• 제목/요약/키워드: drought-tolerant transgenic rice

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Screening methods for drought and salinity tolerance with transgenic rice seedlings

  • Song, Jae-Young;Song, Seon-Kyeong;Yu, Dal-A;Kim, Me-Sun;Kang, Kwon Kyoo;Cho, Yong-Gu
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.165-165
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    • 2017
  • Abiotic stress is one of the major serious limiting factors in rice (Oryza sativa) and caused rice production losses. It is important to precisely screen valuable genetic resources for improving stress tolerance and understanding tolerance mechanism to abiotic stresses. Because there are differences of experiment designs for screening of tolerant plant in several studies related to abiotic stress, this study has performed to provide the rapid and efficiency screening method for selection of tolerance rice to drought and salinity stresses. Two week-old rice seedlings that reached about three leaf stage were treated with drought and salinity stresses and examined tolerant levels with tolerant and susceptible control varieties, and transgenic plants. To determine the optimum concentration for the selection of drought and salinity condition, tolerant, susceptible and wild-type plants were grown under three soil moisture contents (5, 10 and 20% water contents) and three NaCl concentrations (100, 200 and 250 mM) for 10 days at seedling stage. 200 mM NaCl concentration and 5% moisture content soil were determined as the optimum conditions, respectively. The described methodologies in this study are simple and efficiency and might help the selection of drought and salinity tolerance plants at the 3,4-leaf-seedling stage.

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CaPUB1, a Hot Pepper U-box E3 Ubiquitin Ligase, Confers Enhanced Cold Stress Tolerance and Decreased Drought Stress Tolerance in Transgenic Rice (Oryza sativa L.)

  • Min, Hye Jo;Jung, Ye Jin;Kang, Bin Goo;Kim, Woo Taek
    • Molecules and Cells
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    • 제39권3호
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    • pp.250-257
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    • 2016
  • Abiotic stresses such as drought and low temperature critically restrict plant growth, reproduction, and productivity. Higher plants have developed various defense strategies against these unfavorable conditions. CaPUB1 (Capsicum annuum Putative U-box protein 1) is a hot pepper U-box E3 Ub ligase. Transgenic Arabidopsis plants that constitutively expressed CaPUB1 exhibited drought-sensitive phenotypes, suggesting that it functions as a negative regulator of the drought stress response. In this study, CaPUB1 was over-expressed in rice (Oryza sativa L.), and the phenotypic properties of transgenic rice plants were examined in terms of their drought and cold stress tolerance. Ubi:CaPUB1 T3 transgenic rice plants displayed phenotypes hypersensitive to dehydration, suggesting that its role in the negative regulation of drought stress response is conserved in dicot Arabidopsis and monocot rice plants. In contrast, Ubi:CaPUB1 progeny exhibited phenotypes markedly tolerant to prolonged low temperature ($4^{\circ}C$) treatment, compared to those of wild-type plants, as determined by survival rates, electrolyte leakage, and total chlorophyll content. Cold stress-induced marker genes, including DREB1A, DREB1B, DREB1C, and Cytochrome P450, were more up-regulated by cold treatment in Ubi:CaPUB1 plants than in wild-type plants. These results suggest that CaPUB1 serves as both a negative regulator of the drought stress response and a positive regulator of the cold stress response in transgenic rice plants. This raises the possibility that CaPUB1 participates in the cross-talk between drought and low-temperature signaling pathways.

Acute toxicity evaluation of drought-tolerant transgenic rice Agb0103 to Daphnia magna

