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首页> 外文期刊>HortTechnology >Overwintering Survival and Vigor of Container-grown Fountain Grass: Influence of Substrate Moisture Content, Protective Covers, and Fertilizer Rate
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Overwintering Survival and Vigor of Container-grown Fountain Grass: Influence of Substrate Moisture Content, Protective Covers, and Fertilizer Rate

机译:容器生长的喷泉草的越冬存活率和活力:基质含水量,保护套和肥料用量的影响

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Despite the popularity of fountain grass (Pennisetum alopecuroides) as a landscape perennial, little research has been conducted on nursery management practices that maximize its overwintering survival and subsequent spring vigor in container production systems. An experiment was conducted to determine the effect of protective covers (a double layer of insulation fabric, a double layer of insulation fabric plus a single sheet of white polyethylene plastic, or no cover), fertilizer application rate (high and low), and substrate moisture content (irrigated when substrate volumetric water content (VWC) fell below 15% and 25%) on the survival rate and vigor of container-grown fountain puss: straight species fountain grass (SFG), 'Hameln' fountain grass (HFG), and 'Little Bunny' fountain grass (LBFG). Plants were overwintered in a coldframe and were evaluated for survival rate (percent that survived the winter) and vigor (visual rating scale 1 to 5) the following spring. Survival rate and vigor ratings varied among species. However, the highest survival rates (generally 75% or greater) and vigor ratings (generally 3 or greater) were in treatments that used protective covers, though there was not a clear advantage to using white polyethylene in addition to the double layer of insulation fabric. In treatments that used either of the protective covering methods and the high fertilizer application rate, 25% or less of LBFG survived and had vigor ratings of 1.3 or less. In contrast, 75% of LBFG survived when the low fertilizer rate was used in conjunction with either protective covering method. Substrate moisture content only affected the survival rates of SFG and HFG when no protective cover was used, although these survival rates were less than those with covers. These results suggest that protective covers may serve as a tool to minimize winter damage and improve crop quality for the species used in this trial. Because of the varied capacity among these cultivars to tolerate different fertilizer rates and substrate moisture contents, it is recommended that growers use the results of this study as a baseline for conducting site evaluations to determine overwintering techniques that maximize survival and vigor on their facilities.
机译:尽管喷泉草(Pennisetum alopecuroides)作为常年的景观植物很受欢迎,但很少进行有关苗圃管理实践的研究,这些实践可以最大化其越冬存活率和随后在集装箱生产系统中的春季活力。进行了一项实验,以确定保护性覆盖层(双层隔热织物,双层隔热织物加上单片白色聚乙烯塑料或无覆盖层),肥料施用量(高和低)和基质的作用水分含量(当基质体积水含量(VWC)分别低于15%和25%时灌溉)对容器生长的喷泉小便成活率和活力的影响:直形喷泉草(SFG),'Hameln'喷泉草(HFG),和“小兔子”喷泉草(LBFG)。将植物在冷框中过冬,并在第二年春天评估其成活率(冬季存活的百分比)和活力(视觉等级等级1至5)。物种的存活率和生存力等级各不相同。但是,在使用防护罩的处理中,最高的存活率(通常为75%或更高)和活力等级(通常为3或更高),尽管除了双层隔热织物外,使用白色聚乙烯没有明显优势。在使用保护性覆盖方法和高施肥率的处理中,LBFG的存活率为25%或更少,而活力等级为1.3或更低。相比之下,当将低施肥率与两种保护性覆盖方法结合使用时,LBFG存活了75%。当不使用防护罩时,基材的水分含量仅影响SFG和HFG的存活率,尽管这些存活率低于使用防护罩的存活率。这些结果表明,保护性覆盖物可作为一种工具,以最大程度地减少冬季损害并提高该试验所用物种的作物品质。由于这些品种耐受不同肥料比率和基质含水量的能力各不相同,因此建议种植者以本研究的结果为基础进行现场评估,以确定能够最大程度提高其设施生存和活力的越冬技术。

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