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1

Jawaray, Wilfridus Balla, Erfy Melany Lalupan, Anita Tamu Ina, and Agus Kusumanegara. "KEANEKARAGAMAN TUMBUHAN ANGIOSPERMAE DI KAWASAN TAMAN NASIONAL MATALAWA KABUPATEN SUMBA TIMUR." Jurnal Biosilampari : Jurnal Biologi 5, no. 2 (2023): 169–77. http://dx.doi.org/10.31540/biosilampari.v5i2.1708.

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Abstract (sommario):
The highest plant diversity in the tropical rainforest area in Matalawa National Park is the Angiospermae plant. There are still many people in Praingkareha Village who are not familiar with Angiospermae plants or closed seed plants. This study aims to describe the diversity index of Angiosperm plants found in the Laputi Forest block, Matalawa National Park. This research was limited to the Laputi Forest block, so it did not cover the entire forest in Praingkareha Village, Matalawa National Park, East Sumba Regency. This study used a double plot method with a purposive sampling technique. The
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Nurrahma, Aditiya, Ismanto ., and Taufikurrahman Nasution. "KEANEKARAGAMAN EPIFIT BERPEMBULUH PADA BATANG POHON INANG ANGIOSPERMAE DAN GYMNOSPERMAE DI KEBUN RAYA CIBODAS." EKOLOGIA 22, no. 2 (2022): 75–82. http://dx.doi.org/10.33751/ekologia.v22i2.5789.

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Epiphytes are types of plants that attach and grow on other plants to obtain sunlight, water, air, and minerals for their growth. The aim of this study are knowing the diversity of vascular epiphytes on the host trunks of Angiosperms and Gymnosperms, knowing the differences in vascular epiphytic communities on the host trunks of Angiosperms and Gymnosperms and to determine factors causing vascular epiphytes communities on the host trunk is used in this research. Sampling plot is located on the host tree's trunk to facilitate the calculation of vascular epiphytes; a simple plot measuring 2 m x
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Sipayung, Mariaty, and Annisaa Pratiwi Simanjuntak. "Pengembangan Booklet Angiospermae Taman Kota Medan Sebagai Sumber Belajar Materi Plantae Untuk Kelas X Sma." Journal of Comprehensive Science (JCS) 1, no. 5 (2022): 1120–32. http://dx.doi.org/10.59188/jcs.v1i5.144.

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Penelitian ini bertujuan untuk mengetahui kelayakan serta efektifitas Booklet dalam meningkatkan pemahaman konsep siswa. Penelitian ini terdiri atas dua tahap meliputi eksplorasi tanaman Angiospermae di taman kota Medan dan pengembangan Booklet. Kelayakan Booklet diukur melalui penilaian ahli materi dan media serta respon guru dan siswa, sedangkan efektifitas Booklet diukur melalui nilai N-Gain. Hasil penelitian menunjukan terdapat setidaknya 34 famili dan 61 spesies tanaman Angiospermae di enam taman kota Medan. Booklet Angiospermae Taman Kota Medan layak digunakan sebagai sumber belajar berd
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Dewi, Lussana Rossita, Sekar Ode Nendra, M. Arma Dananjaya, and Agung Nuryadi. "Identifikasi Angiospermae di Air Terjun Tirtowati, Kabupaten Semarang." Bioed : Jurnal Pendidikan Biologi 12, no. 2 (2024): 173. http://dx.doi.org/10.25157/jpb.v12i2.16285.

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Angiospermae adalah tumbuhan berbiji tertutup yang bakal bijinya selalu dikelilingi oleh badan yang terbuat dari karpel yang disebut bakal biji. Angiospermae memiliki lebih dari 250.000 spesies (sekitar 90% dari semua spesies tumbuhan), dan merupakan tumbuhan yang paling melimpah dan tersebar luas dari semua tumbuhan. Oleh karena itu, telah dilakukan penelitian identifikasi keanekaragaman tumbuhan Angiospermae di Kawasan Air Terjun Tirtowati. Penelitian ini bertujuan untuk mengidentifikasi keanekaragaman tumbuhan Angiospermae di Air Terjun Tirtowati, Kabupaten Semarang. Melalui survei lapangan
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Salsabila, Nada Tsaniya, Wisanti Wisanti, and Ahmad Bashri. "Pengembangan Planteogram (Plantae on Instagram) Angiospermae sebagai Sumber Belajar." Berkala Ilmiah Pendidikan Biologi (BioEdu) 10, no. 1 (2020): 60–67. http://dx.doi.org/10.26740/bioedu.v10n1.p60-67.

