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A genetic approach to comprehend the complex and dynamic event of floral development: a review

  • Jatindra Nath Mohanty;Swayamprabha Sahoo;Puspanjali Mishra
    • Genomics & Informatics
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    • v.20 no.4
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    • pp.40.1-40.8
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    • 2022
  • The concepts of phylogeny and floral genetics play a crucial role in understanding the origin and diversification of flowers in angiosperms. Angiosperms evolved a great diversity of ways to display their flowers for reproductive success with variations in floral color, size, shape, scent, arrangements, and flowering time. The various innovations in floral forms and the aggregation of flowers into different kinds of inflorescences have driven new ecological adaptations, speciation, and angiosperm diversification. Evolutionary developmental biology seeks to uncover the developmental and genetic basis underlying morphological diversification. Advances in the developmental genetics of floral display have provided a foundation for insights into the genetic basis of floral and inflorescence evolution. A number of regulatory genes controlling floral and inflorescence development have been identified in model plants such as Arabidopsis thaliana and Antirrhinum majus using forward genetics, and conserved functions of many of these genes across diverse non-model species have been revealed by reverse genetics. Transcription factors are vital elements in systems that play crucial roles in linked gene expression in the evolution and development of flowers. Therefore, we review the sex-linked genes, mostly transcription factors, associated with the complex and dynamic event of floral development and briefly discuss the sex-linked genes that have been characterized through next-generation sequencing.

Silencing of the Target of Rapamycin Complex Genes Stimulates Tomato Fruit Ripening

  • Choi, Ilyeong;Ahn, Chang Sook;Lee, Du-Hwa;Baek, Seung-A;Jung, Jung Won;Kim, Jae Kwang;Lee, Ho-Seok;Pai, Hyun-Sook
    • Molecules and Cells
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    • v.45 no.9
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    • pp.660-672
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    • 2022
  • The target of rapamycin complex (TORC) plays a key role in plant cell growth and survival by regulating the gene expression and metabolism according to environmental information. TORC activates transcription, mRNA translation, and anabolic processes under favorable conditions, thereby promoting plant growth and development. Tomato fruit ripening is a complex developmental process promoted by ethylene and specific transcription factors. TORC is known to modulate leaf senescence in tomato. In this study, we investigated the function of TORC in tomato fruit ripening using virus-induced gene silencing (VIGS) of the TORC genes, TOR, lethal with SEC13 protein 8 (LST8), and regulatory-associated protein of TOR (RAPTOR). Quantitative reverse transcription-polymerase chain reaction showed that the expression levels of tomato TORC genes were the highest in the orange stage during fruit development in Micro-Tom tomato. VIGS of these TORC genes using stage 2 tomato accelerated fruit ripening with premature orange/red coloring and decreased fruit growth, when control tobacco rattle virus 2 (TRV2)-myc fruits reached the mature green stage. TORC-deficient fruits showed early accumulation of carotenoid lycopene and reduced cellulose deposition in pericarp cell walls. The early ripening fruits had higher levels of transcripts related to fruit ripening transcription factors, ethylene biosynthesis, carotenoid synthesis, and cell wall modification. Finally, the early ripening phenotype in Micro-Tom tomato was reproduced in the commercial cultivar Moneymaker tomato by VIGS of the TORC genes. Collectively, these results demonstrate that TORC plays an important role in tomato fruit ripening by modulating the transcription of various ripening-related genes.

Comparison of the Real-Time Nucleic Acid Sequence-Based Amplification (NASBA) Assay, Reverse Transcription-PCR (RT-PCR) and Virus Isolation for the Detection of Enterovirus RNA. (엔테로바이러스 검출을 위한 real-time nucleic acid sequence-based amplification (NASBA), reverse transcription-PCR (RT-PCR) 및 바이러스 배양법의 비교)

