Academic literature on the topic 'Myrtaceae'

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Journal articles on the topic "Myrtaceae"

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Alfina Nabilah Husna, Nurdin Amin, Anton Widyanto, and Lina Rahmawati. "Klorofil pada Tumbuhan Famili Myrtaceae di Taman Buah Lubuk Pakam Sumatera Utara." JURNAL ILMIAH MAHASISWA 1, no. 2 (2023): 60–69. https://doi.org/10.22373/jim.v1i2.457.

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Kadar klorofil tumbuhan Famili Myrtaceae penting dikaji untuk memberi gambaran dan informasi mengenai banyaknya klorofil serta manfaatnya. Pengukuran kadar klorofil pada tumbuhan Famili Myrtaceae di Taman Buah Lubuk belum pernah dilakukan sehingga perlu adanya tambahan referensi pada mata kuliah Fisiologi Tumbuhan. Penelitian ini bertujuan untuk mengetahui jumlah rata-rata kadar klorofil tumbuhan famili Myrtaceae. Metode yang digunakan dalam penelitian ini adalah metode spektrofotometri dengan teknik pengambilan sampel secara Purposive Sampling. Parameter yang diukur dalam penelitian ini adala
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Woodgyer, Elizabeth M. "LEPTOSPERMUM LANIGERUM Myrtaceae." Curtis's Botanical Magazine 12, no. 4 (1995): 186–90. http://dx.doi.org/10.1111/j.1467-8748.1995.tb00516.x.

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Hooper, Harvey. "Family Myrtaceae (continued)." Ballarat Naturalist (1986:May) (May 1986): 7. http://dx.doi.org/10.5962/p.383870.

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Keszei, Andras, Curt L. Brubaker, and William J. Foley. "A molecular perspective on terpene variation in Australian Myrtaceae." Australian Journal of Botany 56, no. 3 (2008): 197. http://dx.doi.org/10.1071/bt07146.

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The terpenoid-dominated essential oils in Australian Myrtaceae mediate many ecological interactions and are important industrially. Of all the significant essential oil-producing families, Myrtaceae is the only one for which there is no molecular information on terpene biosynthesis. Here we summarise available knowledge on terpene biosynthesis and its relevance to the Myrtaceae to provide a foundation for ecological and genetic studies of chemical diversity. There are several steps in the terpene biosynthesis pathway that have potential for influencing the oil yield, profile and composition of
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Belsham, Stephen R., and David A. Orlovich. "Development of the hypanthium and androecium in Acmena smithii and Syzygium australe (Acmena alliance, Myrtaceae)." Australian Systematic Botany 16, no. 5 (2003): 621. http://dx.doi.org/10.1071/sb02036.

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Floral organogeny and development are described for two species of the Acmena alliance: Acmena smithii and Syzygium australe. The Acmena alliance is now regarded as distinct from the fleshy-fruited Myrtoideae s.s. A. smithii develops an hypanthium that resembles that seen in some dry-fruited Myrtaceae but stamen initiation resembles that seen in the fleshy-fruited Luma apiculata. By contrast S. australe has hypanthial development similar to the New Zealand fleshy-fruited Myrtaceae but stamen development resembles that of many dry-fruited Myrtaceae. Both species, therefore, show homoplasy of fl
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Permatasari, Ira, Silvia Abni Rangkuty, Devi Fitriani, and RA Priyanti. "MORFOLOGI SERBUK SARI (POLEN) FAMILI MYRTACEAE: Psidium guajava, Syzygium aqueum, dan Syzygium malaccense." BioEksakta : Jurnal Ilmiah Biologi Unsoed 6, no. 3 (2024): 215. https://doi.org/10.20884/1.bioe.2024.6.3.11006.

