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Establishment and growth of container seedlings for reforestation: a function of stocktype and edaphic conditions.

机译:造林用容器育苗的建立和生长:种群类型和土壤条件的函数。

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A properly selected stocktype can greatly enhance reforestation success through increased survival and growth following outplanting. Implementing a robust stocktype trial using stocktypes of equal quality can ensure results lead to the best choice. Six container types, differing primarily in depth and volume, were used to evaluate the performance of ponderosa pine (Pinus ponderosa Laws. var. ponderosa) seedlings outplanted on two sites that varied in volumetric soil moisture content ( theta ), average temperature, and total precipitation (mesic and xeric). Seedlings in each container type were cultured specifically to achieve uniform seedling quality. After two growing seasons, seedlings planted at the mesic site showed high survival (>99%) and incremental growth gains of 147, 100, and 794% for height, root-collar diameter (RCD), and stem volume, respectively; container types exhibited differences in total height, RCD, and stem volume with larger containers generally yielding the largest seedlings. Seedlings planted at the xeric site experienced 83% survival, smaller growth gains (25, 46, and 220% for height, RCD, and stem volume, respectively), and also exhibited differences in height, RCD, and stem volume. Regression analysis revealed that for each site, initial seedling morphological characteristics were better at predicting absolute height, RCD and stem volume after the first year than after the second year, with initial seedling height offering the best predictive power (R2=0.66, mesic site; and R2=0.70, xeric site). Second-year absolute growth prediction was poorest on the mesic site (R2<0.21). Regression analysis indicates that initial seedling characteristics lost predictive value with time, especially on the mesic site, as seedlings grew out of their initial, container-induced characteristics and become more limited by current environmental and genetic factors. Conversely, on a xeric site, where absolute growth was reduced, traits determined by the container type persisted longer. Selecting stocktypes for mesic site conditions may only be limited by the minimum growth gains desired. Conversely, xeric sites may benefit from deep-planted quality seedlings or carefully planted long-rooted, large container seedlings.Digital Object Identifier http://dx.doi.org/10.1016/j.foreco.2011.02.010
机译:适当选择的种群类型可以通过增加移栽后的存活率和生长来大大提高造林成功率。使用同等质量的库存类型实施可靠的库存类型试验可以确保结果导致最佳选择。主要在深度和体积上有所不同的六种容器类型用于评估在两个位置不同的地方种植的美国黄松松树的性能。土壤体积含水量(theta),平均温度和总降水量(中,干)。每种容器中的幼苗均经过专门培养,以达到均匀的幼苗质量。在两个生长季节之后,在中耕地点种植的幼苗显示出高的成活率(> 99%),并且其身高,根领直径(RCD)和茎体积分别增长了147、100和794%。容器类型在总高度,RCD和茎体积上表现出差异,较大的容器通常会产生最大的幼苗。在干燥部位种植的幼苗存活率达83%,生长增益较小(高度,RCD和茎体积分别为25%,46%和220%),并且在高度,RCD和茎体积上也表现出差异。回归分析显示,对于每个部位,第一年后的初始幼苗形态特征在预测绝对高度,RCD和茎体积方面比第二年后更好,初始幼苗高度提供了最佳的预测能力( R 2 = 0.66(中性位点)和 R 2 = 0.70(干性位点))。第二年绝对增长预测在中性站点最差( R 2 <0.21)。回归分析表明,初始幼苗特征随时间丧失预测价值,尤其是在内陆地区,因为幼苗长出了容器引发的初始特征,并且受到当前环境和遗传因素的限制。相反,在干燥的绝对干燥的部位,由容器类型决定的性状持续较长时间。为中性站点条件选择种群类型可能仅受所需的最小增长量限制。相反,干燥的地点可能会受益于深种植的优质幼苗或精心种植的长根大容器幼苗。数字对象标识符http://dx.doi.org/10.1016/j.foreco.2011.02.010

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