• 제목/요약/키워드: Drought treatment

검색결과 214건 처리시간 0.027초

건조스트레스에 의한 오이와 토마토 공정육묘의 광화학적 지표 해석 (The Assessment of Photochemical Index of Nursery Seedlings of Cucumber and Tomato under Drought Stress)

  • 함현돈;김태성;이미현;박기배;안재호;강동현;김태완
    • 환경생물
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    • 제36권4호
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    • pp.479-487
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    • 2018
  • 본 연구는 엽록소형광반응 분석을 이용하여 건조스트레스에 의한 공정육묘의 광화학적 활력을 분석하였다. 토마토와 오이 공정육묘를 8일 동안 건조스트레스 처리를 하였다. 엽록소형광반응(OJIP)과 매개변수 분석을 통해 건조스트레스로 인한 작물의 광화학적 변동을 평가하였다. 엽록소 형광반응(OJIP) 분석 결과, 토마토는 처리 후 5일부터 최대 형광량(P)이 감소한 반면 J-I 단계에서는 엽록소 형광량이 증가하였다. 따라서 생리적 활력이 감소한 것을 알 수 있었다. 오이의 경우 처리 후 4일부터 최대 형광(P) 및 변동 형광량($F_V$)이 낮아지고 J-I 단계의 엽록소 형광 수치가 증가하였다. 엽록소 형광 매개변수 분석한 결과 토마토는 처리 후 5일부터 특히 $ET2_O/RC$$RE1_O/RC$가 감소하면서 광계II와 광계I의 전자전달효율이 유의적으로 낮아진 것으로 보인 반면 오이는 처리 후 4일부터 $ET2_O/RC$$PI_{ABS}$가 상당히 변화하였다. 결론적으로 $F_V/F_M$, $DI_O/RC$, $ET2_O/RC$, $RE1_O/RC$, $PI_{ABS}$, $PI_{TOTAL}ABS$ 6개의 지표가 공정육묘의 건조스트레스를 판단하는 지표로 선정되었다. 건조스트레스지수(DFI)를 통해 건조스트레스로 인한 작물별 건전성 평가를 하였고 오이의 경우 토마토에 비해 건조 저항성이 낮은 것으로 판단되었다.

Confirmation of Drought Tolerance of Ectopically Expressed AtABF3 Gene in Soybean

  • Kim, Hye Jeong;Cho, Hyun Suk;Pak, Jung Hun;Kwon, Tackmin;Lee, Jai-Heon;Kim, Doh-Hoon;Lee, Dong Hee;Kim, Chang-Gi;Chung, Young-Soo
    • Molecules and Cells
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    • 제41권5호
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    • pp.413-422
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    • 2018
  • Soybean transgenic plants with ectopically expressed AtABF3 were produced by Agrobacterium-mediated transformation and investigated the effects of AtABF3 expression on drought and salt tolerance. Stable Agrobacterium-mediated soybean transformation was carried based on the half-seed method (Paz et al. 2006). The integration of the transgene was confirmed from the genomic DNA of transformed soybean plants using PCR and the copy number of transgene was determined by Southern blotting using leaf samples from $T_2$ seedlings. In addition to genomic integration, the expression of the transgenes was analyzed by RT-PCR and most of the transgenic lines expressed the transgenes introduced. The chosen two transgenic lines (line #2 and #9) for further experiment showed the substantial drought stress tolerance by surviving even at the end of the 20-day of drought treatment. And the positive relationship between the levels of AtABF3 gene expression and drought-tolerance was confirmed by qRT-PCR and drought tolerance test. The stronger drought tolerance of transgenic lines seemed to be resulted from physiological changes. Transgenic lines #2 and #9 showed ion leakage at a significantly lower level (P < 0.01) than ${\underline{n}}on-{\underline{t}}ransgenic$ (NT) control. In addition, the chlorophyll contents of the leaves of transgenic lines were significantly higher (P < 0.01). The results indicated that their enhanced drought tolerance was due to the prevention of cell membrane damage and maintenance of chlorophyll content. Water loss by transpiration also slowly proceeded in transgenic plants. In microscopic observation, higher stomata closure was confirmed in transgenic lines. Especially, line #9 had 56% of completely closed stomata whereas only 16% were completely open. In subsequent salt tolerance test, the apparently enhanced salt tolerance of transgenic lines was measured in ion leakage rate and chlorophyll contents. Finally, the agronomic characteristics of ectopically expressed AtABF3 transgenic plants ($T_2$) compared to NT plants under regular watering (every 4 days) or low rate of watering condition (every 10 days) was investigated. When watered regularly, the plant height of drought-tolerant line (#9) was shorter than NT plants. However, under the drought condition, total seed weight of line #9 was significantly higher than in NT plants (P < 0.01). Moreover, the pods of NT plants showed severe withering, and most of the pods failed to set normal seeds. All the evidences in the study clearly suggested that overexpression of the AtABF3 gene conferred drought and salt tolerance in major crop soybean, especially under the growth condition of low watering.

