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Resin Production in Natural and Artificial Red-Cockaded Woodpecker Cavity Trees

机译:天然和人工红鸟啄木鸟腔树中的树脂生产

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摘要

Resin flow was measured in red-cockaded woodpecker (Picoides borealis Vieillot) clusters in longleaf pine (Pinus palustris Mill.) in the southern region of the Angelina National Forest, Texas. Resin flow (ml) at 1.4 m height over 24 hrs was measured from one 2.5 cm punch through the phloem between 0700 and 1000 hrs from March 1999 to September 2000, for a total of 9 measurements per tree. Resin was sampled in naturally active cavity trees, artificial (insert) active, natural inactive, artificial inactive and control pines (84 sample trees). Resin flow pattern was significantly different during the year, but not significantly different in the cavity tree type resin flow. Cavity trees in the 90th percentile (u3e33.0 ml resin in 24 hrs) were defined as super resin producing. High average resin flows in August 1999 and September 2000 indicate when to sample resin for potential cavity trees. Regression equations were produced to estimate future resin production.
机译:在得克萨斯州安吉丽娜国家森林南部地区的长叶松树(Pinus palustris Mill。)的红冠啄木鸟(Picoidesboalis Vieillot)丛中测量了树脂的流动。在1999年3月至2000年9月的0700到1000小时之间,从一根韧皮部穿过韧皮部的2.5厘米打孔器测量了24小时内高度为1.4 m的树脂流量(ml),每棵树总共进行了9次测量。在自然活动的空腔树,人工(插入)活动,自然不活动,人工不活动和对照的松树(84个样品树)中取样树脂。一年中,树脂的流动方式有显着不同,但型腔树型树脂的流动没有显着差异。将第90个百分位数(24小时内树脂)中的空洞树定义为超级树脂生产。 1999年8月和2000年9月的平均树脂流量较高,表明何时需要对潜在的腔树进行树脂采样。产生回归方程以估计未来的树脂产量。

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