Araştırma Makalesi
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Güneybatı Türkiye’de Farklı Orman Habitatlarındaki Yaprak Bitlerinin Bulaşıklık Oranı, Mevsimsel Bolluğu ve Bazı Çevresel Faktörlerle İlişkileri

Yıl 2024, Cilt: 24 Sayı: 2, 115 - 132, 03.10.2024
https://doi.org/10.17475/kastorman.1557386

Öz

Çalışmanın amacı: Ormanlarda yaprak bitlerinin bulaşıklık oranı, mevsimsel bolluğu ve bazı çevresel faktörlerle ilişkileri belirlenmiştir.
Çalışma alanı: Isparta’da Pinus nigra, P. brutia, Cedrus libani, Abies cilicica, Juniperus spp., Quercus spp. ve Robinia pseudoacacia ormanlarında (34 örnekleme alanı) gerçekleştirilmiştir.
Materyal ve yöntem: 2019-2020 yıllarında nisan-ekim aylarında ayda bir kez sistematik örnekleme yapılmıştır. Yaprak biti yoğunluğu ve bulaşıklık oranlarını belirlemek için 10 ağaçtan 30 cm’lik sürgünler alınmıştır. Alanların eğim, bakı, yükselti, meşcere karakteristikleri ile günlük minimum, ortalama ve maksimum sıcaklık, toplam yağış değerleri kaydedilmiştir.
Temel sonuçlar: Her iki yılda da bolluk değerleri en fazla karaçam, meşe ve yalancı akasya alanlarında görülmüştür. Bolluk değerleri ile gelişim çağı (p<%0.05) ilişkili bulunmuştur. Ayrıca bolluk değerleri ile 2019 yılı temmuz ayında minimum sıcaklık, eylül ayında maksimum sıcaklıkla negatif, ekim ayında yağış ile pozitif ilişki, 2020 yılı temmuz ayında hem ortalama hem de maksimum sıcaklıkla negatif, ağustos ayında ortalama sıcaklık ile pozitif ilişki saptanmıştır.
Araştırma vurguları: Bulaşıklık ve bolluk parametreleri üzerinde ağaç türü ve iklim koşullarının etkili olduğu düşünülmektedir.