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Instagram merupakan media yang digunakan untuk berbagi foto dan tanggapan dengan berbagai fitur yang tersedia. Foto termasuk sumber belajar visual yang digunakan untuk menggambarkan dan mengomunikasikan suatu ide. Planteogram (Plantae on Instagram) menggunakan Instagram sebagai sumber belajar yang berisi foto perawakan, batang, daun, bunga dan buah jika ada dengan dilengkapi nama ilmiah, nama lokal, dan ciri karakteristik tumbuhan angiospermae. Penelitian ini bertujuan untuk mengembangkan Planteogram “Angiospermae” sebagai sumber belajar yang layak secara teoretis dan empiris. Kelayakan teoret
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6

Fitri, Dwi Rini Kurnia, Zulgusma Aulia Putri, Alfitra Rianza, et al. "Perbedaan Konsumsi Oksigen (O2) pada Proses Respirasi Tumbuhan Gymnospermae dan Angiospermae." Jurnal Penelitian Sains dan Pendidikan (JPSP) 5, no. 1 (2025): 16–27. https://doi.org/10.23971/jpsp.v5i1.9845.

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Respirasi adalah salah satu proses metabolisme (katabolisme), reaksi ini menggunakan oksigen untuk memecah senyawa-senyawa yang kompleks menjadi molekul-molekul sederhana seperti yang digunakan sel sebagai energi untuk bertahan hidup. Angiospermae adalah tumbuhan dengan biji tertutup dan biasanya menghasilkan bunga dan buah, sedangkan Gymnospermae adalah tumbuhan dengan biji terbuka. Penelitian ini bertujuan untuk mengetahui perbedaan laju respirasi, pengaruh lingkungan terhadap laju respirasi, peran struktur daun pada laju respirasi dan faktor-faktor yang mempengaruhi laju respirasi tumbuhan
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Mardaningrum, Refiska Audhiya, Wisanti Wisanti, and Eva Kristinawati Putri. "Efektivitas Modul Angiospermae untuk Melatihkan Keterampilan Proses dan Meningkatkan Hasil Belajar Siswa SMA Kelas X." Berkala Ilmiah Pendidikan Biologi (BioEdu) 9, no. 2 (2020): 172–78. http://dx.doi.org/10.26740/bioedu.v9n2.p172-178.

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Penelitian ini bertujuan untuk mendeskripsikan efektivitas modul Angiospermae untuk melatihkan keterampilan proses dan meningkatkan hasil belajar siswa kelas X SMA Negeri 1 Gedeg dilihat dari ketercapaian keterampilan proses, hasil belajar, keterlaksanaan pembelajaran, dan respons siswa. Sasaran yang digunakan dalam penelitian ini adalah 60 siswa kelas X MIPA 4 dan X MIPA 7 SMA Negeri 1 Gedeg Mojokerto. Penelitian ini menggunakan desain penelitian one group pretest-posttest. Data dianalisis secara deskriptif kuantitatif. Modul Angiospermae efektif untuk melatihkan keterampilan proses yang ditu
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8

Yulianti, Ahada Dewi Ayu, Elfina Hari Murty, Lini Raudlotul Hikmiyah, et al. "KEANEKARAGAMAN TUMBUHAN ANGIOSPERMAE DI ALUN-ALUN TUGU KOTA MALANG." Jurnal Penelitian Pendidikan IPA 9, no. 6 (2023): 4343–52. http://dx.doi.org/10.29303/jppipa.v9i6.2622.

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Penelitian ini dilakukan di Alun-alun Tugu Kota Malang, Jawa Timur. Tujuan dari penelitian ini adalah untuk mengetahui keanekaragaman tumbuhan angiospermae yang ada di Alun-alun Tugu Kota Malang. Penelitian ini dilakukan dengan menggunakan metode kuantitatif karena memerlukan observasi untuk memperoleh data yang diinginkan seperti jenis dan ciri-ciri dari tumbuhan angiospermae. Pada penelitian ini dilakukan pengambilan sampel dan identifikasi morfologi dari tumbuhan angiospermae yakni dengan analisis deskriptif untuk bagian akar, batang, dan daunnya. Analisis tersebut dilakukan berdasarkan stu
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9

Nuwa, Rofinus Bu'u. "Studi Perbandingan Transpirasi antar Pohon di Hutan Kota Malabar (Penelitian Pendahuluan untuk Solusi Pengelolaan Lahan Kering)." Buletin Loupe 15, no. 02 (2020): 51. http://dx.doi.org/10.51967/buletinloupe.v15i02.42.

