Inventory of species and analysis of stomata characteristics of shade trees at UIN Walisongo Semarang

  • Rita Ariyana Nur Khasanah Biology Department, UIN Walisongo Semarang
  • Mirtaati Na'ima Biology Department, UIN Walisongo Semarang
Keywords: Inventory, shade trees, stomata

Abstract

The presence of shade trees has ecological function to reduce air pollution level. The part of leaves, stomata is responsible for the function. The study aimed to inventory species and analyze the characteristics of leaf stomata of shade trees at UIN Walisongo Semarang. This exploratory research was conducted in September-October 2021. Observation method throughout the campus area was carried out by using observation sheet. Some representative books and articles were used as references. For stomata observation, leaf samples were taken by purposive sampling. Paradermal preparations were made by wholemount method. All data were analyzed descriptively. The results showed that there were about 17 families, 37 species and 712 individual species of shade trees growing on campus 2-3. Then, there were about 8 families, 8 species and 138 individual species of shade trees growing on campus 1. The highest number of trees in both location was Glodogan Tiang. There were about 7 families, 7 species, and 194 individual species of shade trees recently planted on campus 2-3. Stomata characteristics (type, distribution, length and width, pore length and width, number, and density) differed in each species. The largest stomata size and pore were found in in abaxial leaves of Nyamplung whereas the highest stomata density was found in abaxial leaves of Mahagony. Pore size and density of stomata were related to the ability of leaves to reduce air pollution level. The shade tree data obtained in this study showed plant diversity in the campus.

References

Al Syauqi, A., & Purwani, K. (2017). Inventarisasi Tumbuhan Mangrove di Kampus Institut Teknologi Sepuluh Nopember. Jurnal Sains Dan Seni ITS, 6(2). https://doi.org/10.12962/j23373520.v6i2.27647

Alege, G. O., & Shaibu, D. O. (2015). Phylogenetic and Systematic Value of Leaf Epidermal Characteristics in Some Members of Nigerian Fabaceae. International Journal of Applied Sciences and Biotechnology, 3(2), 301–307. https://doi.org/10.3126/ijasbt.v3i2.12733

Balasooriya, B. L. W. K., Samson, R., Mbikwa, F., Vitharana, U. W. A., Boeckx, P., & Van Meirvenne, M. (2009). Biomonitoring of urban habitat quality by anatomical and chemical leaf characteristics. Environmental and Experimental Botany, 65(2–3), 386–394. https://doi.org/10.1016/j.envexpbot.2008.11.009

Casson, S., & Gray, J. E. (2008). Influence of environmental factors on stomatal development. New Phytologist, 178(1), 9–23. https://doi.org/10.1111/j.1469-8137.2007.02351.x

Chichiriccò, G., & Poma, A. (2015). Penetration and toxicity of nanomaterials in higher plants. Nanomaterials, 5(2), 851–873. https://doi.org/10.3390/nano5020851

Cotthem, W. Van. (1970). A classification of stomatal types. Botanical Journal of the Linnean Society, 63(3), 235–246. https://doi.org/10.1111/j.1095-8339.1970.tb02321.x

Croxdale, J. (2000). Stomatal patterning in angiosperms. American Journal of Botany, 87, 1069–1080. https://www.jstor.org/stable/2656643

Damayanto, I. P. G. P., Narakusumo, R. P., Kintamani, E., Putri, A. L., Rosyidah, A., Octaviana, S., Budiato, B. R., Pohan, F. N., Putrie, R. F. W., & Rachmadiyanto, A. N. (2017). Inventarisasi Jenis Pohon di Kawasan Pusat Pembinaan, Pendidikan, dan Pelatihan (Pusbindiklat) Peneliti - LIPI untuk Menunjang Faktor Keselamatan. Jurnal Arsitektur Lansekap, 3(2), 138. https://doi.org/10.24843/jal.2017.v03.i02.p03

Des, M., Vauzia, & Gusti, Y. S. (2020). Characteristics of Mahogany Stomata (Swietenia macrophylla K.) in Polluted Environments. 10(ICoBioSE 2019), 39–42. https://doi.org/10.2991/absr.k.200807.009

Des, M., Vauzia, & Gusti, Y. S. (2021). Stomata Characteristics of Ketapang Leaves (Terminalia catappa L.) Based on Environmental Differences. Journal of Physics: Conference Series, 1940(1), 012051. https://doi.org/10.1088/1742-6596/1940/1/012051

