• 제목/요약/키워드: Rhizobium

검색결과 201건 처리시간 0.032초

근류균(根瘤菌)(Rhizobium meliloti)의 접종(接種)이 Alfalfa의 근류형성(根瘤形成) 및 초기생육(初期生育)에 미치는 영향(影響) (Effects of Inoculation of Nodule Bacteria (Rhizobium meliloti) on the Nodule Formation and Plant Growth of Alfalfa (Medicago sativa L.))

  • 김충수
    • 농업과학연구
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    • 제6권2호
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    • pp.105-111
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    • 1979
  • 몇가지 Alfalfa 품종(品種)의 근류균(根瘤菌)에 대(對)한 친화성(親和性) 및 접종효과(接種效果)를 구명(究明)코자 시험(試驗)하였던 바 결과(結果)를 요약(要約)하면 다음과 같다. 1. 접종균주간(接種菌株間)에는 근류형성성(根瘤形成性)에 현저(顯著)한 차이(差異)를 보였으며 Rhizobium meliloti SU47균주(菌株)는 Luna, Von arnims altd bost 등(等) 두 품종(品種)에만 근류(根瘤)를 형성(形成)하였으며 M1균주(菌株)는 전품종(全品種)에서 근류(根瘤)를 형성(形成)치 않았고 M14균주(菌株)는 전품종(全品種)에서 근류(根瘤)를 형성(形成)하였다. 2. 근류착생수(根瘤着生數)는 Franks hangmeiler 품종(品種)이 가장 많았고 그 다음이 Galilee 품종(品種)이었으며 Elga 품종(品種)이 가장 적었다. 3. 초장(草長) 및 지상부건물중(地上部乾物重)은 공시품종(供試品種) 모두 M14균주접종구(菌株接種區)가 가장 컸고 그 다음이 질소대조구(窒素對照區)였으며 M1접종구(接種區)와 대조구(對照區)에서 가장 작았고 근장(根長) 및 지하부건물중(地下部乾物重)은 품종간(種間)및 처리간(處理間)에 유의성(有意性)을 인정(認定)할 수 없었다. 4. 근류착생수(根瘤着生數)와 초장(草長) 및 근장(根長) 그리고 지상부건물중(地上部乾物重)과 근건물중(根乾物重)과는 상관관계(相關關係)를 인정(認定)할 수 없었다.

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Substrate-Dependent Auxin Production by Rhizobium phaseoli Improves the Growth and Yield of Vigna radiata L. Under Salt Stress Conditions

  • Zahir, Z.A.;Shah, M. Kashif;Naveed, M.;Akhter, M. Javed
    • Journal of Microbiology and Biotechnology
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    • 제20권9호
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    • pp.1288-1294
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    • 2010
  • Rhizobium phaseoli strains were isolated from the mung bean (Vigna radiata L.) nodules, and the most salt tolerant and high auxin producing rhizobial isolate N20 was evaluated in the presence and absence of L-tryptophan (L-TRP) for improving the growth and yield of mung bean under saline conditions in a pot experiment. Mung bean seeds were inoculated with peat-based inoculum and NP fertilizers were applied at 30-60 kg/ha, respectively. Results revealed that imposition of salinity reduced the growth and yield of mung bean. On the contrary, the separate application of L-TRP and Rhizobium appeared to mitigate the adverse effects of salt stress. However, their combined application produced more pronounced effects and increased the plant height (28.2%), number of nodules per plant (71.4%), plant biomass (61.2%), grain yield (65.3%), and grain nitrogen concentration (22.4%) compared with untreated control. The growth promotion effect might be due to higher auxin production in the rhizosphere and improved mineral uptake that reduced the adverse effects of salinity. The results imply that supplementing Rhizobium inoculation with L-TRP could be a useful approach for improving the growth and yield of mung bean under salt stress conditions.