Kaynakça

  • Anderegg, W. R., Hicke, J. A., Fisher, R. A., Allen, C. D., Aukema, J., Bentz, B., Hood, S., Lichstein, J. W., Macalady, A. K., McDowell, N., Pan, Y., Raffa, K., Sala, A., Shaw, J. D., Stephenson, N. L., Tague, C., Zeppel, M. (2015). Tree mortality from drought, insects, and their interactions in a changing climate. New Phytologist, 208(3), 674-683.
  • Ayres, M. P. & Lombardero, M. J. (2000). Assessing the consequences of global change for forest disturbance from herbivores and pathogens. Science of the Total Environment, 262 (3): 263-286.
  • Bryant, D. G. (1976). Sampling populations of (Homoptera: Phylloxeridae) on balsam fir, Abies balsamea. Canadian Entomologist, 108, 1113-1124.
  • Carter, C. I. & Maslen, N. R. (1982). Conifer Lachnids. Forestry Commission Bulletin, No: 58, 75p. London.
  • Cebeci, H. H. (2003). İstanbul Orman Bölge Müdürlüğü İstanbul İli Ağaçlandırma Alanlarındaki Entomolojik Sorunlar. (Doktora Tezi, İstanbul Üniversitesi, Fen Bilimleri Enstitüsü).
  • Chilima, C. Z. & Leather, S. R. (2001). Within‐tree and seasonal distribution of the pine woolly aphid Pineus boerneri on Pinus kesiya trees. Agricultural and Forest Entomology, 3(2), 139-145.
  • Coeur d’acier, A., Hidalgo N. P. & Petrović-Obradović, O. (2010). Aphids (Hemiptera, Aphididae). Chapter 9.2. In: Roques A et al. (Eds) Alien terrestrial arthropods of Europe. BioRisk, 4(1), 435-474.
  • Çolak, H. A. (2001). Ormanda Doğa Koruma. Milli Parklar Av-Yaban Hayatı Genel Müdürlüğü, Ankara, 354s. ISBN: 975-8273-33-7.
  • Demeke, A. D. (2020). Status of cypress aphid on Cupressus lusitanica and Juniperus procera in protected and cultivated forests of South Wollo, Ethiopia. Journal of Forestry Research, 31(1), 333-337.
  • Dixon, A. F. G. (1998). Aphid Ecology: an optimization approach. Springer Science & Business Media, New York, 300pp.
  • Dixon, A. F. G. (2012) Aphid Ecology. Springer Science & Business Media, New York.
  • Fidgen, J. G., Teerling, C. R. & McKinnon, M. L. (1994). Intra- and inter-crown distribution of the eastern spruce gall adelgid, Adelges abietis (L.), on young white spruce. Canadian Entomologist, 126, 1105-1110.
  • Fidgen, J. G., Legg, D. E. & Salom, S. M. (2006). Binomial sequential sampling plan for hemlock woolly adelgid (Hemiptera: Adelgidae) sistens infesting individual eastern hemlock trees. Journal of Economic Entomology, 99, 1500-1508.
  • Friedman, M. (1937). The use of ranks to avoid the assumption of normality implicit in the analysis of variance. Journal of the American Statistical Association, 32(200), 675-701.
  • Furniss, R. L. & Carolin, V. M. (1977). Western Forest Insects. U.S. Department of Agriculture, Miscellaneous Publication No: 1339.
  • Gullan, P. J. & Cranston, P. S. (2012). Böcekler: Entomolojinin Ana Hatları. The Insects: An Outline of Entomology. Çeviri Editörü: Prof. Dr. Ali Gök, Basımdan çeviri, Nobel Yayıncılık, XVI+564s.
  • Halldórsson, G., Benedikz, T., Eggertsson, O., Oddsdóttir, E. S. & Óskarsson, H. (2003). The impact of the green spruce aphid Elatobium abietinum (Walker) on long-term growth of Sitka spruce in Iceland. Forest Ecology and Management, 181(3), 281-287.
  • Hauke, J. & Kossowski, T. (2011): Comparison of values of Pearson's and Spearman's correlation coefficients on the same sets of data. Quaestiones Geographicae 30(2), 87-93
  • Havill, N. P. & Foottit, R. G. (2007). Biology and evolution of Adelgidae. Annual Review of Entomology, 52, 325-349.
  • Heidari Latibari, M., Kavallieratos, N. G. & Ghafouri Moghaddam, M. (2022). Impact of seasonality and ladybird predators on the population dynamics of Mugo pine aphids. International Journal of Tropical Insect Science, 42(3), 2651-2662.
  • Heie, O. E. (2009). Aphid mysteries not yet solved (Hemiptera: Aphidomorpha). Aphids and other Hemipterous Insects, 15, 31-48.
  • Kebede, S. & Mulugeta, T. (2021). Tree Diversity and Damage by Cypress Aphid, Cinara cupressi, on Juniperus procera in Gulele Botanical Garden and Entoto. International Journal of Forestry Research, 2021, 1-7.
  • Kingsolver, J. G., Arthur Woods, H., Buckley, L. B., Potter, K. A., MacLean, H. J., et al. (2011). Complex life cycles and the responses of insects to climate change. Integrative and Comparative Biology, 51(5), 719-732,
  • Kök, Ş. (2019). Çanakkale ve Balıkesir İlleri Yaprakbiti (Hemiptera: Aphidoidea) Faunası ile Doğal Düşmanlarının Belirlenmesi ve Kiraz Siyah Yaprakbiti, Myzus cerasi (Fabricius, 1775)'nin Biyolojisi Üzerine Çalışmalar. (Doktora Tezi, Çanakkale Onsekiz Mart Üniversitesi, Fen Bilimleri Enstitüsü)
  • Laamari, M. (2016). First report of Phylloxera quercus (Hemiptera: Sternorrhyncha: Aphididae) in Algeria. EPPO Bulletin, 46(3), 576-579.
  • Larsson, S. (1985). Seasonal changes in the within-crown distribution of the aphid Cinara pini on Scots pine. Oikos, 217-222.