DPU. (2012). Pedoman Penanaman Pohon pada Sistem Jaringan. http://iali.or.id/jabar/wp-content/uploads/2016/04/Panduan%20tanaman%20jalan.pdf

Dwiyani, R. (2013). Mengenal Tanaman Pelindung di Sekitar Kita (J. Atmaja (Ed.); 1st ed.). Udayana University Press. https://erepo.unud.ac.id/id/eprint/9280/

Ekeke, C., & Agbagwa, I. O. (2015). Epidermal structures and stomatal ontogeny in Terminalia catappa l. (Combretaceae). International Journal of Botany, 11(1), 1–9. https://doi.org/10.3923/ijb.2015.1.9

Hamidah, Putri, D., & Purnobasuki, H. (2020). Correlation of lead (Pb) content towards the number of stomata on the plant Dracaena marginata tricolor in some places of Surabaya City. E3S Web of Conferences, 153(02002), 1–7. https://doi.org/10.1051/e3sconf/202015302002

Harrison, E. L., Arce Cubas, L., Gray, J. E., & Hepworth, C. (2020). The influence of stomatal morphology and distribution on photosynthetic gas exchange. Plant Journal, 101(4), 768–779. https://doi.org/10.1111/tpj.14560

Hasan, P. A., Firman, F., & Nurhidayah, N. (2020). Inventarisasi Tanaman Obat di Lokasi Pembangunan Kampus Universitas Sulawesi Barat (Studi Pendahuluan). Saintifik, 6(1), 63–67. https://doi.org/10.31605/saintifik.v6i1.233

Humami, D. W., Sujono, P. A. W., & Desmawati, I. (2020). Densitas dan Morfologi Stomata Daun Pterocarpus indicus di Jalan Arif Rahman Hakim dan Kampus ITS, Surabaya. Rekayasa, 13(3), 240–245. https://doi.org/10.21107/rekayasa.v13i3.7869

Ismiyati, Marlita, D., & Saidah, D. (2014). Pencemaran udara akibat emisi gas buang kendaraan bermotor. Jurnal Manajemen Transportasi & Logistik, 01(03), 241–248. https://doi.org/http://dx.doi.org/10.25292/j.mtl.v1i3.23

Kamaluddin, K., Wiguna, G. A., & Rizki, M. (2020). Karakteristik Stomata pada Berbagai Jenis Daun Pohon di Sekitar Kampus Universitas Timor. Jurnal Jejaring Matematika Dan Sains, 2(1), 29–31.https://doi.org/10.36873/jjms.2020.v2.i1.367

Khan, F., Yousaf, Z., Ahmed, H., Arif, A., Rehman, H., Younas, A., Rashid, M., Tariq, Z., & Raiz, N. (2014). Stomatal Patterning: An Important Taxonomic Tool for Systematical Studies of Tree Species of Angiosperm. Annual Research & Review in Biology, 4(24), 4034–4053. https://doi.org/10.9734/arrb/2014/10073

Kushwaha, U., Shrivastava, R., & Mishra, A. (2018). Dust Pollution Effects On The Leaves Anatomy Of Catharanthus Roseus And Nerium Oleander Growing Along The Road Side Of Rewa City ( M . P .). The International Journal of Engineering and Science (IJES), 7(9), 1–7. https://doi.org/10.9790/1813-0709020107

Laporan Rektor UIN Walisongo. (2019). https://walisongo.ac.id/wp-content/uploads/2021/04/ISILAPORAN REKTOR UIN WALISONGO 2019.pdf

Mansur, M., & Pratama, B. A. (2014). Potensi serapan Gas Karbondioksida ( CO 2 ) pada jenis-jenis pohon pelindung jalan ( Potential Absorption of Carbon Dioxide ( CO 2 ) in Wayside Trees ). Jurnal Biologi Indonesia, 10(2), 149–158. https://doi.org/10.14203/jbi.v10i2.2079

Mariski, Nasrullah, N., & Gunawan, A. (2017). Visitors Perception and Preferences Toward The Climatological Comfort in Menteng Park and Honda Tebet Park. Jurnal Lanskap Indonesia, 9(1), 24–35. https://doi.org/0.29244/jli.2017.9.1.24-35

