Academic literature on the topic 'Prokariot'

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Journal articles on the topic "Prokariot"

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Elvara, Ramasta Nesya, Muhammad Nurdin, Ivayani Ivayani, and Suskandini Ratih Dirmawati. "EKSPLORASI MIKROORGANISME PROKARIOT ASAL BONGGOL PISANG UNTUK MENGENDALIKAN PENYAKIT LAYU FUSARIUM PADA TANAMAN PISANG SECARA IN VITRO." Jurnal Agrotek Tropika 11, no. 2 (2023): 309. http://dx.doi.org/10.23960/jat.v11i2.7186.

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Fusarium oxysporum f. sp cubense (E.F.Smith) Snyder dan Hansen (Foc) merupakan patogen yang menyebabkan penyakit layu fusarium pada tanaman pisang. Saat ini usaha pengendalian masih menggunakan pengendalian kimiawi, namun pengendalian kimiawi yang berlebihan dapat menimbulkan kerugian pada manusia dan lingkungan. Salah satu alternatif yaitu menggunakan agensi hayati yang berasal dari fermentasi bahan-bahan alami yang mengandung mikroorganisme lokal (MOL). Salah satu limbah pertanian yang dapat digunakan dalam membuat larutan MOL adalah bonggol pisang. Kandungan gizi dalam bonggol pisang dapat
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Nafisah, Zahrotun, Afaf Baktir та Zimon Pereiz. "Konstruksi Pustaka Metagenom Prokariot Dari Permukaan Eucheuma Cottonii Untuk Mencari Gen Penyandi Κ-Karaginase". Jurnal Indonesia Sosial Teknologi 4, № 4 (2023): 497–507. http://dx.doi.org/10.59141/jist.v4i4.613.

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κ-Karaginan adalah koloid hidrofilik yang diekstrak dari makroalga Eucheuma cottonii. κ-karaginan mempunyai berat molekul yang sangat besar sehingga pemanfaatannya terbatas. Namun, dalam bentuk Carrageenan Oligosaccharide (COs), κ-karaginan mempunyai aktivitas fisik dan biologi yang bervariasi, termasuk anti tumor, anti oksidan dan anti angiogenik. Enzim κ-karaginase berperan memutus ikatan β-(1,4) pada κ-karaginan untuk menghasilkan κ-COs (κ-carrageenan oligosaccharide). Ada berbagai macam bakteri yang hidup di permukaan Eucheuma cottonii, namun hanya ada 1% bakteri yang dapat dikultur. Metod
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Ergasheva, Elnura Toxir qizi. "BIOLUMINESANS VA EKOLOGIK MUVOZANAT." Journal of International science networks 1, no. 5 (2025): 30–33. https://doi.org/10.5281/zenodo.15381975.

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Qorong‘ida porlayotgan o‘simliklarni olish istiqbollari olimlar va oddiy odamlarning tasavvurini o‘ziga jalb qiladi. Yorug‘lik emissiyasi genlarni ifodalashning foydali belgisi sifatida ishlab chiqilgan bo‘lsa-da, o‘simliklardagi bioluminesans tashqi tomondan ta’minlangan substratga bog‘liq bo‘lib qoldi. Prokariot genlarni ifodalash mexanizmining evolyutsion saqlanishi, avtonom yorug‘lik chiqarishga qodir bo‘lgan o‘simliklar hosil qiluvchi xloroplastlarda lyuks operonning olti genini ifodalashga imkon berdi. Ushbu ish prok
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Hardianto, Dudi, Alfik Indarto, and Nurtjahjo Dwi Sasongko. "OPTIMASI METODE LISIS ALKALI UNTUK MENINGKATKAN KONSENTRASI PLASMID." Jurnal Bioteknologi & Biosains Indonesia (JBBI) 2, no. 2 (2015): 60. http://dx.doi.org/10.29122/jbbi.v2i2.510.