RP4::Mu cts에 의한 Rhizobium leguminosarum 질소고정 유전자의 속간전달에 관한 연구 (Intergeneric Transfer of Nitrogen Fixation Genes from Rhizobium leguminosarum by RP4::Mu cts)

  • 허연주;이영록
    • 미생물학회지
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    • 제24권3호
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    • pp.211-220
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    • 1986
  • Nitrogen fixation (nif) genes of Rhizobium leguminosarum were transferred to nif Klebsiella pneumoniae and E. coli by conjugation after partial heat induction of $RP_4$ :: Mu cts in Rhizobium $R^+$ transconjugant, and the hybrid plasmids in the transconjugant strains were isolated and characterized. In order to transfer the nif genes from Rhizobium, the hybrid plasmid $RP_4$ :: Mu cts was transferred by conjugation from E. coil to the symbiotic nitrogen fixer, R. leguminosarum. After stabillity test, the $RP_4$ :: Mu cts in Rhixobium $R^+$ transconjugant was subjected to partial heat induction by culturing it statically at $38^{\circ}C$ for 16 hours, and then conjugated with the nif defective mutant strains of K. pneumoniae or nif mutant strains of E. coli having whole nif gene plasmid. Recombinant strains of K. pneumoniae, which could grow in a N-free medium and exhibit the nitrogenase activity were selected. However, in the case of E. coli, they could grow well in a NA medium containing antibiotices, but hardly frow in a N-free medium. The hybrid plasmids in these transconjugal strains were isolated by gel electrophoresis and compared their molecular sizes.

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RP4:Mu cts의 E.coli로 부터 Rhizovium leguminosarum으로의 전달 (Transfer of RP4:Mu cts from E. coli to Rhizovium leguminosarum)

  • 이인렬;허연주;이영록
    • 미생물학회지
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    • 제23권2호
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    • pp.107-114
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    • 1985
  • 우리나라 자연환경으로부터 분리한 Rhizob ium 32권주로부터 카나마이신, 세트라싸이클린 등에는 예민하고, 클로람페니콜, 젠타마이신 등에는 강한 내성을 나타내는 5 균주를 선별하고, 이를 수용세포로하여 RP4::Mu cts를 접함에 의해 E. coli로부터 Rhizobium leguminosarum으로 전달 시켰다. 그 전달빈도는 $5.8{\times}10^{-7}$의 빈도를 나타내었다. 접합체에서의 RP4::Mu cts플라스미드의 존재는 암피실린과 카나마이신, 테트라싸이클린에 대한 내정과 $42^{\circ}C$에서의 플라크 형성으로 확인하였다. 접합체들은 $10^2~10^3$단위로 플라크를 형성하였고, 안정성를 조사한 신파 4주 후에도 대부분이 RP4: :Mu cts의 성질을 유지하고 있는 것으로 나타났다.

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콩에서 분리한 근류균의 생리, 생화학적 특성 (Physiological and Biochemical Properties of Isolates of Rhizobia from Soybean)

  • 박기선;최재을
    • 한국식물병리학회지
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    • 제12권3호
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    • pp.351-357
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    • 1996
  • 콩으로부터 분리한 140균주의 근류균은 25균주(17.9%)가 Rhizobium fredii로 115 균주(82.1%)가 Brady-rhizobium japonicum으로 동정되었다. R. fredii에 속하는 분리 균주의 생존 pH 범위는 4..5∼9.0이었고 B. japonicum의 생육 pH 범위는 5.5∼8.0로 비교적 좁게 나타났다. B. japonicum에 속하는 98균주 중에서는 53균주(54%)가 IAA를 생산하지 않는 GT I group으로, 45균주(46%)는 IAA를 생산하는 GT II group으로 명확하게 구분되었으며, 항생물질에 대한 내성 유무에 의해 10개의 group으로 구분되었다.

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한국 논에서 분리한 Azospirillum 속 균주의 Megaplasmid 분리와 Rhizobium meliloti nod ABC 유전자와의 상동성 (Isolation of Megaplasmids from Azospirillum spry. Isolated from Korean Paddy Field and Their Homology to nod ABC Gene from Rhizobium meliloti)

  • 서현창;유익동
    • 한국식품영양학회지
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    • 제5권1호
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    • pp.41-48
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    • 1992
  • Megaplasmids of Azospirillum strains isolated in the Korean paddy field were identified. Five megaplasmids were identified from Azospirillum lipoferum AS192. Homology between nod ABC gene of Rhizobium meliloti and megaplasmids of Azospirillum lipoferum AS192 and Azospirillum brasilense AS112 was found. This observation might have reflected a common mechanism in the early process of soil bacterial association with plants.

