• 제목/요약/키워드: DROUGHT RESISTANCE

검색결과 126건 처리시간 0.03초

Identification and Transcriptional Analysis of Priming Genes in Arabidopsis thaliana Induced by Root Colonization with Pseudomonas chlororaphis O6

  • Cho, Song-Mi;Park, Ju-Yeon;Han, Song-Hee;Anderson, Anne J.;Yang, Kwang-Yeol;Gardener, Brian Mcspadden;Kim, Young-Cheol
    • The Plant Pathology Journal
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    • 제27권3호
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    • pp.272-279
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    • 2011
  • Root colonization of Arabidopsis thaliana with Pseudomonas chlororaphis O6 induces systemic tolerance against diverse pathogens, as well as drought and salt stresses. In this study, we demonstrated that 11 genes in the leaves were up-regulated, and 5 genes were down-regulated as the result of three- to five-days root colonization by P. chlororaphis O6. The identified priming genes were involved in cell signaling, transcription, protein synthesis, and degradation. In addition, expression of selected priming genes were induced in P. chlororaphis O6-colonized plants subjected to water withholding. Genes encoding defense proteins in signaling pathways regulated by jasmonic acid and ethylene, such as VSP1 and PDF1.2, were additional genes with enhanced expression in the P. chlororaphis O6-colonized plants. This study indicated that the expression of priming genes, as well as genes involved in jasmonic acid- and ethylene-regulated genes may play an important role in the systemic induction of both abiotic and biotic stress due to root colonization by P. chlororaphis O6.

수분공급조절이 질경이 ( Plantago asiatica L. ) 의 생장에 미치는 영향 (Effects of Different Soil Moisture on the Growth of Plantago asiatica L.)

  • Lee, Ho Joon;Soon Ja Kim;Hae Won Kang
    • The Korean Journal of Ecology
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    • 제6권3호
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    • pp.227-235
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    • 1983
  • This research was made over drought resistance and optimum soil moisture needed with Plantago asiatica L. as the material by means of making out the process of its growth under different soil moisture contents. The soil used for the experiment was a mixture of vermiculite and c-layer soil, and the process of growth was compared with each other controlling its soil mositure as: 7%, 15%, 30%, 45%, and 60%. In 7% range of soil moisture which was of low content, the increase of growth was neither significantly indicated nor any permanent seeding done. In view of this phenomenon, Plantago asiatica L. appeared to be highly drought-resistant. It was found rising at 30% range and reaching the optimum state at 45% range and falling down at 60% range range. In viw of this fluctuation indicated above, the optimum soil moisture content needed for the growth of Plantago asiatica L. is thought to be between 30% and 60%. It is thought the number of seed per capsule is not affected by the soil moisture content. It is expected an ecotypic variation by the soil moisture content will bring forth upon Plantago asiatica L.

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OsAREB1, an ABRE-binding protein responding to ABA and glucose, has multiple functions in Arabidopsis

  • Jin, Xiao-Fen;Xiong, Ai-Sheng;Peng, Ri-He;Liu, Jin-Ge;Gao, Feng;Chen, Jian-Min;Yao, Quan-Hong
    • BMB Reports
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    • 제43권1호
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    • pp.34-39
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    • 2010
  • Expression patterns of OsAREB1 revealed that expression of OsAREB1 gene can be induced by ABA, PEG and heat. Yeast one-hybrid assay demonstrated it can bind to ABA-responsive element (ABRE), which was found in most stress-induced genes. Transgenic Arabidopsis over-expressing OsAREB1 had different responses to ABA and glucose compared to wild-type plants, which suggest OsAREB1 might have a crucial role in these two signaling pathways. Further analysis indicate that OsAREB1 have multiple functions in Arabidopsis. First, OsAREB1 transgenic plants had higher resistance to drought and heat, and OsAREB1 up-regulated the ABA/stress related gene such as RD29A and RD29B. Second, it delayed plant flowering time by down-regulating the expression of flowering-related genes, such as FT, SOC1, LFY and AP1. Due to the dates, OsAREB1 may function as a positive regulator in drought/heat stresses response, but a negative regulator in flowering time in Arabidopsis.

