| 1.Biomass-dependent susceptibility to drought inexperimental grassland communities |
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| 2.Experimental evidence for a phylogenetic Janzen-Connell effectin a subtropical forest |
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| 3.Arbuscular mycorrhizal fungi counteract the Janzen-Connell effect of soil pathogens |
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| 4.Experimental evidence for an intraspecific Janzen-Connell effect mediated by soil biota |
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| 5.Adult trees cause density-dependent mortality in conspecific seedlings by regulating the frequency of pathogenic soil fungi |
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| 6.Soil biota suppress positive plant diversity effects on productivity at high but not low soil fertility |
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| 7.Positive effects of neighborhood complementarity on tree growth in a Neotropical forest |
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| 8.Abundance-dependent effects of neighbourhood dissimilarity and growth rank reversal in a neotropical forest |
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| 9.Partitioning of soil phosphorus among arbuscular and ectomycorrhizal trees in tropical and subtropical forests |
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| 10.A simple method for estimating species abundance from occurrence maps |
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| 11.Comparative metagenomic and metatranscriptomic analyses of microbial communities in acid mine drainage |
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| 12.Ecological roles of dominant and rare prokaryotes in acid mine drainage revealed by metagenomics and metatranscriptomics |
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| 13.Metabolic versatility of small archaea Micrachaeota and Parvarchaeota |
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| 14.Microbial communities, processes and functions in acid mine drainage ecosystems |
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| 15.Shifts in microbial community composition and function in the acidification of a lead/zinc mine tailings |
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| 16.Conservation of specied-and Trait-Based Modeling Network Interactions in Extremely Acidic Microbial Community Assembly |
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| 17.Contemporary environmental variation determines microbial diversity patterns in acid mine drainage |
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| 18.Microbial Ecology and Evolution in the Acid Mine Drainage Model System |
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| 19.Predicting taxonomic and functional structure of microbial communities in acid mine drainage |
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| 20.Contrasting effects of phylogenetic relatedness on plant invader success in experimental grassland communities |
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| 21.Convergence and divergence in a long-term old-field succession: the importance of spatial scale and species abundance |
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| 22.Effects of species richness on cadmium removal efficiencies of algal microcosms |
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| 23.Species colonisation, not competitive exclusion, drives community overdispersion over long-term succession |
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| 24.The effects of phylogenetic relatedness on invasion success and impact: deconstructing Darwin`s naturalisation conundrum |
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| 25.Description of a new species of Anomala Samouelle from Northern Territory, Australia |
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| 26.Review of Australian genera Tessaromma Newman and Phlyctaenodes Newman with Description of a new genus and species |
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| 27.Discovery of a new species of Stromatium Audient-Serville, 1834 native to Ausrtalia, based on morphology and DNA barcoding |
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| 28.Genetic Differentiation in Native and Introduced Poplulations of Cryptolaemus montrouzieri and its Implication foe Biological Control Programs |
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| 29.Description of two new species of the genus Megophrys from Heishiding Nature Reserve, Fengkai, Guangzhou, China, based on molecular and morphological |
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| 30.The oldest prionoceridae from the middle hurassic of China |
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| 31.Noted on Australian Laius Guerin-Meneville, Dicrenolaius Champion and Intybia Pascoe with description of new species related to Dicranolaius c-purputeus |
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| 32.Contribution to the knowledge of the Australian dicranolaius champion |
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| 33.Brochocoleus Zhiyuani, a new species of brochocolein beetle from the cretaceous amber or myanmar |
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| 34.Palaeoboganium gen.nov. from the Middle Jurassic of China: the first cycad pollinators |
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