Microbial pioneers of plastic colonisation in coastal seawaters.

Microbial pioneers of plastic colonisation in coastal seawaters.
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DOI:
10.1016/j.marpolbul.2022.113701
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发表时间:
2022-05
影响因子:
5.8
通讯作者:
Mira Latva;Craig J. Dedman;Robyn J. Wright;M. Polin;J. Christie-Oleza
Mira Latva;Craig J. Dedman;Robyn J. Wright;M. Polin;J. Christie-Oleza
中科院分区:
环境科学与生态学3区
文献类型:
--
作者:
Mira Latva;Craig J. Dedman;Robyn J. Wright;M. Polin;J. Christie-Oleza

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作者:拉脱维亚、米拉;克雷格·j·戴德曼;罗宾·j·赖特;Marco Polin, CSIC ORCID;Christie-Oleza, Joseph Alexander Fecha de publicación: 6 -2022编辑:Elsevier Citación: Latva,米拉;克雷格·j·戴德曼;罗宾·j·赖特;Polin,马可·;克里斯蒂-奥莱萨,约瑟夫·亚历山大;2022年;沿海海水中塑料定植的微生物先驱[数据集];爱思唯尔;http://dx。doi。org/10.1016/j。marpolbul。2022.113701 Descripción: 21页。图S1:主坐标分析(PCoA)图显示了不同处理和阴性对照组中原核生物(16S rRNA基因)和真核生物(18S rRNA基因)群落之间β多样性(bry - curtis距离;相对丰度归一化)的差异。—图S2:原核(16S rRNA基因)和真核(18S rRNA基因)数据集海水孵育样品和阴性对照样品的测序深度。——图S3:原核生物(16S rRNA基因)和真核生物(18S rRNA基因)群落的稀疏曲线。—图S4:每个样本群中最丰富的前10个原核和真核塑性球分类群在纲、科和属水平上的总相对丰度。表S1:比例转化的原核生物(16S rRNA基因)群落数据的Bray-Curtis和二进制Jaccard距离的PERMANOVA测试统计摘要。表S2:在比例转化的原核生物(16S rRNA基因)群落数据上,用Bray-Curtis距离和二进制Jaccard距离对多元离散性进行排列检验的统计总结。表S3:分别比较孵育处理和时间点之间比例转化的原核生物(16S rRNA基因)群落数据的Bray-Curtis和二进制Jaccard距离配对PERMANOVA检验的统计总结。—表S4:比例转化的原核生物(16S rRNA基因)群落数据用Bray-Curtis和二元Jaccard距离两两PERMANOVA检验比较样本组间差异的统计总结。表S5:比例转化真核生物(18S rRNA基因)群落数据的Bray-Curtis和二进制Jaccard距离的PERMANOVA测试统计摘要。表S6:在比例转化真核生物(18S rRNA基因)群落数据上,Bray-Curtis距离和二进制Jaccard距离对多变量离散度同质性进行排列检验的统计总结。—表S7:比例转化真核生物(18S rRNA基因)群落数据的配对PERMANOVA试验(Bray-Curtis和二进制Jaccard距离)的统计总结,分别比较孵育处理和时间点之间的差异。—表S8:比例转化真核生物(18S rRNA基因)群落数据用Bray-Curtis和二元Jaccard距离两两PERMANOVA检验比较样本组间差异的统计总结。—表S9:对原核生物(16S rRNA基因)数据集中香农多样性数据进行的双向方差分析(ANOVA)和假设检验(Levene检验,Shapiro-Wilk检验)的统计总结。—表S10:对原核生物(16S rRNA基因)数据集中的香农多样性数据进行的事后Tukey’s HSD测试的统计摘要,以比较样本组之间的香农多样性。表S11:对真核生物(18S rRNA…)的Shannon多样性数据进行的双向方差分析(ANOVA)和假设检验(Levene检验,Shapiro-Wilk检验)的统计总结。
Autor: Latva, Mira; Dedman, Craig J.; Wright, Robyn J.; Polin, Marco CSIC ORCID; Christie-Oleza, Joseph Alexander Fecha de publicación: jun-2022 Editor: Elsevier Citación: Latva, Mira; Dedman, Craig J.; Wright, Robyn J.; Polin, Marco; Christie-Oleza, Joseph Alexander; 2022; Supplementary materials Microbial pioneers of plastic colonisation in coastal seawaters [Dataset]; Elsevier; http://dx. doi. org/10.1016/j. marpolbul. 2022.113701 Descripción: 21 pages.--This file contains 21 pages including cover page, four (4) figures and 15 tables: Figure S1: Principal Coordinates Analysis (PCoA) plots visualising differences in beta diversity (Bray-Curtis distance; relative abundance normalisation) between prokaryotic (16S rRNA gene) and eukaryotic (18S rRNA gene) communities in different treatments and negative control groups.--Figure S2: Sequencing depth of seawater-incubated samples and negative control samples belonging to the prokaryotic (16S rRNA gene) and eukaryotic (18S rRNA gene) datasets.--Figure S3: Rarefaction curves for prokaryotic (16S rRNA gene) and eukaryotic (18S rRNA gene) communities.--Figure S4: Total relative abundance of top-10 most abundant prokaryotic and eukaryotic plastisphere taxa in each sample group at class, family and genus levels.--Table S1: Statistical summary of PERMANOVA tests performed on Bray-Curtis and binary Jaccard distances of proportion-transformed prokaryotic (16S rRNA gene) community data.--Table S2: Statistical summary of permutation tests for homogeneity of multivariate dispersions with Bray-Curtis and binary Jaccard distances on proportion-transformed prokaryotic (16S rRNA gene) community data.--Table S3: Statistical summary of pairwise PERMANOVA tests with Bray-Curtis and binary Jaccard distances on proportion-transformed prokaryotic (16S rRNA gene) community data comparing differences between incubation treatments and timepoints, respectively.--Table S4: Statistical summary of pairwise PERMANOVA tests with Bray-Curtis and binary Jaccard distances on proportion-transformed prokaryotic (16S rRNA gene) community data comparing differences between sample groups.--Table S5: Statistical summary of PERMANOVA tests performed on Bray-Curtis and binary Jaccard distances of proportion-transformed eukaryotic (18S rRNA gene) community data.--Table S6: Statistical summary of permutation tests for homogeneity of multivariate dispersions with Bray-Curtis and binary Jaccard distances on proportion-transformed eukaryotic (18S rRNA gene) community data.--Table S7: Statistical summary of pairwise PERMANOVA tests with Bray-Curtis and binary Jaccard distances on proportion-transformed eukaryotic (18S rRNA gene) community data comparing differences between incubation treatments and timepoints, respectively.--Table S8: Statistical summary of pairwise PERMANOVA tests with Bray-Curtis and binary Jaccard distances on proportion-transformed eukaryotic (18S rRNA gene) community data comparing differences between sample groups.--Table S9: Statistical summary of two-way analysis of variance (ANOVA) and assumptions testing (Levene’s test, Shapiro-Wilk test) performed on Shannon diversity data from the prokaryotic (16S rRNA gene) dataset.--Table S10: Statistical summary of post-hoc Tukey’s HSD tests performed on Shannon diversity data from the prokaryotic (16S rRNA gene) dataset in order to compare Shannon diversity between sample groups.--Table S11: Statistical summary of two-way analysis of variance (ANOVA) and assumptions testing (Levene’s test, Shapiro-Wilk test) performed on Shannon diversity data from the eukaryotic (18S rRNA …