주요작물의 한발저항성에 관한 연구 제1보 맥류 유묘기의 수분부족이 초장, 유묘건물종, 엽침소, 상대팽압도, 단백질 및 환원당에 미치는 영향 (Studies on the Drought-Resistance of Major Food Crops I. Effect of Water Stress on the Plant Height, Seedling Dry Weight, Relative Turgidity, Protein and Reducing Sugar in Barley and Wheat Seedling Stage)

  • 최원열;민경수;김용환
    • 한국작물학회지
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    • 제26권4호
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    • pp.304-310
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    • 1981
  • 맥류의 한발저항성 반응과 정도 그리고 생리학적 기작을 구명하기 위하여 발아 후 10일된 맥류 유묘기(본엽3매시)에 8일간 단수처리하여 초장 유묘건물중 엽녹소 상대팽압도 단백질 환원당의 변화를 조사분석하였던 바 그 결과는 다음과 같다. 1. 전품종의 평균 감소율은 초장 14%, 유묘건물중 24%, 엽녹소 31%, 엽상대팽엽도 27%, 단백질 28%였으며 유일하게 환원당만은 대조구에 비하여 단수구가 4배나 증가하였다. 2. 유묘건물중 감소율을 품종별로 보면 호맥이 가장 낮고, 백동, 목포5005, 이조대맥이 가장 높았으며 또한 맥종별로는 호맥<소맥<대맥<라맥<이조대맥의 순이었다. 3. 엽녹소의 감소율이 가장 낮은 품종은 호맥, 청계밀, 을밀이었고 가장 높은 것은 밀양1002, 방사006, 향맥, 사천004였다. 4. 엽상대팽엽도의 감소율이 가장 낮은 품종(22-25%)은 호맥, 청계밀, 동보리 001였고 가장 높은것(30-33%)은 백동과 이조대맥이었다. 맥종별로 보면 호맥<소맥<라맥<대맥ㆍ이조대맥의 순이었다. 5. 단백질의 감소율을 보면 후광, 그루밀, 동보리 001, 목포5005가 가장 낮은 품종(14~17%)들 이었고 이조대맥이(40%) 가장 심하였으며 맥종별로 보면 소맥<호맥ㆍ대맥<근맥<이조대맥의 순이었다. 6. 환원당의 증가비는 호맥과 소맥이 4~5배였고 이맥과 이조대맥이 약 2배 증가되었다. 맥종별 증가를 보면 호맥<소맥<대맥<라맥<이조대맥의 순이었다. 7 한발저항성 과정에서 생리적 대사작용의 관점에서 볼 때 호맥<소맥<대맥<라맥<이조대맥의 순으로 한발저항성이 강한 것으로 추정된다.

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식물생장촉진 Bacillus sp. SB19 균주의 케일 처리에 대한 가뭄 스트레스 완화 효과 (Mitigation Effect of Drought Stress by Plant Growth-promoting Bacterium Bacillus sp. SB19 on Kale Seedlings in Greenhouse)

  • 김다연;이상엽;김정준;한지희
    • 한국유기농업학회지
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    • 제24권4호
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    • pp.833-847
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    • 2016
  • 가뭄은 농작물의 생산성을 저해하는 주요 원인 중 하나이며, 잎을 먹는 쌈채류의 경우 물 부족 스트레스에 더 치명적일 수 있다. 본 연구는 케일 유묘에 대한 식물생육촉진 균주(PGPB)의 가뭄 내성 효과를 알아보기 위해 수행되었다. 쌈채류의 토양 및 근권 토양으로부 터 형태학적으로 구분되는 146개의 콜로니를 분리하고 온실 생물검정을 통해 케일 생육촉진이 우수한 균주 SB19를 최종 선발하였다. SB19 균주는 케일 재배 토양으로부터 분리하였으며 16S rRNA 유전자 염기서열 분석 결과 Bacillus sp.로 확인되었다. Bacillus sp. SB19 균주를 처리한 케일에 7일 간 수분 부족 스트레스를 유도하고 7일째에 가뭄 피해 조사 후 모든 처리구에 1회 관수하였다. 이후 다시 7일 간 수분 부족 스트레스를 주어 14일째에 케일의 내건성 증진 여부를 조사하였다. 가뭄 조건 7일째에 $10^6$$10^7cell\;mL^{-1}$ 농도의 SB19 균주를 처리한 케일에서 무처리와 비교하여 가뭄 스트레스 경감 효과를 보였다. 7일째에 모든 처리구에 관수 후 다시 가뭄 스트레스를 주었을 때에도 $10^6$$10^7cell\;mL^{-1}$ 농도의 SB19 균주 처리구에서 무처리구와 비교하여 가뭄 피해 경감 효과가 있었으며, 7일째와 14일째 모두에서 $10^7cell\;mL^{-1}$ 농도의 SB19 균주 처리구에서 가뭄 피해의 완화 정도가 가장 효과적인 것으로 나타났다. $10^6cell\;mL^{-1}$ SB19 균주 처리구에서는 물 부족으로 인한 잎의 노화가 $10^7cell\;mL^{-1}$ 농도 처리구에 비해 빠르게 발생하였다. 본 연구 결과를 바탕으로 유용 미생물과 식물의 상호작용이 식물의 물 이용률을 증진시키는 중요한 역할을 하고 약한 가뭄 조건에서 쌈채류의 품질을 향상시킬 수 있는 방안이 될 수 있을 것이라고 예측한다. 즉, 미생물학적인 환경 스트레스 극복 방법으로서의 가치를 뒷받침하는 것이라 할 수 있다.

