• 제목/요약/키워드: wild rice

검색결과 301건 처리시간 0.034초

GBSSI 유전자 3'UTR 영역의 발현 억제 dsRNAi 벡터를 이용한 아밀로스함량 조절 벼 개발 (Variation of Amylose Content Using dsRNAi Vector by Targeting 3'-UTR Region of GBSSI Gene in Rice)

  • 박향미;최만수;천아름;이정희;김명기;김연규;신동범;이장용;김율호
    • 한국육종학회지
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    • 제42권5호
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    • pp.515-524
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    • 2010
  • 본 연구에서는 RNAi 기작을 이용하여 식미에 중요한 영향을 미치는 아밀로스 함량을 다양화하기 위해 GBSSI 유전자의 3'-UTR 부위를 targeting하여 dsRNA를 생성시킬 수 있는 운반체를 제작하고, 벼에 형질전환 하였다. 작성된 형질전환체들을 대상으로 $I_2$-KI 용액 반응과 아밀로스 함량을 분석한 결과, $I_2$-KI 용액에 대한 반응은 waxy 타입으로 나타났으나 아밀로스 함량은 찰벼와 저아밀로스 벼 사이에 해당되는 범위를 보였다. 원품종과 형질전환체 간의 아밀로펙틴 사슬 분포의 차이를 비교한 결과, 단쇄에 해당되는 A1과 B1 사슬의 분포는 감소한 반면, 중쇄에 해당되는 B2와 장쇄인 B3 사슬의 분포는 다소 증가하였으며, B3 사슬의 분포비율은 사용된 품종에 따라 약간의 차이를 보였다. 배유 단면의 전자현미경적 구조를 비교한 결과, 원품종에 비해 형질전환체의 전분립 크기가 작아지고 쪼개짐의 형태가 완만한 굴곡을 보였다. 이러한 결과를 바탕으로, RNAi 기술을 이용하여 다양한 아밀로스 함량이 조절된 형질전환 벼를 개발하기 위해서는 targeting 부위를 결정하는 것이 하나의 중요한 전략이 될 수 있음을 확인하였다.

Agrobacterium tumefaciens를 이용한 bialaphos 저항성 형질전환 벼의 개발 (Development of Bialaphos-Resistant Transgenic Rice Using Agrobacterium tumefaciens)

  • 이효연;이춘환;김호일;한원동;최지은;김진호;임용표
    • 식물조직배양학회지
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    • 제25권4호
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    • pp.283-288
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    • 1998
  • 비선택성 제초제인 bialaphos는 고등식물에 있어서 glutamine 합성을 억제 하여 식물체를 고사시킨다. Acetyltransferase에 의해 encoding된 bialaphos저항성 유전자는 세균 Streptomyces hygroscopicus SF1239로부터 cloning된것을 사용하였다. Bialaphose 저항성 유전자를 Agrobacterium 감염법을 이용하여 국내에서 재배되는 벼(동진)에 도입한 결과 약30%정도의 형질전환 식물체를 얻을 수 있었다. $\textrm{T}_{1}$ 세대의 17개체는 hygromycin과 bialaphos에 대한 저항성 유전형질이 3:1로 분리되었다. 또한 Southern 분석을 실시한 결과 wild type의 식물체에서는 Bar 유전자의 검출을 볼 수 없었으나 형질전환 식물체의 경우 Bar 유전자의 검출이 가능하였다. $\textrm{T}_{3}$세대의 형질전찬 식물체와 wild type의 식물체를 포장상태에서 비선택성 제초제인 바스타를 살포하고 3주 후에 관찰한 결과 형질전환 식물체는 외형적으로 아무런 피해를 받지 않고 정상적으로 생장하였으나, wild type의 식물체와 잡초는 모두 고사하였다. 이상의 결과를 종합해보면 hygromycin과 bialaphos 저항성 유전자는 Agrobacterium감염법을 이용하여 단자엽 식물인 벼에 도입할 수 있다는 것을 보여준 것이며, 또한 bialaphos 저항성 유전자가 식물에 도입됨으로써 비선택성 제초제에 대한 저항성 식물을 개발 할 수 있다는 것을 보여 주었다.

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Overexpression of OsNAC17 enhances drought tolerance in rice

