• 제목/요약/키워드: drought resistance

검색결과 126건 처리시간 0.03초

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.

수종 참나무속 유식물의 건조스트레스에 대한 기공저항의 조절과 전략의 분화 (Stomatal Control and Strategy Segregation to Drought Stress in Young Trees of Several Oak Species)

  • 김종욱;김준호
    • The Korean Journal of Ecology
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    • 제17권3호
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    • pp.241-249
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    • 1994
  • 참나무속 식물 6종류의 잎의 확산저항, 기공밀도, 공변세포의 길이 및 털의 밀도를 측정하여 건조스트레스에 대한 이 식물들의 전략을 주성분분석법으로 분석하였다. 상수리나무, 갈참나무 및 졸참나무의 잎의 확산저항은 다른 3종보다 높은 Ψleaf 또는 낮은 WSD에서 빠르게 상승함으로써 수분 스트레스를 회피하였다. 그러나, 신갈나무와 떡갈나무는 낮은 Ψleaf, 낮은 기공밀도, 작은 기공 크기 및 높은 털밀도로 수분스트레스를 회피하였다. 그러나 신갈나무와 떡갈나무는 낮은 Ψleaf에서 기공 확산저항의 상승을 보였다. 건조스트레스에 대한 조정능과 관련된 15변수의 주성분분석에서 참나무속 식물은 2그룹, 즉 건성생육지종인 굴참나무, 신갈나무 및 떡갈나무와 중성생육지종인 상수리 나무, 갈참나무 및 졸참나무로 구별되었고, 건성생육지종인 굴참나무는 높은 털밀도, 낮은 기공밀도 및 높은 LAR에서 신갈나무 및 떡갈나무와 다시 구별되었다. 이 결과는 자연생육지에서 참나무속 식물의 건조에 대한 전략을 잘 설명하고 있다.

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Transcriptomic profiling of the maize (Zea mays L.) to drought stress at the seedling stage

  • Moon, Jun-Cheol;Kim, Hyo Chul;Lee, Byung-Moo
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.111-111
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    • 2017
  • The development and productivity of maize (Zea mays L.) is frequently impacted by water scarcity, and consequently to increased drought tolerance in a priority target in maize breeding programs. To elucidate the molecular mechanisms of resistance to drought stress in maize, RNA-seq of the public database was used for transcriptome profiling of the seedling stage exposed to drought stress of three levels, such as moderate, severe drought stress and re-watering. In silico analysis of differentially expressed genes (DEGs), 176 up-regulated and 166 down-regulated DEGs was detected at moderated stress in tolerance type. These DEGs was increasing degradation of amino acid metabolism in biological pathways. Six modules based on a total of 4,771 DEGs responses to drought stress by the analysis of co-expression network between tolerance and susceptible type was constructed and showed to similar module types. These modules were discriminated yellow, greenyellow, turquoise, royalblue, brown4 and plum1 with 318, 2433, 375, 183, 1405 and 56 DEGs, respectively. This study was selected 30 DEGs to predicted drought stress response gene and was evaluated expression levels using drought stress treated sample and re-watering sample by quantitative Real-Time Polymerase Chain Reaction (qRT-PCR). 23 genes was shown increasing with drought stress and decreasing with re-watering. This study contribute to a better understanding of the molecular mechanisms of maize seedling stage responses to drought stress and could be useful for developing maize cultivar resistant to drought stress.

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Evaluation of Drought Tolerance using Anthesis-silking Interval in Maize

  • Kim, Hyo Chul;Moon, Jun-Cheol;Kim, Jae Yoon;Song, Kitae;Kim, Kyung-Hee;Lee, Byung-Moo
    • 한국작물학회지
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    • 제62권1호
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    • pp.24-31
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    • 2017
  • We screened the drought tolerant maize using seventeen maize genotypes from different sources, nine inbred genotypes from United States Department of Agriculture (USDA) (B73, CML103, CML228, CML277, CML322, CML69, Ki3, Ki11, and NC350), three Southeast Asian genotypes (DK9955, LVN-4, and 333), and five Korean hybrids (Cheongdaok, Gangdaok, Ilmichal, Kwangpyeongok, and Pyeonganok). We evaluated anthesis-silking interval (ASI), leaf senescence (LS), ears per plant (EPP), tassel length (TL), and fresh weight (FW) at silking date. According to ASI and LS examination, CML103 and Kill were drought tolerant genotypes, wheareas Ki3 and 333 were drought susceptible. EPP, TL, and FW differed according to drought resistance. Grain yield was correlated strongly with ASI, but moderately with LS. Difference in ASI between drought-stressed (DS) and well-watered (WW) conditions was less than three days in CML228, CML103, Cheongdaok, NC350, B73, Ki11, CML322, and Kwangpyeongok, whereas that of Ki3, Pyeonganok, and Gangdaok was more than 6.5 days. We concluded that CML228, CML103, Cheongdaok, NC350, B73, Ki11, CML322, and Kwangpyeongok are drought tolerant genotypes, whereas Ki3, Pyeonganok, and Gangdaok are drought susceptible.