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Plasmids are extra chromosomal molecules of DNA that replicate autonomously and found in prokaryote and eukaryote cells. There are a number of methods that are used to isolate plasmids, such as alkaline lysis, boiling lysis, using cesium chloride, and chromatography. Amongst the disadvantages in plasmid isolation methods are lengthy time especially when handling a large number of samples, high cost, and low purity. Alkaline lysis is the most popular for plasmid isolation because of its simplicity, relatively low cost, and reproducibility. This method can be accomplished in 50 minutes to one ho
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Anasari, Selvi, Muhammad Nurdin, Ivayani Ivayani, and Suskandini Ratih. "EKSPLORASI MIKROORGANISME PROKARIOT ASAL BONGGOL PISANG UNTUK MENGENDALIKAN PENYAKIT LAYU BAKTERI (Ralstonia solanacearum Smith) TANAMAN PISANG SECARA IN VITRO." Jurnal Agrotek Tropika 10, no. 3 (2022): 461. http://dx.doi.org/10.23960/jat.v10i3.6107.

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Pemilihan bonggol tanaman pisang sebagai bahan baku MOL yaitu untuk mengurangi limbah perkebunan pisang dan para petani pisang lebih mudah mendapatkannya serta mengelolanya menjadi larutan MOL. Larutan MOL mengandung unsur hara mikro dan makro serta agensia hayati yang berfungsi sebagai biodekomposer, pupuk hayati, dan biopestisida. Mikroorganisme yang telah didentifikasi pada bonggol pisang antara lain Pseudomonas fluorescens.,Bacillus sp., Aeromonas sp., Aspergillus niger, Azospirillium, Azotobacter dan mikroba selulolitik. Tujuan dilakukannya penelitian ini adalah untuk mengeksplorasi mikro
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Purbani, Debora Christin, Wiwik Ambarwati, Aradea Bujana Kusuma, and Nurlaila Ervina Herliany. "IDENTIFIKASI MIKROALGA LAUT DARI TAMBRAUW, PAPUA BARAT." Jurnal Ilmu dan Teknologi Kelautan Tropis 11, no. 3 (2019): 777–91. http://dx.doi.org/10.29244/jitkt.v11i3.25862.

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Tambrauw merupakan salah satu Kabupaten di Papua Barat, dikenal sebagai daerah mega-biodiversitas, termasuk mikroalga laut yang memiliki peran penting dalam sistem rantai makanan di perairan. Namun di sisi lain keanekaragaman mikroalga laut di daerah ini masih belum banyak diteliti. Penelitian ini dilakukan untuk mengisolasi dan mengidentifikasi mikroalga laut dari Tambrauw berdasarkan pendekatan morfologi dan molekular. Mikroalga laut diisolasi dari sumber alami di Tambrauw, dimurnikan dan dikultur di bawah kondisi standar. Empat belas kultur mikroalga laut dipilih berdasarkan pertumbuhan, ke
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Widyaningtyas, Silvia Tri, Sofy Meilany, and Budiman Bela. "Cloning and expression of Human Papilloma virus type 16 L1 capsid protein in bacteria." Health Science Journal of Indonesia 10, no. 2 (2019): 82–89. http://dx.doi.org/10.22435/hsji.v12i2.2442.

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Latar belakang: Secara alamiah protein kapsid L1 Human Papillomavirus (HPV) tipe 16 dapat mengalami auto assembly untuk membentuk Viral like particle (VLP). Terkait dengan penelitian vaksin HPV, VLP dapat digunakan untuk berbagai keperluan seperti vaksin, pseudovirion atau SpyTag-Spycatcher. Penelitian ini ditujukan untuk mendapatkan plasmid rekombinan yang digunakan untuk produksi protein L1 HPV 16.
 Metode: Gen penyandi protein L1 HPV 16 diklona ke dalam vector pQE80L, suatu plasmid yang mengandung sistem ekspresi untuk prokariota. DNA penyandi HPV 16 L1 disisipkan pada situs restriksi
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A'zamjonova, Moxidil Baxtiyor qizi. "VOLVOKSNAMOLAR HAQIDA QISQACHA." ILM-FAN VA INNOVATSIYA ILMIY-AMALIY KONFERENSIYASI 2, no. 08 (2023): 90–91. https://doi.org/10.5281/zenodo.7961768.

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ushbu tezisda suv o’tlarning biologik va kimyoviy tarkibi, ularning inson va tabiat hayotidagi o’rni haqida yozilgan. Bundan tashqari tezisda volvoksnamolar haida ham qisqacha ma’lumot berilgan.  
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Haselkorn, R. "Prokaryote Photosynthesizers." Science 269, no. 5227 (1995): 1121. http://dx.doi.org/10.1126/science.269.5227.1121.