  • Oh, Sung-Dug;Lee, Bum Kyu;Park, Soo-Yun;Yun, Doh-Won;Sohn, Soo-In;Chang, Ancheol;Suh, Sang Jae
    • 농업과학연구
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    • 제43권2호
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    • pp.205-214
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    • 2016
  • A drought-tolerant transgenic rice (Agb0103) was developed using a pepper methionine sulfoxide reductase (CaMsrB2) under the control of rice Rab21 promoter with a selection marker, the phosphinothricin acetyltransferase (PAT) gene. Commercialization of genetically modified (GM) crops will require the evaluation of risks associated with the release of GM crops. With the potential problems associated to GM crops safety testing, the investigation of their effects on non-target organisms is necessary for environmental risk research. This study was carried out to assess acute toxicity of a GM crop using the water flea (Daphnia magna) for non-target organism risk evaluation. The effect of acute toxicity on Daphnia magna of Agb0103 rice and a non-GM rice, Ilmibyeo, were investigated at different concentrations (0, 625, 1,250, 2,500, 5,000, and 10,000 mg/L). The Agb0103 rice used for the test was confirmed to express the CaMsrB2/PAT gene by the PCR and ELISA. Daphnia magna feeding tests showed no significant differences in cumulative immobility or abnormal response with either Agb0103 rice or non-GM rice. The 48hr-EC50 values showed no difference between Agb0103 rice (2243 mg/L) and non-GM rice (2694 mg/L). These results suggest that there is no significant difference in toxicity to Daphnia magna between Agb0103 rice and its non-GM counterpart.

형질전환 가뭄저항성 벼 현미의 주요 영양성분 분석 (Nutritional Composition of Drought-Tolerant Transgenic Rice)

  • 이영택;이향미;안병옥;조현석;서석철
    • 한국식품영양과학회지
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    • 제42권5호
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    • pp.730-735
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    • 2013
  • 본 연구는 국내에서 개발되어 내건성을 갖도록 형질전환된 가뭄저항성 벼(GM 벼)와 그 모종 벼인 일미벼(non-GM 벼)로부터 쌀(현미)의 일반성분, 지방산, 아미노산, 무기질, 비타민 함량을 분석하여 가뭄저항성 벼에서 주요 영양성분의 조성에 차이가 있는지를 비교, 조사하였다. 본 실험에 사용한 벼는 군위와 수원 두 지역에서 재배되었다. 가뭄저항성 쌀은 모종 쌀과 일반성분 함량이 유사하였으며 두 재배지역간 성분 차이가 없는 것으로 나타났다. GM 쌀의 지방산 조성은 non-GM 쌀과 전체적인 지방산 조성과 유사한 것으로 나타났다. GM 쌀의 아미노산 함량은 non-GM 쌀과 차이가 없었으나 non-GM 쌀 모종의 경우 두 재배지역간에 아미노산 함량에 다소간의 차이가 있어 같은 품종이라도 재배지역에 따라 차이를 줄 수 있는 것으로 나타났다. 가뭄저항성 쌀이 non-GM 쌀에 비해 무기질 함량이 약간 높은 수치로 측정되었지만 유의적인 차이는 없는 것으로 평가되었으며, 비타민 $B_1$과 비타민 E 함량에도 별 차이가 없는 것으로 나타났다.

Over-expression of BvMTSH, a fusion gene for maltooligosyltrehalose synthase and maltooligosyltrehalose trehalohydrolase, enhances drought tolerance in transgenic rice

  • Joo, Joungsu;Choi, Hae Jong;Lee, Youn Hab;Lee, Sarah;Lee, Choong Hwan;Kim, Chung Ho;Cheong, Jong-Joo;Choi, Yang Do;Song, Sang Ik
    • BMB Reports
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    • 제47권1호
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    • pp.27-32
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    • 2014
  • Plant abiotic stress tolerance has been modulated by engineering the trehalose synthesis pathway. However, many stress-tolerant plants that have been genetically engineered for the trehalose synthesis pathway also show abnormal development. The metabolic intermediate trehalose 6-phosphate has the potential to cause aberrations in growth. To avoid growth inhibition by trehalose 6-phosphate, we used a gene that encodes a bifunctional in-frame fusion (BvMTSH) of maltooligosyltrehalose synthase (BvMTS) and maltooligosyltrehalose trehalohydrolase (BvMTH) from the nonpathogenic bacterium Brevibacterium helvolum. BvMTS converts maltooligosaccharides into maltooligosyltrehalose and BvMTH releases trehalose. Transgenic rice plants that over-express BvMTSH under the control of the constitutive rice cytochrome c promoter (101MTSH) or the ABA-inducible Ai promoter (105MTSH) show enhanced drought tolerance without growth inhibition. Moreover, 101MTSH and 105MTSH showed an ABA-hyposensitive phenotype in the roots. Our results suggest that over-expression of BvMTSH enhances drought-stress tolerance without any abnormal growth and showes ABA hyposensitive phenotype in the roots.

