| Literature DB >> 30103554 |
Max C Ramírez-Soto1,2, Elsa G Aguilar-Ancori3,4, Andrés Tirado-Sánchez5,6, Alexandro Bonifaz7.
Abstract
Ecological determinants of sporotrichosis etiological agents remain poorly understood. For this reason, we performed explorations using local climate estimates to determine the temperature and humidity ranges of the environment where clinically relevant Sporothrix species occur and to identify what plant species are associated with them, using data collected from the published literature. We performed a literature search to identify all publications on environmental isolations of medically relevant species of Sporothrix in the PubMed, SCOPUS, and EMBASE databases. All those studies were included in the analysis where medically relevant species of Sporothrix have been isolated from soil samples, and described a specific geographical location that could be precisely georeferenced. We approximated temperature and humidity from local climate estimates, integrating geospatial data, temperature, and water vapor pressure from regions or provinces where medically relevant species of Sporothrix have been isolated from soil. Sporothrix spp. were more commonly isolated from soil of different regions or provinces of 16 countries. Most environmental isolates were identified as S. schenckii, whereas S. pallida, S. brasiliensis, S. globosa, and S. mexicana were rare. We estimate that medically relevant Sporothrix spp. grow in the soil at temperatures of 6.6 °C to 28.84 °C and 37.5% to 99.06% relative humidity. These findings indicate that sporotrichosis etiological agents grow in soil in ecological niches from soil with wide ranges of temperature and humidity, but they are also associated with a variety of plants, flowers, woody debris, reed leaves, corn stalks, leaves, and wood crumbs, potentially facilitating its establishment and proliferation in the environment.Entities:
Keywords: Sporothrix spp.; ecological determinants; humidity; temperature
Year: 2018 PMID: 30103554 PMCID: PMC6162718 DOI: 10.3390/jof4030095
Source DB: PubMed Journal: J Fungi (Basel) ISSN: 2309-608X
Figure 1Geographic distribution of environmental isolations of medically relevant Sporothrix spp.
Studies overview environmental and soil isolations of medically relevant Sporothrix spp.
| Country | Ref. | Collection Year | Region | Molecular Identification | Source | Species | Longitude * | Latitude * | Elevation (Meters) * | Temperature (°C) * | RH (%) * |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Argentina | [ | 2003 | Chaco |
| Soil |
| −59.018371° | −27.420760° | 53 | 20.92 | 89.21 |
| 2004 | Chaco |
| Soil |
| |||||||
| 2001 | Misiones |
| Soil |
| −55.960100° | −27.443478° | 153 | 21.14 | 89.15 | ||
| Austria | [ | 2007–2008 | Salzburg, Austria |
| Garden soil |
| 13.051580° | 47.810801° | 429 | 8.91 | 86.91 |
| Brazil | [ | 2014 | Botucato, Sauñe Paulo |
| Armadillo soil | −48.437236° | −22.892863° | 793 | 19.19 | 87.88 | |
| [ | 1963 | Piracicaba and Vicinity | … | Soil |
| −43.905655° | −19.926731° | 904 | 19.54 | 95.97 | |
| Chile | [ | 2012 | Valparaiso | … | Soil |
| −71.595196° | −33.094955° | 460 | 12.66 | 87.35 |
| [ | 2014 | Viña del Mar |
| Garden soil |
| −71.549622° | −33.012123° | 17 | 14.76 | 85.95 | |
| [ | 2016 | Viña del Mar |
| Garden soil |
| ||||||
| China | [ | 2002 | Jilin |
| Soil, reed leaves, old reed leaves, corn stalks and old corn stalks, Cettal leaves, and wood crumbs |
| 126.414149° | 43.144094° | 521 | 6.60 | 78.42 |
| Germany | [ | 2007–2008 | Rain Am Lech, Germany |
| Amended soil |
| 10.922538° | 48.690341° | 412 | 8.24 | 91.41 |
| India | [ | 2007 | Himachal Pradesh | … | Corn stalk |
| 77.191581° | 31.113026° | 1858 | 15.48 | 68.22 |
| Israel | [ | 1976 | Petah Tiqua | Soil |
| 34.887816° | 32.083751° | 57 | 19.35 | 79.73 | |
| Italy | [ | 2007–2008 | Reggio Calabria |
| Natural soil |
| 15.661199° | 38.102348° | 62 | 18.01 | 84.86 |
