Veijo Jormalainen
Head of Department (Department of Biology) veijor@utu.fi +358 29 450 4158 +358 40 721 2682 Natura, yliopistonmäki Turku : 335 |
marine biology; plant-herbivore -interactions; behavioral ecology of crustacean mesograzers; community ecology; evolutionary ecology
Human influence on ecosystems is growing with an ever-accelerating speed.
The most important applied aim of ecological research is to understand
biological mechanisms behind and derive predictions on consequences for
biodiversity and ecosystem function. Human influences such as eutrophication
and warming percolate through the network of biotic interactions. Therefore,
knowledge on the structure and function of communities is crucially important.
Natural populations respond to environmental change by either going extinct
locally or adapting locally. Therefore, research on distributional changes need
to be complemented by knowledge on evolutionary potential of the populations,
such as amount of genetic variation, genetic structure, nature of selection and
determinants of gene flow. From this perspective evolutionary ecology manifests
as the principal research field in providing understanding and predictive
potential for global change.
My research focuses on ecology and evolution of intra- and interspecific
interactions in the littoral communities of the Baltic Sea. The Baltic Sea is
an exciting research environment; it is unique owing to the brackish water
nature, archipelagoes and the naturally fragmented littoral zone, and there is
a human population of nearly 90 million living on the catchment and generating an
enormous environmental impact. The unique features reflect to both the
community composition and genetic variation of the species. Although the
monitoring of human impacts has a long history in the Baltic Sea, very little
research on evolutionary potential and evolutionary responses to global changes
has been conducted. There clearly is a both a need and a niche for research
providing understanding on consequences of environmental change in the Baltic
Sea and for planning science based conservation and management actions.
Learning occurs when there is motivation. Therefore the
foremost job of a teacher is to inspire and motivate, spark the desire for
knowledge. On top of that comes the deep and up-to-date knowledge that is the
most valuable property of a university teacher.
Subjective experience boosts digestion of new information,
which highlights the importance of teaching methodologies. In biology,
supportive methods are readily available: field excursions and courses with
hands-on demonstrations, laboratory exercises, research project visits,
computer simulations and personal data collection and analysis.
Lectures are an invaluable method in providing structure,
context and state-of-the-art review for new knowledge. However, they are
insufficient alone. In my own lecturing, I try to include elements supporting
personal learning, e.g. discussion, teamwork and seminars on specific issues
presented by students.
Learning and novel insights are built on facts and past
experience. It is therefore essential to provide the history of ideas,
formulation of hypotheses and their testing and development towards the
conventional wisdom, pointing out gaps and discrepancies. It is pointless to
invent the wheel repeatedly.
Recent courses given:
Community ecology
Aquatic ecology
Ecology and evolution plant-herbivore -interactions
Macrophyte ecology
- Tolerance to climate change of the clonally reproducing endemic Baltic seaweed, Fucus radicans: is phenotypic plasticity enough? (2018)
- Journal of Phycology
- Variations in tolerance to climate change in a key littoral herbivore (2018)
- Marine Biology
- Defensive role of macroalgal phlorotannins: benefits and trade-offs under natural herbivory (2017)
- Marine Ecology Progress Series
- Genetic variation of a foundation rockweed species affects associated communities (2017)
- Ecology
- Is the future as tasty as the present? Elevated temperature and hyposalinity affect the quality of Fucus (Phaeophyceae, Fucales) as food for the isopod Idotea balthica (2017)
- Marine Biology
- r- and K-strategies as extremes of the life-history continuum (2017) Biological Oceanography of the Baltic Sea Jormalainen V
- Eutrophication and the challenge of changing biotic interactions (2016) Marine Macrophytes as Foundation Species Rothäusler E, Jormalainen V
- Genetic variation in photosynthetic performance and tolerance to osmotic stress (desiccation, freezing, hyposalinity) in the rocky littoral foundation species Fucus vesiculosus (Fucales, Phaeophyceae) (2016)
- Journal of Phycology
- Nutrient enrichment overwhelms top-down control in algal communities around cormorant colonies (2016)
- Journal of Experimental Marine Biology and Ecology
- The invasive mud crab enforces a major shift in a rocky littoral invertebrate community of the Baltic Sea (2016)
- Biological Invasions
- Abundance and dispersal trajectories of floating Fucus vesiculosus in the Northern Baltic Sea (2015)
- Limnology and Oceanography
- Cormorant-induced shifts in littoral communities (2015)
- Marine Ecology Progress Series
- Grazers of macroalgae and higher plants (2015) Life styles and feeding biology”, volume 2 in the Series The Natural History of the Crustacea Veijo Jormalainen
- Habitat-specific gut microbiota of the marine herbivore Idotea balthica (Isopoda) (2014)
- Journal of Experimental Marine Biology and Ecology
- Seasonality elicits herbivores’ escape from trophic control and favors induced resistance in a temperate macroalga (2014)
- Ecology
- Ignored patterns in studies of local adaptations: When the grass is greener on the allopatric site (2013)
- Ideas in Ecology and Evolution
- Seabird Guano Fertilizes Baltic Sea Littoral Food Webs (2013)
- PLoS ONE
- Global patterns in the impact of marine herbivores on benthic primary producers (2012)
- Ecology Letters
- Quantifying variation and chemical correlates of bladderwrack quality - herbivore population makes a difference (2011)
- Functional Ecology
- STRESS ECOLOGY IN FUCUS: ABIOTIC, BIOTIC AND GENETIC INTERACTIONS (2011)
- Advances in Marine Biology