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The Myrtaceae family is one of the families of the Myrtales order. There are two commonly found genera of the Myrtaceae family, namely Syzygium and Psidium. Pollen morphology of 3 species of the Myrtaceae family, namely Psidium guajava, Syzygium aqueum, and Syzygium malaccense were observed using a binocular light microscope. The research conducted aims to see the morphological characteristics of pollen from the three species of the Myrtaceae family. Morphological similarities of pollen from guava (Psidium guajava), water guava (Syzygium aqueum), and bol guava (Syzygium malaccense) are found i
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Thornhill, Andrew H., Geoff S. Hope, Lyn A. Craven, and Michael D. Crisp. "Pollen morphology of the Myrtaceae. Part 4: tribes Kanieae, Myrteae and Tristanieae." Australian Journal of Botany 60, no. 3 (2012): 260. http://dx.doi.org/10.1071/bt11177.

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Pollen morphology of 44 genera and 101 species from the Myrtaceae tribes Kanieae, Myrteae and Tristanieae was surveyed using scanning electron microscopy (SEM) and light microscopy (LM). Most Myrteae pollen were brevicolpate and granulate, which is unique within Myrtaceae, and these are most likely ancestral characters for this tribe. Two main pollen types were observed in tribe Kanieae, one form being with syncolpate colpi and a distinctive granulate exine, and the other with parasyncolpate colpi and a less ornamented exine. Genera Tristania and Thaleropia of tribe Tristanieae produce the sma
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PARRA-O., CARLOS. "Thirteen new species, new records, and a new combination on Colombian Myrtaceae." Phytotaxa 497, no. 3 (2021): 175–210. http://dx.doi.org/10.11646/phytotaxa.497.3.1.

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Thirteen new species of Myrtaceae from Colombia are described and illustrated; information about the habitats in which these species are growing, the evaluation of its conservation status, and its affinities are included. Besides, five new records of native and introduced Myrtaceae are reported for Colombia. Also, a new combination of a Myrtaceae species previously described as Calycorectes is proposed here under the genus Eugenia.
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Lucena, Eliseu Marlonio Pereira de, Ricardo Elesbão Alves, Luis Cisneros Zevallos, Emmanuel Wassermann Moraes e. Luz, and Edy Sousa de Brito. "Biodiversidade das Myrtaceae Brasileiras Adaptadas à Flórida, EUA (Biodiversity of Brazilians Myrtace ae Adapted to Florida, USA)." Revista Brasileira de Geografia Física 7, no. 2 (2014): 327–40. http://dx.doi.org/10.26848/rbgf.v7.2.p327-340.

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A América e em especial o Brasil, são ricos em espécies frutíferas tropicais nativas e/ou exóticas de grande potencial fitoquímico. Neste contexto, podemos destacar as espécies da família Myrtaceae que apresentam elevado potencial de uso pela presença de compostos, principalmente de natureza fenólica em suas folhas e frutos. Diante disso, a presente pesquisa objetivou catalogar a biodiversidade das Myrtaceae brasileiras adaptadas à Flórida, EUA. Foram feitas duas visitas de cinco dias cada junto às coleções pertencentes a instituições públicas e privadas no Estado da Flórida, EUA. A primeira a
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LUCRESIA, LUÍSA, ALINE STADNIK, LÍDIA CAMPOS, and NÁDIA ROQUE. "Myrtaceae floristic survey and vegetation distribution in a central portion of Chapada Diamantina, Brazil." Phytotaxa 498, no. 2 (2021): 71–86. http://dx.doi.org/10.11646/phytotaxa.498.2.1.

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Myrtaceae is an important family in the neotropics, being highlighted for its relevance in a wide range of vegetations, including those found within the Espinhaço Mountain Range (EMR). The main goal of the present work was to analyze Myrtaceae floristic composition and vegetation distribution in the municipality of Mucugê, Chapada Diamantina, Bahia. Specimens were analyzed in herbaria, two field expeditions were carried out and a landcover classification was performed through remote sensing. The compiled dataset presented 438 records with valid taxonomical identification, from which 374 record
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Dissertations / Theses on the topic "Myrtaceae"

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Reynertson, Kurt Allerslev. "Phytochemical analysis of bioactive constituents from edible Myrtaceae fruits /." View online, 2007. http://home.earthlink.net/~myrtaceae/Reynertson_dissertation.pdf.

