Growth Rates of Lymantria dispar Larvae and Quercus robur Seedlings at Elevated CO 2 Concentration and Phytophthora plurivora Infection
Само за регистроване кориснике
2020
Аутори
Milanović, Slobodan
Milenković, Ivan
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Dobrosavljević, Jovan
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Popović, Marija
Solla, Alejandro
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Tomsovsky, Michal
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Jankovsky, Libor
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Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документуАпстракт
Interactions between plants, insects and pathogens are complex and not sufficiently understood in the context of climate change. In this study, the impact of a root pathogen on a leaf-eating insect hosted by a tree species at elevated CO2 concentration is reported for the first time. The combined and isolated effects of CO2 and infection by the root pathogen Phytophthora plurivora on English oak (Quercus robur) seedlings were used to assess growth rates of plants and of gypsy moth (Lymantria dispar) larvae. For this purpose, two Q. robur provenances (Belgrade and Sombor) were used. At ambient CO2 concentration, the relative growth rates of larvae consuming leaves of plants infected by P. plurivora was higher than those consuming non-infected plants. However, at elevated CO2 concentration (1000 ppm) higher relative growth rates were detected in the larvae consuming the leaves of non-infected plants. At ambient CO2 concentration, lower growth rates were recorded in L. dispar larvae hoste...d in Q. robur from Belgrade in comparison to larvae hosted in Q. robur from Sombor. However, at elevated CO2 concentration, similar growth rates irrespective of the provenance were observed. Defoliation by the gypsy moth did not influence the growth of plants while P. plurivora infection significantly reduced tree height in seedlings from Belgrade. The results confirm that a rise of CO2 concentration in the atmosphere modifies the existing interactions between P. plurivora, Q. robur, and L. dispar. Moreover, the influence of the tree provenances on both herbivore and plant performance at elevated CO2 concentrations suggests a potential for increasing forest resilience through breeding.
Кључне речи:
three-way interaction / Quercus robur / Phytophthora plurivora / Lymantria dispar / climate changeИзвор:
Forests, 2020, 11, 10Финансирање / пројекти:
- Министарство науке, технолошког развоја и иновација Републике Србије, институционално финансирање - 200169 (Универзитет у Београду, Шумарски факултет) (RS-MESTD-inst-2020-200169)
- Phytophthora Research Centre - Czech Ministry for Education, Youth and Sports
- European Regional Development Fund [CZ.02.1.01/0.0/0.0/15_003/0000453]
DOI: 10.3390/f11101059
ISSN: 1999-4907
WoS: 000585341600001
Scopus: 2-s2.0-85093104287
Институција/група
Šumarski fakultetTY - JOUR AU - Milanović, Slobodan AU - Milenković, Ivan AU - Dobrosavljević, Jovan AU - Popović, Marija AU - Solla, Alejandro AU - Tomsovsky, Michal AU - Jankovsky, Libor PY - 2020 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1140 AB - Interactions between plants, insects and pathogens are complex and not sufficiently understood in the context of climate change. In this study, the impact of a root pathogen on a leaf-eating insect hosted by a tree species at elevated CO2 concentration is reported for the first time. The combined and isolated effects of CO2 and infection by the root pathogen Phytophthora plurivora on English oak (Quercus robur) seedlings were used to assess growth rates of plants and of gypsy moth (Lymantria dispar) larvae. For this purpose, two Q. robur provenances (Belgrade and Sombor) were used. At ambient CO2 concentration, the relative growth rates of larvae consuming leaves of plants infected by P. plurivora was higher than those consuming non-infected plants. However, at elevated CO2 concentration (1000 ppm) higher relative growth rates were detected in the larvae consuming the leaves of non-infected