식물의 앱시스산 신호 전달 기작: 앱시스산 수송, 인식, 신호 전달 및 번역 후 변형 과정에 관하여 (ABA Signal Transduction Pathway in Plants: ABA Transport, Perception, Signaling and Post-Translational Modification)

  • 이재훈
    • 생명과학회지
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    • 제24권2호
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    • pp.196-208
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    • 2014
  • 식물의 생활사 동안 물부족 스트레스는 식물의 생장과 발달에 해로운 영향을 끼치는 대표적인 스트레스이다. 유용 작물의 생산성을 증가시키기 위하여, 물부족 스트레스를 극복하는 일은 식물학 연구 분야에서 가장 중요한 이슈로 대두되어 왔다. 식물의 호르몬 중에서 앱시스산은 물부족 스트레스에 대해 식물이 저항성을 나타내는데 가장 중요한 호르몬으로서 역할을 수행하며, 씨앗의 발아, 기공의 개폐, 유묘의 성장과 같은 다양한 발달 과정에도 관여하고 있다. 그러므로, 앱시스산에 의해 매개되는 식물의 신호전달 기작을 명확히 이해하는 것은 물부족 스트레스에 대한 내성을 갖는 유용 식물을 생산해내기 위해 가장 효과적인 방법이 될 것이다. 한편, 인산화, 유비퀴틴화와 같은 번역 후 변형 과정은 식물이 다양한 환경적 스트레스 하에서 신속하게 적응을 하기 위해 가장 효율적인 기작으로 인식되어 왔는데, 이는 전사수준에서의 조절과 달리 이미 존재하는 신호전달 물질의 활성과 안정성을 직접적으로 빠르게 조절할 수 있기 때문이다. 본 총설에서는 앱시스산의 신호전달 과정과 관련된 최근 연구 동향을 업데이트하고자 하며, 특히 이러한 신호전달 과정을 앱시스산 수송, 인식, 신호전달 및 번역 후 변형 과정에 초점을 맞추어 알아보고자 한다. 또한 그러한 조절 기작이 농업분야에서 유용 작물을 생산하는데 어떻게 적용될 수 있는지에 대한 향후 전망에 대해서도 기술하고자 한다.

Growth and yield responses of rice varieties to various soil water deficit conditions under different soil types

  • Kikuta, Mayumi;Samejima, Hiroaki;Magoti, Rahab;Kimani, John M.;Yamauchi, Akira;Makihara, Daigo
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.322-322
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    • 2017
  • To avoid drought stress under rainfed upland conditions, it is important for rice to efficiently utilize water at shallow soil layers supplied by rainfall, and access to water retained in deer soil layers. The root developmental characteristics of rice, which play important role in the adaptability to drought conditions, vary depending on the variety. Moreover, water availability for plant differs depending on the soil types that have different physical properties such as water holding capacity, permeability, capillary force, penetration resistance, etc. In this study, we evaluated growth and yield responses of rice varieties to various soil water deficit conditions under three different soil types. The experiment was conducted in a plastic greenhouse at the Kenya Agricultural and Livestock Research Organization-Mwea from October 2016 to January 2017. Two upland varieties (NERICA 1 and 4) and one lowland variety (Komboka) were grown in handmade PVC pots (15.2 cm diameter and 85.0 cm height) filled with three different types of soil collected from major rice-growing areas of the country, namely black cotton (BC), red clay (RC), and sandy clay (SC). Three watering methods, 1) supplying water only from the soil surface (W1), 2) supplying water only from the bottom of the pots (W2), and 3) supplying water both from the soil surface and the bottom of pots (W3), were imposed from 40 days after sowing to maturity. Soil water content (SWC) at 20, 40, and 60 cm depths was measured regularly. At the harvesting stage, aboveground and root samples were collected to determine total dry weight (TDW), grain yield, and root length at 0-20, 20-40, 40-60, and 60-80 cm soil layers. Irrespective of the watering methods, the greatest root development was obtained in RC, while that in BC was less than other two soils. In BC, the degree of yield reduction under W1 was less than that in RC and SC, which could be attributed to the higher water holding capacity of BC. In RC, the growth and yield reduction observed in all varieties under W1 was attributed to the severe drought stress. On the other hand, under W2, SWC at the shallow soil depth in RC was maintained because of its higher capillary force compared with BC and SC. As the result, growths and yields in RC were not suppressed under W2. In SC, deep root development was not promoted by W2 irrespective of the varieties, which resulted in significant yield losses. Under W1, the rice growth and yield in SC was decreased although shallow root development was enhanced, and the stomatal conductance was maintained higher than RC. It was suspected that W1 caused nutrients leaching in SC because of its higher permeability. Under rainfed conditions, growth and yield of rice can be strongly affected by soil types because dynamics of soil water conditions change according to soil physical properties.

