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食草诱导的克隆入侵植物海角菠萝的非局部响应不是由克隆整合介导的。

Herbivory induced non-local responses of the clonal invader Carpobrotus edulis are not mediated by clonal integration.

机构信息

Plant Ecophysiology Group, Department of Plant Biology and Soil Science, University of Vigo, 36310 Vigo, Spain; ECOEVO Lab, E. E. Forestal, University of Vigo, 36005 Pontevedra, Spain.

Plant Ecophysiology Group, Department of Plant Biology and Soil Science, University of Vigo, 36310 Vigo, Spain.

出版信息

Sci Total Environ. 2018 Aug 15;633:1041-1050. doi: 10.1016/j.scitotenv.2018.03.264. Epub 2018 Mar 28.

Abstract

The anthropogenic displacement of species around the world results in new environmental situations where native and exotic species coexist. Exotic plants have to face native herbivores, and interactions between introduced plants and native herbivores seem to play an important role in the invasiveness of some exotic plant species. We studied the role of clonal integration in induce morphological, physiological, and biochemical responses in the clonal invader Carpobrotus edulis against the attack of the native snail Theba pisana. Our results demonstrated the presence of labour division mediated by physiological integration, with a significant increase of photosynthesis potential (both at morphological and physiological) in un-attacked integrated ramets. This response could be especially important under herbivory, as the negative impact of T. pisana on the photosynthetic structures of attacked C. edulis ramets could be buffered by transferring the dependence of photosynthetic activity to the un-attacked ramets. Our results also showed a constitutive resistance in un-attacked apical ramets, showing a similar amount of defence compounds to those exhibited in the basal branches attacked by snails. Results reported a non-local compensatory response, which there was an increase of total biomass in apical ramets when their basal ramets were attacked by the herbivore. We interpret this result as a compensatory response, with these apical ramets increasing shoot biomass to compensate for the biomass loss due to a potential attack from herbivores. However, this non-local response was not mediated by physiological integration but probably due to belowground communication, with the presence of alarm signals released by root exudates. We conclude that the attack of this snail is not enough to be a possible biological control due to the compensatory response to this snail by C. edulis, favouring their expansion. Future studies should focus on unravelling the role of belowground communication in the defensive responses of C. edulis.

摘要

世界各地物种的人为迁移导致了新的环境情况,在这些环境中,本地和外来物种共存。外来植物必须面对本地食草动物,而引入植物和本地食草动物之间的相互作用似乎在一些外来植物物种的入侵性中起着重要作用。我们研究了克隆整合在诱导克隆入侵者卡里波布洛图斯·埃杜利斯(Carpobrotus edulis)对本地蜗牛 Theba pisana 攻击的形态、生理和生化反应中的作用。我们的结果表明,存在通过生理整合介导的劳动分工,未受攻击的整合分株的光合作用潜力(形态和生理上)都显著增加。这种反应在受到食草动物攻击时可能特别重要,因为 T. pisana 对受攻击的 C. edulis 分株的光合作用结构的负面影响可以通过将光合作用活性的依赖性转移到未受攻击的分株上来缓冲。我们的结果还显示了未受攻击的顶端分株的组成性抗性,其防御化合物的含量与受蜗牛攻击的基部分支相似。结果报告了一种非局部补偿反应,即在其基部分株受到食草动物攻击时,顶端分株的总生物量增加。我们将这个结果解释为一种补偿反应,这些顶端分株增加了地上生物量,以补偿由于潜在的食草动物攻击而导致的生物量损失。然而,这种非局部反应不是通过生理整合介导的,而是可能由于地下通讯的存在,根分泌物释放出警报信号。我们得出结论,由于 C. edulis 对这种蜗牛的补偿反应,这种蜗牛的攻击不足以成为一种可能的生物控制,有利于它们的扩张。未来的研究应该集中在揭示地下通讯在 C. edulis 防御反应中的作用。

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