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Erratum
Molecular Ecology ( IF 4.9 ) Pub Date : 2020-05-18 , DOI: 10.1111/mec.15447


The article entitled “Archaeal biogeography and interactions with microbial community across complex subtropical coastal waters” which published in Molecular Ecology (Volume 28, Issue 12, pages 3101–3118) included the wrong versions for Figures 1,2 and 3. The publishers apologize to the authors and to their readers for any inconvenience due to this oversight. The correct figures are placed below:

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Figure 1
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Map of sampling stations from eight coastal zones (a) and kriged maps of spatial distribution of Thaumarchaeota Marine Group I (b) and Euryarchaeota Marine Group II (c). The relative abundances of two major archaeal groups in prokaryotic communities were plotted as contour maps. BIC, the east boundary of the Island‐chain; HZ, Hangzhou Bay; JS, Jiushan; SM, Sanmen Bay; SP, Shipu; XS, Xiangshan Bay; YS, Yushan Reserve; ZSI, Zhoushan archipelago. The stations in the ZSI were grouped into three subzones including ZSI_north (northern part of the archipelago), ZSI_mouth (in the mouth of HZ), and ZSI_others [Colour figure can be viewed at wileyonlinelibrary.com]
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Figure 2
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Principal Coordinate Analysis (PCoA) based on Bray‐Curtis dissimilarity visualizing the variation in the OTU compositions of total archaeal (a), MGI (b), and MGII (c) communities among coastal zones. Permutational Multivariate Analysis of Variance (PERMANOVA) and Analysis of Similarity (ANOSIM) were used to test the significance of variations in community composition with coastal zones. Most YS samples were excluded from the MGI plot and most HZ samples were excluded from the MGII plot due to low read counts [Colour figure can be viewed at wileyonlinelibrary.com]
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Figure 3
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Summary of the percentage of each ecological process governing compositional variation in total archaeal communities in all pairwise comparisons between stations according to the βNTI and RCbray values. The geographic distribution of each process between stations was separately visualized and then merged in the maps. For summary and geographic distribution of each process governing compositional variation in MGI and MGII communities, see Figures S9 and S10, respectively [Colour figure can be viewed at wileyonlinelibrary.com]


中文翻译:

勘误表

在《分子生态学》(第28卷,第12期,第3101–3118页,第28卷,第3卷)上发表的题为“考古学生物地理学以及与复杂亚热带沿海水域中微生物群落的相互作用”的图1,2和3包含错误的版本。由于这种疏忽给作者和读者带来的不便。正确的数字如下:

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图1
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来自八个沿海地区的采样站地图(a)和Thaumarchaeota海洋第一类(b)和Euryarchaeota海洋第二类(c)的克雷格空间分布图。将原核生物群落中两个主要古细菌群体的相对丰度绘制为等高线图。BIC,即岛链的东边界;杭州湾HZ JS,九山;三门湾SM SP,石浦;XS,象山湾;YS,玉山保护区;ZSI,舟山群岛。ZSI中的站点分为三个子区域,包括ZSI_north(群岛北部),ZSI_mouth(在HZ口)和ZSI_others [颜色图可在wileyonlinelibrary.com上查看]
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图2
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基于Bray-Curtis差异的主坐标分析(PCoA)可视化了沿海地区总古细菌(a),MGI(b)和MGII(c)社区OTU组成的变化。使用方差变异多元分析(PERMANOVA)和相似度分析(ANOSIM)来检验沿海地区社区组成变化的重要性。由于读取计数低,大多数YS样本被排除在MGI图之外,大多数HZ样本被排除在MGII图之外[颜色图可以在wileyonlinelibrary.com上查看]
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图3
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执政在根据βNTI和RC站之间的所有成对比较总古群落组成变化的每个生态过程的百分比摘要嘶叫值。站点之间每个过程的地理分布分别可视化,然后合并到地图中。有关控制MGI和MGII社区中组成变化的每个过程的摘要和地理分布,请分别参见图S9和S10 [颜色图可在wileyonlinelibrary.com上查看]。
更新日期:2020-06-26
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