충주호 상류지역의 유황별 장래수질예측 (Water quality forecasting on upstream of chungju lake by flow duration)

  • 이원호;한양수;연인성;조용진
    • 환경위생공학
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    • 제17권4호
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    • pp.1-9
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    • 2002
  • In order to define about concern with discharge and water-quality, it is calculated drought flow, low flow, normal flow and wet flow in Chungju watershed from flow duration analysis. Water quality modeling study is performed for forecasting at upstream of Chungju lake. It is devided method of modeling into before and after the equipment of environmental treatment institution. And it is estimated the change of water quality. Before the equipment of environmental treatment, BOD concentration is increased from 23000 to 2006 years at all site and decrease on 2012 years. The rate of increasing BOD concentration is showed height between 2000 years and 2003 years most of all site. And after the equipment of environmental treatment, it is showed first grade of BOD water quality in most of sample site beside Jucheon river. The result of water quality modeling using drought flow showed that a lot of pollution occurred. And water quality using wet flow is good, so much discharge make more improve water quality than little discharge.

A Role for Arabidopsis miR399f in Salt, Drought, and ABA Signaling

  • Baek, Dongwon;Chun, Hyun Jin;Kang, Songhwa;Shin, Gilok;Park, Su Jung;Hong, Hyewon;Kim, Chanmin;Kim, Doh Hoon;Lee, Sang Yeol;Kim, Min Chul;Yun, Dae-Jin
    • Molecules and Cells
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    • 제39권2호
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    • pp.111-118
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    • 2016
  • MiR399f plays a crucial role in maintaining phosphate homeostasis in Arabidopsis thaliana. Under phosphate starvation conditions, AtMYB2, which plays a role in plant salt and drought stress responses, directly regulates the expression of miR399f. In this study, we found that miR399f also participates in plant responses to abscisic acid (ABA), and to abiotic stresses including salt and drought. Salt and ABA treatment induced the expression of miR399f, as confirmed by histochemical analysis of promoter-GUS fusions. Transgenic Arabidopsis plants overexpressing miR399f (miR399f-OE) exhibited enhanced tolerance to salt stress and exogenous ABA, but hypersensitivity to drought. Our in silico analysis identified ABF3 and CSP41b as putative target genes of miR399f, and expression analysis revealed that mRNA levels of ABF3 and CSP41b decreased remarkably in miR399f-OE plants under salt stress and in response to treatment with ABA. Moreover, we showed that activation of stress-responsive gene expression in response to salt stress and ABA treatment was impaired in miR399f-OE plants. Thus, these results suggested that in addition to phosphate starvation signaling, miR399f might also modulates plant responses to salt, ABA, and drought, by regulating the expression of newly discovered target genes such as ABF3 and CSP41b.

Identification of genes related to ER stress in bZIP28 gene transgenic potato plant

  • Kim, Dool Yi;Kim, Kyung Hwa;Choi, Man Soo;Ok, Hyun Choog;Kim, Jae Hyun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.153-153
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    • 2017
  • Potato (Solanum tubersosum L.) is susceptible to various environmental stresses such as frost, high temperature, and drought. Enhancement of potato drought tolerance can reduce yield loss under drought that has negative effect on potato tuber growth. Genetic engineering can be utilized to achieve this goal, but such approaches using endogenous potato genes have rarely been applied. Since unpredictable global weather changes cause more severe and frequent water limiting conditions, improvement of potato drought tolerance can minimize such adverse effects under drought and can impact on sustainable potato production. Genetic engineering can be utilized to improve potato drought tolerance, but such approaches using endogenous potato genes have rarely been applied. We were obtained AtbZIP28 gene transgenic potato plants. It is identified transcript levels at various stress conditions, polyethylene glycol (PEG), NaCl, abscisic ${\underline{acid}}$ (ABA). Also, For identification to regulate ER stress response genes in AtbZIP28 gene transgenic potato plant, we screened seven potato genes from RNA-seq analysis under TM treatment. Five and two genes were up- and down-regulated by TM, respectively. Their expression patterns were re-examined at stress agents known to elicit TM, DTT, DMSO and salt stress.