  • Kim, Tae Hwan;Kim, Ju-Kon
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.168-168
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    • 2017
  • Drought conditions during cultivation reduce agricultural production yield less than a theoretical maximum yield under normal condition. Plant specific NAC transcription factors in rice are known to play an essential roles in stress resistance transcriptional regulation. In this study, we report the rice (Oryza sativa L japonica) NAM, AFTF and CUC transcription factor OsNAC17, which is predominantly induced by abiotic stress in leaf, was contribute to the drought tolerance mediated reactive oxygen species (ROS) in transgenic rice plants. Constitutive (PGD1) promoter was introduced to overexpress OsNAC17 and produced the transgenic PDG1:OsNAC17. Overexpression of OsNAC17 throughout the whole plant improved drought resistance phenotype at the vegetative stage. Morphological characteristics such as grain yield, grain filling rate, and total grain weight improved by 22~64% over wild type plants under drought conditions during the reproductive stage. The improved drought tolerance in transgenic rice was involved in reducing stomatal density up to 15% than in wild type plants and in increasing reactive oxygen species-scavenging enzyme. DEG profiling experiment identified 119 up-regulated genes by more than twofold (P<0.01). These genes included UDP-glycosyltransferase family protein, similar to 2-alkenal reductase (NADPH-dependent oxireductase), similar to retinol dehydrogenase 12, Lipoxygenase, and NB-ARC domain containing protein related in cell death. Furthermore, OsNAC17 was act as a transcriptional activator, which has an activation domain in C-terminal region. These result demonstrate that the overexpression of OsNAC17 improve drought tolerance by regulating ROS scavenging enzymes and by reducing stomatal density

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Rice 7-Hydroxymethyl Chlorophyll a Reductase Is Involved in the Promotion of Chlorophyll Degradation and Modulates Cell Death Signaling

  • Piao, Weilan;Han, Su-Hyun;Sakuraba, Yasuhito;Paek, Nam-Chon
    • Molecules and Cells
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    • 제40권10호
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    • pp.773-786
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    • 2017
  • The loss of green coloration via chlorophyll (Chl) degradation typically occurs during leaf senescence. To date, many Chl catabolic enzymes have been identified and shown to interact with light harvesting complex II to form a Chl degradation complex in senescing chloroplasts; this complex might metabolically channel phototoxic Chl catabolic intermediates to prevent oxidative damage to cells. The Chl catabolic enzyme 7-hydroxymethyl Chl a reductase (HCAR) converts 7-hydroxymethyl Chl a (7-HMC a) to Chl a. The rice (Oryza sativa) genome contains a single HCAR homolog (OsHCAR), but its exact role remains unknown. Here, we show that an oshcar knockout mutant exhibits persistent green leaves during both dark-induced and natural senescence, and accumulates 7-HMC a and pheophorbide a (Pheo a) in green leaf blades. Interestingly, both rice and Arabidopsis hcar mutants exhibit severe cell death at the vegetative stage; this cell death largely occurs in a light intensity-dependent manner. In addition, 7-HMC a treatment led to the generation of singlet oxygen ($^1O_2$) in Arabidopsis and rice protoplasts in the light. Under herbicide-induced oxidative stress conditions, leaf necrosis was more severe in hcar plants than in wild type, and HCAR-overexpressing plants were more tolerant to reactive oxygen species than wild type. Therefore, in addition to functioning in the conversion of 7-HMC a to Chl a in senescent leaves, HCAR may play a critical role in protecting plants from high light-induced damage by preventing the accumulation of 7-HMC a and Pheo a in developing and mature leaves at the vegetative stage.

Overexpression of a Pathogenesis-Related Protein 10 Enhances Biotic and Abiotic Stress Tolerance in Rice

  • Wu, Jingni;Kim, Sang Gon;Kang, Kyu Young;Kim, Ju-Gon;Park, Sang-Ryeol;Gupta, Ravi;Kim, Yong Hwan;Wang, Yiming;Kim, Sun Tae
    • The Plant Pathology Journal
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    • 제32권6호
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    • pp.552-562
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    • 2016
  • Pathogenesis-related proteins play multiple roles in plant development and biotic and abiotic stress tolerance. Here, we characterize a rice defense related gene named "jasmonic acid inducible pathogenesis-related class 10" (JIOsPR10) to gain an insight into its functional properties. Semi-quantitative RT-PCR analysis showed up-regulation of JIOsPR10 under salt and drought stress conditions. Constitutive over-expression JIOsPR10 in rice promoted shoot and root development in transgenic plants, however, their productivity was unaltered. Further experiments exhibited that the transgenic plants showed reduced susceptibility to rice blast fungus, and enhanced salt and drought stress tolerance as compared to the wild type. A comparative proteomic profiling of wild type and transgenic plants showed that overexpression of JIOsPR10 led to the differential modulation of several proteins mainly related with oxidative stresses, carbohydrate metabolism, and plant defense. Taken together, our findings suggest that JIOsPR10 plays important roles in biotic and abiotic stresses tolerance probably by activation of stress related proteins.

야생 효모 종류에 따른 알코올 발효 특성 (Characterization of Ethanol Fermentation with Wild Type Yeast Strains)