plants. At ambient CO2 concentration, lower growth rates were recorded in L. dispar larvae hosted in Q. robur from Belgrade in comparison to larvae hosted in Q. robur from Sombor. However, at elevated CO2 concentration, similar growth rates irrespective of the provenance were observed. Defoliation by the gypsy moth did not influence the growth of plants while P. plurivora infection significantly reduced tree height in seedlings from Belgrade. The results confirm that a rise of CO2 concentration in the atmosphere modifies the existing interactions between P. plurivora, Q. robur, and L. dispar. Moreover, the influence of the tree provenances on both herbivore and plant performance at elevated CO2 concentrations suggests a potential for increasing forest resilience through breeding. T2 - Forests T1 - Growth Rates of Lymantria dispar Larvae and Quercus robur Seedlings at Elevated CO 2 Concentration and Phytophthora plurivora Infection IS - 10 VL - 11 DO - 10.3390/f11101059 UR - conv_1509 ER -
@article{ author = "Milanović, Slobodan and Milenković, Ivan and Dobrosavljević, Jovan and Popović, Marija and Solla, Alejandro and Tomsovsky, Michal and Jankovsky, Libor", year = "2020", abstract = "Interactions between plants, insects and pathogens are complex and not sufficiently understood in the context of climate change. In this study, the impact of a root pathogen on a leaf-eating insect hosted by a tree species at elevated CO2 concentration is reported for the first time. The combined and isolated effects of CO2 and infection by the root pathogen Phytophthora plurivora on English oak (Quercus robur) seedlings were used to assess growth rates of plants and of gypsy moth (Lymantria dispar) larvae. For this purpose, two Q. robur provenances (Belgrade and Sombor) were used. At ambient CO2 concentration, the relative growth rates of larvae consuming leaves of plants infected by P. plurivora was higher than those consuming non-infected plants. However, at elevated CO2 concentration (1000 ppm) higher relative growth rates were detected in the larvae consuming the leaves of non-infected plants. At ambient CO2 concentration, lower growth rates were recorded in L. dispar larvae hosted in Q. robur from Belgrade in comparison to larvae hosted in Q. robur from Sombor. However, at elevated CO2 concentration, similar growth rates irrespective of the provenance were observed. Defoliation by the gypsy moth did not influence the growth of plants while P. plurivora infection significantly reduced tree height in seedlings from Belgrade. The results confirm that a rise of CO2 concentration in the atmosphere modifies the existing interactions between P. plurivora, Q. robur, and L. dispar. Moreover, the influence of the tree provenances on both herbivore and plant performance at elevated CO2 concentrations suggests a potential for increasing forest resilience through breeding.", journal = "Forests", title = "Growth Rates of Lymantria dispar Larvae and Quercus robur Seedlings at Elevated CO 2 Concentration and Phytophthora plurivora Infection", number = "10", volume = "11", doi = "10.3390/f11101059", url = "conv_1509" }
Milanović, S., Milenković, I., Dobrosavljević, J., Popović, M., Solla, A., Tomsovsky, M.,& Jankovsky, L.. (2020). Growth Rates of Lymantria dispar Larvae and Quercus robur Seedlings at Elevated CO 2 Concentration and Phytophthora plurivora Infection. in Forests, 11(10). https://doi.org/10.3390/f11101059 conv_1509
Milanović S, Milenković I, Dobrosavljević J, Popović M, Solla A, Tomsovsky M, Jankovsky L. Growth Rates of Lymantria dispar Larvae and Quercus robur Seedlings at Elevated CO 2 Concentration and Phytophthora plurivora Infection. in Forests. 2020;11(10). doi:10.3390/f11101059 conv_1509 .
Milanović, Slobodan, Milenković, Ivan, Dobrosavljević, Jovan, Popović, Marija, Solla, Alejandro, Tomsovsky, Michal, Jankovsky, Libor, "Growth Rates of Lymantria dispar Larvae and Quercus robur Seedlings at Elevated CO 2 Concentration and Phytophthora plurivora Infection" in Forests, 11, no. 10 (2020), https://doi.org/10.3390/f11101059 ., conv_1509 .