| Serra San Bruno |
|
|
| 16.314224° | 38.562623° | 830 | 12.14 | 86.58 | |||
| Reggio Calabria |
| Amended soil |
| 15.638878° | 38.104305° | 8 | 18.42 | 84.6 | |||
| Verona |
| Garden soil |
| 10.994555° | 45.448563° | 59 | 13.29 | 86.19 | |||
| Calabria |
| Enviromental |
| 16.349470° | 39.312534° | 857 | 11.91 | 83.69 | |||
| Sicily |
| Enviromental |
| 14.038756° | 37.598328° | 507 | 15.38 | 81.74 | |||
| [ | 2007 | Huauchinango-Puebla | … | Soil associated with pine, rose, gladiolus and wild plant |
| −98.062507° | 20.175399° | 1553 | 16.23 | 99.06 | |
| [ | 2004 | Santa Maria quielogani, Oaxaca | … | Farmland |
| −96.056315° | 16.278295° | 2061 | 28.84 | 37.5 | |
| Mexico | [ | 2017 | Atlixco | … | Soil |
| −98.429715° | 18.911546° | 1842 | 18.74 | 78.34 |
| Cholula | … | Soil |
| −98.300998° | 19.076175° | 2168 | 16.79 | 73.49 | |||
| Izúcar de Matamoros | … | Soil |
| −98.464283° | 18.598513° | 1285 | 22.95 | 83.63 | |||
| Tecali de Herrera | … | Soil |
| −97.974147° | 18.901923° | 2175 | 16.88 | 72.18 | |||
| Tecamachalco | … | Soil |
| −97.733545° | 18.879810° | 2015 | 18.23 | 70.32 | |||
| Tehuacan | … | Soil |
| −97.393711° | 18.466471° | 1640 | 19.04 | 79.37 | |||
| Tepexi de Rodriguez | … | Soil |
| −97.928542° | 18.584326° | 1690 | 21.02 | 72.53 | |||
| Atlixco | … | Soil associated with |
| −98.437736° | 18.912245° | 1940 | 17.96 | 78.22 | |||
| Mexico | [ | 2017 | Izúcar de Matamoros | … |
| −98.461786° | 18.579067° | 1266 | 23.23 | 79.85 | |
| Puebla | … |
| −98.207416° | 19.047159° | 2163 | 17.00 | 75.18 | ||||
| Tecali de Herrera | … | Plants |
| −97.973964° | 18.914850° | 2186 | 16.79 | 72.11 | |||
| Tecamachalco | … | Plants |
| −97.749386° | 18.882578° | 2015 | 19.39 | 66.48 | |||
| Tehuacan | … | Plants |
| −97.371094° | 18.465983° | 1562 | 19.37 | 80.43 | |||
| Tepexi de Rodriguez | … | Plants |
| −97.920730° | 18.585191° | 1655 | 21.27 | 72.53 | |||
| Mexico | Guadalajara | … | Brachiaria plataginea |
| −103.442383° | 20.595692° | 1627 | 19.33 | 69.28 | ||
| [ | 1998 | Tonala | … | Sandy soil, sandy soil with organic matter, moderately sandy soil, and clay soil |
| −103.230673° | 20.622654° | 1637 | 19.52 | 69.2 | |
| Zapopan | … | Soil |
| −103.415036° | 20.671554° | 1626 | 19.30 | 68.83 | |||
| [ | 2009 | Huachinango Puebla |
| Soil |
| −98.062507° | 20.175399° | 1553 | 16.23 | 99.06 | |
| Xilocuautla Puebla |
| Soil |
| −98.023551° | 20.138984° | 1630 | 15.50 | 98.85 | |||
| San Andrés Larraizar Chiapas |
| Soil |
| −92.712955° | 16.882654° | 2220 | 16.54 | 72.09 | |||
| Spain | [ | 2007–2008 | Barcelona |
| Amended soil |
| 2.185471° | 41.387742° | 8 | 16.85 | 81.33 |
| 2007–2008 | Navarra |
| Garden soil |
| −1.652109° | 42.817402° | 442 | 12.42 | 79.29 | ||
| South Africa | [ | 1986 | Pretoria | … | Soil |
| 28.184889° | −25.742540° | 1311 | 18.24 | 65.89 |
| [ | 2014 | South Africa |
| Soil of mines |
| 28.070048° | −26.229788° | 1684 | 16.15 | 68.52 | |
| The Netherlands | [ | 2008 | Centraalbureau voor Schimmelcultures, Utrecht |
| Garden soil |
| 5.176516° | 52.089437° | 0 | 9.44 | 93.98 |
| [ | 2007–2008 | Vriezenveen |
| Amended soil |
| 6.614617° | 52.408313° | 11 | 9.14 | 95.32 | |
| United States | [ | 1970 | Winsconsisn | … | Soil, wood, sphagnum were assayed for pathogenic fungi |
| −88.492690° | 43.767366° | 244 | 7.63 | 93.55 |
| [ | 1988 | New York | … |
|
| −73.978368° | 40.732011° | 3 | 12.67 | 82.41 | |
| [ | 1984 | Texas | … | Potting soil |
| −99.955168° | 31.958474° | 558 | 18.05 | 72.66 | |
| Uruguay | [ | 1969 | Montevideo | … | Soil and plant remains, armadillo soil, moss floors, dry grassland of armadillo nest |
| −56.207668° | −34.859734° | 12 | 17.10 | 83.48 |
| Venezuela | [ | 2007 | Estado Aragua-Caracas | … | Land with and without fertilizer |
| −67.278619° | 10.231817° | 547 | 23.47 | 96.62 |
* Coordinates, temperature, and relative humidity obtained in the present study. RH: relative humidity.