  • Leather, S. R. (Ed.). (2005). Insect sampling in forest ecosystems. 303p., John Wiley & Sons.
  • Lehmann, P., Ammunét, T., Barton, M., Battisti, A., Eigenbrode, S. D., et al. (2020). Complex responses of global insect pests to climate warming. Frontiers in Ecology and the Environment, 18(3), 141-150. Lima, M., Harrington, R., Saldana, S. & Estay, S. (2008). Non‐linear feedback processes and a latitudinal gradient in the climatic effects determine green spruce aphid outbreaks in the UK. Oikos, 117(6), 951-959.
  • Lubiarz, M. (2007). Life cycle and number dynamics of Phylloxera sp. on pedunculate oak (Quercus robur L.) in industrial and protected areas. Aphids and other Hemipterous Insects, 13, 137-144.
  • Madoffe, S. S. & Austarå, Ø. (1993). Abundance of the pine woolly aphid Pineus pini in Pinus patula stands growing on different sites in the Sao Hill district, Tanzania. The Commonwealth Forestry Review, 118-121.
  • May, B. M. & Carlyle, J. C. (2003). Effect of defoliation associated with Essigella californica on growth of mid-rotation Pinus radiata. Forest Ecology and Management, 183(1), 297-312.
  • Mailu, A. M., Khamala, C. P. M. & Rose, D. J. W. (1978). Evaluation of pine woolly aphid damage to Pinus patula and its effect on yield in Kenya. East African Agricultural and Forestry Journal, 43(3), 259-265.
  • McClure, M. S. (1991). Density-dependent feedback and population cycles in Adelges tsugae (Homoptera: Adelgidae) on Tsuga canadensis. Environmental Entomology, 20(1), 258-264.
  • Meteoroloji İşleri Genel Müdürlüğü (MİGM). (2021). Isparta ilinde bulunan istasyonlara ait iklim verileri. https://www.mgm.gov.tr/ (Son erişim tarihi: 12.04.2021).
  • Moos, C., Guisan, A., Randin, C. F. & Lischke, H. (2021). Climate change impacts the protective effect of forests: a case study in Switzerland. Frontiers in Forests and Global Change, 4, 682923.
  • Oğuzoğlu, S. & Avcı, M. (2019). Distribution, biology, morphology and damage of Cinara cedri Mimeur, 1936 (Hemiptera: Aphididae) in the Isparta Regional Forest Directorate. Forestist, 69(1), 1-11.
  • Öktem, E. (1987). Kızılçam El Kitabı Dizisi: 2. Ormancılık Araştırma Enstitüsü Yayınları, Muhtelif Yayınlar Serisi, 52, 181s.
  • Pereira, D. G., Afonso, A. & Medeiros, F. M. (2015). Overview of Friedman’s test and post-hoc analysis. Communications in Statistics-Simulation and Computation, 44(10), 2636-2653.
  • Perry, D. A., Oren, R. & Hart, S. C. (2008). Forest ecosystems. JHU press.
  • Pilichowski, S., Pazio, D. & Giertych, M. (2014). Factors associated with the distribution and size of Adelges abietis (Homoptera: Adelgidae) galls on a several years old spruce (Picea abies) plantation. Entomologica Fennica, 25(4), 161-169.
  • Platková, H., Pyszko, P., Coeur d´ Acier, A., Jousselin, E. & Drozd, P. (2020). Spatial distribution of aphids in the canopy of a temperate forest: where can they be found? Agricultural and Forest Entomology, 22(4), 379-389.
  • Pureswaran, D. S., Roques, A. & Battisti, A. (2018). Forest insects and climate change. Current Forestry Reports, 4, 35-50.
  • Rodas, C. A., Serna, R., Bolaños, M. D., Granados, G. M., Wingfield, M. J., Hurley, B. P. (2015). Biology, incidence and host susceptibility of Pineus boerneri (Hemiptera: Adelgidae) in Colombian pine plantations. Southern Forests: A Journal of Forest Science, 77(3), 165-171.
  • Simpson, K. L. S. (2013). Interactions between aphids and their host plants under drought stress. The University of Edinburgh, Doctoral thesis, 202p.
  • Stange, E. E. & Ayres, M. P. (2010). Climate change impacts: Insects. eLS.
  • Stekolshchikov, A. V. & Kozlov, M. V. (2012). Distribution records of aphids (Hemiptera: Phylloxeroidea, Aphidoidea) associated with main forest-forming trees in Northern Europe. Entomologica Fennica, 23(4), 206-214.
  • Straw, N. A., Fielding, N. J., Green, G. & Price, J. (2005). Defoliation and growth loss in young Sitka spruce following repeated attack by the green spruce aphid, Elatobium abietinum (Walker). Forest Ecology and Management, 213(1-3), 349-368.
  • Straw, N., Fielding, N., Green, G. & Price, J. (2006). Seasonal changes in the distribution of green spruce aphid Elatobium abietinum (Walker) (Homoptera: Aphididae) in the canopy of Sitka spruce. Agricultural and Forest Entomology, 8(2), 139-154.
  • Straw, N., Fielding, N., Green, G., Price, J., & Williams, D. (2011). Defoliation and growth relationships for mid-rotation Sitka spruce attacked by the green spruce aphid, Elatobium abietinum (Walker)(Homoptera: Aphididae). Forest Ecology and Management, 262(7), 1223-1235.
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Infestation Rates, Seasonal Abundance of Aphids and Relationships with Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye