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Thesis (Ph. D.)--City University of New York, 2007.<br>Includes bibliographical references (leaves 100-120) and index. Also available for educational and research purposes in PDF format on the Internet.
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Markman, Blanca Elena Ortega. "Caracterização farmacognóstica de Campomanesia xanthocarpa Myrtaceae ou Caracterização farmacognóstica de Campomanesia xanthocarpa Berg Myrtaceae." Universidade de São Paulo, 2002. http://www.teses.usp.br/teses/disponiveis/9/9138/tde-17032015-085231/.

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Campomanesia xanthocarpa Berg, espécie pertencente à família Myrtaceae, é conhecida popularmente como gabiroba. Diversas propriedades terapêuticas são atribuídas às espécies de Campomanesia, tais como, combate à disenteria, febre, cistites e uretrites. O presente trabalho objetiva contribuir para elaboração de monografia da espécie, através do estudo químico e farmacológico do extrato hidroalcoólico liofilizado e da droga vegetal constituída de folhas. Os caracteres farmacobotânicos da droga vegetal são apresentados com o intuito de auxiliar a diagnose. Dentre as principais características mac
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Dametto, Alessandra Cristina [UNESP]. "Bioprospecção em Eugenia jambolana (Myrtaceae)." Universidade Estadual Paulista (UNESP), 2010. http://hdl.handle.net/11449/97892.

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Made available in DSpace on 2014-06-11T19:29:09Z (GMT). No. of bitstreams: 0 Previous issue date: 2010-03-05Bitstream added on 2014-06-13T19:38:11Z : No. of bitstreams: 1 dametto_ac_me_araiq.pdf: 739116 bytes, checksum: f5283ac0f16f0bbf99286af2ff4f59ae (MD5)<br>Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)<br>Eugenia jambolana é uma planta da famíla Myrtaceae, oriunda da Índia Oriental. No Brasil é conhecida como jambolão e suas folhas contêm uma mistura de polifenóis, especialmente flavonóides glicosilados, taninos elágicos e ácidos fenólicos. Os frutos contêm vitamina
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Dametto, Alessandra Cristina. "Bioprospecção em Eugenia jambolana (Myrtaceae) /." Araraquara : [s.n.], 2010. http://hdl.handle.net/11449/97892.

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Orientador: Dulce Helena Siqueira Silva<br>Banca: Adriana Zerlotti Mercadante<br>Banca: Marilde Terezinha Bordignon Luiz<br>Resumo: Eugenia jambolana é uma planta da famíla Myrtaceae, oriunda da Índia Oriental. No Brasil é conhecida como jambolão e suas folhas contêm uma mistura de polifenóis, especialmente flavonóides glicosilados, taninos elágicos e ácidos fenólicos. Os frutos contêm vitamina C, ácido gálico, taninos e antocianinas. As antocianinas constituem o maior grupo de flavonóides responsáveis pelas cores rosa, vermelho, violeta e azul encontradas em muitas flores, frutos e folhas. As
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Wagner, Mariana de Andrade. "Myrtaceae no sul da Mata Atlântica." reponame:Repositório Institucional da UFSC, 2016. https://repositorio.ufsc.br/xmlui/handle/123456789/172253.