배추의 건조 저항성 유전자, BrDSR의 기능 검정 (Characterization of a Drought-Tolerance Gene, BrDSR, in Chinese Cabbage)

  • 유재경;이기호;박영두
    • 원예과학기술지
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    • 제34권1호
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    • pp.102-111
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    • 2016
  • 본 연구의 목적은 BrDSR(Drought Stress Resistance in B. rapa) 유전자의 기능을 명확히 밝히고, 배추에서 건조 스트레스 반응 유전자들을 분석하는데 있다. 내혼계배추('CT001')와 BrDSR 완전장(438bp의 오픈리딩프레임)을 지닌 pSL100 vector를 재료로 아그로박테리아를 이용한 배추 형질전환을 수행하였다. PCR 분석을 통해 4개체의 형질전환체를 확보하였고, 이들의 BrDSR 발현량은 건조 스트레스 조건에서 비형질전환체 대비 약 1.9-3.4배 정도 더 큰 것으로 분석되었다. 또한 표현형 분석에서도 BrDSR이 과발현된 형질전환체들은 건조 스트레스에 저항성을 보이며 정상적인 생장을 하였다. 기 구축된 건조 스트레스 반응 유전자의 상호발현 네트워크를 기반으로 BrDSR과 밀접한 관련이 있는 유전자들을 분석하기 위해 B. rapa 135K cDNA microarray 데이터를 분석하였다. 그 결과, 환경 스트레스와 관련하여 식물체에서 잎의 노화와 자가소화에 관련된 것으로 보고된 'dark inducible 2(DIN2, AT3G60140)'와 'autophagy 8h(ATG8H, AT3G06420)' 유전자가 확인되었다. 위 결과들을 근거로 BrDSR 유전자는 건조 스트레스에 대한 저항성 향상에 중요한 역할을 할 것으로 판단되었다.

Expressing the Tyrosine Phosphatase (CaTPP1) Gene from Capsicum annuum in Tobacco Enhances Cold and Drought Tolerances

  • Hwang, Eul-Won;Park, Soo-Chul;Jeong, Mi-Jeong;Byun, Myung-Ok;Kwon, Hawk-Bin
    • Journal of Applied Biological Chemistry
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    • 제51권2호
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    • pp.50-56
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    • 2008
  • As one way to approach to cold defense mechanism in plants, we previously identified the gene for protein-tyrosine phosphatase (CaTPP1) from hot pepper (Capsicum annuum) using cDNA microarray analysis coupled with Northern blot analysis. We showed that the CaTPP1 gene was strongly induced by cold, drought, salt and ABA stresses. The CaTPP1 gene was engineered under control of CaMV 35S promoter for constitutive expression in transgenic tobacco plants by Agrobacterium-mediated transformation. The resulting CaTPP1 transgenic tobacco plants showed significantly increased cold stress resistance. It also appeared that some of the transgenic tobacco plants showed increased drought tolerance. The CaTPP1 transgenic plants showed no visible phenotypic alteration compared to wild type plants. These results showed the involvement of protein tyrosine phosphatase in tolerance of abiotic stresses including cold and drought stress.