Yıl 2024, Cilt: 24 Sayı: 2, 115 - 132, 03.10.2024
https://doi.org/10.17475/kastorman.1557386

Öz

Aim of study: It was to determine the infestation rate and seasonal abundance of aphids and their relationships with some environmental factors in forests.
Area of study: The study was conducted in Pinus nigra, P. brutia, Cedrus libani, Abies cilicica, Juniperus spp., Quercus spp. and Robinia pseudoacacia forests (34 sampling areas) in Isparta.
Materials and methods: Systematic sampling was carried out monthly throughout April-October in 2019-2020. As aphid density and infestation rates were determined, 30 cm shoots were taken from 10 trees. The slope, aspect, elevation, forest characteristics, daily minimum, average, and maximum temperature and total precipitation were recorded.
Main results: Abundance were highest in P. nigra, Quercus and Robinia pseudoacacia forests in both years. There was a significant correlation between abundance and development stages (p<0.05). Additionally, abundance showed a negative relationship with minimum temperature in July 2019, maximum temperature in September 2019, and a positive relationship with precipitation in October 2019. In July 2020, abundance showed a negative relationship with both average and maximum temperatures, while in August 2020, there was a positive relationship with average temperature.
Research highlights: It is believed that tree species, development stages and climatic conditions are effective factors on infestation and abundance parameters.