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Transcriptome Analysis of Induced Systemic Drought Tolerance Elicited by Pseudomonas chlororaphis O6 in Arabidopsis thaliana

  • Cho, Song-Mi;Kang, Beom Ryong;Kim, Young Cheol
    • The Plant Pathology Journal
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    • 제29권2호
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    • pp.209-220
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    • 2013
  • Root colonization by Pseudomonas chlororaphis O6 induces systemic drought tolerance in Arabidopsis thaliana. Microarray analysis was performed using the 22,800-gene Affymetrix GeneChips to identify differentially-expressed genes from plants colonized with or without P. chlororaphis O6 under drought stressed conditions or normal growth conditions. Root colonization in plants grown under regular irrigation condition increased transcript accumulation from genes associated with defense, response to reactive oxygen species, and auxin- and jasmonic acid-responsive genes, but decreased transcription factors associated with ethylene and abscisic acid signaling. The cluster of genes involved in plant disease resistance were up-regulated, but the set of drought signaling response genes were down-regulated in the P. chlororaphis O6-colonized under drought stress plants compared to those of the drought stressed plants without bacterial treatment. Transcripts of the jasmonic acid-marker genes, VSP1 and pdf-1.2, the salicylic acid regulated gene, PR-1, and the ethylene-response gene, HEL, also were up-regulated in plants colonized by P. chlororaphis O6, but differed in their responsiveness to drought stress. These data show how gene expression in plants lacking adequate water can be remarkably influenced by microbial colonization leading to plant protection, and the activation of the plant defense signal pathway induced by root colonization of P. chlororaphis O6 might be a key element for induced systemic tolerance by microbes.

배추 유래 신규 건조 저항성 관련 유전자, BrDSR의 분리 및 기능 검정 (Isolation and Functional Identification of BrDSR, a New Gene Related to Drought Tolerance Derived from Brassica rapa)

  • 유재경;박영두
    • 원예과학기술지
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    • 제33권4호
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    • pp.575-584
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    • 2015
  • 건조 스트레스는 작물의 생존과 생산성을 결정하는데 매우 중요한 환경요인이다. 본 연구의 목적은 배추에서 신규 건조 스트레스 저항성 유전자를 동정 검정하는 것이다. 건조 스트레스 하에서 생육된 지부('Chiifu') 배추를 이용하여 제작된 KBGP-24K 마이크로어레이 데이터 분석을 통해 738개의 건조 반응 유전자 중 기능은 밝혀져 있지 않지만, 건조 스트레스 하에서 발현량이 6배 이상 크게 증가한 1개의 유전자를 선발하여 BrDSR(B. rapa Drought Stress Resistance)이라 명명하였다. 이의 검정을 위해 내혼계배추('CT001')에서 BrDSR을 동정한 결과 438bp의 오픈리딩프레임과 145개의 아미노산을 가지고 있음을 확인하였고, 동정된 완전장의 cDNA 염기서열은 형질전환용 과발현 vector인 'pSL100' 제작에 이용하였다. BrDSR이 식물체에서 건조 스트레스 저항성을 향상시켜줄 수 있는지 분석하기 위해 담배 형질전환을 수행하였다. PCR과 DNA 블롯 분석으로 선발된 T1 세대 담배 형질전환체들을 대상으로 quantitative real-time RT PCR 분석을 수행한 결과, 형질전환체의 BrDSR 발현량은 비형질 전환체 보다 2.6배까지 증가하였다. 또한 건조처리 10일째 수행한 표현형 분석에서 BrDSR이 발현되는 담배 형질전환체들이 비형질전환체들 보다 우수한 건조 저항성을 보였다. 연구 결과들을 종합하면 BrDSR은 건조 스트레스 하에서 식물의 생장과 생존에 효과적인 저항성 기능을 할 것으로 기대된다.

한발이 담배 잎의 생장과 수분 포텐셜에 미치는 영향 (Influence of Drought on Leaf Growth and Water Potential in Tobacco)

  • 이상각;강병화;신주식;변주섭
    • 한국작물학회지
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    • 제42권5호
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    • pp.632-639
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    • 1997
  • 본 실험은 담배의 최대생장 후반기에 수분제한처리를 하여, 한발이 엽위에 따라 생장과 발달에 미치는 영향을 분석하고, 엽영에 따른 엽내 수분상태가 기공컨덕턴스, 잎수분포텐셜과 토양수분관계에 영향을 미치는 생리적 반응을 구명하고져 실시하였다. 담배의 최대생장기 한발영향은 지상부의 제형질을 감소시켰고, 엽위에 따른 생장반응은 중ㆍ하위엽에서 작았고 상위엽에서 컸다. 처리 5일째에 잎의 상대수분함량은 토양수분함량이 4.3%로 감소될 때 상위엽 74%, 중위엽 64%, 하위엽 59%로 담배잎의 위주점은 상대수분함량이 약 75%이었다. 한발에 따른 잎수분포텐셜은 대조구의 -0.58 MPa에서 처리구의 처리5일째에 -1.20 MPa로 떨어졌고, 대조구와 비교하여 약 20%의 수분포텐셜차이가 위주점이 되었다. 기공컨덕턴스는 중ㆍ상위엽에서 12 mol /$\textrm{m}^2 sec^{-1}$에서 0.8 mol /$\textrm{m}^2 sec^{-1}$로 떨어져, 한발처리에 따른 담배의 최대생장후반기의 엽위에 따른 생장반응은 중ㆍ상위엽까지 영향을 미쳤다.

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