  • Na, Young-Ran;Joe, Hyeon-Cheol;Lee, Young-Suk;Bin, Jae-Hun;Cheigh, Hong-Sik;Min, Sang-Kee
    • Journal of Life Science
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    • v.18 no.3
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    • pp.374-380
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    • 2008
  • Rapid detection of enterovirus (EVs) is important in the management of aseptic meningitis. We examined the relative efficiency and specificity of the real-time nucleic acid sequence-based amplification (NASBA) comparing with the established reverse transcription polymerase chain reaction (RT-PCR) and viral culture method which were used for the detection of enterovirus RNA in clinical specimens. Of the total 292 samples, 145 were found to be positive to enterovirus RNA by real-time NASBA, 101 were positive by viral culture, and 86 were positive by RT-PCR. 147 samples and 46 samples were determined to be negative and positive by all methods respectively, but 4 samples were positive only by real-time NASBA. To compare the specificity of each method, various clinical samples which were diagnosed for herpes simplex virus (HSV)-1, HSV-2, adenovirus, mumps, and rhinovirus were applied. Except one rhinovirus sample which was false positive to enterovirus RNA by RT-PCR, the other different samples were negative to all three methods. The real-time NASBA procedure can be completed within 5 hours in contrast with 9 hours for the RT-PCR and 3-14 days for the viral culture. From this study, it was suggested that the real-time NASBA assay could be a standardized, rapid, specific, and sensitive procedure for the detection of enterovirus RNA.

Anti-inflammatory Activities Verification of Vaccinum oldhami Fruit Ethanol Extracts on RAW 264.7 (RAW 264.7을 이용한 정금나무 열매(Vaccinum oldhami fruit)의 항염증 효과)

  • Lee, Jin-Young;Joo, Da-Hye;Yoo, Dan-Hee;Chae, Jung-Woo
    • Journal of Life Science
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    • v.27 no.4
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    • pp.417-422
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    • 2017
  • The purpose of this study was to investigate the role of the Vaccinum oldhami fruit extract as a cosmetic additive. As a result of having macrophage (RAW 264.7) measured a cell toxicity effects of 70% ethanol extract from Vaccinum oldhami fruit, it shown 118% with toxicity at $500{\mu}g/ml$ concentration. In nitric oxide synthesis inhibition effect, 70% ethanol extracts from Vaccinum oldhami fruit shown 47.3% at $1,000{\mu}g/ml$ concentration. The iNOS, COX-2 protein expression inhibitory effect by western blot of 70% ethanol extract from Vaccinum oldhami fruit was decreased by 36.13%, 29.61% at $500{\mu}g/ml$ concentration. And iNOS, COX-2 mRNA expression inhibitory effect by reverse-transcription-PCR of 70% ethanol extract from Vaccinum oldhami fruit was decreased by 62.25%, 90.07% at $500{\mu}g/ml$ concentration. All these finding that extract from Vaccinum oldhami fruit could prove that their have effects anti-inflammatory efficacy. And extract from Vaccinum oldhami fruit has potential as a cosmetic ingredients.

Development of Ultra-Rapid Reverse-Transcription PCR for the Rapid Detection against Slow Bee Paralysis Virus (SBPV) (Slow Bee Paralysis Virus (SBPV) 신속 검출을 위한 초고속 역전사 중합효소 연쇄반응법의 개발)

  • Kim, Somin;Lim, Sujin;Kim, Jungmin;Lim, Yoon-Kyu;Yoon, Byoungsu
    • Journal of Apiculture
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    • v.32 no.3
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    • pp.171-180
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    • 2017
  • Slow Bee Paralysis Virus (SBPV) is a pathogenic virus against honeybee and bumblebee, causes the death of adult bee by paralyzing the fore-leg of bee. In this study, for rapid detection of SBPV from bumblebee, SBPV-specific Ultra-rapid Reverse transcription PCR was developed. After optimizing of SBPV-specific Ultra-rapid PCR, the existence of $1.0{\times}10^8$ SBPV-specific DNA molecules could be recognized in 3 minute and 35 seconds. Even $1.0{\times}10^1$ molecules of SBPV-specific DNA could be measured with quantitative manner. Meanwhile, from both imported bumblebee and bumblebee produced in Korea, SBPV were detected using proposed method. In the laboratory as well as in the field, SBPV-specific Ultra-rapid Reverse transcription PCR would be applied and might be expected as useful tools at production of bumblebee or inspection for the import and export system of bumblebee.

Expression of Enterotoxin Genes in Staphylococcus aureus Isolates Based on mRNA Analysis

  • Lee, Young-Duck;Moon, Bo-Youn;Park, Jong-Hyun;Chang, Hyo-Ihl;Kim, Wang-June
    • Journal of Microbiology and Biotechnology
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    • v.17 no.3
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    • pp.461-467
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    • 2007
  • Staphylococcus aureus strains are important foodborne pathogens that produce various toxins. To evaluate the risk of the enterotoxins, four S. aureus strains from kimbap and two clinical samples were isolated and identified, and their expression of the enterotoxin genes were analyzed using a reverse transcription real-time PCR. Various enterotoxin genes were detected, including sea, seg, seh, sei, sen, seo, and sem, where each isolate contained one or two. When the mRNA detection of the enterotoxin genes was analyzed using a reverse transcriptase PCR, various levels of expression were found depending on the species and enterotoxin gene. Therefore, it is reasonable to suggest that the poisoning risk of S. aureus can be effectively evaluated based on the gene expression at the mRNA level.