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Kekeringan merupakan salah satu masalah serius yang sering muncul ketika musim kemarau tiba dan berkepanjangan. Dari aspek hidrometeorologi kekeringan timbul dan disebabkan oleh berkurangnya curah hujan selama periode tertentu. Tujuan dari penelitian ini adalah untuk mengetahui jenis pohon dengan transpirasi paling besar berdasarkan karakteristik daun dan hasil total transpirasi. Hasil penelitian ini menunjukkan pohon gymnospermae yang daun paling lebar yaitu daun pohon melinjo 1 yaitu lebar 5,3 cm dan jenis pohon angiospermae yang daunnya paling lebar yaitu daun pohon ketapang 2 yaitu lebar 1
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Putri, Erisa Alifia, Almasinta Dyah Rahmania, Desy Fitriaska 'Ainunnizar, et al. "KEANEKARAGAMAN TUMBUHAN ANGIOSPERMAE DI HUTAN KOTA MALABAR, KOTA MALANG, JAWA TIMUR." EKOLOGIA 23, no. 1 (2023): 47–55. http://dx.doi.org/10.33751/ekologia.v23i1.6572.

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The geographical area that belongs to Indonesia makes for a high diversity of plants. With so much diversity, it makes an area inhabited by certain species. One of these species is the Angiosperms, especially the dicot plants (in two pieces) which dominate the variety of plants in the Malabar City Forest, Malang City. Therefore, based on the previous description, this research will focus on the diversity of Angiosperm plants found in the Malabar City Forest, Malang City. The purpose of this study was to determine the diversity of dicot and monocot plants (Angiosperms) found in Malabar Malang C
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11

Lomin, Sergey N., Ekaterina M. Savelieva, Dmitry V. Arkhipov, et al. "Cytokinin Perception in Ancient Plants beyond Angiospermae." International Journal of Molecular Sciences 22, no. 23 (2021): 13077. http://dx.doi.org/10.3390/ijms222313077.

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Cytokinins (CKs) control many plant developmental processes and responses to environmental cues. Although the CK signaling is well understood, we are only beginning to decipher its evolution. Here, we investigated the CK perception apparatus in early-divergent plant species such as bryophyte Physcomitrium patens, lycophyte Selaginella moellendorffii, and gymnosperm Picea abies. Of the eight CHASE-domain containing histidine kinases (CHKs) examined, two CHKs, PpCHK3 and PpCHK4, did not bind CKs. All other CHK receptors showed high-affinity CK binding (KD of nM range), with a strong preference f
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12

Habibi, Mohammad Wildan, and Ade Yusfin Damayanti. "INVENTARISASI SPERMATOPHYTA DI PONPES NURIS JEMBER TAHUN AJARAN 2021." JURNAL BIOSENSE 4, no. 01 (2021): 19–32. http://dx.doi.org/10.36526/biosense.v4i01.1430.

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Pondok Pesantren Nuris Jember memiliki julukan sebagai Green Campus karena keanekaragaman tumbuhan hijaunya yang terdapat di kawasan pondok pesantren ini. Mayoritas tumbuhannya adalah jenis tumbuhan berbiji (spermatophyta). Tujuan penelitian ini adalah untuk mengetahui jenis-jenis tumbuhan yang ada di Pondok Pesantren Nuris Jember. Penelitian ini menggunakan pendekatan kualitatif dengan jenis penelitian deskriptif. Sumber data penelitian ini adalah tumbuhan spermatophyta di Yayasan Pondok Pesantren Nuris Jember. Hasil penelitian menunjukkan bahwa terdapat 43 jenis tumbuhan dengan rincian satu
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13

Wilmesmeier, Sabine, Stefan Steuernagel, and Rolf Wiermann. "Comparative FTIR and 13C CP/MAS NMR Spectroscopic Investigations on Sporopollenin of Different Systematic Origins." Zeitschrift für Naturforschung C 48, no. 9-10 (1993): 697–701. http://dx.doi.org/10.1515/znc-1993-9-1003.

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Abstract Comparative phytochemical investigations were carried out on sporopollenins of the follow­ ing plant species: Bryophyta -Reboulia hemisphaerica and Polytrichum strictum; Pteridophyta -Equisetum arvense, Selaginella selaginoides micro-and megaspores; Gymnospermae -Cycas circinalis; Angiospermae -Typha angustifolia and Tulipa cv. “Apeldoorn”. Although the range of the analyses included species from the Bryophyta to the Angiospermae, fundamen tal correspondences could be detected in the 13C NMR and FTIR spectra concerning the occur­rence of aliphatics, aromatics, ether and carbonyl/carbo
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Pratiwi, Dinda Dwi, Rinie Pratiwi Puspitawati, and Eva Kristinawati Putri. "Validitas LKPD Pengamatan Angiospermae dengan Memanfaatkan Media Herbarium untuk Melatihkan Keterampilan Proses Peserta Didik Kelas X." Berkala Ilmiah Pendidikan Biologi (BioEdu) 10, no. 1 (2020): 49–59. http://dx.doi.org/10.26740/bioedu.v10n1.p49-59.