Kaynakça

  • Anderegg, W. R., Hicke, J. A., Fisher, R. A., Allen, C. D., Aukema, J., Bentz, B., Hood, S., Lichstein, J. W., Macalady, A. K., McDowell, N., Pan, Y., Raffa, K., Sala, A., Shaw, J. D., Stephenson, N. L., Tague, C., Zeppel, M. (2015). Tree mortality from drought, insects, and their interactions in a changing climate. New Phytologist, 208(3), 674-683.
  • Ayres, M. P. & Lombardero, M. J. (2000). Assessing the consequences of global change for forest disturbance from herbivores and pathogens. Science of the Total Environment, 262 (3): 263-286.
  • Bryant, D. G. (1976). Sampling populations of (Homoptera: Phylloxeridae) on balsam fir, Abies balsamea. Canadian Entomologist, 108, 1113-1124.
  • Carter, C. I. & Maslen, N. R. (1982). Conifer Lachnids. Forestry Commission Bulletin, No: 58, 75p. London.
  • Cebeci, H. H. (2003). İstanbul Orman Bölge Müdürlüğü İstanbul İli Ağaçlandırma Alanlarındaki Entomolojik Sorunlar. (Doktora Tezi, İstanbul Üniversitesi, Fen Bilimleri Enstitüsü).
  • Chilima, C. Z. & Leather, S. R. (2001). Within‐tree and seasonal distribution of the pine woolly aphid Pineus boerneri on Pinus kesiya trees. Agricultural and Forest Entomology, 3(2), 139-145.
  • Coeur d’acier, A., Hidalgo N. P. & Petrović-Obradović, O. (2010). Aphids (Hemiptera, Aphididae). Chapter 9.2. In: Roques A et al. (Eds) Alien terrestrial arthropods of Europe. BioRisk, 4(1), 435-474.
  • Çolak, H. A. (2001). Ormanda Doğa Koruma. Milli Parklar Av-Yaban Hayatı Genel Müdürlüğü, Ankara, 354s. ISBN: 975-8273-33-7.
  • Demeke, A. D. (2020). Status of cypress aphid on Cupressus lusitanica and Juniperus procera in protected and cultivated forests of South Wollo, Ethiopia. Journal of Forestry Research, 31(1), 333-337.
  • Dixon, A. F. G. (1998). Aphid Ecology: an optimization approach. Springer Science & Business Media, New York, 300pp.
  • Dixon, A. F. G. (2012) Aphid Ecology. Springer Science & Business Media, New York.
  • Fidgen, J. G., Teerling, C. R. & McKinnon, M. L. (1994). Intra- and inter-crown distribution of the eastern spruce gall adelgid, Adelges abietis (L.), on young white spruce. Canadian Entomologist, 126, 1105-1110.
  • Fidgen, J. G., Legg, D. E. & Salom, S. M. (2006). Binomial sequential sampling plan for hemlock woolly adelgid (Hemiptera: Adelgidae) sistens infesting individual eastern hemlock trees. Journal of Economic Entomology, 99, 1500-1508.
  • Friedman, M. (1937). The use of ranks to avoid the assumption of normality implicit in the analysis of variance. Journal of the American Statistical Association, 32(200), 675-701.
  • Furniss, R. L. & Carolin, V. M. (1977). Western Forest Insects. U.S. Department of Agriculture, Miscellaneous Publication No: 1339.
  • Gullan, P. J. & Cranston, P. S. (2012). Böcekler: Entomolojinin Ana Hatları. The Insects: An Outline of Entomology. Çeviri Editörü: Prof. Dr. Ali Gök, Basımdan çeviri, Nobel Yayıncılık, XVI+564s.
  • Halldórsson, G., Benedikz, T., Eggertsson, O., Oddsdóttir, E. S. & Óskarsson, H. (2003). The impact of the green spruce aphid Elatobium abietinum (Walker) on long-term growth of Sitka spruce in Iceland. Forest Ecology and Management, 181(3), 281-287.
  • Hauke, J. & Kossowski, T. (2011): Comparison of values of Pearson's and Spearman's correlation coefficients on the same sets of data. Quaestiones Geographicae 30(2), 87-93
  • Havill, N. P. & Foottit, R. G. (2007). Biology and evolution of Adelgidae. Annual Review of Entomology, 52, 325-349.
  • Heidari Latibari, M., Kavallieratos, N. G. & Ghafouri Moghaddam, M. (2022). Impact of seasonality and ladybird predators on the population dynamics of Mugo pine aphids. International Journal of Tropical Insect Science, 42(3), 2651-2662.
