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Heterogeneous water supply affects growth and benefits of clonal integration between co-existing invasive and native Hydrocotyle species

机译:异质水供应影响并存的入侵性和原生氢辅酶物种之间克隆整合的生长和益处

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摘要

Spatial patchiness and temporal variability in water availability are common in nature under global climate change, which can remarkably influence adaptive responses of clonal plants, i.e. clonal integration (translocating resources between connected ramets). However, little is known about the effects of spatial patchiness and temporal heterogeneity in water on growth and clonal integration between congeneric invasive and native Hydrocotyle species. In a greenhouse experiment, we subjected severed or no severed (intact) fragments of Hydrocotyle vulgaris, a highly invasive species in China, and its co-existing, native congener H. sibthorpioides to different spatial patchiness (homogeneous and patchy) and temporal interval (low and high interval) in water supply. Clonal integration had significant positive effects on growth of both species. In the homogeneous water conditions, clonal integration greatly improved the growth in fragments of both species under low interval in water. However, in the patchy water conditions, clonal integration significantly increased growth in both ramets and fragments of H. vulgaris under high interval in water. Therefore, spatial patchiness and temporal interval in water altered the effects of clonal integration of both species, especially for H. vulgaris. The adaptation of H. vulgaris might lead to invasive growth and potential spread under the global water variability.
机译:在全球气候变化下,水的可利用性的空间斑块和时间变化是自然界中普遍存在的现象,这会显着影响克隆植物的适应性反应,即克隆整合(在分株之间转移资源)。然而,关于水的空间斑块和时间异质性对同属侵入性和天然水生小物种之间生长和克隆整合的影响知之甚少。在温室实验中,我们对中国入侵性很强的普通小水藻(Hydrocotyle vulgaris)及其并存的本地同源血统H. sibthorpioides进行了切断或未切断(完整)的碎片处理,使其具有不同的空间斑块(均质和斑块)和时间间隔(低和高间隔)。克隆整合对两个物种的生长都具有显着的积极影响。在均质的水条件下,克隆整合极大地改善了在水的低间隔下两个物种的片段的生长。然而,在零散的水条件下,克隆整合显着增加了高水平间隔下水中普通型分枝杆菌的分株和片段的生长。因此,水中的空间斑块和时间间隔改变了两个物种的克隆整合的影响,特别是对于寻常型嗜血​​杆菌。在全球水多变的环境下,寻常型嗜血​​杆菌的适应性可能导致侵袭性生长和潜在传播。

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