• 제목/요약/키워드: NlBP

검색결과 4건 처리시간 0.022초

참서대과(Pisces: Cynoglossidae) 자어 2종의 미토콘드리아 DNA에 의한 형태동정의 타당성 (Validation of Morphology-based Identification of Two Cynoglossidae Larvae using Mitochondrial DNA)

  • 권혁준;김진구
    • 한국수산과학회지
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    • 제43권5호
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    • pp.482-488
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    • 2010
  • Three specimens of Cynoglossidae larvae were collected from the southern Korean Sea in May and August of 2009, and were identified using morphological and molecular analysis. Specimens were divided into two groups based on the number of elongated dorsal fin rays on the top of the head: Cynoglossidae sp. A was defined as having two elongated dorsal fin rays, while Cynoglossidae sp. B possessed a single elongated dorsal fin ray. One specimen of Cynoglossidae sp. A, a post-larva with a notochord length (NL) of 5.8 mm was thought to be a Cynoglossus joyneri larva based on the presence of 115 dorsal pterogiophores, 85 anal pterogiophores, and 50 myomeres. Two specimens of Cynoglossidae sp. B, a 4.1 mm NL larva and a 11.3 mm NL juvenile, were thought to be Cynoglossus abbreviatus based on the presence of yolk in the former and 133 dorsal fin rays, 105 anal fin rays, and 63 myomeres in the latter. To test this morphology-based identification, molecular analysis was conducted using 419-422 bp of mitochondrial DNA 16S rRNA. Cynoglossidae sp. A was clearly matched to a Cynoglossus joyneri adult (d=0.000) and Cynoglossidae sp. B clustered closely with Cynoglossus abbreviatus adults (d=0.002). A neighbor-joining tree supported this robust relationship (bootstrap value=100%). Therefore, these molecular data validate the morphological identification of the two Cynoglossidae larval species.

Blood Pressure Simulation using an Arterial Pressure-volume Model

  • Yoon, Sang-Hwa;Kim, Jae-Hyung;Ye, Soo-Young;Kim, Cheol-Han;Jeon, Gye-Rok
    • Transactions on Electrical and Electronic Materials
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    • 제9권1호
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    • pp.38-43
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    • 2008
  • Using an arterial pressure-volume (APV) model, we performed an analysis of the conventional blood pressure estimation method using an oscillometric sphygmomanometer with computer simulation. Traditionally, the maximum amplitude algorithm (MAA) has been applied to the oscillation waveforms of the APV model to obtain the mean arterial pressure and the characteristic ratio. The estimation of mean arterial pressure and characteristic ratio was significantly affected by the shape of the blood pressure waveforms and the cutoff frequency of high-pass filter (HPF) circuitry. Experimental errors result from these effects when estimating blood pressure. To determine an algorithm independent of the influence of waveform shapes and parameters of HPF, the volume oscillation of the APV model and the phase shift of the oscillation with fast Fourier transform (FFT) were tested while increasing the cuff pressure from 1 mmHg to 200 mmHg (1 mmHg/s). The phase shift between ranges of volume oscillation was then only observed between the systolic and the diastolic blood pressures. The same results were obtained from simulations performed on two different arterial blood pressure waveforms and one hyperthermia waveform.

Bacillus alcalophilus AX2000 유래 xylanase 유전자 (XynT)의 Cloning과 염기서열 분석 (Molecular Cloning and Nucleotide Sequence of Xylanase gene (xynT) from Bacillus alcalophilus AX2000.)

  • 박영서
    • 생명과학회지
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    • 제15권5호
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    • pp.734-738
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    • 2005
  • Xylanase를 생산하는 알칼리 내성 Bacillus alcalophilus AX2000의 chromosomal DNA로부터 xylanase 유전자를 cloning하여 그 염기배열 순서를 결정한 다음 이로부터 유전자 발현에 관련된 구조를 분석하였다. Xylanase 유전자의 cloning을 위해 제한효소 PstI으로 절단한 B. alcalophilus AX2000의 chromosomal DNA와 pUC19을 ligation 시켜 E. coli $DH5\alpha$에 형질전환시킨 후 형질전환체 중에서 xylanase 활성을 나타내는 재조합 plasmid pXTY99를 분리하였다. 재조합 plasmid pXTY99은 pUC19의 PstI 부위 내에 7kb의 외래 DNA가 삽입 되 었다. Cloning된 xylanase 유전자(xynT)의 염기배열을 분석한 결과 유전자의 크기는 1,020 bp이었고 이는 340개의 아미노산으로 구성된 분자량 40 kDa의 poly-peptide를 coding하고 있었다. 이 염기배열은 AUG 개시 codon으로부터 각각 259와 282 base상류에 TACAAT의 -10 box와 GTTCACA인 -35 box로 추정되는 염기배열이 존재하였으며 ribosome 결합부위가 존재하였다. B. alcalophilus AX2000의 xylanase와 아미노산배열의 유사성이 가장 높은 xylanase는 Bacillus sp. N137과 B. stearothemophilus 21 유래의 xylanase로 각각 $61\%$$59\%$의 유사성을 나타내었다.

Construction of Mammalian Cell Expression Vector for pAcGFP-bFLIP(L) Fusion Protein and Its Expression in Follicular Granulosa Cells

  • Yang, Run Jun;Li, Wu Feng;Li, Jun Ya;Zhang, Lu Pei;Gao, Xue;Chen, Jin Bao;Xu, Shang Zhong
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권3호
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    • pp.401-409
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    • 2010
  • FLICE inhibitory protein (FLIP) is one of the important anti-apoptotic proteins in the Fas/FasL apoptotic path which has death effect domains, mimicking the pro-domain of procaspase-8. To reveal the intracellular signal transduction molecules involved in the process of follicular development in the bovine ovary, we cloned the c-FLIP(L) gene in bovine ovary tissue with the reverse transcription polymerase chain reaction (RT-PCR), deleted the termination codon in its cDNA, and directionally cloned the amplified c-FLIP(L) gene into eukaryotic expression vector pAcGFP-Nl, including AcGFP, and successfully constructed the fusion protein recombinant plasmid. After identifying by restrictive enzyme BglII/EcoRI and sequencing, pAcGFP-bFLIP(L) was then transfected into follicular granulosa cells, mediated by Lipofectamine 2000, the expression of AcGFP observed and the transcription and expression of c-FLIP(L) detected by RT-PCR and Western blot. The results showed that the cattle c-FLIP(L) was successfully cloned; the pAcGFPbFLIP(L) fusion protein recombinant plasmid was successfuly constructed by introducing a BglII/EcoRI cloning site at the two ends of the c-FLIP(L) open reading frame and inserting a Kozak sequence before the start codon. AcGFP expression was detected as early as 24 h after transfection. The percentage of AcGFP positive cells reached about 65% after 24 h. A 1,483 bp transcription was amplified by RT-PCR, and a 83 kD target protein was detected by Western blot. Construction of the pAcGFP-bFLIP(L) recombinant plasmid should be helpful for further understanding the mechanism of regulation of c-FLIP(L) on bovine oocyte formation and development.