  • Heie, O. E. (2009). Aphid mysteries not yet solved (Hemiptera: Aphidomorpha). Aphids and other Hemipterous Insects, 15, 31-48.
  • Kebede, S. & Mulugeta, T. (2021). Tree Diversity and Damage by Cypress Aphid, Cinara cupressi, on Juniperus procera in Gulele Botanical Garden and Entoto. International Journal of Forestry Research, 2021, 1-7.
  • Kingsolver, J. G., Arthur Woods, H., Buckley, L. B., Potter, K. A., MacLean, H. J., et al. (2011). Complex life cycles and the responses of insects to climate change. Integrative and Comparative Biology, 51(5), 719-732,
  • Kök, Ş. (2019). Çanakkale ve Balıkesir İlleri Yaprakbiti (Hemiptera: Aphidoidea) Faunası ile Doğal Düşmanlarının Belirlenmesi ve Kiraz Siyah Yaprakbiti, Myzus cerasi (Fabricius, 1775)'nin Biyolojisi Üzerine Çalışmalar. (Doktora Tezi, Çanakkale Onsekiz Mart Üniversitesi, Fen Bilimleri Enstitüsü)
  • Laamari, M. (2016). First report of Phylloxera quercus (Hemiptera: Sternorrhyncha: Aphididae) in Algeria. EPPO Bulletin, 46(3), 576-579.
  • Larsson, S. (1985). Seasonal changes in the within-crown distribution of the aphid Cinara pini on Scots pine. Oikos, 217-222.
  • Leather, S. R. (Ed.). (2005). Insect sampling in forest ecosystems. 303p., John Wiley & Sons.
  • Lehmann, P., Ammunét, T., Barton, M., Battisti, A., Eigenbrode, S. D., et al. (2020). Complex responses of global insect pests to climate warming. Frontiers in Ecology and the Environment, 18(3), 141-150. Lima, M., Harrington, R., Saldana, S. & Estay, S. (2008). Non‐linear feedback processes and a latitudinal gradient in the climatic effects determine green spruce aphid outbreaks in the UK. Oikos, 117(6), 951-959.
  • Lubiarz, M. (2007). Life cycle and number dynamics of Phylloxera sp. on pedunculate oak (Quercus robur L.) in industrial and protected areas. Aphids and other Hemipterous Insects, 13, 137-144.
  • Madoffe, S. S. & Austarå, Ø. (1993). Abundance of the pine woolly aphid Pineus pini in Pinus patula stands growing on different sites in the Sao Hill district, Tanzania. The Commonwealth Forestry Review, 118-121.
  • May, B. M. & Carlyle, J. C. (2003). Effect of defoliation associated with Essigella californica on growth of mid-rotation Pinus radiata. Forest Ecology and Management, 183(1), 297-312.
  • Mailu, A. M., Khamala, C. P. M. & Rose, D. J. W. (1978). Evaluation of pine woolly aphid damage to Pinus patula and its effect on yield in Kenya. East African Agricultural and Forestry Journal, 43(3), 259-265.
  • McClure, M. S. (1991). Density-dependent feedback and population cycles in Adelges tsugae (Homoptera: Adelgidae) on Tsuga canadensis. Environmental Entomology, 20(1), 258-264.
  • Meteoroloji İşleri Genel Müdürlüğü (MİGM). (2021). Isparta ilinde bulunan istasyonlara ait iklim verileri. https://www.mgm.gov.tr/ (Son erişim tarihi: 12.04.2021).
  • Moos, C., Guisan, A., Randin, C. F. & Lischke, H. (2021). Climate change impacts the protective effect of forests: a case study in Switzerland. Frontiers in Forests and Global Change, 4, 682923.
  • Oğuzoğlu, S. & Avcı, M. (2019). Distribution, biology, morphology and damage of Cinara cedri Mimeur, 1936 (Hemiptera: Aphididae) in the Isparta Regional Forest Directorate. Forestist, 69(1), 1-11.
  • Öktem, E. (1987). Kızılçam El Kitabı Dizisi: 2. Ormancılık Araştırma Enstitüsü Yayınları, Muhtelif Yayınlar Serisi, 52, 181s.
  • Pereira, D. G., Afonso, A. & Medeiros, F. M. (2015). Overview of Friedman’s test and post-hoc analysis. Communications in Statistics-Simulation and Computation, 44(10), 2636-2653.
  • Perry, D. A., Oren, R. & Hart, S. C. (2008). Forest ecosystems. JHU press.
