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杨丽平  常会会  李杰  张智斌  黄原 《生态学报》2017,37(20):6905-6913
利用DNA复合条形码技术,研究了11个样本的蝗虫肠道共生真菌的多样性。结果显示:ITS在所研究的物种中鉴定了5门16纲29目40属2786 OTU真菌。肠道真菌群落组成分析结果显示:所有物种肠道真菌类群中含量最高的是木耳菌目和银耳目,其中斑翅蝗科的真菌类群多样性相对最高,斑腿蝗科的真菌类群多样性相对最低,表明各蝗虫肠道之间存在着明显的菌群多样性变化。α多样性分析结果显示:斑翅蝗科的共生真菌群落丰富度和多样性最高,斑腿蝗科的则最低。β多样性分析结果显示:(1)同科的各个种的肠道真菌群落结构差异性较小,不同科的种的肠道真菌群落结构差异性较大;(2)剑角蝗科的肠道真菌群落结构与其他物种的相似性均相对较低,而且在两个不同取样地得到的中华剑角蝗的真菌群落结构相似性也相对较低。聚类分析结果显示:(1)同科的蝗虫肠道真菌首先聚到一起,且群落相似性也相对较高;(2)布勒掷孢酵母属、内疣衣属和外瓶霉属3个属在蝗虫肠道真菌中是优势菌属。  相似文献   
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Comprehensive understanding of the patterns and drivers of microbial diversity at a landscape scale is in its infancy, despite the recent ease by which soil communities can be characterized using massively parallel amplicon sequencing. Here we report on a comprehensive analysis of the drivers of diversity distribution and composition of the ecologically and economically important Phytophthora genus from 414 soil samples collected across Australia. We assessed 22 environmental and seven categorical variables as potential predictors of Phytophthora species richness, α and β diversity, including both phylogenetically and non‐phylogenically explicit methods. In addition, we classified each species as putatively native or introduced and examined the distribution with respect to putative origin. The two most widespread species, P. multivora and P. cinnamomi, are introduced, though five of the ten most widely distributed species are putatively native. Introduced taxa comprised over 54% of Australia's Phytophthora diversity and these species are known pathogens of annual and perennial crop habitats as well as urban landscapes and forestry. Patterns of composition were most strongly predicted by bioregion (R2 = 0.29) and ecoregion (R2 = 0.26) identity; mean precipitation of warmest quarter, mean temperature of the wettest quarter and latitude were also highly significant and described approximately 21, 14 and 13% of variation in NMDS composition, respectively. We also found statistically significant evidence for phylogenetic over‐dispersion with respect to key climate variables.This study provides a strong baseline for understanding biogeographical patterns in this important genus as well the impact of key plant pathogens and invasive Phytophthora species in natural ecosystems.  相似文献   
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生物入侵对世界经济、环境造成了巨大的影响,已经成为世界关注的焦点。传统的海关检验方法存在鉴定缓慢、准确率低、鉴定专家稀缺等问题,因此急需一种鉴定率高、操作简单和快速的方法对入侵植物的繁殖体进行精确的鉴别。DNA条形码是一种基于DNA序列差异进行物种鉴定的技术,鉴定结果只受样品组织内DNA保存状况影响,不受形态学性状保存状态影响,只需掌握简单分子生物学技术的工作人员即可实现对未知样品的鉴定,在入侵植物检疫鉴定中有很大的应用潜力。根据入侵植物进化快、变异多的特点,可优先考虑种间、种内差异度高的ITS基因作为核心条形码,再以mat K和rbc L基因为辅助条形码。本文分析了植物DNA条形码技术及其衍生出的超级DNA条形码和metabarcoding技术在入侵植物鉴定中的应用潜力,提出构建入侵植物DNA条形码参考数据库与智能植物志(i Flora)相结合,为利用DNA条形码技术对入侵植物进行快速鉴定和相关研究提供参考。  相似文献   
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