Effects of CaMSRB2-Expressing Transgenic Rice Cultivation on Soil Microbial Communities

  • Sohn, Soo-In;Oh, Young-Ju;Kim, Byung-Yong;Cho, Hyun-Suk
    • Journal of Microbiology and Biotechnology
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    • 제26권7호
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    • pp.1303-1310
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    • 2016
  • Although many studies on the effects of genetically modified (GM) crops on soil microorganisms have been carried out over the past decades, they have provided contradictory information, even for the same GM crop, owing to the diversity of the soil environments in which they were conducted. This inconsistency in results suggests that the effects of GM crops on soil microorganisms should be considered from many aspects. In this study, we investigated the effects of the GM drought-tolerant rice MSRB2-Bar-8, which expresses the CaMSRB2 gene, on soil microorganisms based on the culture-dependent and culture-independent methods. To this end, rhizosphere soils of GM and non-GM (IM) rice were analyzed for soil chemistry, population densities of soil microorganisms, and microbial community structure (using pyrosequencing technology) at three growth stages (seedling, tillering, and maturity). There was no significant difference in the soil chemistry between GM and non-GM rice. The microbial densities of the GM soils were found to be within the range of those of the non-GM rice. In the pyrosequencing analyses, Proteobacteria and Chloroflexi were dominant at the seedling stage, while Chloroflexi showed dominance over Proteobacteria at the maturity stage in both the GM and non-GM soils. An UPGMA dendrogram showed that the soil microbial communities were clustered by growth stage. Taken together, the results from this study suggest that the effects of MSRB2-Bar-8 cultivation on soil microorganisms are not significant.

AtCYP78A7 과발현 환경스트레스 내성 형질전환 벼의 단백질 진단 키트 개발 (Development of a Kit for Diagnosing AtCYP78A7 Protein in Abiotic-tolerant Transgenic Rice Overexpressing AtCYP78A7)

  • 남경희;박정호;백인순;김호방;김창기
    • 생명과학회지
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    • 제28권7호
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    • pp.835-840
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    • 2018
  • 본 연구는 시토크롬 P450 단백질을 암호화하는 애기장대 유래의 AtCYP78A7을 과발현하는 형질전환 식물체로부터 AtCYP78A7 단백질을 특이적으로 인식하는 단일큰론 항체의 제조와 그 항체를 AtCYP78A7 단백질과 접촉시켜 항원-항체 복합체 형성을 검출함으로써 AtCYP78A7 단백질을 효소면역학적(ELISA) 방법으로 검출하는 진단 키트를 개발하기 위하여 수행하였다. 재조합한 GST-AtCYP78A7 단백질을 항원으로 사용하여 단일클론 항체를 분비하는 융합세포주를 제조한 후 비오틴화 및 페어링 테스트를 통해 포획항체와 검출항체를 선정하였으며, GST-AtCYP78A7 정제 단백질을 기준으로 일품벼, 화영벼, AtCYP78A7 과발현 벼(10B-5, 18A-4)의 용해물을 검출항원으로 사용하여 product test를 진행하였다. 그 결과 AtCYP78A7 단백질에 특이적으로 결합하는 4개의 단클론 항체(mAb 6A7, mAb 4C2, mAb 11H6, mAb 7E8)를 생산하였고, 포획항체 mAb 4C2와 검출항체 mAb 7E8-biotin의 조합으로 ELISA 키트를 개발하였다. 개발된 ELISA 키트를 이용한 벼 시료의 분석 결과 AtCYP78A7 과발현 벼는 전체 단백질 대비 AtCYP78A7 단백질의 비율이 0.1% 이상인 양성으로, 일품벼와 화영벼는 0.1% 미만인 음성으로 나타나 키트를 이용한 AtCYP78A7 단백질의 검출이 가능하였으며, 따라서 본 키트는 향후 AtCYP78A7를 과발현하는 형질전환 작물을 대상으로 하는 환경 모니터링 또는 인체 위해성 평가에 유용하게 활용될 수 있을 것으로 사료된다.