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Variation in vegetative and reproductive performance and leaf mineral composition among 25 populations of Colchicum autumnale (meadow saffron) from soils derived from six parent materials (limestone, marl, sandstone, greenstone, melaphyre and serpentine) in southwestern Poland has been investigated. The plant size (PS), total le-af area (TLA), leaf shape (LS), number of fruits per plant (NFP), number of seeds per plant (NFP), total weight seed per plant (TWSP) were estimated, and concentrations of seventeen elements (N, P, K, Ca, Mg, Na, S, Fe, Mn, Cu, Zn, Pb, Cd, Ni, Co, Cr, Mo) were analyzed in leaf and soil samples. In soil samples, also soil pH, organic matter content and sand, silt and clay content were determined. All soils (except melaphyre soil) contained elevated levels of Cr. Concentrations of soil Ni and Zn, Pb, Cd in serpentinite soil and polluted marl soils (respectively) were significantly higher than those of other examined soils. Meadow saffron leaves from all sites (except marl sites) contained elevated levels of Cr, Co and Ni. Statistical analysis, carried out with principal component analysis (PCA) revealed that a good correlation exists between the element content in leaves and plant performance traits and soil environment. The leaf Ca content and NFP were correlated and were much higher in populations from metal (except Cr) and nutrient-poor marl soils than in those from metal (except Ni in serpentine soil)and nutrient moderate rich soils derived from melaphyre, greenstones, serpentinite, limestones and sandstones and in those from metal-rich and nutrient-poor polluted marl soils. Meadow saffron plants tended to take up higher amounts of N, P, K, Mn, Cu and Na and lower amounts of S and had much higher TLA in populations from sandstone soils than those in populations from serpentinite, melaphyre, greenstone, marl and limestone soils. The leaf Co, Ni, Cr, Mg concentrations were correlated and were much higher in populations from serpentinite, melaphyre, greenstone, polluted marl and limestone soils than those from marl and sandstone soils. The pattern of variation in NFP and TLA across the different soil types was the opposite of that for leaf N, Cu, Na, Ni, Mg and S concentrations. Redundancy analysis (RDA) enables identification of the soil variables that best explain the variance pattern of plant response. The variation explained by the soil variables (15 soil elements and soil pH) was high (79%). The forward selection of soil variables identified soil Co, Mo, Ni, Ca and Zn concentrations as significantly influencing the ordination plant traits. The variation explained by these selected variables was 55%. Thus the five soil variables appeared to be the main factors determining the pattern variation of vegetative, reproductive and nutrient traits of Colchicum autumnale.
Corms of Colchicum autumnale L. (meadow saffron) from plants growing on soils developed from five parent materials (melaphire, serpentine, sandstones, limestone and marls) were collected and analysed to evaluate their colchicine content as well as metal levels (Fe, Mn, Zn, Cu, Pb, Co, Cd, Ni and Cr). For all locations, (mountainous regions in SW Poland far from pollution sources) where corms were collected, soil samples were taken. In the soil samples, the concentration of elements (Fe, Mn, Zn, Cu, Pb, Co, Cd, Ni and Cr) was analyzed and also soil pH, organic matter content and sand, silt and clay content were determined. The results of principal component analysis (PCA) showed that the concentrations of metals in melaphire (except Cr), sandstone and serpentine soils were higher than those in limestone and marl soils. Meadow saffron corms tended to take up a higher amount of Fe and a lower amount of Co and contained in their tissues a higher amount of colchicine in melaphire soil and some sandstone soils than those in limestone and some marl soils. The concentrations of Co, Mn and Zn in corms at limestone site and Ni and Cd in corms at serpentine site and some marl sites were higher than those in other sites. The results of stepwise regression analysis showed that colchicine corm concentration as well as corm Fe content increased with increasing soil Fe, Mn, Zn, Co, Cu, Pb and Cd contents and that corm Fe content has a positive effect on the production of colchicine, whereas corm Co, Mn, Zn, Ni and Cd negative. The corm Fe, Mn, Zn, Co, Ni and Cd concentrations appeared to be the main factors determining the variation pattern of colchicine in C.autumnale corms. The variation explained by these selected variables was higher (79%) than those explained by selected soil variables (53%).