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Rhizobium meliloti와 bradyrhizobium japonicum의 ribosomal RNA 유전자에 관한 연구 (Studies on the riboxomal RNA genes of rhizobium meliloti and bradyrhizobium japonicum)

  • 강홍규;김달웅;하지홍
    • 미생물학회지
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    • 제26권4호
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    • pp.312-317
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    • 1988
  • The genes for ribosomal RNA in Rhizobium meliloti and Bradyrhizobium japonicum were analyzed by southern hybridization of BamHI, EcoRI, HindIII digested chromosomal DNA with purified 5' $^{32}P$-labeled 16S and 23S rRNA. The big differences in the hybridization pattern of both rhizobia were found. The comparative results were discussed in relation to the copy number and conservativity of restriction sites in the rRNA genes of both rhizobia.

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수종(數種) Rhizobium의 편모에 대한 전자현미경적(電子顯微鏡的) 관찰(觀察) (Electron Microscopical Observation on the Flagella of Several Species of the Genus Rhizobium)

  • 안경준;이웅직
    • Applied Microscopy
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    • 제8권1호
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    • pp.9-15
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    • 1978
  • Five strains of the Genus Rhizobium were isolated from the nodules of five leguminous plants respectively. They were identified according to Bergey's Manual together with the results of Vincent. The flagella of each strains were observed by electron microscope using negative staining with PTA and metal shadowing with chromium. Five host plants and identified Rhizobium strains were as. follows. Pisum sativum.....R. leguminosarum Phaseolus vulgaris.....R. phaseoli Trifolium repens.....R. trifolii Glycine max.....R. japonicum Lupinus grandiflorus.....R. lupini Electron micrographs showed that R. leguminosarum and R. phaseoli had 4 peritrichous flagella, where as R. trifolii had 5 peritrichous flagella. On the other hand, R. japonicum and R. lupini had 1 subpolar flagellum.

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Rhizobium trifolii의 스트렙토마이신 내성 돌연변이주의 특성 (Studies on streptomycin resistant mutant strains of rhizobium trifolii)

  • 신종희;허연주;이영록
    • 미생물학회지
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    • 제25권4호
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    • pp.290-296
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    • 1987
  • Some streptomycin resistant strains of Rhizobium trifolii having nodulation ability were selected, and their nitrogenase activities, symbiotic effects on plant growth, and nodule electronmicroscope were compared with those of the wild type. After NTG treatment, as a mutagen, at the concentration exhibiting 99.7% lethal rate, 5 strains of streptomycin resistant mutant having nodulating ability were selected. Among these nodulating mutant strains, 3 strains produced more nodules and 2 strains showed less nodules than wild type. But their nitrogenase activities were decreased significantly, and nodule formation time was also delay compared with those of the wild type, and there was no remarkable difference in effects on plant growth. Microstructure of nodules by electronmicroscopy had mant distinctive differences between red clover nodules inoculated with wild type and mutants.

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Responses of Pea Varieties to Rhizobium Inoculation: Nitrogenase Activity, Dry Matter Production and Nitrogen Uptake

  • Solaiman, A.R.M.;Khondaker, M.;Karim, A.J.M.S.;Hossain, M.M.
    • 한국작물학회지
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    • 제48권5호
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    • pp.361-368
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    • 2003
  • The responses of five varieties and three cultivars of pea (Pisum sativum) to Rhizobium inoculation on nodulation, growth, nitrogenase activity, dry matter production and N uptake were investigated. The pea varieties were IPSA Motorshuti-l, IPSA Motorshuti-2, IPSA Motorshuti-3, BARI Motorshuti-l, BARI Motorshuti-2 and the cultivars were 063, Local small and Local white. Fifty percent seeds of each pea variety/cultivar were inoculated with a mixture of Rhizobium inoculants at rate of 15g/kg seed and the remaining fifty percent seeds were kept uninoculated. The plants inoculated with Rhizobium inoculant significantly increased nodulation, growth, nitrogenase activity, dry matter production and N uptake. Among the varieties/cultivars, BARI Motorshuti-l performed best in almost all parameters including nitrogenase activity of root nodule bacteria of the crop. There were positive correlations among the number and dry weight of nodules (r=$0.987^{**}$, $0.909^{**}$), nitrogenase activity of root nodule bacteria (r=$0.944^{**}$, $0.882^{**}$), dry weight of shoot (r=$0.787^{**}$, $0.952^{**}$), N content (r=$0.594^{**}$, $0.605^{**}$) and N uptake (r=$0.784^{**}$, $0.922^{**}$) by shoot both at flowering and pod filling stages of the crop, respectively. It was concluded that BARI Motorshuti-l in symbiotic association with Rhizobium inoculant performed best in recording nitrogenase activity, dry matter production and N uptake by pea.