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Keterampilan proses dasar merupakan keterampilan mendasar yang perlu dikuasai peserta didik untuk melakukan penelitian dalam memenuhi tuntutan pembelajaran abad 21 yang dapat dilatihkan dengan menekankan kegiatan pengamatan atau penyelidikan sebagai pengalaman belajar langsung untuk penemuan konsep secara mandiri. Adapun tujuan dari penelitian ini adalah untuk mengembangkan LKPD pengamatan dan media herbarium untuk melatihkan keterampilan proses dasar dalam mendukung pembelajaran angiospermae dengan mengenalkan ciri morfologi yang khas dari beberapa famili tumbuhan obat familiar yang valid ber
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Thorne, Robert F., and James L. Reveal. "An Updated Classification of the Class Magnoliopsida (“Angiospermae”)." Botanical Review 73, no. 2 (2007): 67–181. http://dx.doi.org/10.1663/0006-8101(2007)73[67:aucotc]2.0.co;2.

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Robbrecht, Elmar. "Generic distribution patterns in subsaharan African Rubiaceae (Angiospermae)." Journal of Biogeography 23, no. 3 (1996): 311–28. http://dx.doi.org/10.1046/j.1365-2699.1996.00022.x.

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Gabali, Saeed Abdo, and Abdul-Nasser Al-Gifri. "Flora of South Yemen — Angiospermae A provisional checklist." Feddes Repertorium 101, no. 7-8 (1990): 373–83. http://dx.doi.org/10.1002/fedr.4911010708.

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Gabali, Saeed Abdo, and Abdul-Nasser Al-Gifri. "Flora of South Yemen - Angiospermae A provisional checklist." Feddes Repertorium 101, no. 7-8 (2008): 373–83. http://dx.doi.org/10.1002/fedr.19901010708.

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Ohi-Toma, Tetsuo, Kana Watanabe-Toma, and Jin Murata. "Typification of Angiospermae described from the Bonin Islands 2: Archichlamydeae." Phytotaxa 227, no. 1 (2015): 35–44. https://doi.org/10.11646/phytotaxa.227.1.4.

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Ohi-Toma, Tetsuo, Watanabe-Toma, Kana, Murata, Jin (2015): Typification of Angiospermae described from the Bonin Islands 2: Archichlamydeae. Phytotaxa 227 (1): 35-44, DOI: 10.11646/phytotaxa.227.1.4, URL: http://dx.doi.org/10.11646/phytotaxa.227.1.4
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Watanabe-Toma, Kana, Tetsuo Ohi-Toma, and Jin Murata. "Typification of Angiospermae described from the Bonin Islands 1: Metachlamydeae." Phytotaxa 33 (November 28, 2011): 51–58. https://doi.org/10.11646/phytotaxa.33.1.4.

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Watanabe-Toma, Kana, Ohi-Toma, Tetsuo, Murata, Jin (2011): Typification of Angiospermae described from the Bonin Islands 1: Metachlamydeae. Phytotaxa 33: 51-58, DOI: 10.11646/phytotaxa.33.1.4, URL: http://biotaxa.org/Phytotaxa/article/view/phytotaxa.33.1.4
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Groppo, Milton, Luciano Ferreira Margalho, Paola Lima Ferreira, and Cintia Erbert. "Check-list de Sapindaceae (Angiospermae) do estado de Mato Grosso do Sul, Brasil." Iheringia, Série Botânica 73 (March 31, 2018): 342–47. https://doi.org/10.21826/2446-8231201873s342.

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Groppo, Milton, Margalho, Luciano Ferreira, Ferreira, Paola Lima, Erbert, Cintia (2018): Check-list de Sapindaceae (Angiospermae) do estado de Mato Grosso do Sul, Brasil. Iheringia, Série Botânica 73: 342-347, DOI: 10.21826/2446-8231201873s342, URL: http://dx.doi.org/10.21826/2446-8231201873s342
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Fauzia, Iva Siti, Sariwulan Diana, and Kusnadi Kusnadi. "Pengaruh Pembelajaran Berbasis Proyek dengan Portofolio terhadap Penguasaan Konsep Angiospermae dan Sikap Siswa SMA terhadap Sains." Assimilation: Indonesian Journal of Biology Education 1, no. 2 (2018): 62. http://dx.doi.org/10.17509/aijbe.v1i2.13049.

