Vojtěch Čada
Czech University of Life Sciences Prague
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Featured researches published by Vojtěch Čada.
Forest Ecology and Management | 2017
Pavel Janda; Volodymyr Trotsiuk; Martin Mikoláš; Radek Bače; Thomas A. Nagel; Rupert Seidl; Meelis Seedre; Robert C. Morrissey; Stanislav Kucbel; Peter Jaloviar; Marián Jasík; Juraj Vysoký; Pavel Šamonil; Vojtěch Čada; Hana Mrhalová; Jana Lábusová; Markéta H. Nováková; Miloš Rydval; Lenka Matějů; Miroslav Svoboda
In order to gauge ongoing and future changes to disturbance regimes, it is necessary to establish a solid baseline of historic disturbance patterns against which to evaluate these changes. Further, understanding how forest structure and composition respond to variation in past disturbances may provide insight into future resilience to climate-driven alterations of disturbance regimes. We established 184 plots (mostly 1000 m2) in 14 primary mountain Norway spruce forests in the Western Carpathians. On each plot we surveyed live and dead trees and regeneration, and cored around 25 canopy trees. Disturbance history was reconstructed by examining individual tree growth trends. The study plots were further aggregated into five groups based on disturbance history (severity and timing) to evaluate and explain its influence on forest structure. These ecosystems are characterized by a mixed severity disturbance regime with high spatiotemporal variability in severity and frequency. However, periods of synchrony in disturbance activity were also found. Specifically, a peak of canopy disturbance was found for the mid-19th century across the region (about 60% of trees established), with the most important periods of disturbance in the 1820s and from the 1840s to the 1870s. Current stand size and age structure were strongly influenced by past disturbance activity. In contrast, past disturbances did not have a significant effect on current tree density, the amount of coarse woody debris, and regeneration. High mean densities of regeneration with height >50 cm (about 1400 individuals per ha) were observed. Extensive high severity disturbances have recently affected Central European forests, spurring a discussion about the causes and consequences. We found some evidence that forests in the Western Carpathians were predisposed to recent severe disturbance events as a result of synchronized past disturbance activity, which partly homogenized size and age structure and made recent stands more vulnerable to bark beetle outbreak. Our data suggest that these events are still part of the range of natural variability. The finding that regeneration density and volume of coarse woody debris were not influenced by past disturbance illustrates that vastly different past disturbance histories are not likely to change the future trajectories of these forests. These ecosystems currently have high ecological resilience to disturbance. In conclusion, we suggest that management should recognize disturbances as a natural part of ecosystem dynamics in the mountain forests of Central Europe, account for their stochastic occurrence in management planning, and mimic their patterns to foster biodiversity in forest landscapes.
PLOS ONE | 2015
Radek Bače; Miroslav Svoboda; Pavel Janda; Robert C. Morrissey; Jan Wild; Jennifer L. Clear; Vojtěch Čada; Daniel C. Donato
Background Severe canopy-removing disturbances are native to many temperate forests and radically alter stand structure, but biotic legacies (surviving elements or patterns) can lend continuity to ecosystem function after such events. Poorly understood is the degree to which the structural complexity of an old-growth forest carries over to the next stand. We asked how pre-disturbance spatial pattern acts as a legacy to influence post-disturbance stand structure, and how this legacy influences the structural diversity within the early-seral stand. Methods Two stem-mapped one-hectare forest plots in the Czech Republic experienced a severe bark beetle outbreak, thus providing before-and-after data on spatial patterns in live and dead trees, crown projections, down logs, and herb cover. Results Post-disturbance stands were dominated by an advanced regeneration layer present before the disturbance. Both major species, Norway spruce (Picea abies) and rowan (Sorbus aucuparia), were strongly self-aggregated and also clustered to former canopy trees, pre-disturbance snags, stumps and logs, suggesting positive overstory to understory neighbourhood effects. Thus, although the disturbance dramatically reduced the stand’s height profile with ~100% mortality of the canopy layer, the spatial structure of post-disturbance stands still closely reflected the pre-disturbance structure. The former upper tree layer influenced advanced regeneration through microsite and light limitation. Under formerly dense canopies, regeneration density was high but relatively homogeneous in height; while in former small gaps with greater herb cover, regeneration density was lower but with greater heterogeneity in heights. Conclusion These findings suggest that pre-disturbance spatial patterns of forests can persist through severe canopy-removing disturbance, and determine the spatial structure of the succeeding stand. Such patterns constitute a subtle but key legacy effect, promoting structural complexity in early-seral forests as well as variable successional pathways and rates. This influence suggests a continuity in spatial ecosystem structure that may well persist through multiple forest generations.
