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首页> 外文期刊>HortTechnology >Stem cutting propagation in whole pine tree substrates.
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Stem cutting propagation in whole pine tree substrates.

机译:整个松树基质中茎的cutting插繁殖。

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摘要

Wood-based substrates have been extensively evaluated for greenhouse and nursery crop production, yet these substrates have not been evaluated for propagation. The objective of this study was to evaluate processed whole loblolly pine trees (WPT) (Pinus taeda) as a rooting substrate for stem cutting propagation of a range of ornamental crops. Substrates included processed WPT, pine (Pinus sp.) bark (PB), and each mixed with equal parts (by volume) peatmoss (PM) (WPT:PM and PB:PM, respectively). Substrate physical (air space, container capacity, total porosity, bulk density, and particle size distribution) and chemical [pH and electrical conductivity (EC)] properties were determined for all substrates. Rooting percentage, total root length, total root volume, and total shoot length were evaluated for four species in 2008 and five species in 2009. Substrate air space was similar between PB and WPT in the 2008 experiment, and likewise between PB:PM and WPT:PM. In the 2009 experiment, PB and WPT had similar substrate air space. The addition of PM to PB and WPT resulted in reduced air space and increased container capacity in both experiments. The proportion of fine particles doubled for PB:PM and WPT:PM compared with PB and WPT, respectively. Substrate pH for all substrates ranged from 6.0 to 6.9 at 7 days after sticking (DAS) cuttings and 6.9 to 7.1 at 79 DAS. Substrate EC was below the acceptable range for all substrates except at 7 DAS. Rooting percentage was similar among substrates within each species in both experiments. The addition of PM resulted in significantly greater total root length for PB:PM and WPT:PM compared with PB and WPT, respectively, for five of the eight species. Shoot growth was most vigorous for PB:PM compared with the other substrates for all species. The study demonstrated a range of plant species can be propagated from stem cuttings in whole pine tree substrates alone or combined with PM.
机译:已对温室和苗圃作物的木质基材进行了广泛评估,但尚未对这些基材的繁殖进行评估。这项研究的目的是评估加工过的整棵火炬松树(WPT)(Pinus taeda)作为生根基质,以进行一系列观赏作物的cutting插繁殖。底物包括经过加工的WPT,松树(Pinus sp。)树皮(PB),每种均与等份(按体积计)的泥炭(PM)(分别为WPT:PM和PB:PM)混合。确定了所有基材的基材物理性能(空气空间,容器容量,总孔隙率,堆积密度和粒度分布)和化学性质[pH和电导率(EC)]。在2008年和2009年评估了4种和2009年5种的生根率,总根长,总根体积和总苗长。2008年实验中PB和WPT之间的基质气隙相似,PB:PM和WPT之间的基质气隙相似:下午。在2009年的实验中,PB和WPT具有相似的基材空气空间。在两个实验中,向PB和WPT中添加PM都会减少空气空间并增加容器容量。 PB:PM和WPT:PM的细颗粒比例分别是PB和WPT的两倍。粘附(DAS)切削后第7天,所有底物的底物pH范围为6.0至6.9,而在79 DAS时为6.9至7.1。底物EC低于所有底物的可接受范围(7 DAS除外)。在两个实验中,每个物种内底物之间的生根百分比相似。对于八个物种中的五个而言,添加PM导致PB:PM和WPT:PM的总根长明显大于PB和WPT。与所有物种的其他底物相比,PB:PM的枝条生长最旺盛。研究表明,可以从整个松树基质中的茎插中繁殖出一系列植物物种,单独或与PM结合使用。

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