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The purpose of this study was to analyze the effect of project-based learning (PjBL) with the portfolio towards mastery of the concept of Angiospermae and attitudes of high school students towards science. This study was conducted in one of the state high school in the city with a population that is used is a class X. The sample used in this study is one class with 38 students as sample number. The method used is pre-experimental design with pretest and posttest design. The concept of student mastery Angiospermae measured using about pretest and posttest which refers to the Revised Bloom's Tax
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Hartono, Adi, Miza Nina Adlini, Yusran Efendi Ritonga, Muhammad Iqbal H. Tambunan, Martua Syahriadi Nasution, and Jumiah Jumiah. "IDENTIFIKASI TUMBUHAN TINGKAT TINGGI (PHANEROGAMAE) DI KAMPUS II UINSU." Jurnal Biolokus 3, no. 2 (2020): 305. http://dx.doi.org/10.30821/biolokus.v3i2.755.

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Tumbuhan tingkat tinggi (Phanerogamae) merupakan tumbuhan berbiji yang berkembang biak secara seksual. Tumbuhan ini memiliki persebaran yang cukup luas dan lazim ditemukan di berbagai daerah. Kampus II UINSU merupakan kampus yang memiliki keanekaragaman tumbuhan tingkat tinggi yang cukup bervariasi. Oleh karena itu, penelitian ini bertujuan untuk mengidentifikasi tumbuhan tingkat tinggi (Phanerogamae) yang terdapat di Kampus II UINSU Metodologi penelitian yang digunakan ialah metode survey eksploratif dan deskriptif, dengan melakukan pendataan tumbuhan serta mengamati morfologi dan deskripsi t
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Ribeiro, Claudia Valeria Campos, and Maria Auxiliadora Coelho Kaplan. "Tendências evolutivas de famílias produtoras de cumarinas em angiospermae." Química Nova 25, no. 4 (2002): 533–38. http://dx.doi.org/10.1590/s0100-40422002000400004.

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Nugraha, Bayu Setya Aji, Widodo Widodo, Rendi Yuntara, and Normalita Normalita. "Diversity of Angiospermae Plant Class Liliopsida in Mount Nglanggeran." Biology, Medicine, & Natural Product Chemistry 7, no. 2 (2018): 45–49. http://dx.doi.org/10.14421/biomedich.2018.72.45-49.

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Nglanggeran is a place that has a high plant diversity and there are many unique and unidentified wild plants. This study aims to list liliopside class plants which found around the climbing route. The angiosperm plants in the liliopside class found around the climbing route were successfully identified and consisted of 40 species belong to 17 families.
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Agnie Airul Akira, Alvi Arumi Fadila, Aprilia Khoirunnisa Emnur, Fida Qurrotul Aini, Gina Satira, and Ita Fitriyyah. "Struktur Internal Organ Reproduksi Tumbuhan Berbiji (Angiospermae dan Gymnospermae)." Mikroba : Jurnal Ilmu Tanaman, Sains Dan Teknologi Pertanian 1, no. 3 (2024): 126–37. https://doi.org/10.62951/mikroba.v1i3.178.

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Open seed plants or Gymnosperms and closed seed plants or Angiosperms are two subdivisions of seed plants. Seed plants reproduction tool consists of strobilus or flowers. The reproductive tool of closed seed plants is a flower that grows from a bud equipped with petals, stamens, and pistils. The purpose of this study was to observe the reproductive structure of seed plants. This research was conducted at Instructional Laboratory 1, UIN Sunan Gunung Djati Bandung. The method used was direct observation in the laboratory by analyzing the internal structure of reproductive organs. The results Ang
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Fayzullaeva, Dilaro, Zamira Djumaeva, Khislat Khaydarov, et al. "Palynological research conducted in the Republic of Uzbekistan focuses on the provinces of Samarkand and Surkhandarya." E3S Web of Conferences 632 (2025): 03002. https://doi.org/10.1051/e3sconf/202563203002.

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Atmospheric pollen was studied using the Lanzoni VPSS 2010 device over three years from 2022 to 2024 in Samarkand, one of the most significant regions in Uzbekistan. Since 2024, research has also been underway in the Surkhandarya region, located in southern Uzbekistan. The investigation, utilizing the Lanzoni dust trap, identified 84 types of plant pollen belonging to the Angiosperma and Gymnosperma divisions present in the atmosphere. Analysis revealed that 52 of these belong to the Angiospermae group and 32 to the Gymnospermae. Among these, there were 22 trees, and 18 shrubs, and the remaind
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Nelson, E. Charles. "Archibald Menzies's visit to Isla del Coco, January 1795." Archives of Natural History 40, no. 1 (2013): 149–56. http://dx.doi.org/10.3366/anh.2013.0144.

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Archibald Menzies landed twice at Chatham Bay, Isla del Coco, in January 1795. A small number of his herbarium specimens are extant, including the type specimen of Callicosta rugifolium (Bryophyta; Daltoniaceae) and perhaps also that of Octoea insularis (Angiospermae; Lauraceae), indicating that he was probably the first to make scientific collections on the island.
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Rocha, Fabíola Carla da, Lilian Casatti, Fernando Rogério Carvalho, and Alexandre Marco da Silva. "Fish assemblages in stream stretches occupied by cattail (Typhaceae, Angiospermae) stands in Southeast Brazil." Neotropical Ichthyology 7, no. 2 (2009): 241–50. https://doi.org/10.1590/S1679-62252009000200016.

