| Literature DB >> 31655872 |
Anna Biedunkiewicz1, Ewa Sucharzewska2, Kamila Kulesza2, Karolina Nowacka2, Dariusz Kubiak2.
Abstract
This study analysed whether the littoral zone in the immediate vicinity of bathing sites retains potentially pathogenic yeasts on the phyllosphere surface and to what extent the species composition of microfungi in the phyllosphere and in surface waters is similar. The research was carried out in selected lakes located within the administrative boundaries of the city of Olsztyn, the largest city in the Masurian Lake District (NE Poland). The experiment was conducted in three summer seasons near bathing sites in three lakes, which are the most popular as recreational sites (Lake Kortowskie, Lake Tyrsko, and Lake Skanda). Microfungi isolated from the phyllosphere of 13 plant species of the littoral zone from dropped leaves of coast plants with no disease symptoms were used as the study material. The isolated fungi were identified in accordance with the accepted diagnostic procedures applied in mycological laboratories. A total of 36 yeast species of 16 genera were identified. Fungi found earlier at the bathing sites of the lakes were identified in 60% of the cases. Nine species were categorised as class BSL-2 fungi. This study provides a valuable complement of data concerning the natural composition of the littoral microbiota.Entities:
Keywords: Littoral; Phyllosphere; Potential pathogens; Sanitary and epidemiological hazard; Yeast
Year: 2019 PMID: 31655872 PMCID: PMC7176600 DOI: 10.1007/s00248-019-01447-y
Source DB: PubMed Journal: Microb Ecol ISSN: 0095-3628 Impact factor: 4.552
Fig. 1The scheme of sampling sites localization
Fig. 2Candida krusei—microculture on the agar Nickerson after 72 h of incubation (magn. × 600)
Fig. 3Candida glabrata—microculture on the agar Nickerson after 72 h of incubation (magn. × 1000)
Species differentiation of microfungi on the phyllosphere in Lakes Skanda (S), Kortowskie (K) and Tyrsko (T), taking into account the biosafety level (BSL)
| No. | Species of microfungi | Phyllosphere | |||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| ( | ( | ( | ( | ( | ( | ( | ( | ( | ( | ( | ( | ( | BSL* | ||
| 1 | SK | 1 | |||||||||||||
| 2 | SKT | 2 | |||||||||||||
| 3 | K | SK | 2 | ||||||||||||
| 4 | SK | S | S | SK | 2 | ||||||||||
| 5 | S | un | |||||||||||||
| 6 | SKT | 2 | |||||||||||||
| 7 | SKT | S | S | S | S | S | 2 | ||||||||
| 8 | K | SK | S | 2 | |||||||||||
| 9 | SK | S | un | ||||||||||||
| 10 | SKT | 2 | |||||||||||||
| 11 | K | T | S | 1 | |||||||||||
| 12 | S | K | un | ||||||||||||
| 13 | S | un | |||||||||||||
| 14 | SK | S | S | un | |||||||||||
| 15 | SK | S | K | 2 | |||||||||||
| 16 | T | S | S | un | |||||||||||
| 17 | SK | S | S | 1 | |||||||||||
| 18 | SK | 1 | |||||||||||||
| 19 | ST | ST | un | ||||||||||||
| 20 | K | K | S | un | |||||||||||
| 21 | K | S | S | S | K | un | |||||||||
| 22 | S | un | |||||||||||||
| 23 | SK | S | S | un | |||||||||||