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Dissertação (mestrado) - Universidade Federal de Santa Catarina, Centro de Ciências Biológicas, Programa de Pós-Graduação em Biologia de Fungos, Algas e Plantas, Florianópolis, 2016.<br>Made available in DSpace on 2017-01-10T03:10:55Z (GMT). No. of bitstreams: 1 343052.pdf: 90596778 bytes, checksum: ed7616074e09b88a5b9a04a6546a8e21 (MD5) Previous issue date: 2016<br>A Mata Atlântica é um dos domínios mais importantes do País por conter grande biodiversidade e estar sujeita a pressões antrópicas. Myrtaceae é uma das famílias de espécies arbóreas mais ricas deste domínio. A Mata Atlântica é di
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Schmidt-Adam, Gabriele Hedwig Julia. "Reproductive Biology of Pohutukawa (Metrosideros Excelsa) (Myrtaceae)." Thesis, University of Auckland, 1999. http://hdl.handle.net/2292/1102.

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The objective of this project is to describe and analyse the reproductive biology of pohutukawa, by integrating information from floral biology, breeding system and pollination biology. New Zealand pohutukawa (Metrosideros excelsa Sol. ex Gaertn). a member of the Myrtaceae, is a mass-flowering tree endemic to northern New Zealand coastlines. Compound inflorescences develop over a period of ten weeks in six morphologically distinct stages. Trees flower over a peak period of two weeks, and the inflorescences contain an average of 14.3 large, hermaphrodite, red 'brush' flowers that remain open fo
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Gomes, Juliano Pereira. "Germinação e armazenamento de sementes de Myrtaceae." Universidade do Estado de Santa Catarina, 2011. http://tede.udesc.br/handle/handle/1133.

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Made available in DSpace on 2016-12-08T16:44:40Z (GMT). No. of bitstreams: 1 PGPV11MA087.pdf: 1284179 bytes, checksum: da158f7dc75db1d65edaab5541a67644 (MD5) Previous issue date: 2011-11-17<br>The Brazilian species of Myrtaceae family comprises several arborescent and shrubby plants that can be used to produce fruit for fresh consumption or industrialization. Due to these species importance, commercial products and usefulness in environmental restoration as well as the fact that they are propagated mainly through sexual reproduction the demand for sufficient quantity and quality of seeds i
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Fehlberg, Isley. "Terpenos e fenilpropanoides de Myrcia guianesis (Myrtaceae)." reponame:Repositório Institucional da UFBA, 2013. http://www.repositorio.ufba.br/ri/handle/ri/9749.

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Submitted by Ana Hilda Fonseca (anahilda@ufba.br) on 2013-04-03T14:46:18Z No. of bitstreams: 2 tese-Isley Fehlberg v1.pdf: 2026726 bytes, checksum: 5d2210e3344984bf208412e2419faae9 (MD5) Tese Isley Fehlberg Anexos.pdf: 28821560 bytes, checksum: 48517fb7676ccbd2c9605fcf24ff900c (MD5)<br>Approved for entry into archive by Ana Hilda Fonseca(anahilda@ufba.br) on 2013-04-15T14:23:54Z (GMT) No. of bitstreams: 2 tese-Isley Fehlberg v1.pdf: 2026726 bytes, checksum: 5d2210e3344984bf208412e2419faae9 (MD5) Tese Isley Fehlberg Anexos.pdf: 28821560 bytes, checksum: 48517fb7676ccbd2c9605fcf24ff900c (MD
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Nic, Lughadha Eimear. "Systematic studies in Gomidesia O. Berg (Myrtaceae)." Thesis, University of St Andrews, 1998. http://hdl.handle.net/10023/14201.

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Gomidesia is a neotropical genus with a distribution centred on the Atlantic rain forest biome of southeastern Brazil. Most species of Gomidesia are confined to Brazil but a single species extends to the Antilles and another is known only from Bolivia and Argentina. Forty species are delimited and described in the present study. For each species, notes are provided on distribution, ecology, nomenclature and typification. A century of nomenclatural malpractice has resulted in much confusion in the application of names. In some cases conservation action is required to preserve existing usage of
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Machado, Lilian de Oliveira. "Análise comparativa do genoma plastidial de Myrtaceae." reponame:Repositório Institucional da UFSC, 2017. https://repositorio.ufsc.br/xmlui/handle/123456789/177762.

