A mechanistic basis for underyielding in phytoplankton communities

scientific article

A mechanistic basis for underyielding in phytoplankton communities is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1890/08-2370.1
P698PubMed publication ID20380210
P5875ResearchGate publication ID43097239

P50authorUrsula GaedkeQ21264822
P2093author name stringGuntram Weithoff
Andrea Schmidtke
P2860cites workImpacts of plant diversity on biomass production increase through time because of species complementarityQ24673688
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Effects of algal diversity on the production of biomass in homogeneous and heterogeneous nutrient environments: a microcosm experimentQ33355959
Plant diversity and productivity experiments in european grasslandsQ33879171
Physical stress and diversity-productivity relationships: the role of positive interactionsQ36232609
Effects of macroalgal species identity and richness on primary production in benthic marine communities.Q45737249
EFFECTS OF BIODIVERSITY ON ECOSYSTEM FUNCTIONING: A CONSENSUS OF CURRENT KNOWLEDGEQ47460553
Productivity and sustainability influenced by biodiversity in grassland ecosystemsQ47460580
From selection to complementarity: shifts in the causes of biodiversity-productivity relationships in a long-term biodiversity experimentQ47460583
The influence of species diversity on ecosystem productivity: how, where, and why?Q56483759
The Influence of Functional Diversity and Composition on Ecosystem ProcessesQ56483761
The Effects of Plant Composition and Diversity on Ecosystem ProcessesQ56483764
Overyielding among plant functional groups in a long-term experimentQ56959342
Mechanisms responsible for the positive diversity-productivity relationship in Minnesota grasslandsQ56966056
INTRASPECIFIC AGGREGATION ALTERS COMPETITIVE INTERACTIONS IN EXPERIMENTAL PLANT COMMUNITIESQ56980191
Overyielding in grassland communities: testing the sampling effect hypothesis with replicated biodiversity experimentsQ57027166
Biodiversity Effects on Aquatic Ecosystem Functioning - Maturation of a New ParadigmQ57068681
BIOVOLUME CALCULATION FOR PELAGIC AND BENTHIC MICROALGAEQ57068848
Millennial-scale relationships of diatom species richness and production in two prairie lakesQ57181516
Effects of macrophyte species richness on wetland ecosystem functioning and servicesQ59072106
P433issue1
P407language of work or nameEnglishQ1860
P921main subjectphytoplanktonQ184755
P1104number of pages10
P304page(s)212-221
P577publication date2010-01-01
P1433published inEcologyQ1013420
P1476titleA mechanistic basis for underyielding in phytoplankton communities
P478volume91

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cites work (P2860)
Q36309944Biodiversity effects on resource use efficiency and community turnover of plankton in Lake Nansihu, China
Q34485245Biodiversity increases the productivity and stability of phytoplankton communities
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Q51603538Determining the mechanism by which fish diversity influences production.
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Q38135448Industrial-strength ecology: trade-offs and opportunities in algal biofuel production
Q48550816Interplay between r- and K-strategists leads to phytoplankton underyielding under pulsed resource supply.
Q35848550Interspecific competition in phytoplankton drives the availability of essential mineral and biochemical nutrients
Q47257037Microbial consortia: a critical look at microalgae co-cultures for enhanced biomanufacturing
Q90376461Model Microbial Consortia as Tools for Understanding Complex Microbial Communities
Q35125698Modeled diversity effects on microbial ecosystem functions of primary production, nutrient uptake, and remineralization.
Q36106254Per capita interactions and stress tolerance drive stress-induced changes in biodiversity effects on ecosystem functions.
Q30363916Phytoplankton Diversity Effects on Community Biomass and Stability along Nutrient Gradients in a Eutrophic Lake
Q35584440Phytoplankton assemblage characteristics in recurrently fluctuating environments
Q33538699Productivity, herbivory, and species traits rather than diversity influence invasibility of experimental phytoplankton communities
Q36236898The impact of resource dependence of the mechanisms of life on the spatial population dynamics of an in silico microbial community
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