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Allelopathic Effects of Native Versus Invasive Plants on One Major Invader

机译:本地对入侵植物的化感作用对一种主要入侵者的影响

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摘要

Allelopathy is defined as the effects (stimulatory and inhibitory) of a plant on the development of neighboring plants through the release of secondary compounds. Autoallelophaty is the beneficial or harmful effect of a plant species on itself. The allelopathic potential belonging to a native species could induce a biotic resistance against invasive plants, whereas allelochemicals released by exotic species could favor the establishment of invasive species (invasional meltdown). The aim of our study was to examine the potential allelopathic effect of four plant species on the target species Ludwigia hexapetala using two experiments. In the first experiment, we tested the allelopathic effect of root and leaf leachates of the two congeneric exotic species Ludwigia hexapetala and Ludwigia peploides on L. hexapetala, while in the second experiment, we studied the allelopathic effect of root and leaf leachates of a sympatric exotic species Myriophyllum aquaticum and of one native species Mentha aquatica on L. hexapetala. We measured the stem length to calculate the relative growth rate and four physiological traits (nitrogen balance index and flavonol, chorophyll, anthocyanin indices) of the target plants on a weekly basis. At the end of the experiment, we determined the aboveground and belowground biomass. We also counted the number of lateral branches and measured their lengths. We found that the root leachates of L. peploides and of Myriophyllum aquaticum had stimulated the synthesis of flavonols of L. hexapetala. Leaf leachate of L. hexapetala also stimulated its own flavonol synthesis. Also, the root leachate of L. peploides had stimulated the total biomass and length of lateral branches of L. hexapetala, whereas the production of lateral branches had been stimulated by root leachates of both Ludwigia species and by leaf leachate of Myriophyllum aquaticum. The autoallelopathy of L. hexapetala could explain its invasiveness. Both leachates produced by Mentha aquatica had no effect on the physiological and morphological traits of the invasive L. hexapetala and indicated no biotic resistance in the recipient community. The two invasive plant species Myriophyllum aquaticum and L. peploides could favor the establishment of L. hexapetala. These results suggested an “invasional meltdown.”
机译:化感作用定义为植物通过释放次级化合物对邻近植物发育的影响(刺激和抑制)。自噬是植物物种对其自身的有利或有害作用。属于本地物种的化感潜力可能诱导对入侵植物的生物抗性,而外来物种释放的化感物质可能有利于入侵物种的建立(入侵崩溃)。我们的研究目的是通过两个实验,研究四种植物对目标物种六叶草Ludwigia hexapetala的潜在化感作用。在第一个实验中,我们测试了两个同类外来物种六味子和六味子的根和叶浸出液对六瓣pet的化感作用,而在第二个实验中,我们研究了同胞的根和叶浸出物的化感作用。外来物种Myriophyllum aquaticum和六瓣兰上的一种本土物种Mentha aquatica。我们测量茎长,以每周计算目标植物的相对生长速率和四个生理特性(氮平衡指数和黄酮醇,叶绿素,花色苷指数)。在实验结束时,我们确定了地上和地下的生物量。我们还计算了侧枝的数量并测量了它们的长度。我们发现,L。peploides和Myriophyllum aquaticum的根浸出液已经刺激了L. hexapetala黄酮醇的合成。六瓣紫苏的叶浸出液也刺激了其自身的黄酮醇合成。同样,L。peploides的根浸出液刺激了六瓣紫苏的总生物量和侧枝长度,而Ludwigia物种的根浸出液和Myriophyllum aquaticum的叶浸出液均刺激了侧枝的产生。六瓣乳杆菌的自体化病可以解释其侵袭性。水生薄荷的两种浸出液对浸润性的生理和形态特征没有影响。六瓣花,并表明接受者社区没有生物抗性。两种入侵植物物种 Myriophyllum aquaticum L。 peploides 可能有助于建立 L。 hexapetala 。这些结果表明“入侵性崩溃”。

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