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Assessment of Endophytic Fungal Diversity and Beyond

  • Kim, Soonok
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2015년도 춘계학술대회 및 임시총회
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    • pp.20-20
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    • 2015
  • Endophytic fungi are microorganisms inhabiting living plant tissues without causing apparent harm to the host. They are drawing increasing attention due to their ability to produce various bioactive compounds as well as their effects on host growth and resistance to biotic and abiotic stresses. As a first step to assess biodiversity of plant associated fungi in Korea and the following evaluation on diverse biological activities, we are collecting endophytic fungi from plant in wild followed by systematic long-term storage in liquid nitrogen. Molecular identification using ITS sequences was also incorporated for pure culture by hyphal tip isolation. As of April 2015, about 1,400 fungal strains had been isolated from about 170 plant taxa. Fungal isolates belonging to Pleosporales, Diaporthales, Glomerellales, Hypocreales, and Xylariales were the most abundant. These collections are being used for several complementary researches, including screening of isolates with novel bioactive compounds or conferring drought stress resistance, phylogenetic and genomic study. Genome sequencing was performed for 3 isolates, one Xylaria sp. strain JS573 producing griseofulvin, an antifungal compound, and two Fusarium spp. strains JS626 and JS1030, which are assumed to be new species found in Korea. More detailed analysis on these genomes will be presented. These collections and genome informations will serve as invaluable resources for identifying novel bioactive materials in addition to expand our knowledge on fungal biodiversity.

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The Gac/Rsm Signaling Pathway of a Biocontrol Bacterium, Pseudomonas chlororaphis O6

  • Anderson, Anne J.;Kang, Beom Ryong;Kim, Young Cheol
    • 식물병연구
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    • 제23권3호
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    • pp.212-227
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    • 2017
  • Pseudomonas chlororaphis O6, isolated from the roots of dryland, field-grown commercial wheat in the USA, enhances plant health and therefore it is used in agriculture as a biofertilizer and biocontrol agent. The metabolites produced by this pseudomonad stimulate plant growth through direct antagonism of pathogens and by inducing systemic resistance in the plant. Studies upon P. chlororaphis O6 identify the pathways through which defined bacterial metabolites generate protection against pathogenic microbes, insects, and nematodes. P. chlororaphis O6 also triggers plant resistance to drought and salinity stresses. The beneficial determinants are produced from bacterial cells as they form biofilms during root colonization. Molecular control these processes in P. chlororaphis O6 involves the global regulatory Gac/Rsm signaling cascade with cross-talk between other global regulatory pathways. The Gac/Rsm regulon allows for coordinate phasing of expression of the genes that encode these beneficial traits among a community of cells. This review provides insights on the Gac/Rsm regulon in expression of beneficial traits of the P. chlororaphis O6 which can contribute to help yield enhancement and quality in agricultural production.

Functional Characterization of PR-1 Protein, β-1,3-Glucanase and Chitinase Genes During Defense Response to Biotic and Abiotic Stresses in Capsicum annuum

  • Hong, Jeum-Kyu;Hwang, Byung-Kook
    • The Plant Pathology Journal
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    • 제21권3호
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    • pp.195-206
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    • 2005
  • Spatial and temporal expression of pathogenesis-related (PR) gene and proteins has been recognized as inducible defense response in pepper plants. Gene expression and/or protein accumulation of PR-1, $\beta-1,3-glucanase$ and chitinase was predominantly found in pepper plants during the inoculations by Xanthomonas campestris pv. vesicatoria, Phytophthora capsici and Colletotrichum coccodes. PR-1 and chitinase genes were also induced in pepper plants in response to environmental stresses, such as high salinity and drought. PR-1 and chitinase gene expressions by biotic and abiotic stresses were regulated by their own promoter regions containing several stress-related cis-acting elements. Overexpression of pepper PR-1 or chitinase genes in heterogeneous transgenic plants showed enhanced disease resistance as well as environmental stress tolerances. In this review, we focused on the putative function of pepper PR-1, $\beta-1,3-glucanase$ and chitinase proteins and/or genes at the biochemical, molecular and cytological aspects.