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Variation in ecophysiology and carbon economy of invasive and native woody vines of riparian zones in south-eastern Queensland

机译:昆士兰州东南部河岸带侵入性和原生木本藤本植物的生态生理和碳经济变化

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摘要

Exotic and invasive woody vines are major environmental weeds of riparian areas, rainforest communities and remnant natural vegetation in coastal eastern Australia, where they smother standing vegetation, including large trees, and cause canopy collapse. We investigated, through glasshouse resource manipulative experiments, the ecophysiological traits that might facilitate faster growth, better resource acquisition and/or utilization and thus dominance of four exotic and invasive vines of South East Queensland, Australia, compared with their native counterparts. Relative growth rate was not significantly different between the two groups but water use efficiency (WUE) was higher in the native species while the converse was observed for light use efficiency (quantum efficiency, AQE) and maximum photosynthesis on a mass basis (). The invasive species, as a group, also exhibited higher respiration load, higher light compensation point and higher specific leaf area. There were stronger correlations of leaf traits and greater structural (but not physiological) plasticity in invasive species than in their native counterparts. The scaling coefficients of resource use efficiencies (WUE, AQE and respiration efficiency) as well as those of fitness (biomass accumulated) versus many of the performance traits examined did not differ between the two species-origin groups, but there were indications of significant shifts in elevation (intercept values) and shifts along common slopes in many of these relationships – signalling differences in carbon economy (revenue returned per unit energy invested) and/or resource usage. Using ordination and based on 14 ecophysiological attributes, a fair level of separation between the two groups was achieved (51.5% explanatory power), with AQE, light compensation point, respiration load, WUE, specific leaf area and leaf area ratio, in decreasing order, being the main drivers. This study suggests similarity in trait plasticity, especially for physiological traits, but there appear to be fundamental differences in carbon economy and resource conservation between native and invasive vine species.
机译:外来入侵性木本藤本植物是澳大利亚东部沿海地区河岸地区,雨林群落和残余自然植被的主要环境杂草,它们窒息了包括大树在内的站立植被,并导致冠层倒塌。我们通过温室资源操纵实验研究了与澳大利亚昆士兰东南部相比可能促进更快生长,更好的资源获取和/或利用从而促进了澳大利亚昆士兰东南部四个外来入侵葡萄的优势的生态生理特性。两组之间的相对生长率没有显着差异,但原生物种的水分利用效率(WUE)较高,而按质量计算的光利用效率(量子效率,AQE)和最大光合作用则相反。作为一个整体,这些入侵物种还表现出更高的呼吸负荷,更高的光补偿点和更高的比叶面积。与原生物种相比,入侵物种的叶片性状相关性和结构(但不是生理)可塑性更高。在两个物种起源组之间,资源利用效率(WUE,AQE和呼吸效率)以及适应性(累积的生物量)与许多性能特征的比例系数没有差异,但是有迹象表明存在显着变化高度(截距值),并在许多关系中沿共同的坡度移动–表示碳经济(每单位能源投入的收益回报)和/或资源使用情况存在差异。使用排序并基于14种生理生态属性,两组之间的分离水平达到了合理水平(51.5%的解释力),AQE,光补偿点,呼吸负荷,WUE,比叶面积和叶面积比按降序排列,是主要驱动力。这项研究表明,性状可塑性具有相似性,特别是生理性状,但本地和入侵性藤本植物在碳经济和资源保护方面似乎存在根本差异。

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  • 来源
    《Austral Ecology》 |2010年第6期|p.636-649|共14页
  • 作者单位

    Alan Fletcher Research Station, Invasive Plant and Animal Science, Biosecurity Queensland, Department of Primary Industries and Fisheries, PO Box 36, Sherwood, Qld 4075, Australia (Email: olusegun.osunkoya@deedi.qld.gov.au), and;

    Alan Fletcher Research Station, Invasive Plant and Animal Science, Biosecurity Queensland, Department of Primary Industries and Fisheries, PO Box 36, Sherwood, Qld 4075, Australia (Email: olusegun.osunkoya@deedi.qld.gov.au), and|AECOM – Australia, Brisbane, Queensland, Australia;

    Alan Fletcher Research Station, Invasive Plant and Animal Science, Biosecurity Queensland, Department of Primary Industries and Fisheries, PO Box 36, Sherwood, Qld 4075, Australia (Email: olusegun.osunkoya@deedi.qld.gov.au), and;

    Alan Fletcher Research Station, Invasive Plant and Animal Science, Biosecurity Queensland, Department of Primary Industries and Fisheries, PO Box 36, Sherwood, Qld 4075, Australia (Email: olusegun.osunkoya@deedi.qld.gov.au), and;

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  • 关键词

    biological invasion; plant functional trait; photosynthesis; specific leaf area; trait plasticity; woody vine;

    机译:生物入侵;植物功能性状;光合作用;比叶面积;性状可塑性;木本藤;

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