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The effects of Solidago canadensis water extracts on maize seedling growth in association with the biomass allocation pattern

机译:SolidaGo Canadensis水提取物对玉米幼苗生长与生物质分配模式的影响

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摘要

Background Solidago canadensis L. is an aggressive exotic plant species in China that has potential allelopathic effects on competing plant species. Effects of hormesis are frequently observed in studies of allelopathy; however, the mechanisms of such effects need to be elucidated. Allelopathic compounds may affect the growth of recipient plants via alteration of biomass allocation patterns or photosynthetic capacity. The aim of this study was to determine how water extracts from S. canadensis affected the shoot and root growth of recipient plants and whether the underlying mechanism was related to the biomass allocation pattern or photosynthetic gas exchange capacity. Methods The water extracts from S. canadensis shoots at 12 different concentrations in the range of 0–0.25 g/ml were applied thrice in 9 days to maize seedlings cultivated in silica sand. The growth (shoot height, leaf length and area and root length) and biomass accumulation and allocation (specific leaf area (SLA), leaf area ratio (LAR) and leaf mass ratio (LMR)) were compared among maize seedlings exposed to different treatment concentrations. Gas exchange (photosynthetic light response curve) was measured and compared among maize seedlings exposed to three concentrations of water extract (0, 0.0125 and 0.2 g/ml) before and after the first application, and seedling growth was measured after the third and final application. Results The growth of seedlings (shoot height, leaf length and area and root length) was promoted at concentrations below 0.125 g/ml and inhibited at concentrations above this level (P 0.05). The water extract treatments did not significantly affect the photosynthetic capacity (P > 0.05), but the dark respiration rate was higher in the low-dose treatment than that in the high-dose treatment. Shoot height was positively correlated with the biomass allocation indicators SLA and LAR (P 0.05). Conclusions The results suggested that the effects of the water extracts from S. canadensis were highly dependent on the concentration, with the growth of maize seedlings promoted at low concentrations of water extracts. The effects of the water extracts on the growth of maize seedlings were mainly due to the effects on the LAR, the allocation to leaf area growth, whereas the effects of the water extracts on leaf gas exchange capacity cannot explain variation of seedling growth. Thus, the stimulation of plant growth was very likely due to increased biomass allocation towards the shoot.
机译:背景加拿大一枝黄花在中国具有竞争上的植物种类潜在的化感作用侵略性外来植物物种。在相生相克的研究中经常观察毒物兴奋效应的影响;然而,这种影响的机制有待阐明。化感化合物可以通过生物量分配模式或光合能力改变影响受体植物的生长。本研究的目的是确定从加拿大一枝黄花水提取物如何影响受体植物的枝条和根的生长和底层机制是否与生物量分配模式或光合气体交换能力。方法从加拿大一枝黄花枝条水提取物中的12个不​​同浓度在0-0.25克/ ml的范围内9天三次施加到玉米中硅砂栽培苗。生长(苗高,叶长和面积和根长度)和生物量积累和分配(比叶面积(SLA),叶面积比(LAR)和叶质量比(LMR))暴露于不同的处理的玉米幼苗之间比较浓度。气体交换(光合光响应曲线)进行测定,并暴露于水提取物的三种浓度(0,0.0125和0.2微克/毫升)之前和所述第一应用程序后玉米幼苗之间比较,幼苗生长第三和最终应用之后测量。结果幼苗的生长(枝条高度,叶长度和面积和根长度)在浓度低于0.125被提升为微克/毫升,并抑制在浓度高于这个水平(P 0.05)。水提取物的治疗并没有显著影响光合能力(P> 0.05),但暗呼吸速率是在低剂量治疗比在高剂量治疗高。苗高呈正与生物质分配指标SLA和LAR(P 0.05)。结论结果表明,从加拿大一枝黄花水提取物的影响是高度依赖于浓度,在低浓度的水提取物的促进玉米幼苗的生长。对玉米幼苗生长的水提取物的作用主要是由于在LAR,分配给叶面积生长的作用,而在叶片的气体交换能力的水提取物的效果不能解释幼苗生长的变化。因此,植物生长的刺激很可能是由于对拍摄增加的生物质分配。

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