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Tese (doutorado) - Universidade Federal de Santa Catarina, Centro de Ciências Agrárias, Programa de Pós-Graduação em Recursos Genéticos Vegetais, Florianópolis, 2017.<br>Made available in DSpace on 2017-07-25T04:09:25Z (GMT). No. of bitstreams: 1 347036.pdf: 3740412 bytes, checksum: 5b49a0b6ba26117eca45178ed0e7b0c1 (MD5) Previous issue date: 2017<br>A família Myrtaceae pertence à ordem Myrtales e possui cerca de 130 gêneros e aproximadamente 6000 espécies. Essa família de frutíferas é considerada importante em várias formações vegetais, distribuindo-se em todos os continentes, exceto na regi
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Books on the topic "Myrtaceae"

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Klucking, Edward P. Myrtaceae. J. Cramer, 1988.

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Verdcourt, Bernard. Myrtaceae. Published on behalf of the East African Governments by A.A. Balkema, 2001.

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Sobral, Marcos. Eugenia (Myrtaceae) no Paraná. EDUEL, 2011.

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Rafaël, Govaerts, ed. World checklist of Myrtaceae. Kew Publishing, Royal Botanic Gardens, Kew, 2008.

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Rafaël, Govaerts, ed. World checklist of Myrtaceae. Kew Publishing, Royal Botanic Gardens, Kew, 2008.

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Rafaël, Govaerts, ed. World checklist of Myrtaceae. Kew Publishing, Royal Botanic Gardens, Kew, 2008.

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Sobral, Marcos. A família das Myrtaceae no Rio Grande do Sul. Editora UNISINOS, 2003.

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Klaus, Kubitzki, ed. Flowering Plants: Eudicots, Sapindales, Cucurbitales, Myrtaceae. Springer Verlag, 2011.

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Snow, Neil Wilton. Systematics of Austromyrtus, Lenwebbia, and the Australian species of Gossia (Myrtaceae). American Society of Plant Taxonomists, 2003.

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name, No. Systematics of austromyrtus, lenwebbia, and the Australian species of gossia (myrtaceae). American Society of Plant Taxonomists, 2002.

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Book chapters on the topic "Myrtaceae"

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Hegnauer, Robert. "Myrtaceae." In Chemotaxonomie der Pflanzen. Birkhäuser Basel, 1990. http://dx.doi.org/10.1007/978-3-0348-9256-8_20.

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Smith, Nigel. "Myrtaceae." In Amazon Fruits: An Ethnobotanical Journey. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-12803-5_38.

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Wilson, Peter G. "Myrtaceae." In Flowering Plants. Eudicots. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-14397-7_14.

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Keller, Roland. "Magnoliaceae to Myrtaceae." In A Field Guide to Tropical Plant Families. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-031-05942-1_20.

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Devanathan, Krishnamoorthy, and Jurgenne H. Primavera. "Syzygium leucoxylon Korth. Myrtaceae." In Ethnobotany of Mountain Regions. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-14116-5_155-1.

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Akbar, Shahid. "Myrtus communis L. (Myrtaceae)." In Handbook of 200 Medicinal Plants. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-16807-0_131.

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Bussmann, Rainer W., Narel Y. Paniagua-Zambrana, and Grace N. Njoroge. "Psidium guajava L. Myrtaceae." In Ethnobotany of the Mountain Regions of Africa. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-319-77086-4_130-1.

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Bussmann, Rainer W., Narel Y. Paniagua-Zambrana, and Grace N. Njoroge. "Eucalyptus globulus Labill. Myrtaceae." In Ethnobotany of the Mountain Regions of Africa. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-319-77086-4_78-1.

