• 제목/요약/키워드: m-transformation

검색결과 1,268건 처리시간 0.031초

Laccase를 이용한 Triclosan의 처리 (Oxidative Transformation of Triclosan by Laccase)

  • 김영진
    • 한국환경보건학회지
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    • 제31권1호
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    • pp.61-65
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    • 2005
  • The oxidative transformation of triclosan with laccase from Trametes versicolor was conducted in a closed, temperature controlled system containing phosphate buffer for pH control. The optimum pH for triclosan transformation showed about 5. Despite the observation that elevated temperatures tended to inactivate the enzyme, increased transformation of triclosan was observed up to $50^{\circ}C$. Of the mediators studied, ABTS was most successful at enhancing triclosan transformation. About 80% of the toxicity of the initial mixture was reduced after the enzymatic treatment. In the presence of 1.0 mM of anions such as sulfite, sulfide, and cyanide, triclosan transformation was greatly inhibited. Chloride and fluoride ions exhibited inhibition of triclosan transformation at 25 mM. Ferric ion substantially inhibited triclosan transformation at 1.0 mM.

Agrobacterium-Mediated Co-transformation of Multiple Genes in Metarhizium robertsii

  • Padilla-Guerrero, Israel Enrique;Bidochka, Michael J.
    • Mycobiology
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    • 제45권2호
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    • pp.84-89
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    • 2017
  • Fungi of the Metarhizium genus are a very versatile model for understanding pathogenicity in insects and their symbiotic relationship with plants. To establish a co-transformation system for the transformation of multiple M. robertsii genes using Agrobacterium tumefaciens, we evaluated whether the antibiotic nourseothricin has the same marker selection efficiency as phosphinothricin using separate vectors. Subsequently, in the two vectors containing the nourseothricin and phosphinothricin resistance cassettes were inserted eGFP and mCherry expression cassettes, respectively. These new vectors were then introduced independently into A. tumefaciens and used to transform M. robertsii either in independent events or in one single co-transformation event using an equimolar mixture of A. tumefaciens cultures. The number of transformants obtained by co-transformation was similar to that obtained by the individual transformation events. This method provides an additional strategy for the simultaneous insertion of multiple genes into M. robertsii.

전기천공법에 의한 Bacillus brevis P176-2의 형질전환 (Transformation of Bacillus brevis P176-2 with Plasmid DNA by Electroporation)

  • 채기수;엄경일
    • 한국식품영양학회지
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    • 제5권2호
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    • pp.77-83
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    • 1992
  • The optimum conditions and mechanisms for the plasmid-mediated genetic transformation of intact cells of Bacillus brevis Pl76-2, an extracellular protein producing bacterium by electroporation were investigated. It was found that pUB110 Plasmid DNA can be introduced into intact bacterial cells by electroporation. The frequency of transformation by this electroporation system depended upon the initial electric field strength, the capacity of the electric discharge capacitor, growth stage, number of successive pulses and composition of electroporation buffer. It was effective for transformation that cells were harvested, washed and resuspended with HSM [7M HEPES(PH 7.4), 272mM sucrose, 1 mM MgCl2] electroporation buffer when cell growth was attained to 1.2 at OD660. A maximum frequency of transformation of 2.40$\times$104 transformants per$\mu$g plasmid DNA was obtained by two succesive Pulses with an initial electric field strength of 12.5kV/cm and with a capacitance of 7.3uF.

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설명가능한 인공지능을 통한 마르텐사이트 변태 온도 예측 모델 및 거동 분석 연구 (Study on predictive model and mechanism analysis for martensite transformation temperatures through explainable artificial intelligence)

  • 전준협;손승배;정재길;이석재
    • 열처리공학회지
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    • 제37권3호
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    • pp.103-113
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    • 2024
  • Martensite volume fraction significantly affects the mechanical properties of alloy steels. Martensite start temperature (Ms), transformation temperature for martensite 50 vol.% (M50), and transformation temperature for martensite 90 vol.% (M90) are important transformation temperatures to control the martensite phase fraction. Several researchers proposed empirical equations and machine learning models to predict the Ms temperature. These numerical approaches can easily predict the Ms temperature without additional experiment and cost. However, to control martensite phase fraction more precisely, we need to reduce prediction error of the Ms model and propose prediction models for other martensite transformation temperatures (M50, M90). In the present study, machine learning model was applied to suggest the predictive model for the Ms, M50, M90 temperatures. To explain prediction mechanisms and suggest feature importance on martensite transformation temperature of machine learning models, the explainable artificial intelligence (XAI) is employed. Random forest regression (RFR) showed the best performance for predicting the Ms, M50, M90 temperatures using different machine learning models. The feature importance was proposed and the prediction mechanisms were discussed by XAI.