  • Pilichowski, S., Pazio, D. & Giertych, M. (2014). Factors associated with the distribution and size of Adelges abietis (Homoptera: Adelgidae) galls on a several years old spruce (Picea abies) plantation. Entomologica Fennica, 25(4), 161-169.
  • Platková, H., Pyszko, P., Coeur d´ Acier, A., Jousselin, E. & Drozd, P. (2020). Spatial distribution of aphids in the canopy of a temperate forest: where can they be found? Agricultural and Forest Entomology, 22(4), 379-389.
  • Pureswaran, D. S., Roques, A. & Battisti, A. (2018). Forest insects and climate change. Current Forestry Reports, 4, 35-50.
  • Rodas, C. A., Serna, R., Bolaños, M. D., Granados, G. M., Wingfield, M. J., Hurley, B. P. (2015). Biology, incidence and host susceptibility of Pineus boerneri (Hemiptera: Adelgidae) in Colombian pine plantations. Southern Forests: A Journal of Forest Science, 77(3), 165-171.
  • Simpson, K. L. S. (2013). Interactions between aphids and their host plants under drought stress. The University of Edinburgh, Doctoral thesis, 202p.
  • Stange, E. E. & Ayres, M. P. (2010). Climate change impacts: Insects. eLS.
  • Stekolshchikov, A. V. & Kozlov, M. V. (2012). Distribution records of aphids (Hemiptera: Phylloxeroidea, Aphidoidea) associated with main forest-forming trees in Northern Europe. Entomologica Fennica, 23(4), 206-214.
  • Straw, N. A., Fielding, N. J., Green, G. & Price, J. (2005). Defoliation and growth loss in young Sitka spruce following repeated attack by the green spruce aphid, Elatobium abietinum (Walker). Forest Ecology and Management, 213(1-3), 349-368.
  • Straw, N., Fielding, N., Green, G. & Price, J. (2006). Seasonal changes in the distribution of green spruce aphid Elatobium abietinum (Walker) (Homoptera: Aphididae) in the canopy of Sitka spruce. Agricultural and Forest Entomology, 8(2), 139-154.
  • Straw, N., Fielding, N., Green, G., Price, J., & Williams, D. (2011). Defoliation and growth relationships for mid-rotation Sitka spruce attacked by the green spruce aphid, Elatobium abietinum (Walker)(Homoptera: Aphididae). Forest Ecology and Management, 262(7), 1223-1235.
  • Tabachnick, B. G. & Fidell, L. S. (2013). Using Multivariate Statistics 6th ed. Pearson Education, Boston.
  • Thornthwaite, C. W. (1948). An approach toward a rational classification of climate. Geographical Review, 38(1), 55-94.
  • Türkeş, M., Turp, M. T., An, N., Ozturk, T. & Kurnaz, M. L. (2020). Impacts of Climate Change on Precipitation Climatology and Variability in Turkey, Chapter 14. In Harmancioglu, N. B., Altinbilek, D. (Eds.), Water Resources of Turkey. World Water Resources, vol 2. Springer, Cham, pp 467- 491.
  • Türkeş, M. (2021). Türkiye’nin Su İklimi, İklim Değişikliği ve 2019-2020 Kuraklığı. EKOIQ, 92, 90-97.
  • Ülgen, H., Zeydanlı, U. & Lise, Y. (2020). Orman ve Biyolojik Çeşitlilik. Doğa Koruma Merkezi, Ankara, 219 sayfa.
  • Wieczorek, K., Fulcher, T. K. & Chłond, D. (2019). The composition of the aphid fauna (Insecta, Hemiptera) of the Royal Botanic Gardens, Kew. Scientific Reports, 9(1), 1-14.
  • Yıldız, Y. T. (2011). Isparta İlinde İklim-Tarım İlişkisi. (Yüksek Lisans Tezi, Afyon Kocatepe Üniversitesi, Sosyal Bilimler Enstitüsü)
  • Zimmerman, D. W. & Zumbo, B. D. (1993). Relative power of the Wilcoxon test, the Friedman test, and repeated-measures ANOVA on ranks. The Journal of Experimental Education, 62(1), 75-86.
  • Zwolinski, J. B. (1989). The Pine Woolly Aphid, Pineus pini (L.)-A Pest of Pines in South Africa. South African Forestry Journal, 151(1), 52-57.
Toplam 58 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Ormancılık (Diğer)
Bölüm Makaleler
Yazarlar