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Abstract (sommario):
Rocha, Fabíola Carla da, Casatti, Lilian, Carvalho, Fernando Rogério, Silva, Alexandre Marco da (2009): Fish assemblages in stream stretches occupied by cattail (Typhaceae, Angiospermae) stands in Southeast Brazil. Neotropical Ichthyology 7 (2): 241-250, DOI: 10.1590/S1679-62252009000200016, URL: http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-62252009000200016&lng=en&tlng=en
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30

Kirkpatrick, JB, L. Gilfedder, F. Duncan, and S. Harris. "Reservation status and priorities for Tasmanian plants I. Angiospermae (Dicotyledonae)." Papers and Proceedings of the Royal Society of Tasmania 124, no. 2 (1991): 163–72. http://dx.doi.org/10.26749/rstpp.124.2.163.

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31

Agnew, A. D. Q., and Mats Thulin. "Flora of Somalia, Volume 1 (Pteridophyta; Gymnospermae; Angiospermae (Annonaceae-Fabaceae)." Kew Bulletin 49, no. 3 (1994): 596. http://dx.doi.org/10.2307/4114497.

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32

Ohi-Toma, Tetsuo, Kana Watanabe-Toma, and Jin Murata. "Typification of Angiospermae described from the Bonin Islands 2: Archichlamydeae." Phytotaxa 227, no. 1 (2015): 35. http://dx.doi.org/10.11646/phytotaxa.227.1.4.

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Abstract (sommario):
We are investigating the type material of taxa described from the Bonin Islands in Japan. Some taxa require typification, because specimens have not been cited in the protologue or cited specimens included multiple collections, or because the citations contained ambiguous locality and/or collector data. In addition, an earlier lectotypification is often inadequate because of an error or lack of specific information. Recently, we designated or reconfirmed the lectotype for 10 taxa of Metachlamydeae at the Botanical Gardens section of TI. Here, the lectotype was newly designated or the type stat
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33

Afonin, M. A. "First record of Chadronoxylon fossil wood (Angiospermae, Dicotyledones) from Russia." Paleontological Journal 51, no. 5 (2017): 556–61. http://dx.doi.org/10.1134/s0031030117050021.

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34

Barabé, Denis, Yves Bergeron, and Gilles Vincent. "La répartition des caractères dans la classification des Hamamelididae (Angiospermae)." Canadian Journal of Botany 65, no. 8 (1987): 1756–67. http://dx.doi.org/10.1139/b87-240.

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Abstract (sommario):
By using numerical methods, the authors have analyzed correlations between vegetative and floral characters within the Hamamelididae subclass to determine which characters prevail in the characterization of each group of families. The cophenetic correlation coefficient, topological difference, cluster membership divergence, subtree membership divergence, and partition membership divergence show very little congruence between the vegetative and floral characters; this is explained by the heterobathmic evolution of the characters. In Hamamelididae, characters that best delimit groups are also th
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35

Makarova, Yulia Vladimirovna, Aleksey Alekseevich Golovlyov, and Nataliya Vladimirovna Prokhorova. "Taxonomic and biomorphological structure of Mountain Kuznetsov vascular plants flora (Samara Region, Volzhsky District)." Samara Journal of Science 7, no. 1 (2018): 70–76. http://dx.doi.org/10.17816/snv201871113.

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Abstract (sommario):
The presence of 267 vascular plants species from 190 genera, 63 families, 26 orders, 4 classes (Equisetopsida, Polypodiopsida, Pinopsida, Angiospermae) and 3 divisions (Equisetophyta, Polypodiophyta, Spermatophyta) was established for Kuznetsov Mountain. The absolute majority of species belong to Spermatophyta (258 species, 96,7%), Angiospermae (257 species, 96,3%), Dicotyledones (228 species, 85,4%). Vascular spore plants are represented by 9 species belonging to 6 genera ( Equisetum , Matteuccia , Athyrium , Cystopteris , Dryopteris , Pteridium ), 5 families (Equisetaceae, Onocleaceae, Woods
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36

Tin, Tin Maw. "Angiosperm Flora of Some Species in Kalaw Area." Bago University Research Journal Vol.7, No.1, no. 2017 (2017): 195–207. https://doi.org/10.5281/zenodo.3917632.