Arabidopsis PYL8 Plays an Important Role for ABA Signaling and Drought Stress Responses

  • Lim, Chae Woo;Baek, Woonhee;Han, Sang-Wook;Lee, Sung Chul
    • The Plant Pathology Journal
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    • 제29권4호
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    • pp.471-476
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    • 2013
  • Plants are frequently exposed to numerous environmental stresses such as dehydration and high salinity, and have developed elaborate mechanisms to counteract the deleterious effects of stress. The phytohormone abscisic acid (ABA) plays a critical role as an integrator of plant responses to water-limited condition to activate ABA signal transduction pathway. Although perception of ABA has been suggested to be important, the function of each ABA receptor remains elusive in dehydration condition. Here, we show that ABA receptor, pyrabactin resistance-like protein 8 (PYL8), functions in dehydration conditions. Transgenic plants overexpressing PYL8 exhibited hypersensitive phenotype to ABA in seed germination, seedling growth and establishment. We found that hypersensitivity to ABA of transgenic plants results in high degrees of stomatal closure in response to ABA leading to low transpiration rates and ultimately more vulnerable to drought than the wild-type plants. In addition, high expression of ABA maker genes also contributes to altered drought tolerance phenotype. Overall, this work emphasizes the importance of ABA signaling by ABA receptor in stomata during defense response to drought stress.

Improvement of Abiotic Stress Resilience for Stable Rice Production

  • Dongjin Shin;Hyunggon Mang;Jiyun Lee
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.13-13
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    • 2022
  • Recently, stable crop production is threatened by the effects of climate change. In particular, it is difficult to consistently maintain agricultural policies due to large price fluctuations depending on the difference in total domestic rice production from year to year. For stable rice production amid changes in the crop growing environment, development of varieties with improved disease resistance and abiotic stress stability is becoming more important. In here, drought and cold tolerant trait have been studied. First, for the development of drought tolerant varieties, we analyzed which agricultural traits are mainly affected by domestic drought conditions. As a result, it was observed that drought caused by the lack of water during transplanting season inhibits the development of the number of tiller and reduces the yield. 'Samgang' was selected as a useful genetic resource with strong drought tolerant and stable tiller number development even under drought conditions by phenotype screening. Three of drought tolerant QTLs were identified using doubled haploid (DH) population derived from a cross between Nacdong and Samgang, a drought sensitive and a tolerant, respectively. Among these QTLs, when qVDT2 and qVDTl1 were integrated, it was investigated that the tiller number development was relatively stable in the rainfed paddy field conditions. It is known that the high-yielding Tongil-type cultivars are severely affected by cold stress throughout the entire growth stage. In this study, we established conditions that can test the cold tolerance phenotype with alternate temperature to treat low temperatures in indoor growth conditions similar to those in field conditions at seedling stage. Three cold tolerant QTLs were explored using population derived from a cross between Hanareum2 (cold sensitive variety, Tongil-type) and Unkwang (cold tolerant variety, Japonica). Among these QTLs, qSCT12 showed strong cold tolerant phenotype, and when all of three QTLs were integrated, it was investigated that cold tolerant score was relatively similar to its donor parent, Unkwang, in our experimental conditions. We are performing that development of new variety with improved cold tolerant through the introduction of these QTLs.

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Transcriptomic Insights into Abies koreana Drought Tolerance Conferred by Aureobasidium pullulans AK10

  • Jungwook Park;Mohamed Mannaa;Gil Han;Hyejung Jung;Hyo Seong Jeon;Jin-Cheol Kim;Ae Ran Park;Young-Su Seo
    • The Plant Pathology Journal
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    • 제40권1호
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    • pp.30-39
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    • 2024
  • The conservation of the endangered Korean fir, Abies koreana, is of critical ecological importance. In our previous study, a yeast-like fungus identified as Aureobasidium pullulans AK10, was isolated and shown to enhance drought tolerance in A. koreana seedlings. In this study, the effectiveness of Au. pullulans AK10 treatment in enhancing drought tolerance in A. koreana was confirmed. Furthermore, using transcriptome analysis, we compared A. koreana seedlings treated with Au. pullulans AK10 to untreated controls under drought conditions to elucidate the molecular responses involved in increased drought tolerance. Our findings revealed a predominance of downregulated genes in the treated seedlings, suggesting a strategic reallocation of resources to enhance stress defense. Further exploration of enriched Kyoto Encyclopedia of Genes and Genomes pathways and protein-protein interaction networks revealed significant alterations in functional systems known to fortify drought tolerance, including the terpenoid backbone biosynthesis, calcium signaling pathway, pyruvate metabolism, brassinosteroid biosynthesis, and, crucially, flavonoid biosynthesis, renowned for enhancing plant drought resistance. These findings deepen our comprehension of how AK10 biostimulation enhances the resilience of A. koreana to drought stress, marking a substantial advancement in the effort to conserve this endangered tree species through environmentally sustainable treatment.