biotechnology-
dc.citation.number1-
dc.citation.endPage24-
dc.citation.startPage19-
dc.citation.volume42-
dc.contributor.affiliatedAuthorSumg-Chul Park-
dc.contributor.affiliatedAuthorSun Ha Kim-
dc.contributor.affiliatedAuthorJae Cheol Jeong-
dc.contributor.affiliatedAuthorHaeng Soon Lee-
dc.contributor.affiliatedAuthorSang Soo Kwak-
dc.contributor.alternativeName박성철-
dc.contributor.alternativeName김명덕-
dc.contributor.alternativeName김선하-
dc.contributor.alternativeName김윤희-
dc.contributor.alternativeName정재철-
dc.contributor.alternativeName이행순-
dc.contributor.alternativeName곽상수-
dc.identifier.bibliographicCitationJournal of Plant Biotechnology, vol. 42, no. 1, pp. 19-24-
dc.identifier.doi10.5010/JPB.2015.42.1.19-
dc.subject.keywordCodA gene-
dc.subject.keywordDrought stress-
dc.subject.keywordGlycine betaine-
dc.subject.keywordOxidative stress-
dc.subject.keywordSweetpotato-
dc.subject.localCodA gene-
dc.subject.localdrought stress-
dc.subject.localDrought stress-
dc.subject.localGlycine betaine-
dc.subject.localOxidative stre-
dc.subject.localOxidative stress-
dc.subject.localOXIDATIVE STRESS-
dc.subject.localOxidative Stress-
dc.subject.localoxidative stress-
dc.subject.localsweet potato-
dc.subject.localsweet potatoes-
dc.subject.localSweet potato (Ipomoea batatas L. Lam)-
dc.subject.localSweet potato (Ipomoea batatas)-
dc.subject.localSweet otato-
dc.subject.localsweet potato (Ipomoea batatas)-
dc.subject.localipomoea batatas-
dc.subject.localSweetpotato (Ipomoea batatas)-
dc.subject.localsweetpotato-
dc.subject.localSweetpotato Ipomoea batatas-
dc.subject.localSweetpotato (Ipomoea batatas L.)-
dc.subject.localSweetpotato-
dc.subject.localSweetpotato (Ipomoea batatas (L.) Lam)-
dc.subject.localSweet potato-
dc.subject.localIpomoea batatas-
dc.subject.localSweet potato (Ipomoea batatas (L.) Lam.)-
dc.description.journalClassN-
Appears in Collections:
Jeonbuk Branch Institute > Biological Resource Center > 1. Journal Articles
Division of Research on National Challenges > Plant Systems Engineering Research > 1. Journal Articles
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