Data from: Higher fungal diversity is correlated with lower CO2 emissions from dead wood in a natural forest

Yang C, Schaefer DA, Liu W, Popescu VD, Yang C, Wang X, Wu C, Yu DW

Date Published: September 2, 2016

DOI: http://dx.doi.org/10.5061/dryad.k6j0h

 

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Title otutable_first200_tax
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Description Top 200 most reads OTUs with their taxonomy assignment and reads number
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Title Sequence data
Description Raw 454 sequencing data
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Title Bioinformatic command script
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Description An example bioinformatic script
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Title S1 fungus_CROP_R_script_nonrarefied
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Description The HTML outputs of the R scripts using the non-rarefied CROP datasets
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Title S1 fungus_CROP_R_script_rarefied
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Description The HTML outputs of the R scripts using the rarefied CROP datasets
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Title S1 fungus_uclust_R_script_nonrarefied
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Description The HTML outputs of the R scripts using the non-rarefied UCLUST datasets
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Title S1 fungus_uclust_R_script_rarefied
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Description The HTML outputs of the R scripts using the rarefied UCLUST datasets
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When using this data, please cite the original publication:

Yang C, Schaefer DA, Liu W, Popescu VD, Yang C, Wang X, Wu C, Yu DW (2016) Higher fungal diversity is correlated with lower CO2 emissions from dead wood in a natural forest. Scientific Reports 6: 31066. http://dx.doi.org/10.1038/srep31066

Additionally, please cite the Dryad data package:

Yang C, Schaefer DA, Liu W, Popescu VD, Yang C, Wang X, Wu C, Yu DW (2016) Data from: Higher fungal diversity is correlated with lower CO2 emissions from dead wood in a natural forest. Dryad Digital Repository. http://dx.doi.org/10.5061/dryad.k6j0h
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