Şükran Oğuzoğlu

Mustafa Avcı

Erken Görünüm Tarihi 29 Eylül 2024
Yayımlanma Tarihi 3 Ekim 2024
Gönderilme Tarihi 19 Aralık 2023
Kabul Tarihi 21 Mart 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 24 Sayı: 2

Kaynak Göster

APA Oğuzoğlu, Ş., & Avcı, M. (2024). Infestation Rates, Seasonal Abundance of Aphids and Relationships with Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye. Kastamonu University Journal of Forestry Faculty, 24(2), 115-132. https://doi.org/10.17475/kastorman.1557386
AMA Oğuzoğlu Ş, Avcı M. Infestation Rates, Seasonal Abundance of Aphids and Relationships with Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye. Kastamonu University Journal of Forestry Faculty. Ekim 2024;24(2):115-132. doi:10.17475/kastorman.1557386
Chicago Oğuzoğlu, Şükran, ve Mustafa Avcı. “Infestation Rates, Seasonal Abundance of Aphids and Relationships With Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye”. Kastamonu University Journal of Forestry Faculty 24, sy. 2 (Ekim 2024): 115-32. https://doi.org/10.17475/kastorman.1557386.
EndNote Oğuzoğlu Ş, Avcı M (01 Ekim 2024) Infestation Rates, Seasonal Abundance of Aphids and Relationships with Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye. Kastamonu University Journal of Forestry Faculty 24 2 115–132.
IEEE Ş. Oğuzoğlu ve M. Avcı, “Infestation Rates, Seasonal Abundance of Aphids and Relationships with Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye”, Kastamonu University Journal of Forestry Faculty, c. 24, sy. 2, ss. 115–132, 2024, doi: 10.17475/kastorman.1557386.
ISNAD Oğuzoğlu, Şükran - Avcı, Mustafa. “Infestation Rates, Seasonal Abundance of Aphids and Relationships With Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye”. Kastamonu University Journal of Forestry Faculty 24/2 (Ekim 2024), 115-132. https://doi.org/10.17475/kastorman.1557386.
JAMA Oğuzoğlu Ş, Avcı M. Infestation Rates, Seasonal Abundance of Aphids and Relationships with Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye. Kastamonu University Journal of Forestry Faculty. 2024;24:115–132.
MLA Oğuzoğlu, Şükran ve Mustafa Avcı. “Infestation Rates, Seasonal Abundance of Aphids and Relationships With Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye”. Kastamonu University Journal of Forestry Faculty, c. 24, sy. 2, 2024, ss. 115-32, doi:10.17475/kastorman.1557386.
Vancouver Oğuzoğlu Ş, Avcı M. Infestation Rates, Seasonal Abundance of Aphids and Relationships with Some Environmental Factors in Different Forest Habitats in Southwestern Türkiye. Kastamonu University Journal of Forestry Faculty. 2024;24(2):115-32.

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