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Growth and physiology of loblolly pine in response to long-term resource management: defining growth potential in the southern United States

机译:长期资源管理对火炬松的生长和生理的影响:确定美国南部的增长潜力

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Leaf physiology and stem growth were assessed in loblolly pine (Pinus taeda L.) in response to 10 to 11 years of treatment with weed control (W), weed control plus irrigation (WI), weed control plus irrigation and fertigation (WIF), or weed control plus irrigation, fertigation, and pest control (WIFP) to determine whether increased resource availability can push productivity of loblolly pine closer to its biological growth potential expressed in favorable, exotic environments. Maximum basal area and stem biomass were 41 m super(2)A*ha super(-1) and 172 MgA*ha super(-1), respectively, in response to fertigation. Stemwood biomass production was positively and linearly related to basal area. Belowground woody biomass was highest in the WIF and WIFP treatments and averaged 50 MgA*ha super(-1), but the W and WI treatments exploited a greater area of soil with low-density coarse roots. Fertigation increased foliar nitrogen concentration and foliage biomass, but treatment had no effect on leaf physiological parameters or growth efficiency. Comparison with growth rates reported for loblolly pine in Hawaii revealed that loblolly pine grown in its native range can produce the high yields observed in exotic environments when stands are below maximum carrying capacity.
机译:响应10-11年的杂草防治(W),杂草防治+灌溉(WI),杂草防治+灌溉与施肥(WIF)处理后,评估了火炬松(Pinus taeda L.)的叶片生理和茎的生长,或杂草控制加上灌溉,施肥和害虫防治(WIFP),以确定增加的资源可利用性是否能使火炬松的生产力更接近其在有利的外来环境中表达的生物生长潜力。响应施肥,最大基面积和茎生物量分别为41 m super(2)A * ha super(-1)和172 MgA * ha super(-1)。锯材生物量的产生与基础面积成正相关且呈线性关系。在WIF和WIFP处理中,地下木质生物量最高,平均为50 MgA * ha super(-1),但W和WI处理利用了较大面积的低密度粗根土壤。施肥增加了叶面氮含量和叶片生物量,但处理对叶片生理参数或生长效率没有影响。与报道的夏威夷火炬松的生长速度进行比较后,发现在其自然范围内生长的火炬松可以在异国环境中观察到当林分低于最大承载能力时产生的高产。

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