생물방제균 Pseudomonas stutzeri YPL-1의 형질전환 조건 (Transformation of Antagonistic Pseudomonas stutzeri YPL-1 against Root Rotting Fungi Fusarium solani by Plasmid DNA)

  • 김용수;김상달
    • 한국미생물·생명공학회지
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    • 제18권5호
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    • pp.454-459
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    • 1990
  • 식물근부균 Fusarium solani의 생육을 강력히 길항하는 생물방제균 Pseudomonas stutzeri YPL-1에 외부유전자 도입을 통한 유전공학적 육종방법의 기초를 확립하고자 하였다. 이를 위해 plasmid pKT230을 vector로 하여 형질전환의 가능성을 조사하였으며 이때, 혈질전환에 필요한 최적조건을 조사한 결과 P.stutzeri YPL-1의 형질전환에는 대수증식기 초기의 균체가 가장 적합하였고, 20mM RbCl과 100mM $CaCl_2$를 함유한 냉각용액에 1${\mu}g$/ml의 plasmid DNA를 첨가하였을 때 최대의 형질전환 빈도를 나타내었다. 또한 plasmid DNA와 competent cell를 혼합한 후 $0^{\circ}C$에서 60분간 처리하는 것이 가장 효과적이었으며 이와 같은 조건에서 형질전환 빈도는 2~$6 \times 10^{-6}$으로 나타났다.

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좌표변환 기반의 두 자세 정렬 기법 비교 (Comparison between Two Coordinate Transformation-Based Orientation Alignment Methods)

  • 이정근;정우창
    • 센서학회지
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    • 제28권1호
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    • pp.30-35
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    • 2019
  • Inertial measurement units (IMUs) are widely used for wearable motion-capturing systems in the fields of biomechanics and robotics. When the IMUs are combined with optical motion sensors (hereafter, OPTs) for their complementary capabilities, it is necessary to align the coordinate system orientations between the IMU and OPT. In this study, we compare the application of two coordinate transformation-based orientation alignment methods between two coordinate systems. The first method (M1) applies angular velocity coordinate transformation, while the other method (M2) applies gyroscopic angle coordinate transformation. In M1 and M2, the angular velocities and angles, respectively, are acquired during random movement for a least-square algorithm to determine the alignment matrix between the two coordinate systems. The performance of each method is evaluated under various conditions according to the type of motion during measurement, number of data points, amount of noise, and the alignment matrix. The results show that M1 is free from drift errors, while drift errors are present in most cases where M2 is applied. Thus, this study indicates that M1 has a far superior performance than M2 for the alignment of IMU and OPT coordinate systems for motion analysis.

Fe-Mn 합금의 γ→ε 마르텐사이트변태에 필요한 구동력 (Driving Forces for γ→ε Martensitic Transformation of Fe-Mn Alloys)

  • 이영국;최종술
    • 열처리공학회지
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    • 제9권4호
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    • pp.243-251
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    • 1996
  • Dilatometric experiment and thermodynamic calculation have been performed to determine $M_s$, $A_s$ and driving forces for ${\gamma}{\rightarrow}{\varepsilon}$ martensitic transformation of Fe-Mn alloys. The transformation temperatures($M_s$, $A_s$, $T_o) were decreased with increasing manganese content and were newly formulated as a function of manganese content. Driving force for ${\gamma}{\rightarrow}{\varepsilon}$ martensitic transformation was increased from -75J/mole to -105J/mole with increasing manganese content from 15wt.% to 25wt.%. Transformation temperature hysteresis($A_s-M_s$) was also increased from 50K to 80K with increasing mangenese content from 15wt.% to 25wt.%. The small driving force(-75J/mole~-105J/mole) and small ${\Delta}T$(50K~80K) for ${\gamma}{\rightarrow}{\varepsilon}$ martensitic transformation indicated that Fe-Mn alloys behave like thermoelastic martensitic alloys : We would like to call them semi-thermoelastic martensitic alloys.

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Digital Transformation, Manipulation of Asset Evaluation and M&A Performance: Discussion on the Intermediary Effect of Internal Control

  • Chen Chen;Hee-Jung Lee;Nan Hui;Xue-Hua Qian
    • 아태비즈니스연구
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    • 제14권1호
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    • pp.1-19
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    • 2023
  • Purpose - The purpose of this study was to examine the internal relevance between digital transformation, manipulation of asset evaluation and corporate M&A performance and further explores the impact path of manipulation of asset valuation on corporate M&A performance. Design/methodology/approach - This study based on the financial data of A-share listed companies in Shanghai and Shenzhen Stock Exchanges from 2013 to 2021. Findings - First, manipulation of asset evaluation is negatively correlated with M&A performance. Second, Digital transformation significantly weakens the negative correlation between manipulation of asset evaluation and corporate M&A performance. Third, The effectiveness of internal control plays a partially intermediary role in the process of manipulation of asset evaluation affecting M&A performance. Research implications or Originality - Enriching the existing literature on the subject, the study can also provide useful reference for improving the performance of corporate mergers and acquisitions, regulating asset valuation, promoting the digital transformation of enterprises and improving internal control mechanisms, with both theoretical and practical implications.

A NOTE ON COMPACT MÖBIUS HOMOGENEOUS SUBMANIFOLDS IN 𝕊n+1

  • Ji, Xiu;Li, TongZhu
    • 대한수학회보
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    • 제56권3호
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    • pp.681-689
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    • 2019
  • The $M{\ddot{o}}bius$ homogeneous submanifold in ${\mathbb{S}}^{n+1}$ is an orbit of a subgroup of the $M{\ddot{o}}bius$ transformation group of ${\mathbb{S}}^{n+1}$. In this note, We prove that a compact $M{\ddot{o}}bius$ homogeneous submanifold in ${\mathbb{S}}^{n+1}$ is the image of a $M{\ddot{o}}bius$ transformation of the isometric homogeneous submanifold in ${\mathbb{S}}^{n+1}$.