Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Martyna M. Kotowska is active.

Publication


Featured researches published by Martyna M. Kotowska.


Philosophical Transactions of the Royal Society B | 2016

Ecological and socio-economic functions across tropical land use systems after rainforest conversion

Jochen Drescher; Katja Rembold; Kara Allen; Philip Beckschäfer; Damayanti Buchori; Yann Clough; Heiko Faust; Anas Miftah Fauzi; Dodo Gunawan; Dietrich Hertel; Bambang Irawan; I Nengah Surati Jaya; Bernhard Klarner; Christoph Kleinn; Alexander Knohl; Martyna M. Kotowska; Valentyna Krashevska; Vijesh V. Krishna; Christoph Leuschner; Wolfram Lorenz; Ana Meijide; Dian Melati; Miki Nomura; César Pérez-Cruzado; Matin Qaim; Iskandar Z. Siregar; Stefanie Steinebach; Aiyen Tjoa; Teja Tscharntke; Barbara Wick

Tropical lowland rainforests are increasingly threatened by the expansion of agriculture and the extraction of natural resources. In Jambi Province, Indonesia, the interdisciplinary EFForTS project focuses on the ecological and socio-economic dimensions of rainforest conversion to jungle rubber agroforests and monoculture plantations of rubber and oil palm. Our data confirm that rainforest transformation and land use intensification lead to substantial losses in biodiversity and related ecosystem functions, such as decreased above- and below-ground carbon stocks. Owing to rapid step-wise transformation from forests to agroforests to monoculture plantations and renewal of each plantation type every few decades, the converted land use systems are continuously dynamic, thus hampering the adaptation of animal and plant communities. On the other hand, agricultural rainforest transformation systems provide increased income and access to education, especially for migrant smallholders. Jungle rubber and rubber monocultures are associated with higher financial land productivity but lower financial labour productivity compared to oil palm, which influences crop choice: smallholders that are labour-scarce would prefer oil palm while land-scarce smallholders would prefer rubber. Collecting long-term data in an interdisciplinary context enables us to provide decision-makers and stakeholders with scientific insights to facilitate the reconciliation between economic interests and ecological sustainability in tropical agricultural landscapes.


Nature Communications | 2016

Land-use choices follow profitability at the expense of ecological functions in Indonesian smallholder landscapes

Yann Clough; Vijesh V. Krishna; Marife D. Corre; Kevin Darras; Lisa H. Denmead; Ana Meijide; Stefan Moser; Oliver Musshoff; Stefanie Steinebach; Edzo Veldkamp; Kara Allen; Andrew David Barnes; Natalie Breidenbach; Ulrich Brose; Damayanti Buchori; Rolf Daniel; Reiner Finkeldey; Idham Sakti Harahap; Dietrich Hertel; A. Mareike Holtkamp; Elvira Hörandl; Bambang Irawan; I Nengah Surati Jaya; Malte Jochum; Bernhard Klarner; Alexander Knohl; Martyna M. Kotowska; Valentyna Krashevska; Holger Kreft; Syahrul Kurniawan

Smallholder-dominated agricultural mosaic landscapes are highlighted as model production systems that deliver both economic and ecological goods in tropical agricultural landscapes, but trade-offs underlying current land-use dynamics are poorly known. Here, using the most comprehensive quantification of land-use change and associated bundles of ecosystem functions, services and economic benefits to date, we show that Indonesian smallholders predominantly choose farm portfolios with high economic productivity but low ecological value. The more profitable oil palm and rubber monocultures replace forests and agroforests critical for maintaining above- and below-ground ecological functions and the diversity of most taxa. Between the monocultures, the higher economic performance of oil palm over rubber comes with the reliance on fertilizer inputs and with increased nutrient leaching losses. Strategies to achieve an ecological-economic balance and a sustainable management of tropical smallholder landscapes must be prioritized to avoid further environmental degradation.


