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Novel technique shows different hydrophobic chemical signatures of exotic and indigenous plant soils with similar effects of extracts on indigenous species seedling growth

机译:新技术显示了外来和本土植物土壤的不同疏水化学特征,提取物对本土物种幼苗生长的影响相似

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Changes to ecosystem abiotic parameters are regarded as possible mechanisms facilitating plant invasion and community composition shifts. This study compared the hydrophobic chemical signatures of soil from exotic bitou bush (Chrysanthemoides monilifera spp. rotundata) invaded, indigenous acacia (Acacia longifolia var. sophorae) dominated and bare sand (unvegetated) habitats using a novel, rapid, capturing technique which utilised Amberlitep XAD4 resin filled bags that were placed in situ. The hydrophobic chemical signature of the bitou bush soil extract was significantly different to the acacia soil and bare sand extracts. High concentrations of 18 sesquiterpenes dominated the hydrophobic signature of the bitou bush extract. Low concentrations of all three extracts did not significantly affect the seedling growth of three indigenous test species under laboratory conditions, however, at higher concentrations, the extracts from soil inhabited by plants, whether exotic or indigenous, similarly inhibited the seedling growth of two species, while seedling growth of the third species was inhibited by extracts from all three soil types. These results do not support the hypothesis that exotic invasive species are more likely to exhibit allelopathic effects than indigenous plant species.
机译:生态系统非生物参数的变化被认为是促进植物入侵和群落组成转移的可能机制。这项研究使用一种新颖,快速的捕获技术,利用Amberlitep技术,比较了来自外来的比图灌木丛(Chrysanthemoides monilifera spp。rotundata)入侵,土著相思树种(Acacia longifolia var。sophorae)为主和裸露的沙地(无植被)的土壤的疏水化学特征。将XAD4树脂填充的袋子原位放置。矮头灌木丛土壤提取物的疏水化学特征与相思土和裸砂提取物显着不同。 18倍半萜的高浓度主导了the头灌木提取物的疏水特征。在实验室条件下,所有三种提取物的低浓度均不会显着影响三种本土测试物种的幼苗生长,但是,在更高的浓度下,无论是外来物种还是本土物种,植物所居住的土壤中的提取物均会抑制两种物种的幼苗生长,而三种植物的提取物均抑制了第三种植物的幼苗生长。这些结果不支持以下假设:外来入侵物种比本地植物物种更可能表现出化感作用。

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