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Ribeiro, João Everthon da Silva, Ernane Nogueira Nunes, Ramon Santos Souza, Denise Dias da Cruz, and Reinaldo Farias Paiva de Lucena. "Eugenia pyriformis Cambess. Myrtaceae." In Ethnobotany of Mountain Regions. Springer International Publishing, 2023. http://dx.doi.org/10.1007/978-3-030-87251-9_43.

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Devanathan, Krishnamoorthy, and Jurgenne H. Primavera. "Syzygium leucoxylon Korth. Myrtaceae." In Ethnobotany of Mountain Regions. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-38389-3_155.

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Conference papers on the topic "Myrtaceae"

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Ali, Nurdin, Syarizal Fonna, Yumaidi Saputra, and Joli Supardi. "Phytochemical Analysis and Antioxidant Properties of <i>Syzygium cumini </i>Fruit as a Corrosion Inhibitor." In The 2nd International Conferences on Applied Engineering, Science, Technology and Innovation. Trans Tech Publications Ltd, 2025. https://doi.org/10.4028/p-d9oud2.

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Syzygium cumini is a plant belonging to the Myrtaceae family and is widely used in medicine and food. However, its application in the engineering field is still very minimal, particularly as an anti-corrosion material. There are also limited studies on the quantitative screening of phytochemical and bioactivity of S. cumini. Therefore, this study aims to analyze the chemical compounds of S. cumini fruit as a corrosion inhibitor as well as determine total tannin (TTC) and flavonoid (TFC) content. The extraction process was carried out with a soxhlet extractor using 96% ethanol solvent. Characte
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WILUJENG, SRI. "Karakterisasi morfologi Xanthostemon novoguineensis Valeton (Myrtaceae) dari Papua." In Seminar Nasional Masyarakat Biodiversitas Indonesia. Masyarakat Biodiversitas Indonesia, 2015. http://dx.doi.org/10.13057/psnmbi/m010315.

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Chatri, Moralita, Civil Eka Mella, and M. Des. "Characteristics of Leaves Anatomy of Some Syzigium (Myrtaceae)." In International Conference on Biology, Sciences and Education (ICoBioSE 2019). Atlantis Press, 2020. http://dx.doi.org/10.2991/absr.k.200807.005.

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Petrentchuk, Lauro William, Jocieli Mileski Bueno, and Thuany Aparecida Lewandoski Jansen. "IDENTIFICAÇÃO E CADASTRAMENTO DE ÁRVORES DA FAMÍLIA MYRTACEAE NA REGIÃO DE CANOINHAS (SC): A OCORRÊNCIA DE CURITIBA PRISMATICA NA FLONA DE TRÊS BARRAS-SC." In I Congresso Nacional On-line de Conservação e Educação Ambiental. Revista Multidisciplinar de Educação e Meio Ambiente, 2021. http://dx.doi.org/10.51189/rema/1712.

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Introdução: Mirtáceas compreendem um grupo com cerca de 140 gêneros ocorrendo em toda América do Sul. Algumas espécies representantes desta família possuem ocorrência característica nas matas de pinhais. Objetivo: A diversidade de representantes da família myrtaceae é grande e que muitas espécies desta família possuem apelo comercial, realizou-se a identificação e o cadastramento e árvores matrizes da família myrtaceae com potencial de produção de sementes e mudas na região de Canoinhas-SC. Material e métodos: As coletas de informações a campo ocorreram em fragmentos florestais nativos na regi
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Fernanda da Silva Pittarelli, Beatriz, and Marcela Thadeo. "DESENVOLVIMENTO DO PERICARPO EM ESPÉCIES DE CAMPOMANESIA RUIZ PAV. (MYRTACEAE)." In 40º Encontro Regional de Botânicos - Regional MG, BA, ES. Even3, 2021. http://dx.doi.org/10.29327/40erbot.301034.

