首页> 外文期刊>Aquatic Botany >Allelopathic activity of Elodea canadensis and Elodea nuttallii against epiphytes and phytoplankton.
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Allelopathic activity of Elodea canadensis and Elodea nuttallii against epiphytes and phytoplankton.

机译:加拿大伊乐藻和巴西伊乐藻对附生植物和浮游植物的化感作用。

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Elodea nuttallii and Elodea canadensis have both been introduced from North America to Europe. They are now common in many water bodies where they often form dominating stands. It was suggested that negative relationships between Elodea and phytoplankton or epiphytic covers exist, probably due to the release of growth inhibiting allelochemicals. This would be an effective strategy to avoid light limitation caused by algae and cyanobacteria. We investigated the allelopathic potential of both E. nuttallii and E. canadensis against different photoautotrophs, focussing on epiphytic algae and cyanobacteria isolated from different submersed macrophytes and culture strains. Methanolic extracts of both species inhibited the growth of most of these organisms. Only a culture strain of Scenedesmus brevispina was stimulated. Further separation of extracts yielded several active fractions, indicating that hydrophilic and slightly lipophilic compounds were responsible for growth reduction. At least some of the activity seems to be related to phenolic substances, but flavonoids in these species are inactive. Since growth declined also in a moderately lipophilic fraction of culture filtrate of E. nuttallii, we assume that active compounds were exuded in the water. Allelopathy might thus be relevant in situ and suppress cyanobacteria and algae. We furthermore found differences in the susceptibility of target organisms, which could (1) at least partly be a result of adaptation to the respective host plants and (2) indicate that allelopathic interference might reduce the abundance of some species, especially cyanobacteria, in epiphytic biofilms..
机译:Elodea nuttallii和Elodea canadensis都已从北美引入欧洲。现在,它们在许多水体中很常见,它们通常形成支配地位。有人认为,伊乐藻与浮游植物或附生生物的覆盖物之间存在负相关关系,这可能是由于释放了抑制生长的化感物质所致。这将是避免由藻类和蓝细菌引起的光限制的有效策略。我们调查了E. nuttallii和E. canadensis对不同光合自养生物的化感潜力,重点研究了从不同的沉水植物和培养菌株中分离出来的附生藻类和蓝细菌。两种物种的甲醇提取物都抑制了大多数这些生物的生长。仅刺激了短角场景的培养菌株。提取物的进一步分离产生几个活性级分,表明亲水性化合物和稍微亲脂性的化合物导致生长减少。至少某些活性似乎与酚类物质有关,但这些物种中的类黄酮没有活性。由于生长在坚果肠杆菌的培养物滤液的中等亲脂性部分中的生长也下降,因此我们认为活性化合物在水中渗出。因此,化感作用可能与原位有关,并抑制蓝细菌和藻类。我们还发现了靶标生物的敏感性差异,这可能(1)至少部分是由于对各自宿主植物的适应性所致;(2)表明化感干扰可能会降低附生植物中某些物种(尤其是蓝细菌)的丰度生物膜..

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