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Poxton, I. R. "Prokaryote envelope diversity." Journal of Applied Bacteriology 74 (June 1993): 1S—11S. http://dx.doi.org/10.1111/j.1365-2672.1993.tb04337.x.

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Dissertations / Theses on the topic "Prokariot"

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Gomi, Masahiro, Ryusuke Sawada, Masashi Sonoyama, et al. "Comparative proteomics of the prokaryota using secretory proteins." Chem-Bio Informatics Society, 2005. http://hdl.handle.net/2237/9270.

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Sawada, Ryusuke, Runcong Ke, Toshiyuki Tsuji, Masashi Sonoyama, and Shigeki Mitaku. "Ratio of membrane proteins in total proteomes of prokaryota." THE BIOPHYSICAL SOCIETY OF JAPAN, 2007. http://hdl.handle.net/2237/9298.

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Millman, Jonathan Scott Andrews David. "Characterization of membrane-binding by FtsY, the prokaryote SRP receptor /." *McMaster only, 2002.

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Pallejà, Caro Albert. "Computational insights into intergenic regions and overlapping genes among prokaryote genomes." Doctoral thesis, Universitat Rovira i Virgili, 2009. http://hdl.handle.net/10803/8669.

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Computational Insights into Intergenic Regions and Overlapping Genes among Prokaryote Genomes<br/>Tot i la gran varietat d'estils de vida de les espècies bacterianes, tots ells presenten trets arquitectònics comuns. En aquesta tesi s'estudia les regions intergèniques i els solapaments entre gens en els genomes procariotes.<br/>Hem vist que per predir els orígens de replicació, a part de l'anàlisi de la composició de nucleòtids del DNA, es requereix experiments computacionals complementaris per aconseguir millors prediccions. Els solapaments entre gens acostumen a ser curts, respecten el codi g
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Lower, Brian Howard. "Protein O-Kinases in the Archaeon Sulfolobus solfataricus." Diss., Virginia Tech, 2001. http://hdl.handle.net/10919/28471.

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For many years, it has been understood that protein phosphorylation-dephosphorylation constitutes one of the most ubiquitous mechanisms for controlling the functional properties of proteins. Although originally believed to be a eukaryotic phenomenon, protein phosphorylation is now known to occur in all three domains of life <i>Eukarya, Bacteria,</i> and Archaea</i>. Very little is known, however, concerning the origins and evolution of protein phosphorylation-dephosphorylation. Knowledge of the structure and properties of the protein kinases resident in the members of the <i>Archaea</i> repres
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Wittrup, Larsen Marianne. "Expression of a lipase in prokaryote and eukaryote host systems allowing engineering." Doctoral thesis, Stockholm : Skolan för bioteknology, Kungliga Tekniska högskolan, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-11124.

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Liu, Yan. "Spatial and temporal patterns in diatom-prokaryote associations in the Southern Ocean." Electronic Thesis or Diss., Sorbonne université, 2019. https://accesdistant.sorbonne-universite.fr/login?url=https://theses-intra.sorbonne-universite.fr/2019SORUS213.pdf.

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L’interaction entre les micro-organismes a de profondes répercussions sur les cycles biogéochimiques de l’océan. Cependant, la question de savoir comment les microbes s’associent les uns aux autres aux échelles spatiale et temporelle et si les associations de diatom-procaryote et de DOM-procaryote affectent la distribution de ces trois composants est ouverte. Au chapitre 1, nous observons des compositions distinctes de diatomées et de communautés procaryotes parmi les principales zones océaniques. Des relations significatives entre les changements de composition des diatomées et des procaryote
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Nilsson, Therese. "Uttryck av cysteineproteaser HRV 3C, sortase A och TEV på ytan av prokaryota värdceller." Thesis, KTH, Skolan för bioteknologi (BIO), 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-172784.

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Proteases are important enzymes in the biotechnology due to their specific cleavage of substrates. HRV 3C, sortase A and TEV are some examples of cysteine proteases which become more of use lately in applications as removal of affinity tags (3C/TEV) and labelling of proteins (sortase). Here an investigation was made on the proteases by displaying them on two different prokaryotic hosts; E. coli and S. carnosus and to use these to cleave away affinity proteins (Affibody molecule) from other cells with an incorporated cleavage site. Constructs were cloned and incorporated into expressing strains
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মজুমদার, Majumdar কামনা Kamona. "সৈয়দ ওয়ালীউল্লাহ্ র কথাসাহিত্য : বিষয় ও প্রকরণ Saiyad waliullahar kathasahitya : bishoy o prokaron". Thesis, University of North Bengal, 2016. http://hdl.handle.net/123456789/2494.

