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首页> 外文期刊>Estuarine Coastal and Shelf Science >Exotic Spartina alterniflora invasion changes temporal dynamics and composition of spider community in a salt marsh of Yangtze Estuary, China
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Exotic Spartina alterniflora invasion changes temporal dynamics and composition of spider community in a salt marsh of Yangtze Estuary, China

机译:异国情调的Spartina alteriflora入侵改变了中国长江河口盐沼的蜘蛛群落的时间动态和组成

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摘要

Spiders play important roles in regulating arthropod populations in terrestrial ecosystems. However, the impact of exotic plant invasion on the spider community is still poorly understood, especially in salt marsh systems, which are especially susceptible to this invasion. The exotic Spartina alterniflora has widely invaded the coastal wetlands of China, and this study aims to evaluate such effects on the spider diversity and community composition in the Jiuduansha wetland of Yangtze Estuary. To do this, for a one-year period, we have collected spiders from the marsh surface (SMS) as well as spiders from the plant foliage surface (SPFS) respectively in S. alterniflora-dominated marshes (SDM) and native Phragmites austra/is-dominated marshes (PDM) in Jiuduansha. Results showed S. alterniflora invasion generally had a positive effect on the biodiversities of both SMS and SPFS, but actually changed the seasonal fluctuation of species richness and abundance of SMS. According to principal component analysis, community compositions of SMS and SPFS were different between SDM and PDM. Specially, SMS community composition exhibited more obvious temporal patterns in PDM than in SDM. The Bray-Curtis dissimilarity index between SDM and PDM varied more between sampling months in SMS than in SPFS. Based on canonical correspondence analysis, tidal elevation significantly affected community compositions of SMS and SPFS in SDM. In contrast, for spiders in PDM, tidal elevation had a weakened effect on SMS community composition. This may be explained by the different distribution of the two plants at high and low tidal levels. In summary, our study suggests that S. alterniflora invasion has changed the temporal dynamic and composition of the spider community in the Jiuduansha wetland. In future research, it should be highlighted that variations in habitat characteristics and ecological niches of spiders are important in mediating the invasive effects of exotic plants on the native spider community.
机译:蜘蛛在调节陆地生态系统中的节肢动物群体中起重要作用。然而,异国情调的植物入侵对蜘蛛群落的影响仍然是较差的,特别是在盐沼系统中,这尤其容易受到这种入侵。异国情调的Spartina alternflora广泛侵犯了中国沿海湿地,这项研究旨在评估长江河口Jiuduansha湿地的蜘蛛多样性和社区组成的效果。要做到这一点,为期一年,我们将蜘蛛从沼泽地面(SMS)以及来自植物叶面(SPF)的蜘蛛分别收集在S. Interfiflora主导的沼泽(SDM)和博物馆澳洲/在九杜山山是主导的沼泽(PDM)。结果表明,S. alternflora侵袭通常对SMS和SPF的生物多样性产生积极影响,但实际上改变了物种丰富性和丰富的短信的季节性波动。根据主要成分分析,SDM和PDM之间的SMS和SPF的群落组成不同。特别是,SMS社区成分在PDM中表现出比SDM更明显的时间模式。 SDM和PDM之间的Bray-Curtis异化指数在SMS中的采样月间多于SPF。基于规范对应分析,潮汐升高显着影响SDM中SMS和SPF的群落组成。相比之下,对于PDM中的蜘蛛,潮汐升高对SMS群落组成的影响疲软。这可以通过在高潮汐水平下两种植物的不同分布来解释。总之,我们的研究表明,S. alternflora入侵改变了Jiuduansha湿地的蜘蛛界的时间动态和组成。在未来的研究中,应该强调的是,栖息地特征和蜘蛛生态利基的变化对于介导异性植物对天然蜘蛛群落的侵入作用很重要。

著录项

  • 来源
    《Estuarine Coastal and Shelf Science》 |2020年第jul5期|106755.1-106755.10|共10页
  • 作者单位

    Beijing Forestry Univ Sch Nat Conservat 35 Tsinghua East Rd Beijing 100083 Peoples R China|Chinese Acad Sci Inst Plant Physiol & Ecol Shanghai Inst Biol Sci Shanghai Entomol Museum 300 Fenglin Rd Shanghai 200032 Peoples R China;

    Chinese Acad Sci Inst Plant Physiol & Ecol Shanghai Inst Biol Sci Shanghai Entomol Museum 300 Fenglin Rd Shanghai 200032 Peoples R China;

    Chinese Acad Sci Inst Plant Physiol & Ecol Shanghai Inst Biol Sci Shanghai Entomol Museum 300 Fenglin Rd Shanghai 200032 Peoples R China;

    Beijing Forestry Univ Sch Nat Conservat 35 Tsinghua East Rd Beijing 100083 Peoples R China;

    Chinese Acad Sci Inst Plant Physiol & Ecol Shanghai Inst Biol Sci Shanghai Entomol Museum 300 Fenglin Rd Shanghai 200032 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Salt marsh ecosystem; Spartina altemiflora invasion; Spider biodiversity; Community composition; Ecological niche; Tidal elevation;

    机译:盐沼生态系统;Spartina Altemiflora入侵;蜘蛛生物多样性;社区成分;生态利基;潮汐海拔;

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