  • 백성열;이유정;김명동;이재형;문지영;여수환
    • 한국미생물·생명공학회지
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    • 제43권3호
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    • pp.227-235
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    • 2015
  • 발효식품에서 분리한 야생 효모 12 균주의 주류 제조 가능성을 조사하기 위해, 알코올 발효에 관여하는 특성을 분석하였다. 알코올 및 당 내성을 조사한 후, 당화액을 제조하여 pH, 고형분 함량, 적정산도, 아미노산도, 알코올, 유기산 및 향기성분 등을 분석하였다. S. cerevisiae 효모의 알코올 내성은 10%에서 보였으나 non-Saccharomyces 효모는 P. kudriavzevii N77-4를 제외하고 내성이 낮았다. 당 내성은 H. opuntiae HP1-2, C. tropicalis Y447을 제외한 효모에서 모두 우수하였다. 야생 효모를 이용한 알코올 발효액의 pH는 3.01−3.61, 고형분 함량은 8.73−13.10°Brix로 S. cerevisiae보다 non-Saccharomyces가 높았다. 적정산도는 0.25−0.33%로, 아미노산도는 1.61−2.61 g/100 ml으로 non-Saccharomyces 효모가 높은 값을 나타내었다. 알코올 함량은 2.25−8.5%로 S. cerevisiae에 비해 non-Saccharomyces 효모가 매우 낮았다. 야생 효모로 알코올 발효시 유기산은 사과산, 초산, 호박산 등이 증가하였고, 그 중 P. kudriavzevii N77-4는 낮은 초산 함량과 높은 사과산 및 호박산 함량을 나타내었다. 당화액을 전자코로 분석한 결과, DF1의 오른쪽 범주에 속했으며, 효모 발효액은 DF1의 왼쪽 범주에 속하여 발효에 따른 뚜렷한 차이를 보였다. 휘발성 향기성분은 non-Saccharomyces 효모에서 ethyl acetate가, S. cerevisiae 효모는 ethanol 화합물이 높은 향기성분을 나타내었다.

MAP kinase kinase kinase as a positive defense regulator in rice-blast fungus interactions

  • Kim, Jung-A;Jung, Young-Ho;Lee, Joo-Hee;Jwa, Nam-Soo
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2004년도 The 2004 KSPP Annual Meeting & International Symposium
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    • pp.48-52
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    • 2004
  • We have found the role of rice mitogen-activated protein kinase kinase kinase (MAPKKK), OsEDR1, as controling hypersensitive response (HR) and increased disease resistance to rice blast fungus Magnaporthe grisea. Generation of transgenic rice plants through introduction of the over-expression construct of OsEDR1 using Agrobacterium-mediated transformation results in lesion mimic phenotype. Up-regulation of defense mechanism was detected through detection of increased transcription level of rice PBZ1 and PR1a. Inoculation of rice blast fungus on the lesion mimic transgenic lines displayed significantly increased resistance. The disease symptoms were arrested like HR responses which are commonly detected in the incompatible interactions. High accumulation of phenolic compounds around developing lesions was detected under UV light. There was variation among transgenic lines on the timing of lesion progression as well as the lesion numbers on the rice leaves. Transgenic lines with few lesions also show increased resistance as well as equal amount of grain yields compared to that of wild type rice cultivar Nipponbare. This is the first report of the MAPKKK as a positive regulator molecule on defense mechanism through inducing HR-like cell death lesion mimic phenotype. The application of OsEDR1 is highly expected for the development of resistant cultivars against rice pathogens.

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전통누룩 제조에 대한 문헌고찰 (The Biblographical Study on the Processing Methods of Traditional Nuruk)

  • 이미경;이성우;배상만
    • 동아시아식생활학회지
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    • 제1권3호
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    • pp.277-298
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    • 1991
  • Review of Korean and Chinese traditional nuruk was performed on the longitudinal change of ingredients and method of each nuruk. Manufacturing process of common nuruk was that flour, wheat chaff, grinded green pea and smartweed were doughed, footpressed to make 凹 type, covered it with mugwort, lotus leaf and cocklebur leaf and suspended it with string for 60 days to get wild mold. This is named Beungkuk. Manufacturing process of Sankuk was that cooked rice or uncooked rice grain was scattered, mixed often for 30 days. Ryokuk and Hongkuk are called Sankuk.

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Characteristics of Endosperm Starch of the Rice Mutant Lines Induced by Sodium Azide

  • Shin, Young-Seop;Park, Chlul-Soo;Seo, Yong-Weon;Jeung, Ji-Ung
    • 한국육종학회지
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    • 제41권2호
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    • pp.84-91
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    • 2009
  • Rice consumption per capta, in South Korea, has been decreased dramatically, owing to the changes of living patterns. Because of not only the major energy source of Korean people but also major income source of Korean farmers, diversifying end-use-quality of rice has been demanded. To the context, 'Suweon 472', a high yielding and early mature japonica line and released as 'Namilbyeo' to framers in 2002, was treated with a chemical mutagen, Sodium Azide to find endosperm mutant types. A total of nine endosperm mutat lines, including five waxy, one dull, two floury, and one white core type, were identified from the 3,542 mutatagen treated lines. Amylose contents, iodine reaction, disintegration in alkali solution, gelatinization in urea solution and amylogram properties of those nine endosperm mutant lines were evaluated to address the possibility as new genetic materials for diversifying rice quality of Korean japonica cultivars. All embryo mutants were clearly differentiated from their wild type, 'Suweon 472', in terms of physic-chemical properties evaluated. The endosperm mutant lines would be very useful in expanding untiliztation of rice through opening new rice markets of processed foods from Korean japonica rice.