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Battison, Leila. "Exceptional preservation of cells in phosphate and the early evolution of the biosphere." Thesis, University of Oxford, 2012. http://ora.ox.ac.uk/objects/uuid:a9cbd8d3-7b2f-461e-9f19-9901d2764ba5.

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The Proterozoic period saw some of the most fundamental revolutions in the biological and geological world. During this period, life diversified and set the stage for the radiation of multicellular life, altering the face of the planet in the process. The fossil record of this time is not yet fully understood, and a revisitation of a historically reported fossil deposit in the 1 Ga Torridon rocks of northwest Scotland shows that they host the fossils of the earliest non-marine eukaryotes, as well as a full and diverse fossil assemblage preserved in sedimentary phosphates and shales. Fine scale
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Books on the topic "Prokariot"

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Kelʹ, A. Ė. Nestabilʹnostʹ genomov prokariot po otnoshenii͡u k povtoram. In-t t͡sitologii i genetiki SO AN SSSR, 1988.

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Stottmeister, Ulrich. Das technische Potenzial ungewöhnlicher Prokarioten: Methanoxidierende Bakterien. ill., 2004.

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S, Kulaev I., та Institut biokhimii i fiziologii mikroorganizmov (Akademii͡a︡ nauk SSSR), ред. Aktualʹnye problemy biokhimii ėukariotov i prokariotov: Sbornik nauchnykh trudov. Akademii͡a︡ nauk SSSR, Nauch. t͡s︡entr biologicheskikh issledovaniĭ, In-t biokhimii i fiziologii mikroorganizmov, 1990.

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Institut biokhimii i fiziologii mikroorganizmov (Akademii͡a nauk SSSR), ред. Aktualʹnye problemy biokhimii ėukariotov i prokariotov: Sbornik nauchnykh trudov. Nauch. t͡sentr biologicheskikh issledovaniĭ AN SSSR, 1990.

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W, Lengeler Joseph, Drews G, and Schlegel Hans Günter 1924-, eds. Biology of the prokaryotes. Thieme, 1999.

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A, Nickoloff Jac, and Hoekstra Merl F, eds. DNA damage and repair. Humana Press, 1998.

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Drevsa G. i dr. Lengler Y. Current Microbiology. Prokaryote. In 2 m / Sovremennaya mikrobiologiya. Prokarioty. V 2-kh t. Mir, 2009.

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Welch, Islwyn. Prokaryote Rising. Minerva Press, 1999.

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Cavalucci, Francesco, and Leo Fox. Prokaryote Season. Silver Sprocket, 2023.

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Prokaryote Season. Silver Sprocket, 2023.

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Book chapters on the topic "Prokariot"

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Rosselló-Móra, Ramon. "Prokaryote." In Encyclopedia of Astrobiology. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-11274-4_1280.

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Rosselló-Móra, Ramon. "Prokaryote." In Encyclopedia of Astrobiology. Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-44185-5_1280.

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Frank, J. Howard, J. Howard Frank, Michael C. Thomas, et al. "Prokaryote." In Encyclopedia of Entomology. Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-6359-6_3150.

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Jana, B. B. "Prokaryota." In Aquatic Sciences in the Tropics. CRC Press, 2024. http://dx.doi.org/10.1201/9781003501688-4.

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Rosselló-Móra, Ramon. "Prokaryote." In Encyclopedia of Astrobiology. Springer Berlin Heidelberg, 2023. http://dx.doi.org/10.1007/978-3-662-65093-6_1280.

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Gooch, Jan W. "Prokaryote." In Encyclopedic Dictionary of Polymers. Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_14577.

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Rosselló-Móra, Ramon. "Prokaryote." In Encyclopedia of Astrobiology. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-27833-4_1280-4.

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Ventosa, Antonio, and Cristina Sanchez-Porro. "Species (Prokaryote)." In Encyclopedia of Astrobiology. Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-662-44185-5_1876.