The frequency distribution and density of three life stages as well as fitness components of the perennial plant Colchicum autumnale growing in the unmanaged road verges and in the extensive mown and grazed meadows in the Sudeten Mts. were studied. Furthermore, investigated were the effects of population size and plant size (measured as number of flowers) on reproductive success and explored if variation in reproductive and vegetative traits of adults could be associated with soil characteristics. The t-test indicated that proportions of subadults and reproductive adults were significantly lower in verge than in meadow populations, and of vegetative adults significantly higher. The plant density of reproductive adults and the reproductive adults to all adults ratio were significantly lower in verge populations compared to meadow populations. Although habitat type accounted for significant variation in stage structure, no significant difference was found between vegetative and reproductive traits in adult plants, except for the number of flowers. In verge populations the number of flowers was significantly lower as compared to meadow populations. The traits related to reproduction were not significantly influenced by population size. However, the proportion of flowers setting fruit decreased significantly with increasing number of flowers. The stepwise multiple regression revealed significant relationships between soil characteristics and number of fruits per plant, fruit set, number seeds per plant and number of leaves in vegetative adults. The results suggest that the creation of the low and relatively open vegetation cover could increase the chance of persistence of C. autumnale living in verge habitats by promoting of seed germination, seedling establishment and flowering, and they also show that the reproductive success and vegetative components of fitness are most likely influenced by habitat quality.
The chemical properties and colchicine content in Colchicum autumnale corms from sites localized in Kaczawskie Mountains (Poland) were studied. The colchicine in corms differs significantly and depends on chemical properties of the soils. This dependence is confirmed by the calculated significant correlations between colchicine content and soil pH, Ca, Mn and Fe content.
Tree bark has been proven to be a valuable source of information on air pollution. Bark has a large absorbent surface thanks to its deeply furrowed structure. Through the ability to accumulate atmospheric particulate matter (PM), tree bark enables the identification and mapping of organic and inorganic air pollutants. The first study of air quality using tree bark dates back to the second half of the 20th century and such studies are constantly being developed today. Reports published almost every year present the potential of using tree bark of different tree species for monitoring atmospheric pollution. This article presents scientific evidence proving the possibility of using bark in the process of assessing air quality and also describes the main directions of research in this field.
Concentrations of the elements N, P, K, Ca, Mg, Na, S, Fe, Mn, Zn, Cu, Cd, Pb, Co and Cr were measured in two co-occurring wall-fissure plants, fern A. ruta-muraria and seed plant C. muralis, collected at 14 sites in urban, urban-rural and rural areas in Lower Silesia (SW Poland). Airborne particulate matter < 10 μm (PM10) was used as indicators of metal contamination at the site where they were growing. Principal component analysis showed that in contrast to C. muralis, A. ruta-muraria from urban sites contained higher levels of Ca than those from urban-rural and rural sites. However, A. ruta-muraria from urban sites contained lower levels of K than those from urban-rural and rural sites. The Zn and Cd concentrations both in A. ruta-muraria and C. muralis were higher in urban sites, in the direct vicinity of the river, than those at other sites in the study area. PM10 influenced some features of foliar elemental composition of the two species in different ways. In A. ruta-muraria, Ca, Zn and Cd increased in proportion to PM10, while levels of K decreased and in C. muralis, Cd increased in proportion to PM10, while levels of Ca and Cr decreased.
Paproć Asplenium ruta-muraria - zanokcica murowa jest chasmofitem. Rośnie w szczelinach skal i murów najczęściej na podłożu zasadowym. Zbadano wpływ rodzaju podłoża (zaprawa wapienna, cementowa) na zawartość metali ciężkich (Mn, Fe, Zn, Cu i Pb) oraz makroelementów (N, P, K, Ca, Mg, Na i S) w zanokcicy, występującej na murach z cegły, z granitu i innych materiałów na Dolnym Śląsku. Paproć zebrano ze starych murów zlokalizowanych z dala od ruchliwych dróg i źródeł emisji metali ciężkich. W badanej zanokcicy stwierdzono znacząco wysoki, kilkakrotnie przekraczający wartości tła poziom żelaza, co może świadczyć o właściwościach kumulacyjnych tego gatunku. Wykazano, że rodzaj podłoża i muru istotnie wpływa na poziom Fe, Mn, Pb i Ca w badanej paproci. Zanokcica rosnąca na zaprawie cementowej zawierała więcej Fe, Mn, Pb i Ca w porównaniu do zanokcicy z zaprawy wapiennej, a na murach z granitu zawierała mniej Pb i Ca w porównaniu do zanokcicy z murów z cegły i innych materiałów ( (rys. 1a, b, c i d). Zawartości metali ciężkich i makroelementów w zanokcicy : murowej mogą odzwierciedlać skład mineralny i chemiczny siedliska, w którym rośnie.