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Abstract (sommario):
Some Angiospermae from Kalaw area has been collected identified and then morphological characteristic were studied. In this study, 10 species belonging to 10 genera of 9 families were identified and systematically arranged with colored plates. All species are dicotyledonous. Artificial key to the species, detail description of the individual species and uses has also been described. In addition, their flowering period, Myanmar names and English names were also described.
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37

Ahlers, Friedhelm, Jörg Lambert, and Rolf Wiermann. "Structural Elements of Sporopollenin from the Pollen of Torreya californica Torr. (Gymnospermae): Using the 1H-NMR Technique." Zeitschrift für Naturforschung C 54, no. 7-8 (1999): 492–95. http://dx.doi.org/10.1515/znc-1999-7-806.

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Abstract (sommario):
Abstract Sporopollenin was isolated and purified from pollen of the gymnospermae Torreya californica using an enzymatic treatment followed by extraction with organic solvents. 1H -NMR (ID and 2D) was used for analysis of this biopolym er and reveals the presence of three phenolic com pounds. Comparison with the analysis of sporopollenin from the angiospermae Typha angustifolia L. shows high similarity between the aromatic compounds
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38

Singh, Rajendra, and Garima Singh. "DIVERSITY OF APHIDS (HOMOPTERA: APHIDIDAE) INFESTINGSOLANACEOUS PLANTS (ANGIOSPERMAE: SOLANALES:SOLANACEAE) IN INDIA." International Journal of Biological Innovations 04, no. 01 (2022): 189–204. http://dx.doi.org/10.46505/ijbi.2022.4121.

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Abstract (sommario):
Among the flowering plants, the family Solanaceae is one of the economically important families in the world. Species in this family have been cultivated for vegetables (brinjal, potato, tomato etc.), spices (chili pepper), tobacco, garden flowers etc. At least 51 species of plants of this family were found to be infested by 60 species of aphids (Insecta: Homoptera: Aphididae) in India. Maximum number of aphid species (21 aphid species) are colonised on Solanum tuberosum followed by Nicotiana tabacum (18 aphid species), Solanum melongena (14 aphid species), Solanum lycopersicum (13 aphid speci
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39

Constance, L., Winifred M. Curtis, and Dennis L. Morris. "The Student's Flora of Tasmania. Pt. 4B. Angiospermae: Alismataceae to Burmanniaceae." Taxon 44, no. 1 (1995): 113. http://dx.doi.org/10.2307/1222693.

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40

Burbidge, A. H., and S. H. James. "Postzygotic Seed Abortion in the Genetic System of Stylidium (Angiospermae: Stylidiaceae)." Journal of Heredity 82, no. 4 (1991): 319–28. http://dx.doi.org/10.1093/oxfordjournals.jhered.a111092.

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41

GH, MULIANA, and ANDI FARIDA ARSAL. "PROFIL BUNGA ANGIOSPERMAE PADA LKPB UNM SEBAGAI SUMBER BELAJAR MORFOLOGI TUMBUHAN." SCIENCE : Jurnal Inovasi Pendidikan Matematika dan IPA 5, no. 1 (2025): 79–93. https://doi.org/10.51878/science.v5i1.4341.

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Abstract (sommario):
This study aims to identify the floral morphology of plants found in the LKPB (Biology Experimental Garden Laboratory) at Universitas Negeri Makassar as a learning resource for plant morphology for students. The research method employed is an exploratory method with a descriptive approach for data management. This study specifically examines the floral morphology of plants found at LKPB UNM, focusing on flower symmetry, types of flowers (axillary or terminal), completeness of flowers (complete or incomplete), sexual characteristics (unisexual or bisexual), and whether the flower parts are cate
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42

Orlova, L. D. "Інтенсивність фотосинтезу лучних рослин лівобережного лісостепу України". Biosystems Diversity 18, № 1 (2010): 98–104. http://dx.doi.org/10.15421/011014.

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Abstract (sommario):
Вивчено інтенсивність фотосинтезу у представників 20 родин відділу Magnoliophyta (Angiospermae). З’ясовано, що види дводольної флори мають вищий показник порівняно з однодольними (на 10,0 %). Наведено середні значення з межами коливання від 3,6 до 39,3 мг СО2/дм2 год. Досліджено види класифіковано за здатністю до асиміляції СО2. Встановлено залежність показника від біоморфи та гігроформ. Кореневищні види мають його на рівні достатніх і високих значень. Показано динаміку значень упродовж онтогенезу та вплив на них погодних умов.
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43

Podbielkowska, M. "Structure of the nucleoli in Angiosperms." Acta Societatis Botanicorum Poloniae 40, no. 1 (2015): 3–19. http://dx.doi.org/10.5586/asbp.1971.001.

