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首页> 外文期刊>Annals of Botany >Clonal integration affects growth, photosynthetic efficiency and biomass allocation, but not the competitive ability, of the alien invasive Alternanthera philoxeroides under severe stress
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Clonal integration affects growth, photosynthetic efficiency and biomass allocation, but not the competitive ability, of the alien invasive Alternanthera philoxeroides under severe stress

机译:在严重胁迫下,克隆整合影响外来入侵性菲律宾灰飞虱的生长,光合效率和生物量分配,但不影响其竞争能力。

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摘要

Background and Aims Many notorious alien invasive plants are clonal, but little is known about some roles and aspects of clonal integration. Here, the hypothesis is tested that clonal integration affects growth, photosynthetic efficiency, biomass allocation and competitive ability of the exotic invasive weed Alternanthera philoxeroides (Amaranthaceae). Methods The apical parts of Alternanthera were grown either with or without the lawn grass Schedonorus phoenix (tall fescue) and their stolon connections to the basal parts grown without competitors were either severed or left intact. Key Results Competition greatly reduced the maximum quantum yield of photosystem II (F-v/F-m) and growth (biomass, number of ramets and leaves, total stolon length and total leaf area) of the apical Alternanthera, but not the biomass of S. phoenix. Stolon connections significantly increased F-v/F-m and growth of Alternanthera. However, such effects on growth were smaller with than without competition and stolon connections did not alter the relative neighbour effect of Alternanthera. Stolon connections increased Alternanthera's biomass allocation to roots without competition, but decreased it with competition. Conclusions Clonal integration contributed little to Alternanthera's competitive ability, but was very important for Alternanthera to explore open space. The results suggest that the invasiveness of Alternanthera may be closely related to clonal integration.
机译:背景和目的许多臭名昭著的外来入侵植物都是克隆的,但对克隆整合的某些作用和方面知之甚少。在这里,检验了假说,克隆整合影响外来入侵杂草天南芥(Amaranthaceae)的生长,光合效率,生物量分配和竞争能力。方法在有或没有草坪草的Schedonorus phoenix(高羊茅)下生长互花米草的顶端部分,将其与无竞争者生长的基础部分的脚连接切断或保持完整。关键结果竞争大大降低了光系统II(F-v / F-m)的最大量子产量,并降低了根尖线虫的生物量,分株和叶片的数量,总茎长度和总叶面积),但没有降低凤凰木的生物量。 Stolon连接显着增加了F-v / F-m和Alternanthera的生长。但是,与没有竞争相比,这种对增长的影响要小得多,而且脚的联系也不会改变链霉菌的相对邻居效应。 Stolon连接在不竞争的情况下增加了Alternanthera对根的生物量分配,但在竞争时减少了它。结论克隆整合对Alternanthera的竞争能力影响不大,但对Alternanthera探索开放空间非常重要。结果表明,莲草的侵袭性可能与克隆整合密切相关。

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