Development of Anti-viral Agents from Natural Sources

  • Hattori, Masao
    • Plant Resources
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    • v.4 no.3
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    • pp.192-195
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    • 2001
  • Human immunodeficiency virus (HIV), the causative agent of AIDS, still continues to spread rapidly in the world population, especially in Africa and Southeast Asia. At present, two kinds of therapeutic approaches are used for treatment of AIDS. One is to target HIV reverse transcriptase, which is responsible for the viral genome transcription. The other is to inhibit HIV pretense PR, which is essential for the processing of viral proteins. Drug combinations based on these approaches can reduce the blood virus to an undetectable level. However, a small amount of virus may lurk inside the immune cells in a dormant state. Another major obstacle of long-term treatment of the disease is remarkable mutation in HIV. Most of the clinical chemotherapeutic agents have one or more of these problems. High cost and harmful side-effects further reduced the desirability of these drugs. In the course our studies on development of anti-HIV agents from natural products, we investigated various crude drugs for their inhibitory activity against HIV-induced cytopathic effects (CPE) in culture cells, HIV-pretense (PR), HIV-reverse transcriptase (RT) including ribonuclease H (RNase H), and HIV integrase (INT). In the present paper, some inhibitory substances relating to the development of anti-HIV agents are reported.

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Analysis of Vitellogenin Gene Expression in Synechogobius hastus (Gobiidae) (풀망둑 난황전구단백질 유전자발현 추적기법)

  • 계명찬
    • Korean Journal of Environmental Biology
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    • v.22 no.1
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    • pp.206-212
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    • 2004
  • In an effort to develop the tools for monitoring the contamination of xenoestrogen in the aquatic environment of Korea, reverse transcription-polymerase chain reaction (RT-PCR) analysis of vitellogenin (VTG) mRNA expression were optimized in Synechogobius hastus. Based on the partial VTG cDNA sequence VTG mRNA level in livers from male fishes was analyzed by RT-PCR. As an internal control beta actin mRNA was amplified. 3 ${\mu}g$ of total RNA was reverse transcribed in 20 $\mu$l reaction using murine leukemia virus 〔MuLV〕 reverse transcriptase. Subsequent PCR using the 1 ${\mu}g$ of cDNA resulted in linear increase in PCR product of VTG in female liver cDNA from 10 to 30 cycles of amplification. On the contrary, in male, PCR product first detected at 28 cycles of amplification and linearly increased during 38 cycles of amplification, suggesting that male S. hastus expresses minute amount of VTG mRNA which is $2^{-18}$ equivalent of female. In conclusion, the optimized protocol of VTG mRNA expression in the liver of male S. hastus will be promising the environmental monitoring the xenoestrogen contamination in the western coast and estuaries in Korea.

Cloning of Reverse Transcriptase Gene of Avian Sarcoma Virus (역전사효소(逆轉寫酵素) 유전자(遺傳子)의 cloning 에 관(關)한 연구(硏究))

  • Kim, Yong-Woong;Kim, Kwang-Sik;Suh, Yong-Tack;Guntaka, R.V.
    • Applied Biological Chemistry
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    • v.31 no.3
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    • pp.219-225
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    • 1988
  • Reverse transcriptase gene of Avian sarcoma virus(ASV) was cloned with a thermoinducible expression vector, pPL-lambda. E. coli N4830 which carries temperature sensitive cI857 la mbda repressor, was transformed with this pPL-pol plasmid DNA. The RNA transcribed by those tranoformants was isolated and analyzed. It was shown that the inserted reverse transcriptase gene of ASV was transcribed at high-level when cells were grown at high temperature.

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Control of Influenza: Live Vaccine Development

  • Seong, Baik-Lin
    • Proceedings of the PSK Conference
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    • 2002.10a
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    • pp.149-150
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    • 2002
  • Despite various efforts on improving vaccines and antivirals, influenza epidemics continue to afflict many people, causing widespread morbidity and mortality in the young and the elderly. Since the discovery of the unusual 'cap-stealing'mechanism of transcription, significant advances were made on molecular aspects of influenza gene regulation. This provides new insights for developing new antiviral compounds. Reverse genetic technologies have also been advanced for generating recombinant chimeric viruses suitable for designing live vaccine. (omitted)

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