Climate acts as an environmental filter to plant pathogens
Samo za registrovane korisnike
2024
Autori
Caballol, Maria
Redondo, Miguel A.
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Catalan, Nuria
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Corcobado, Tamara
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Jung, Thomas
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Marcais, Benoit
Milenković, Ivan
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Nemesio-Gorriz, Miguel
Stenlid, Jan
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Oliva, Jonas
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Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentuApstrakt
Climate shapes the distribution of plant-associated microbes such as mycorrhizal and endophytic fungi. However, the role of climate in plant pathogen community assembly is less understood. Here, we explored the role of climate in the assembly of Phytophthora communities at gt 250 sites along a latitudinal gradient from Spain to northern Sweden and an altitudinal gradient from the Spanish Pyrenees to lowland areas. Communities were detected by ITS sequencing of river filtrates. Mediation analysis supported the role of climate in the biogeography of Phytophthora and ruled out other environmental factors such as geography or tree diversity. Comparisons of functional and species diversity showed that environmental filtering dominated over competitive exclusion in Europe. Temperature and precipitation acted as environmental filters at different extremes of the gradients. In northern regions, winter temperatures acted as an environmental filter on Phytophthora community assembly, selecting ...species adapted to survive low minimum temperatures. In southern latitudes, a hot dry climate was the main environmental filter, resulting in communities dominated by drought-tolerant Phytophthora species with thick oospore walls, a high optimum temperature for growth, and a high maximum temperature limit for growth. By taking a community ecology approach, we show that the establishment of Phytophthora plant pathogens in Europe is mainly restricted by cold temperatures.
Ključne reči:
temperature / species distribution model / Phytophthora / oomycete / functional traits / functional diversity / forest pathogen / drought / competitive exclusion / climate changeIzvor:
ISME Journal, 2024, 18, 1Finansiranje / projekti:
- Ministry of Science and Innovation of Spain [PID2021-127328OB-I00, RYC-2021-033714-I, RYC-2015-17459]
- AGAUR FI fellowship from the Secretariat for Universities and Research of the Ministry of Business and Knowledge of the Government of Catalonia [2021FI_B00223]
- European Social Fund
- Czech Ministry for Education, Youth and Sports [CZ.02.1.01/0.0/0.0/15_003/0000453]
- European Regional Development Fund [CZ.02.1.01/0.0/0.0/15_003/0000453]
- French Forest Health Department (French Ministry in charge of Agriculture and Forestry) [2018-125]
- Teagasc Forestry Development Department
DOI: 10.1093/ismejo/wrae010
ISSN: 1751-7362
PubMed: 38366172
WoS: 001233188400001
Scopus: 2-s2.0-85195281319
Institucija/grupa
Šumarski fakultetTY - JOUR AU - Caballol, Maria AU - Redondo, Miguel A. AU - Catalan, Nuria AU - Corcobado, Tamara AU - Jung, Thomas AU - Marcais, Benoit AU - Milenković, Ivan AU - Nemesio-Gorriz, Miguel AU - Stenlid, Jan AU - Oliva, Jonas PY - 2024 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1517 AB - Climate shapes the distribution of plant-associated microbes such as mycorrhizal and endophytic fungi. However, the role of climate in plant pathogen community assembly is less understood. Here, we explored the role of climate in the assembly of Phytophthora communities at gt 250 sites along a latitudinal gradient from Spain to northern Sweden and an altitudinal gradient from the Spanish Pyrenees to lowland areas. Communities were detected by ITS sequencing of river filtrates. Mediation analysis supported the role of climate in the biogeography of Phytophthora and ruled out other environmental factors such as geography or tree diversity. Comparisons of functional and species diversity showed that environmental filtering dominated over competitive exclusion in Europe. Temperature and precipitation acted as environmental filters at different extremes of the gradients. In northern regions, winter temperatures acted as an environmental filter on Phytophthora community assembly, selecting species adapted to survive low minimum temperatures. In southern latitudes, a hot dry climate was the main environmental filter, resulting in communities dominated by drought-tolerant Phytophthora species with thick oospore walls, a high optimum temperature for growth, and a high maximum temperature limit for growth. By taking a community ecology approach, we show that the establishment of Phytophthora plant pathogens in Europe is mainly restricted by cold temperatures. T2 - ISME Journal T1 - Climate acts as an environmental filter to plant pathogens IS - 1 VL - 18 DO - 10.1093/ismejo/wrae010 UR - conv_1787 ER -
@article{ author = "Caballol, Maria and Redondo, Miguel A. and Catalan, Nuria and Corcobado, Tamara and Jung, Thomas and Marcais, Benoit and Milenković, Ivan and Nemesio-Gorriz, Miguel and Stenlid, Jan and Oliva, Jonas", year = "2024", abstract = "Climate shapes the distribution of plant-associated microbes such as mycorrhizal and endophytic fungi. However, the role of climate in plant pathogen community assembly is less understood. Here, we explored the role of climate in the assembly of Phytophthora communities at gt 250 sites along a latitudinal gradient from Spain to northern Sweden and an altitudinal gradient from the Spanish Pyrenees to lowland areas. Communities were detected by ITS sequencing of river filtrates. Mediation analysis supported the role of climate in the biogeography of Phytophthora and ruled out other environmental factors such as geography or tree diversity. Comparisons of functional and species diversity showed that environmental filtering dominated over competitive exclusion in Europe. Temperature and precipitation acted as environmental filters at different extremes of the gradients. In northern regions, winter temperatures acted as an environmental filter on Phytophthora community assembly, selecting species adapted to survive low minimum temperatures. In southern latitudes, a hot dry climate was the main environmental filter, resulting in communities dominated by drought-tolerant Phytophthora species with thick oospore walls, a high optimum temperature for growth, and a high maximum temperature limit for growth. By taking a community ecology approach, we show that the establishment of Phytophthora plant pathogens in Europe is mainly restricted by cold temperatures.", journal = "ISME Journal", title = "Climate acts as an environmental filter to plant pathogens", number = "1", volume = "18", doi = "10.1093/ismejo/wrae010", url = "conv_1787" }
Caballol, M., Redondo, M. A., Catalan, N., Corcobado, T., Jung, T., Marcais, B., Milenković, I., Nemesio-Gorriz, M., Stenlid, J.,& Oliva, J.. (2024). Climate acts as an environmental filter to plant pathogens. in ISME Journal, 18(1). https://doi.org/10.1093/ismejo/wrae010 conv_1787
Caballol M, Redondo MA, Catalan N, Corcobado T, Jung T, Marcais B, Milenković I, Nemesio-Gorriz M, Stenlid J, Oliva J. Climate acts as an environmental filter to plant pathogens. in ISME Journal. 2024;18(1). doi:10.1093/ismejo/wrae010 conv_1787 .
Caballol, Maria, Redondo, Miguel A., Catalan, Nuria, Corcobado, Tamara, Jung, Thomas, Marcais, Benoit, Milenković, Ivan, Nemesio-Gorriz, Miguel, Stenlid, Jan, Oliva, Jonas, "Climate acts as an environmental filter to plant pathogens" in ISME Journal, 18, no. 1 (2024), https://doi.org/10.1093/ismejo/wrae010 ., conv_1787 .