Acta Biologica

Wcześniej: Zeszyty Naukowe Uniwersytetu Szczecińskiego. Acta Biologica

ISSN: 2450-8330     eISSN: 2353-3013    OAI    DOI: 10.18276/ab.2020.27-06
CC BY-SA   Open Access   DOAJ

Lista wydań / No. 27
Richness and diversity of odonates of the agricultural college and research institute, Vazhavachanur, Tamilnadu, India
(Bogactwo i różnorodność ważek z terenu kolegium rolniczego i instytutu badawczego, Vazhavachanur, Tamilnadu, Indie)

Autorzy: Vaithiyanathan Radhakrishnan
Agricultural College and Research Institute, Vazhavachanur – 606 753, Thiruvannamalai District, Tamil Nadu, India

Ramanathan Arulprakash
Seeds Centre, Tamil Nadu Agricultural University, Coimbatore – 641 003, Tamil Nadu, India

Iyappan Parivarthani
Agricultural College and Research Institute, Vazhavachanur – 606 753, Thiruvannamalai District, Tamil Nadu, India

Selvarasu Ponnivalavan
Agricultural College and Research Institute, Vazhavachanur – 606 753, Thiruvannamalai District, Tamil Nadu, India

Mohan Priyadharshini
Agricultural College and Research Institute, Vazhavachanur – 606 753, Thiruvannamalai District, Tamil Nadu, India

Muthaiyan Pandiyan
Agricultural College and Research Institute, Vazhavachanur – 606 753, Thiruvannamalai District, Tamil Nadu, India
Słowa kluczowe: Vazhavachanur ważki różnoskrzydłe ważki równoskrzydłe Libellulidae i Coenagrionidae
Data publikacji całości:2020
Liczba stron:9 (57-65)
Cited-by (Crossref) ?:

Abstrakt

Zbadano różnorodność Odonata w Kolegium Rolniczym i Instytucie Badawczym odnotowano 16 gatunków Odonata. Łącznie w okręgu Thiruvannamalai w stanie Tamil Nadu w Indiach zidentyfikowano 11 gatunków ważek różnoskrzydłe i 5 gatunków ważek równoskrzydłych. Pantala flavescens, Diplacodes tryialis, Brachythemis contaminata i Ischnura aurora odnotowano we wszystkich ośmiu lokalizacjach. Trithemis pallidinervis i Agriocnemis pygmaea odnotowano w siedmiu miejscach, z wyjątkiem stawu hodowlanego i otwartego obszaru. Rhyothemis variegata odnotowano tylko na otwartym terenie. Wyniki wyraźnie pokazują, że ważki mają określone preferencje siedliskowe dotyczące ich wzrostu i rozwoju. Podczas badań zaobserwowano i zebrano cztery rodziny: Libellulidae, Gomphidae, Aeshnidae i Coenagrionidae. Najliczniejszą rodziną były Libellulidae (56,25%), składające się z 9 gatunków, następnie Coenagrionidae (31,25%) z 5 gatunkami. Niską liczebność gatunków odnotowano w rodzinach Gomphidae i Aeshnidae po 6,25%. Indeks Simpsona i Shannona wykazał maksymalne zróżnicowanie na otwartym obszarze (odpowiednio 0,8743 i 2,186) i minimalne w lokalizacji 8 (obszar upraw) i lokalizacji 4 (Sathakuppam). Otwarty obszar wykazywał maksymalny wskaźnik bogactwa (Margalef) (2,275), następnie był staw hodow-lany (2,196), minimalny wskaźnik bogactwa odnotowano w lokalizacji Sathakuppam (1,276). Wskaźnik równości J, maksymalna równość gatunkowa (0,788) odnotowano w lokalizacji 6, tj. Staw hodowlany (0,6727), a następnie na otwarty obszarze (0,686).
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Bibliografia