| 24 | K | S | S | S | un | ||||||||||
| 25 | S | T | S | un | |||||||||||
| 26 | K | S | S | un | |||||||||||
| 27 | SKT | S | S | 2 | |||||||||||
| 28 | S | S | un | ||||||||||||
| 29 | K | S | un | ||||||||||||
| 30 | K | S | un | ||||||||||||
| 31 | SK | S | S | un | |||||||||||
| 32 | S | T | S | un | |||||||||||
| 33 | S | un | |||||||||||||
| 34 | S | un | |||||||||||||
| 35 | SK | un | |||||||||||||
| 36 | S | T | S | un | |||||||||||
un, unclassified
*According de Hoog [22] and de Hoog et al. [23]
List of microfungi species isolated from the phyllosphere (v) and those previously isolated from the water under study (x) [1–3]
| No | List of all the fungi species isolated from the lake water and from the phyllosphere | Skanda | Kortowskie | Tyrsko | |||
|---|---|---|---|---|---|---|---|
| Water | Phyllosphere | Water | Phyllosphere | Water | Phyllosphere | ||
| 1 | x | v | v | ||||
| 2 | x | ||||||
| 3 | x | ||||||
| 4 | |||||||
| 5 | x | v | x | v | |||
| 6 | x | v | x | v | |||
| 7 | x | v | x | ||||
| 8 | x | ||||||
| 9 | |||||||
| 10 | x | ||||||
| 11 | x | ||||||
| 12 | |||||||
| 13 | x | v | x | v | |||
| 14 | x | v | v | x | |||
| 15 | x | ||||||
| 16 | x | ||||||
| 17 | x | ||||||
| 18 | x | ||||||
| 19 | x | ||||||
| 20 | x | ||||||
| 21 | x | v | x | v | v | ||
| 22 | x | ||||||
| 23 | x | ||||||
| 24 | x | ||||||
| 25 | x | ||||||
| 26 | x | ||||||
| 27 | x | v | x | v | x | v | |
| 28 | v | v | |||||
| 29 | x | ||||||
| 30 | v | ||||||
| 31 | x | ||||||
| 32 | x | ||||||
| 33 | x | ||||||
| 34 | v | x | v | ||||
| 35 | v | v | |||||
| 36 | v | v | |||||
| 37 | x | ||||||
| 38 | x | ||||||
| 39 | x | ||||||
| 40 | x | ||||||
| 41 | x | ||||||
| 42 | x | ||||||
| 43 | x | ||||||
| 44 | x | ||||||
| 45 | x | ||||||
| 46 | x | v | v | x | |||
| 47 | x | ||||||
| 48 | x | ||||||
| 49 | x | ||||||
| 50 | x | ||||||
| 51 | x | x | |||||
| 52 | x | v | v | x | |||
| 53 | x | ||||||
| 54 | x | ||||||
| 55 | x | v | x | v | |||
| 56 | x | ||||||
| 57 | x | ||||||
| 58 | x | ||||||
| 59 | x | ||||||
| 60 | v | v | |||||
| 61 | x | ||||||
| 62 | v | x | v | ||||
| 63 | v | ||||||
| 64 | x | v | v | x | |||
| 65 | v | v | |||||
| 66 | x | ||||||
| 67 | x | ||||||
| 68 | x | ||||||
| 69 | v | v | |||||
| 70 | x | ||||||
| 71 | x | ||||||
| 72 | |||||||
| 73 | x | ||||||
| 74 | |||||||
| 75 | v | v | |||||
| 76 | |||||||
| 77 | v | ||||||
| 78 | v | x | v | ||||
| 79 | x | ||||||
| 80 | |||||||
| 81 | x | ||||||
| 82 | x | v | v | ||||
| 83 | x | v | x | v | |||
| 84 | v | x | v | ||||
| 85 | v | ||||||
| 86 | x | v | |||||
| 87 | x | ||||||
| 88 | x | ||||||
| 89 | x | ||||||
| 90 | x | x | |||||
| 91 | |||||||
| 92 | x | ||||||
| 93 | x | ||||||
| 94 | |||||||
| 95 | v | x | v | ||||
| 96 | x | ||||||
| 97 | x | ||||||
| 98 | |||||||
| 99 | x | ||||||
| 100 | x | ||||||
| 101 | x | ||||||
| 102 | x | v | v | ||||
| 103 | x | ||||||
Italic entries indicate that yeast species isolated from both types of reservoirs (lake waters and the phyllosphere)