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Effects of clonal integration on the invasive clonal plant Alternanthera philoxeroides under heterogeneous and homogeneous water availability

机译:非均质和均质水分利用对无性系整合对入侵性无性系拟南芥的影响

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Many notorious invasive plants are clonal, living in heterogeneous or homogeneous habitats. To understand how clonal integration affects the performance of these plants in different habitat conditions, an 8-week greenhouse experiment was conducted: ramet pairs of A. philoxeroides were grown in two habitats, either heterogeneous or homogeneous in water availability, with the stolon connections either severed or kept intact. Under heterogeneous water availability, compared with ramets in homogeneous habitats, clonal integration significantly promoted the growth and photosynthetic performance of water-stressed apical ramets, whereas it only increased the photosynthetic performance but did not affect the growth of water-stressed basal ramets. Moreover, clonal integration markedly increased the root/shoot ratios of ramets grown in habitats with high water supply but decreased it under low water availability. Under homogeneous water availability, stolon connection (clonal integration) did not influence the growth, photosynthetic performance and biomass allocation of water-stressed ramets, but it significantly promoted the growth of well-watered ramets in both apical and basal sections. These findings deepen our understanding of the bidirectional and differentiated (mainly acropetal) clonal integration of A. philoxeroides, suggesting that the invasive plant A. philoxeroides can benefit from clonal integration in both heterogeneous and homogeneous habitats.
机译:许多臭名昭著的入侵植物是无性系,生活在异质或同质生境中。为了了解克隆整合如何影响这些植物在不同生境条件下的性能,进行了一个为期8周的温室实验:在两个生境中均生长了无性的A. philoxeroides对,这些生境在水的可用性上是异质的或均质的,且茎之间的连接切断或保持完整。与同质生境中的分株相比,在非均质水供应条件下,克隆整合显着促进了水分胁迫根尖分株的生长和光合性能,而它仅增加了光合性能,而没有影响水分胁迫基分株的生长。此外,克隆整合显着增加了在高水供应的生境中生长的分株的根/茎比,但在低水利用率下却降低了。在均质水的条件下,sto茎连接(克隆整合)不影响水分胁迫分株的生长,光合性能和生物量分配,但显着促进了顶端和基部节水良好的分株的生长。这些发现加深了我们对phil.erooxeroides的双向和分化(主要是顶角)克隆整合的理解,表明入侵植物A.philoxeroides可以从异质和同质生境中的克隆整合中受益。

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