Megia, R., Ratnasari, & Hadisunarso. (2015). Karakteristik Morfologi dan Anatomi , serta Kandungan Klorofil Lima Kultivar Tanaman Penyerap Polusi Udara Sansevieria trifasciata. Jurnal Sumberdaya Hayati, 1(2), 34–40. https://doi.org/https://doi.org/10.29244/jsdh.1.2.34-40

Obembe, O. A. (2015). Structural Variation of Stomata in Some Dicotyledonous Trees. 4(2), 173–181. https://www.walshmedicalmedia.com/open-access/structural-variation-of-stomata-in-some-dicotyledonous-trees.pdf

Pourkhabbaz, A., Rastin, N., Olbrich, A., Langenfeld-Heyser, R., & Polle, A. (2010). Influence of environmental pollution on Leaf properties of urban plane trees, Platanus orientalis L. Bulletin of Environmental Contamination and Toxicology, 85(3), 251–255. https://doi.org/10.1007/s00128-010-0047-4

Prabhakar, M. (2004). Structure, delimitation, nomenclature and classification of stomata. Acta Botanica Sinica, 46(2), 242–252. https://www.jipb.net/EN/Y2004/V46/I2/242

Pratama, F. E., Nurul, S., Irwan, R., & Rogomulyo, R. (2021). Fungsi Vegetasi sebagai Pengendali Iklim Mikro dan Pereduksi Suara di Tiga Taman Kota DKI Jakarta Study on Plant Functions as Microclimate Amelioration and Sound Reduction in Three Urban Parks in Special Capital Region of Jakarta. 10(3), 214–222. https://doi.org/10.22146/veg.39112

Putri, A., Lila, K., & Astawa, I. (2013). Studi Tanaman Penghijauan Glodokan Tiang (Polythea longifolia), Kasia Emas (Cassia surattensis), Kelapa (Cocos nucifera) sebagai Penyerap Emisi Gas Karbondioksida di Jalan PB. Sudirman Denpasar. E-Jurnal Agroekoteknologi Tropika (Journal of Tropical Agroecotechnology), 2(2), 108–115. https://ojs.unud.ac.id/index.php/JAT/article/view/5415

Rada, I. G. M., Utami, N. W. F., & Astawa, I. N. G. (2019). Evaluasi nilai keindahan dan indeks kenyamanan taman kota Lumintang Denpasar. Jurnal Arsitektur Lansekap, 5(2), 150. https://doi.org/10.24843/jal.2019.v05.i02.p02

Rahmadhani, S., Yuwono, S. B., Setiawan, A., & Banuwa, I. S. (2019). Selection of Tree Species to Absorb Dust in The Median of The City of Bandar Lampung. Jurnal Belantara, 2(2), 134–141. https://doi.org/Jurnal Belantara Vol. 2, No. 2, Agustus 2019 (134-141) E-ISSN 2614-3453 DOI: https://doi.org/10.29303/jbl.v2i2.181

Raven, P. H., Johnson, G. B., Mason, K. A., & Singer, S. R. (2011). Biology (9th ed.). McGraw-Hill. https://fkg.usu.ac.id/images/Biology-9th-Edition-by-Peter-H-Raven-George-B-Johnson.pdf

Samsoedin, I., Susidharmawan, I. W., Pratiwi, & Wahyono, D. (2015). Peran Pohon dalam Menjaga Kualitas Udara di Perkotaan (H. S. Arifin, H. Gunawan, & M. Turjaman (Eds.); 1st ed.). Forda Press. http://simlit.puspijak.org/files/buku/Digital-Peran_Pohon_PUSPIJAK_FP_2015.pdf

Santoso, S., Lestari, S., & Samiyarsih, S. (2012). Inventarisasi tanaman peneduh jalan penyerap timbal di Purwokerto. Prosiding Seminar Nasional: Pengembangan Sumber Daya Pedesaan Dan Kearifan Lokal Berkelanjutan II, Purwokerto, 27-28 Nopember 2012, 197–303. http://jurnal.lppm.unsoed.ac.id/ojs/index.php/Prosiding/article/viewFile/250/249

Sass, J. E. (1958). Botanical Microtechnique. The Iowa State College Press. https://www.cabdirect.org/cabdirect/abstract/19580601406