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Ventosa, Antonio, and Cristina Sanchez-Porro. "Species (Prokaryote)." In Encyclopedia of Astrobiology. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-11274-4_1876.

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Saitou, Naruya. "Prokaryote Genomes." In Introduction to Evolutionary Genomics. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-92642-1_8.

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Conference papers on the topic "Prokariot"

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Zhou, Feng, Yushuang He, Jiaxing Bai, Yichun Gao, and Ying Wang. "ViPER: Virus-Prokaryote intEraction prediction using foundation model with hieraRchical contrastive learning." In 2024 IEEE International Conference on Bioinformatics and Biomedicine (BIBM). IEEE, 2024. https://doi.org/10.1109/bibm62325.2024.10822305.

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Lee, Crystal, Billy Brown, Doug Jones, et al. "Field Applications for On-Site DNA Extraction and qPCR." In CORROSION 2015. NACE International, 2015. https://doi.org/10.5006/c2015-05686.

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Abstract Microbial issues have been a problem in many areas of the petroleum industry. Microorganisms can cause concerns with fouling, plugging and corrosion. One aspect of designing an effective integrity management program involves regular microbial monitoring and selection of the best chemistry for controlling microbes in a system. A variety of monitoring techniques are available that can be divided into two categories: on-site and off-site. Common practices for on-site bacterial monitoring include culture media bottles (i.e., serial dilution) and adenosine triphosphate (ATP) testing, both
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"Obrazovanie protoadamantanoidov i adamantanoidov iz biomassy prokariot." In Perspektivnye materialy s ierarkhicheskoy strukturoy dlya novykh tekhnologiy i nadezhnykh konstruktsiy, Khimiya nefti i gaza. Tomsk State University, 2018. http://dx.doi.org/10.17223/9785946217408/472.

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"K voprosu obrazovaniya neftyanykh uglevodorodov-biomarkerov iz biomassy prokariot." In Perspektivnye materialy s ierarkhicheskoy strukturoy dlya novykh tekhnologiy i nadezhnykh konstruktsiy, Khimiya nefti i gaza. Tomsk State University, 2018. http://dx.doi.org/10.17223/9785946217408/471.

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Cristea, Paul Dan, Rodica Aurora Tuduce, and Jan Cornelis. "Inserts in prokaryote genomes." In 2008 8th IEEE International Conference on Bioinformatics and BioEngineering. IEEE, 2008. http://dx.doi.org/10.1109/bibe.2008.4696673.

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Cristea, Paul Dan, and Rodica Aurora Tuduce. "Analysis of inserts in prokaryote genomes." In Biomedical Optics (BiOS) 2008, edited by Daniel L. Farkas, Dan V. Nicolau, and Robert C. Leif. SPIE, 2008. http://dx.doi.org/10.1117/12.761004.

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Li, Xiao-Xia, Bo Sun, Xue-Mei Han, and Ji-Hong Zhang. "Prokaryote Gene Data Classifier Design Based on SVM." In 2009 3rd International Conference on Bioinformatics and Biomedical Engineering (iCBBE 2009). IEEE, 2009. http://dx.doi.org/10.1109/icbbe.2009.5163250.

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Yang, Kuan, and Joao C. Setubal. "A whole genome simulator of prokaryote genome evolution." In the 2nd ACM Conference. ACM Press, 2011. http://dx.doi.org/10.1145/2147805.2147885.

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Wang, Nan, Shane Burgess, Mark Lawrence, and Susan Bridges. "Proteogenomic Mapping for Structural Annotation of Prokaryote Genomes." In 2009 International Joint Conference on Bioinformatics, Systems Biology and Intelligent Computing. IEEE, 2009. http://dx.doi.org/10.1109/ijcbs.2009.126.

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Pontes, Anselmo C., and Charles Ofria. "Digital investigations on the evolution of prokaryote photosynthesis regulation." In GECCO '18: Genetic and Evolutionary Computation Conference. ACM, 2018. http://dx.doi.org/10.1145/3205651.3208780.

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Reports on the topic "Prokariot"

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Cavanaugh, Colleen M. Molecular Characterization and Regulation of Ammonia Assimilation in Chemoautotrophic Prokaryote-Eukaryote Symbioses. Defense Technical Information Center, 1998. http://dx.doi.org/10.21236/ada350743.

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