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|a (DE-627)JST100568408
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|a (JST)24643692
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|a DE-627
|b ger
|c DE-627
|e rakwb
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|a eng
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|a Piña-Páez, Carolina
|e verfasserin
|4 aut
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|a DIVERSITY OF GASTEROID FUNGI IN THE SIERRA DE MAZATÁN, SONORA, MEXICO
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|c 2013
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|a Text
|b txt
|2 rdacontent
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|a Computermedien
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|a We sampled gasteroid fungi seasonally over a year in the protected area of the Sierra de Mazatán mountain range, Sonora, in three types of vegetation (oak forest, subtropical scrub, and mesquite scrub). We described the biotic and abiotic factors of the three study sites and estimated the Shannon diversity index, the Pielou evenness, the Simpson dominance, and the Jaccard similarity indices based on the mycobiota. A total of 37 species were identified; these are the first records of fungi in the Sierra de Mazatán. Tulostoma, Geastrum, and Lycoperdon were the most represented genera with nine, seven, and six species, respectively. Fungal diversity was 2.9 in mesquite scrub, 2.4 in oak forest, and 0.9 in subtropical scrub. The distribution of gasteroid fungi appears to be more influenced by type of vegetation than by edaphic factors. En el área natural protegida de la Sierra de Mazatán, Sonora, se realizó un muestreo estacional de hongos gasteroides durante un año en tres tipos de vegetación (bosque de encino, matorral subtropical y matorral de mezquite). Se caracterizaron los factores bióticos y abióticos de las tres localidades de estudio. Con base en la micobiota se estimaron el índice de diversidad de Shannon, equidad de Pielou, dominancia de Simpson y similitud de Jaccard. Se identificaron un total de 37 especies; éstos son los primeros registros de hongos en la Sierra de Mazatán. Tulostoma, Geastrum y Lycoperdon fueron los géneros mejor representados con nueve, siete y seis especies respectivamente. La diversidad fúngica fue de 2.9 en matorral de mezquite, 2.4 en bosque de encino y 0.9 en matorral subtropical. La distribución de hongos gasteroides parece más influenciada por el tipo de vegetación que los factores edáficos.
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|a Biological sciences
|x Biology
|x Botany
|x Plant ecology
|x Vegetation
|x Scrub vegetation
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|a Biological sciences
|x Biology
|x Mycology
|x Fungi
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|a Biological sciences
|x Biology
|x Botany
|x Plant ecology
|x Vegetation
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|a Environmental studies
|x Atmospheric sciences
|x Climatology
|x Seasons
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|a Biological sciences
|x Agriculture
|x Agricultural sciences
|x Agronomy
|x Soil science
|x Soils
|x Forest soils
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|a Biological sciences
|x Agriculture
|x Agricultural sciences
|x Agronomy
|x Soil science
|x Edaphology
|x Soil ecology
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4 |
|a Physical sciences
|x Earth sciences
|x Geography
|x Geomorphology
|x Landforms
|x Deserts
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|a Biological sciences
|x Biology
|x Mycology
|x Fungi
|x Soil fungi
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|a Biological sciences
|x Ecology
|x Ecosystems
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|a Biological sciences
|x Ecology
|x Population ecology
|x Synecology
|x Biodiversity
|x Plant biodiversity
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|a research-article
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|a Esqueda, Martín
|e verfasserin
|4 aut
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|a Gutierrez, Aldo
|e verfasserin
|4 aut
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|a González-Ríos, Humberto
|e verfasserin
|4 aut
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|i Enthalten in
|t The Southwestern Naturalist
|d Southwestern Association of Naturalist
|g 58(2013), 3, Seite 351-356
|w (DE-627)JST083713697
|x 19436262
|7 nnns
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|g volume:58
|g year:2013
|g number:3
|g pages:351-356
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|u https://www.jstor.org/stable/24643692
|3 Volltext
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|d 58
|j 2013
|e 3
|h 351-356
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