Schreck, E., Foucault, Y., Sarret, G., Sobanska, S., Cécillon, L., Castrec-Rouelle, M., Uzu, G., & Dumat, C. (2012). Metal and metalloid foliar uptake by various plant species exposed to atmospheric industrial fallout: Mechanisms involved for lead. Science of the Total Environment, 427–428, 253–262. https://doi.org/10.1016/j.scitotenv.2012.03.051

Silva, M. ., Reis, C., & Pontes-Pires, A. F. P. (2012). Anatomical Characteristics of Leaf of Five Species of Family Fabaceae Found in Sinop, MT. Scientific Electronic Archives, 1(1), 16–19. https://sea.ufr.edu.br/SEA/article/view/6
Simpson, M. G. (2010). Plant Systematics (2nd ed.). Academic Press. https://booksite.elsevier.com/samplechapters/9780123743800/01~Front_Matter.pdf

Singh, G. (2010). Plant Systematics, An Integrated Appoarch, 3rd Edition. Science Plubishers.

Song, J. H., Yang, S., & Choi, G. (2020). Taxonomic implications of leaf micromorphology using microscopic analysis: A tool for identification and authentication of korean piperales. Plants, 9(5), 1–15. https://doi.org/10.3390/plants9050566

Suripto, S., & Aksari, S. Y. (2021). Evaluasi Ekologis Pohon Pelindung Kampus Universitas Mataram. Jurnal Pengabdian Magister Pendidikan IPA, 3(2). https://doi.org/10.29303/jpmpi.v3i2.565

Susilowati, A., Novriyanti, E., Rachmat, H. H., Rangkuti, A. B., Harahap, M. M., Ginting, I. M., Kaban, N. S., & Iswanto, A. H. (2022). Foliar stomata characteristics of tree species in a university green open space. Biodiversitas, 23(3), 1482–1489. https://doi.org/10.13057/biodiv/d230336

Susilowati, S. M. E. (2006). Anatomi Tumbuhan. Penerbit Kanisius.

Sutrisno, A. J., Diandasari, G., & Rahmandari, A. V. (2020). Kapasitas Pohon Nyamplung (Calophyllum Inophyllum L.) dan Pohon Spathodea (Spathodea Campanulata) Dalam Menjerap Debu. Jurnal Planologi, 17(1), 88. https://doi.org/10.30659/jpsa.v17i1.5197

Wijaya, S. K., Putrika, A., Pradana, D. H., & Resmi, S. (2017). Inventarisasi Tumbuhan Kawasan Sempadan Di Situ Agathis, Universitas Indonesia, Depok, Jawa Barat. Al-Kauniyah: Jurnal Biologi, 10(1), 17–25. https://doi.org/10.15408/kauniyah.v10i1.4517

Yasmine, P. A., & Wicaksono, K. P. (2018). Analisis Tingkat Kenyamanan dan Vegetasi Ruang Terbuka Hijau Taman Singha Merjosari. Plantropica, 3(2), 149–155. https://jpt.ub.ac.id/index.php/jpt/article/view/173

Yudha, G. P., Noli, Z. A., & Idris, M. (2013). Pertumbuhan Daun Angsana (Pterocarpus indicus Willd) dan Akumulasi Logam Timbal (Pb) The leaves growth of angsana (Pterocarpusindicus Willd) and lead (Pb) accumulation. Jurnal Biologi Universitas Andalas (J. Bio. UA.), 2(2), 83–89. https://doi.org/https://doi.org/10.25077/jbioua.2.2.%25p.2013

Zayadi, H., & Hayati, A. (2017). Spatial Distribution of Shade Trees on Lowokwaru of Malang City with GIS e − JBST Agustus 2017 e − JBST Agustus 2017. Biosaintropis, 3(July), 46–52. http://biosaintropis.unisma.ac.id/index.php/biosaintropis/article/view/103

Zhang, L., Niu, H., Wang, S., Zhu, X., Luo, C., Li, Y., & Zhao, X. (2012). Gene or environment? Species-specific control of stomatal density and length. Ecology and Evolution, 2(5), 1065–1070. https://doi.org/10.1002/ece3.233
Published
2022-07-21
How to Cite
Khasanah, R., & Na’ima, M. (2022). Inventory of species and analysis of stomata characteristics of shade trees at UIN Walisongo Semarang. Edubiotik : Jurnal Pendidikan, Biologi Dan Terapan, 7(01), 63-78. https://doi.org/10.33503/ebio.v7i01.1731
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