Frontiers in Plant Science | 2016
Vojtěch Čada; Hana Šantrůčková; Jiří Šantrůček; Lenka Kubištová; Meelis Seedre; Miroslav Svoboda
Atmospheric pollution critically affects forest ecosystems around the world by directly impacting the assimilation apparatus of trees and indirectly by altering soil conditions, which subsequently also leads to changes in carbon cycling. To evaluate the extent of the physiological effect of moderate level sulfate and reactive nitrogen acidic deposition, we performed a retrospective dendrochronological analysis of several physiological parameters derived from periodic measurements of carbon stable isotope composition (13C discrimination, intercellular CO2 concentration and intrinsic water use efficiency) and annual diameter increments (tree biomass increment, its inter-annual variability and correlation with temperature, cloud cover, precipitation and Palmer drought severity index). The analysis was performed in two mountain Norway spruce (Picea abies) stands of the Bohemian Forest (Czech Republic, central Europe), where moderate levels of pollution peaked in the 1970s and 1980s and no evident impact on tree growth or link to mortality has been reported. The significant influence of pollution on trees was expressed most sensitively by a 1.88‰ reduction of carbon isotope discrimination (Δ13C). The effects of atmospheric pollution interacted with increasing atmospheric CO2 concentration and temperature. As a result, we observed no change in intercellular CO2 concentrations (Ci), an abrupt increase in water use efficiency (iWUE) and no change in biomass increment, which could also partly result from changes in carbon partitioning (e.g., from below- to above-ground). The biomass increment was significantly related to Δ13C on an individual tree level, but the relationship was lost during the pollution period. We suggest that this was caused by a shift from the dominant influence of the photosynthetic rate to stomatal conductance on Δ13C during the pollution period. Using biomass increment-climate correlation analyses, we did not identify any clear pollution-related change in water stress or photosynthetic limitation (since biomass increment did not become more sensitive to drought/precipitation or temperature/cloud cover, respectively). Therefore, we conclude that the direct effect of moderate pollution on stomatal conductance was likely the main driver of the observed physiological changes. This mechanism probably caused weakening of the spruce trees and increased sensitivity to other stressors.
The Holocene | 2018
Miloš Rydval; Daniel L. Druckenbrod; Miroslav Svoboda; Volodymyr Trotsiuk; Pavel Janda; Martin Mikoláš; Vojtěch Čada; Radek Bače; Marius Teodosiu; Rob Wilson
Accurately capturing medium- to low-frequency trends in tree-ring data is vital to assessing climatic response and developing robust reconstructions of past climate. Non-climatic disturbance can affect growth trends in tree-ring-width (RW) series and bias climate information obtained from such records. It is important to develop suitable strategies to ensure the development of chronologies that minimize these medium- to low-frequency biases. By performing high density sampling (760 trees) over a ~40-ha natural high-elevation Norway spruce (Picea abies) stand in the Romanian Carpathians, this study assessed the suitability of several sampling strategies for developing chronologies with an optimal climate signal for dendroclimatic purposes. There was a roughly equal probability for chronologies (40 samples each) to express a reasonable (r = 0.3–0.5) to non-existent climate signal. While showing a strong high-frequency response, older/larger trees expressed the weakest overall temperature signal. Although random sampling yielded the most consistent climate signal in all sub-chronologies, the outcome was still sub-optimal. Alternative strategies to optimize the climate signal, including very high replication and principal components analysis, were also unable to minimize this disturbance bias and produce chronologies adequately representing climatic trends, indicating that larger scale disturbances can produce synchronous pervasive disturbance trends that affect a large part of a sampled population. The Curve Intervention Detection (CID) method, used to identify and reduce the influence of disturbance trends in the RW chronologies, considerably improved climate signal representation (from r = 0.28 before correction to r = 0.41 after correction for the full 760 sample chronology over 1909–2009) and represents a potentially important new approach for assessing disturbance impacts on RW chronologies. Blue intensity (BI) also shows promise as a climatically more sensitive variable which, unlike RW, does not appear significantly affected by disturbance. We recommend that studies utilizing RW chronologies to investigate medium- to long-term climatic trends also assess disturbance impact on those series.
Biological Conservation | 2013
Panu Halme; Katherine A. Allen; Ainārs Auniņš; Richard H. W. Bradshaw; Guntis Brūmelis; Vojtěch Čada; Jennifer L. Clear; Anna-Maria Eriksson; Gina E. Hannon; Esko Hyvärinen; Sandra Ikauniece; Reda Iršėnaitė; Bengt Gunnar Jonsson; Kaisa Junninen; Santtu Kareksela; Atte Komonen; Janne S. Kotiaho; Jari Kouki; Timo Kuuluvainen; Adriano Mazziotta; Mikko Mönkkönen; Kristiina Nyholm; Anna Oldén; Ekaterina Shorohova; Niels Strange; Tero Toivanen; Ilkka Vanha-Majamaa; Tuomo Wallenius; Anna-Liisa Ylisirniö; Ewa Zin
Global Change Biology | 2017
Maxime Cailleret; Steven Jansen; Elisabeth M. R. Robert; Lucía DeSoto; Tuomas Aakala; Joseph A. Antos; Barbara Beikircher; Christof Bigler; Harald Bugmann; Marco Caccianiga; Vojtěch Čada; J. Julio Camarero; Paolo Cherubini; Hervé Cochard; Marie R. Coyea; Katarina Čufar; Adrian J. Das; Hendrik Davi; Sylvain Delzon; Michael Dorman; Guillermo Gea-Izquierdo; Sten Gillner; Laurel J. Haavik; Henrik Hartmann; Ana-Maria Hereş; Kevin R. Hultine; Pavel Janda; Jeffrey M. Kane; V.I. Kharuk; Thomas Kitzberger
Journal of Vegetation Science | 2014
Miroslav Svoboda; Pavel Janda; Radek Bače; Shawn Fraver; Thomas A. Nagel; Jan Rejzek; Martin Mikoláš; Jan Douda; Karel Boublík; Pavel Šamonil; Vojtěch Čada; Volodymyr Trotsiuk; Marius Teodosiu; Olivier Bouriaud; Adrian I. Biriş; Ondřej Sýkora; Petr Uzel; Jiří Zelenka; Vít Sedlák; Jiří Lehejček
Forest Ecology and Management | 2013
Vojtěch Čada; Miroslav Svoboda; Pavel Janda
Forest Ecology and Management | 2016
Vojtěch Čada; Robert C. Morrissey; Zuzana Michalová; Radek Bače; Pavel Janda; Miroslav Svoboda
Forest Ecology and Management | 2014
Pavel Janda; Miroslav Svoboda; Radek Bače; Vojtěch Čada; JeriLynn E. Peck