Frontiers in Plant Science | 2015

Patterns in hydraulic architecture from roots to branches in six tropical tree species from cacao agroforestry and their relation to wood density and stem growth

Martyna M. Kotowska; Dietrich Hertel; Yasmin Abou Rajab; Henry Barus; Bernhard Schuldt

For decades it has been assumed that the largest vessels are generally found in roots and that vessel size and corresponding sapwood area-specific hydraulic conductivity are acropetally decreasing toward the distal twigs. However, recent studies from the perhumid tropics revealed a hump-shaped vessel size distribution. Worldwide tropical perhumid forests are extensively replaced by agroforestry systems often using introduced species of various biogeographical and climatic origins. Nonetheless, it is unknown so far what kind of hydraulic architectural patterns are developed in those agroforestry tree species and which impact this exerts regarding important tree functional traits, such as stem growth, hydraulic efficiency and wood density (WD). We investigated wood anatomical and hydraulic properties of the root, stem and branch wood in Theobroma cacao and five common shade tree species in agroforestry systems on Sulawesi (Indonesia); three of these were strictly perhumid tree species, and the other three tree species are tolerating seasonal drought. The overall goal of our study was to relate these properties to stem growth and other tree functional traits such as foliar nitrogen content and sapwood to leaf area ratio. Our results confirmed a hump-shaped vessel size distribution in nearly all species. Drought-adapted species showed divergent patterns of hydraulic conductivity, vessel density, and relative vessel lumen area between root, stem and branch wood compared to wet forest species. Confirming findings from natural old-growth forests in the same region, WD showed no relationship to specific conductivity. Overall, aboveground growth performance was better predicted by specific hydraulic conductivity than by foliar traits and WD. Our study results suggest that future research on conceptual trade-offs of tree hydraulic architecture should consider biogeographical patterns underlining the importance of anatomical adaptation mechanisms to environment.


Oecologia | 2016

Conversion of tropical lowland forest reduces nutrient return through litterfall, and alters nutrient use efficiency and seasonality of net primary production

Martyna M. Kotowska; Christoph Leuschner; Triadiati Triadiati; Dietrich Hertel

Tropical landscapes are not only rapidly transformed by ongoing land-use change, but are additionally confronted by increasing seasonal climate variation. There is an increasing demand for studies analyzing the effects and feedbacks on ecosystem functioning of large-scale conversions of tropical natural forest into intensively managed cash crop agriculture. We analyzed the seasonality of aboveground litterfall, fine root litter production, and aboveground woody biomass production (ANPPwoody) in natural lowland forests, rubber agroforests under natural tree cover (“jungle rubber”), rubber and oil palm monocultures along a forest-to-agriculture transformation gradient in Sumatra. We hypothesized that the temporal fluctuation of litter production increases with increasing land-use intensity, while the associated nutrient fluxes and nutrient use efficiency (NUE) decrease. Indeed, the seasonal variation of aboveground litter production and ANPPwoody increased from the natural forest to the plantations, while aboveground litterfall generally decreased. Nutrient return through aboveground litter was mostly highest in the natural forest; however, it was significantly lower only in rubber plantations. NUE of N, P and K was lowest in the oil palm plantations, with natural forest and the rubber systems showing comparably high values. Root litter production was generally lower than leaf litter production in all systems, while the root-to-leaf ratio of litter C flux increased along the land-use intensity gradient. Our results suggest that nutrient and C cycles are more directly affected by climate seasonality in species-poor agricultural systems than in species-rich forests, and therefore might be more susceptible to inter-annual climate fluctuation and climate change.


Nature Ecology and Evolution | 2017

Direct and cascading impacts of tropical land-use change on multi-trophic biodiversity

Andrew D. Barnes; Kara Allen; Holger Kreft; Marife D. Corre; Malte Jochum; Edzo Veldkamp; Yann Clough; Rolf Daniel; Kevin Darras; Lisa H. Denmead; Noor Farikhah Haneda; Dietrich Hertel; Alexander Knohl; Martyna M. Kotowska; Syahrul Kurniawan; Ana Meijide; Katja Rembold; Walesa Edho Prabowo; Dominik Schneider; Teja Tscharntke; Ulrich Brose