We investigated the flowering probability and flower production in relation to plant size in a terrestrial orchid, Dactylorhiza majalis at 10 meadow sites in central and southwestern Poland. These sites differed in altitude (low, high) and management (presence or absence of mowing). At all sites, concentrations of nutrients in the soil were also measured. The probability of flowering increased significantly with the size of the plant in all populations, indicating that individuals do not flower until they reach a threshold size. Populations at high altitudes and the unmown sites had significantly lower threshold sizes for reproduction and showed sharp increase in flowering probability with plant size, compared to other populations. The threshold sizes for reproduction tended to decrease at sites rich in N and Mg and poor in P and S. Flower production was also size-dependent in all populations. Considerable between-site differences were found in the slope and the intercept of the regression between plant size and flower production. Flower production at some sites, at high altitudes, increased more steeply with plant size than at other sites. However, no pattern in size-dependent flower production was found relative to the measured environmental variables. Most of the size-dependent components of flowering probability were related to each other but not with the size-dependent flower production.
Concentrations of the elements N, P, K, Ca, Mg, Na, S, Fe, Mn, Cd, Co, Cr, Cu, Ni, Pb and Zn were measured in the leaves of bilberry (Vaccinium myrtillus L.) and the soil in which it grew. Concentration of total phenolics in bilberry leaves was also determined. Soil and leaves were sampled at polluted site situated 10–13 km northeast of copper smelter at Głogów (SW Poland) and at a relatively clean site. Soil at the vicinity of the Cu-smelter contained significantly more Cu, Pb, Cd, S, and significantly less Mn, Zn, Fe, Co, Ni than the non-polluted soil. Bilberry leaves from polluted site contained significantly higher concentrations of Cu, Pb, Cd, S, Fe and Cr and significantly lower concentrations of Mn and Zn. Furthermore, they had significantly higher level of total phenolics as compared with bilberry leaves from non-polluted site. Stepwise regression analysis enabled the identification of the leaf variables that best explain the variance pattern of the total foliar phenolics. This method indicated that the level of total phenolics in bilberry leaves increased with increasing concentrations of Cu, Pb, Cd and S, and decreasing level of Mn and Zn in leaves. Total foliar phenolics in bilberry in the investigated area might be a suitable indicator of stress caused by environmental pollution of heavy metal and sulfur.
The paper shows the use of Kohonen's network for classification of basaltoides on the base of chemical properties of soils and Polypodium vulgare L. The study area was Lower Silesia (Poland). The archival data were: chemical composition of types of basaltoides from 89 sites (Al2O3, CaO, FeO, Fe2O3, K2O, MgO, MnO, Na2O, P2O5, SiO2 and TiO2), elements contents in soils (Cd, Co, Cu, Fe, Mn, Mo, Ni, Pb, S, Ti and Zn) and leaves of P. vulgare (Ca, Cd, Co, Cu, Fe, K, Mg, Mn, Mo, N, Ni, P, Pb, S, Ti and Zn) from 20 sites. Descriptive statistical parameters of soils and leaves chemical properties have been shown, statistical analyses using ANOVA and relationships between chemical elements were carried out, and SOFM models have been constructed. The study revealed that the ordination of individuals and groups of neurons in topological maps of plant and soil chemical properties are similar. The constructed models are related with significantly different contents of elements in plants and soils. These models represent different chemical types of soils and are connected with ordination of types of basaltoides worked out by SOFM model of TAS division. The SOFM appeared to be a useful technique for ordination of ecological data and provides a novel framework for the discovery and forecasting of ecosystem properties.
The study objects were Aldrovanda vesiculosa L., an endangered species and fifty five water sites in Poland. The aim of the present work was to test the Self-Organizing Feature Map in order to examine and predict water properties and type of trophicity for restoration of the rare plant. Descriptive statistical parameters have been calculated, analysis of variance and cluster analysis were carried out and SOFM model has been constructed for analysed sites. The results of SOFM model and cluster analysis were compared. The study revealed that the ordination of individuals and groups of neurons in topological map of sites are similar in relation to dendrogram of cluster analysis, but not identical. The constructed SOFM model is related with significantly different contents of chemical water properties and type of trophicity. It appeared that sites with A. vesiculosa are predominantly distrophic and eutrophic waters shifted to distrophicity. The elevated model showed the sites with chemical properties favourable for restoration the species. Determined was the range of ecological tolerance of the species in relation to habitat conditions as stenotopic or relatively stenotopic in respect of the earlier accepted eutrophic status. The SOFM appeared to be a useful technique for ordination of ecological data and provides a novel framework for the discovery and forecasting of ecosystem properties constituting a validation of the SOFM method in this type of studies.
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