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Paula Ponce Shiguehara, Ana, Andrea Onofre de Araujo, Matheus Fortes Santos, and Eduardo Koerich Nery. "ESTUDO MORFOLÓGICO DO COMPLEXO MYRCIA SUBCORDATA (MYRCIINAE: MYRTEAE: MYRTACEAE): ANÁLISE MORFOMÉTRICA." In 9° Congresso Florestal Brasileiro. Softaliza Tecnologias LTDA, 2022. http://dx.doi.org/10.55592/cfb.2022.9973100.

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Hidajati, Nurul, Tukiran Tukiran, Dian Arista Setiabudi, and Andika Pramudya Wardana. "Antioxidant Activity of Palmitic Acid And Pinostrobin From Methanol Extract Of Syzygium litoralle (Myrtaceae)." In Proceedings of the International Conference on Science and Technology (ICST 2018). Atlantis Press, 2018. http://dx.doi.org/10.2991/icst-18.2018.39.

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Sousa, Maria Alaide Estevam de, Antonio de Assis Souza Lopes, Venancio Henrique Vitalino de Sousa, Fabiana Ferreira da Silva, and Francisco José Carvalho Moreira. "BIOMETRIA DE FRUTOS E SEMENTES E RENDIMENTO DE POLPA DE JAMBOLÃO (Syzygium cumini) – MYRTACEAE." In IV Simpósio Brasileiro de Recursos Naturais do Semiárido. Associação COMVERGIR Sustentável, 2019. http://dx.doi.org/10.18068/ivsbrns.2019.040.

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Raman, Anantanarayanan. "Why do the species ofSynglycaspis(Hemiptera: Psylloidea: Aphalaridae) induce galls only onEucalyptus macrorhyncha(Myrtaceae)?" In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.94209.

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Costa dos Santos, Suelane, Marcia Flores da Silva Ferreira, and Adésio Ferreira. "PSIDIUM CATTLEYANUM SABINE (MYRTACEAE) COM DIFERENTES CONTEÚDOS DE VALOR C VARIAM QUANTO AOS FRUTOS." In INIC 2023. Universidade do Vale do Paraíba, 2023. http://dx.doi.org/10.18066/inic0830.23.

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Reports on the topic "Myrtaceae"

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GAFNER, STEFAN, and Ashley Dowell. Tea Tree Oil Laboratory Guidance Document. ABC-AHP-NCNPR Botanical Adulterants Prevention Program, 2018. http://dx.doi.org/10.59520/bapp.lgd/ldfd8529.

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Abstract:
Tea tree oil (TTO) is the essential oil of tea tree (Melaleuca alternifolia or M. linariifolia, Myrtaceae). Adulteration of TTO has become more apparent in recent years. Adulteration occurs with single essential oil components (e.g., sabinene from pine oil), waste products derived from other essential oils such as pine (Pinus spp., Pinaceae), eucalyptus (Eucalyptus globulus and other Eucalyptus spp., Myrtaceae), and camphor (Cinnamomum camphora, Lauraceae) oils, or with essential oils from other Melaleuca species and the closely related genus Leptospermum. This Laboratory Guidance Document pre
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Bejar, Ezra. Adulteration of Oregano Herb and Essential Oil. ABC-AHP-NCNPR Botanical Adulterants Prevention Program, 2019. https://doi.org/10.59520/bapp.bapb/hyui8203.

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Abstract:
The goal of this bulletin is to provide timely information and/or updates on issues of intentional and accidental adulteration and mislabeling of oregano herb and essential oil (EO).* It provides information on issues of adulteration and mislabeling of oregano (Origanum vulgare subsp. hirtum, O. onites) herb used as a spice and herbal remedy, in particular with winter savory (Satureja montana, Lamiaceae) herb, sweet marjoram (Origanum majorana, Lamiaceae) herb, Cistus spp. (Cistaceae) leaf, olive (Olea europaea, Oleaceae) leaf, thyme (Thymus spp., Lamiaceae) herb, summer savory (Satureja horte
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