1.Acharjee, B.K., Karzee, L. (2016). A checklist of dragonfly (Odonata: Anisoptera) diversity in the campus of
2.University Of Science And Technology, Meghalaya (USTM), RiBhoi district, Meghalaya, India. Journal of
3.Entomology and Zoology Studies, 4 (3), 124–127.
4.Arulprakash, R., Gunathilagaraj, K. (2010). Abundance and diversity of Odonata in temporary water bodies of
5.Coimbatore and Salem districts in Tamilnadu. Journal of Threatened taxa, 2 (8), 1099–1102.
6.Asaithambi, M., Manickavasagam, S. (2002). Odonata of Annamalai University, Annamalai Nagar, Tamil Nadu.
7.Zoos’ Print Journal, 17, 704–706.
8.Baruah, C., Saikia, P.K. (2015). Abundance and Diversity of Odonates in Different Habitats of Barpeta District,
9.Assam, India. International Research Journal of Biological Sciences, 4 (9), 17–27.
10.Bhattacharya, B., Basit, A., Saikia, D.K. (2006). Parasitoids and predators of rice insect pests of Jorhat district of
11.Assam. Journal of Biological Control, 20, 37–44.
12.Bispo, P.C., Oliveira, L.G. (2007). Diversity and structure of Ephemeroptera, Plecoptera and Trichoptera (Insecta)
13.assemblages from riffles in mountain streams of Central Brazil. Revista Brasileira de Zoo-logia, 24, 283–293.
14.Chovanec, A., Waringer, J. (2001). Ecological integrity of river-floodplain systems-assessment by dragonfly surveys
15.(Insecta: Odonata). Regulated Rivers: Research & Management, 17, 493–507.
16.Clark, T.E., Samways, M.J. (1996). Dragonflies (Odonata) as indicators of biotype quality in the Kruger National
17.Park, South Africa. Journal of Applied Ecology, 33, 1001–1012.
18.Dwari, S., Mondal, A.K. (2017). Diversity of Odonates in agricultural fields of Howrah district, West Bengal, India.
19.Journal of Entomology and Zoology Studies, 5 (3), 1588–1595.
20.Elanchezhyan, K., Sowmiya, C., Agilesh, S., Venkatesh, M. (2017). Diversity of odonates at agricultural college
21.campus, Killikulam, Tamil Nadu, India. Journal of Entomology and Zoology Studies, 5 (5), 935–940.
22.Goldsmith, S. (2007). Density of longhorned beetles (Coleoptera: Cerambycidae) differs at different elevations in
23.Hawaiian montane forest. The Southwestern Naturalist, 52, 364–370.
24.Gunathilagaraj, K., Soundararajan, R.P., Chitra, N., Swamiappan, M. (1999). Odonata in the Rice field of
25.Coimbatore. Zoos΄ Print journal, 14 (6), 43–44.
26.Kiauta, B. (1983). The status of the Japanese Crocothemis servilia. (Drury) as revealed by karyotypic morphology
27.(Anisoptera: Libellulidae). Odonatologica, 12 (4), 381–288.
28.Kittelson, P.M. (2004). Sources of variation in insect density on Lupinus arboreus Sims: effects of environment,
29.source population and plant genotype. The American Midland Naturalist, 152, 323–335.
30.Krishnasamy, N., Chauhan, O.P. Das, R.K. (1984). Some common predators of rice insect pests in Assam.
31.International Rice Research Newsletter, 9, 15–16.
32.Ludwig, J.A., Reynolds, J.F. (1998). Statistical Ecology. New York: Wiley and Sons.
33.Manwar, N.A., Rathod, P.P., Raja, I.A. (2014). Diversity and abundance of Dragonflies and Damselflies (Or-
34.der – Odonata) of Pohara Range in Pohara – Malkhed Reserve Forest, Maharashtra (India). Paripex – Indian
35.Journal of Research, 3 (6), 208–210.
36.Muthukumaravel, K., Bose Raja, R., Amsath, A., Prabakaran, R., Chezhian, Y. (2015). Seasonal variation of
37.dragonflies diversity in Muthupet Mangrove Forest, Tamil Nadu, India. International Journal of Pure and Applied
38.Zoology, 3 (2), 188–192.
39.Nair, M.V. (2011). Dragonflies and damselflies of Orissa and Eastern India. Wildlife Organization, Forest and
40.Environmental Department, Government of Orissa.
41.Nesemann, H., Shah, R.T., Shah, D.N. (2011). Key to the larval stages of common Odonata of Hindu Kush
42.Himalaya, with short notes on habitats and ecology. Journal of threatened Taxa, 3 (9), 2045–2060.
43.Rathod, P.P., Manwar, N.A., Pawar, S.S., Raja, I.A. (2012). Diversity and Abundance of Dragonflies and
44.Damselflies (Order - Odonata) in Agro Ecosystems Around the Amravati City (M.S.), India in Monsoon Season.
45.International Journal of Advanced and Innovative Research, 1 (7), 174–182.
46.Rowe, R. (2003). Dragonflies: Behaviour and Ecology of Odonata. Australian Journal of Entomology, 42 (2),
47.210–211.
48.Selvarasu, P., Gunasekaran, C., Agnes Deepa, A., Mohana, P., Raj Kumar, V., Chinnaraj, P. (2019). Diversity of
49.Odonates (Insecta: Odonata) in different habitats of Vellore district, Tamil Nadu, India in Eastern Ghats.
50.International Journal of Recent Scientific Research, 10 (4), 2127–2130.
51.Shelton, M.D., Edwards, C.R. (1983). Effects of weeds on the diversity and abundance of insects in soybeans.
52.Environmental Entomology, 12, 296–299.
53.Smith, T.M., Straton, W. (1986). Effect of synthetic insecticides on non- target organisms. Residue Review, 97,
54.93–120.
55.Tang, J.X., Siegfried, B.D. (1995). Comparative uptake of a pyrethroid and organophosphate insecticide by
56.selected aquatic insects. Bulletin of Environmental Contamination and Toxicology, 55, 130–135.
57.Tillyard, R.J. (1917). The Biology of Dragonflies. Cambridge: Cambridge University Press.
58.Tofilski, A. (2004). Draw Wing, a program for numerical description of insect wings. Journal of Insect
59.Science, 4 (17), 5.
60.Weir, JS. (1974). Odonata collected in and near seasonal pools in Wankie National Park, Rhodesia with
61.notes on the physio-chemical environments in which nymphs were found. Journal of the Entomological Society of
62.South Africa, 37, 135–145.