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Abstract (sommario):
The nucleolus structure in the cells of numerous <i>Angiospermae</i> plants was studied with light microscope. The living material was examined under phase and anoptral contrast. Microscopical observations were also carried out on the material fixed in chrome-formalin or in uranyl-formalin. An occurrence of two structural components of nucleolus was demonstrated: an amorphous ground substance and nucleolonema. Cytochemical analysis have shown that considerable amounts of RNA and acid proteins were located in the amorphous substance while nucleolonema was composed of basic proteins
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44

Huda, Muhammad Komarul, Hanifah Mutia Z. N. Amrul, and Ferdinad Susilo. "KEANEKARAGAMAN TUMBUHAN BERBUNGA DI KAWASAN MALESIA." BIOLINK (Jurnal Biologi Lingkungan Industri Kesehatan) 6, no. 2 (2020): 162–70. http://dx.doi.org/10.31289/biolink.v6i2.2762.

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Abstract (sommario):
Tumbuhan berbunga merupakan tumbuhan yang memiliki ciri khas berupa bunga (sering juga disebut sebagai Angiospermae/Magnoliophyta). Tumbuhan berbunga merupakan kelompok tumbuhan yang sukses menyebar luas di dunia, diperkirakan mencapai 250.000 jenis. Salah satu penyebaran tumbuhan berbunga yang sukses di dunia, berada di kawasan Malesia, terbukti 70% tumbuhan endemik ada di kawasan ini. Keanekaragaman tumbuhan berbunga di kawasan Malesia tergolong tinggi, karena di pengaruhi oleh flora Asia dan Australia, seperti: Orchidaceae, Rubiaceae, Lauraceae, Euphorbiaceae, Dipterocarpaceae, Myrtaceae, M
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45

Tuan, Nguyen Thanh, and Phung Van Phe. "FLORA DIVERSITY IN THE PROPOSED DELACOUR’S LANGUR SPECIES AND HABITAT CONSERVATION AREA, HA NAM PROVINCE." Journal of Forestry Science and Technology, no. 15 (2023): 139–47. http://dx.doi.org/10.55250/jo.vnuf.2023.15.139-147.

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Abstract (sommario):
The flora in the Proposed Delacour’s Langur Species and Habitat Conservation Area is quite diverse with 562 species belonging to 373 genera, and 126 families of 6 vascular plant phyla. Of which, Angiospermae is the most dominant with 513 species (91.28%), 348 genera (93.3%) of 106 families (84.13%); the next Polypodiophyta with 38 species (6.76%), 18 genera (4.83%), 14 families (11.11%); the Lycopodiophyta has 5 species (0.89%) belonging to 3 genera (0.80%) of 2 families (1.59%) and the Gymnospermae has 4 species (0.71%) belonging to 2 genera (0.54%) of 2 families (1.59%); the last two Equiset
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46

Maya Rahayu, Gigin Ginanjar, and Fahmie Firmansyah. "Identification of Phanerogamae and Cryptogamae in the Campus Environment and Their Utilization as Learning Resources in the Plant Diversity Course." Edukasi 18, no. 2 (2024): 143–50. https://doi.org/10.15294/edukasi.v18i2.16957.

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Abstract (sommario):
Identification is the basis for grouping living things. Identification can be done by observing the morphological characteristics of a specimen. This research was conducted to identify the diversity of Phanerogamae and Cryptogamae plant species in the Bina Bangsa University Campus environment and their use as a learning resource for students in plant diversity courses. The research methodology used is an exploratory, descriptive survey method, which collects plant data and observes the morphology of the plants. The research results show two types of plants, namely higher plants (phanerogamae)
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47

Chambers, Kenton L., George Poinar, and Ron Buckley. "Tropidogyne, a New Genus of Early Cretaceous Eudicots (Angiospermae) from Burmese Amber." Novon: A Journal for Botanical Nomenclature 20, no. 1 (2010): 23–29. http://dx.doi.org/10.3417/2008039.

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48

Arditti, Joseph, S. M. Walters, A. Brady, et al. "The European Garden Flora, Volume I. Pteridophyta, Gymnospermae, Angiospermae-Monocotyledons (Part I)." Bulletin of the Torrey Botanical Club 115, no. 2 (1988): 133. http://dx.doi.org/10.2307/2996151.

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49

Hobbs, R. J. T., and S. M. Walters. "The European Garden Flora, Vol. 1. Pteridophyta; Gymnospermae; Angiospermae--Alismataceae to Iridaceae." Journal of Ecology 75, no. 2 (1987): 587. http://dx.doi.org/10.2307/2260447.

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50

WATANABE-TOMA, KANA, TETSUO OHI-TOMA, and JIN MURATA. "Typification of Angiospermae described from the Bonin Islands 1: Metachlamydeae." Phytotaxa 33, no. 1 (2011): 51. http://dx.doi.org/10.11646/phytotaxa.33.1.4.

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