The conversion of tropical rainforest to agricultural systems such as oil palm alters biodiversity across a large range of interacting taxa and trophic levels. Yet, it remains unclear how direct and cascading effects of land-use change simultaneously drive ecological shifts. Combining data from a multi-taxon research initiative in Sumatra, Indonesia, we show that direct and cascading land-use effects alter biomass and species richness of taxa across trophic levels ranging from microorganisms to birds. Tropical land use resulted in increases in biomass and species richness via bottom-up cascading effects, but reductions via direct effects. When considering direct and cascading effects together, land use was found to reduce biomass and species richness, with increasing magnitude at higher trophic levels. Our analyses disentangle the multifaceted effects of land-use change on tropical ecosystems, revealing that biotic interactions on broad taxonomic scales influence the ecological outcome of anthropogenic perturbations to natural ecosystems.Direct and cascading land-use effects alter biomass and species richness of taxa across trophic levels ranging from microorganisms to birds in a multi-taxon research initiative in Sumatra, Indonesia.


Nature Communications | 2018

Carbon costs and benefits of Indonesian rainforest conversion to plantations

Thomas Guillaume; Martyna M. Kotowska; Dietrich Hertel; Alexander Knohl; Valentyna Krashevska; Kukuh Murtilaksono; Stefan Scheu; Yakov Kuzyakov

Land-use intensification in the tropics plays an important role in meeting global demand for agricultural commodities but generates high environmental costs. Here, we synthesize the impacts of rainforest conversion to tree plantations of increasing management intensity on carbon stocks and dynamics. Rainforests in Sumatra converted to jungle rubber, rubber, and oil palm monocultures lost 116 Mg C ha−1, 159 Mg C ha−1, and 174 Mg C ha−1, respectively. Up to 21% of these carbon losses originated from belowground pools, where soil organic matter still decreases a decade after conversion. Oil palm cultivation leads to the highest carbon losses but it is the most efficient land use, providing the lowest ratio between ecosystem carbon storage loss or net primary production (NPP) decrease and yield. The imbalanced sharing of NPP between short-term human needs and maintenance of long-term ecosystem functions could compromise the ability of plantations to provide ecosystem services regulating climate, soil fertility, water, and nutrient cycles.Rainforest conversion to plantations driven by global demand for agricultural products generates high environmental costs. Here, the authors show that the high oil palm plantation production efficiency is associated with decreased carbon storage and slower organic matter cycling that affect ecosystem services.


Journal of Experimental Botany | 2018

Is xylem of angiosperm leaves less resistant to embolism than branches? Insights from microCT, hydraulics, and anatomy

Matthias M. Klepsch; Ya Zhang; Martyna M. Kotowska; Laurent J Lamarque; Markus Nolf; Bernhard Schuldt; José M. Torres-Ruiz; De-Wen Qin; Brendan Choat; Sylvain Delzon; Christine Scoffoni; Kun-Fang Cao; Steven Jansen

A relatively high resistance of leaf xylem to embolism may not explain hydraulic segmentation between leaves and branches in angiosperms.


Global Change Biology | 2015

Quantifying above‐ and belowground biomass carbon loss with forest conversion in tropical lowlands of Sumatra (Indonesia)

Martyna M. Kotowska; Christoph Leuschner; Triadiati Triadiati; Selis Meriem; Dietrich Hertel


Forest Ecology and Management | 2016

Forest conversion impacts on the fine and coarse root system, and soil organic matter in tropical lowlands of Sumatera (Indonesia)

Yuna Pransiska; Triadiati Triadiati; Soekisman Tjitrosoedirjo; Dietrich Hertel; Martyna M. Kotowska


Geoscientific Model Development | 2015

A sub-canopy structure for simulating oil palm in the Community Land Model (CLM-Palm): phenology, allocation and yield

Yuanchao Fan; Olivier Roupsard; Martial Bernoux; G. Le Maire; Oleg Panferov; Martyna M. Kotowska; Alexander Knohl

Collaboration


Dive into the Martyna M. Kotowska's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Kara Allen

University of Göttingen

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Triadiati Triadiati

Bogor Agricultural University

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Edzo Veldkamp

University of Göttingen

View shared research outputs
Researchain Logo
Decentralizing Knowledge