首页> 美国卫生研究院文献>Journal of Insect Science >Effects of artificial defoliation on growth and biomass accumulation in short-rotation sweetgum(Liquidambar styraciflua)in North Carolina
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Effects of artificial defoliation on growth and biomass accumulation in short-rotation sweetgum(Liquidambar styraciflua)in North Carolina

机译:人工脱叶对短旋转甘蔗生长和生物量积累的影响(Liquidambar styraciflua)在北卡罗莱纳州

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摘要

Sweetgum, Liquidambar styraciflua L. (Hamamelidales: Hamamelidaceae), is a species of interest for short-rotation plantation forestry in the southeastern United States. Despite its high levels of resistance to many native insects and pathogens, the species is susceptible to generalist defoliators during outbreak epidemics. The objective of this field study was to evaluate the potential impact of defoliation on sweetgum growth and productivity within the context of an operational plantation. Over three growing seasons, trees were subjected to artificial defoliation treatments of various intensity (control = 0% defoliation; low intensity = 33% defoliation; moderate intensity = 67% defoliation; high intensity = 99% defoliation) and frequency (not defoliated; defoliated once in April of the first growing season; defoliated twice, once in April of the first growing season and again in April of the second growing season). The responses of stem height, stem diameter, stem volume, crown volume, total biomass accumulation, and branch growth were measured in November of each growing season. At the end of the first growing season, when trees had received single defoliations, significant reductions in all growth traits followed the most severe (99%) defoliation treatment only. After the second and third growing seasons, when trees had received one or two defoliations of varying intensity, stem diameter and volume and total tree biomass were reduced significantly by 67 and 99% defoliation, while reductions in stem height and crown volume followed the 99% treatment only. All growth traits other than crown volume were reduced significantly by two defoliations but not one defoliation. Results indicate that sweetgum is highly resilient to single defoliations of low, moderate, and high intensity. However, during the three-year period of the study, repeated high-intensity defoliation caused significant reductions in growth and productivity that could have lasting impacts on yield throughout a harvest rotation.
机译:枫香(Stevengum styraciflua L。)(金缕梅:金缕梅科)是美国东南部短轮伐林的重要树种。尽管其对许多天然昆虫和病原体具有很高的抗性,但在暴发流行期间,该物种仍易受通病的落叶影响。这项野外研究的目的是评估在人工林范围内落叶对甘蔗生长和生产力的潜在影响。在三个生长季节中,对树木进行了各种强度的人工去叶处理(对照= 0%去叶;低强度= 33%去叶;中等强度= 67%去叶;高强度= 99%去叶)和频率(未去叶;去叶)第一个生长季节的四月一次;两次脱叶;第一个生长季节的四月一次;第二个生长季节的四月一次。在每个生长季节的11月测量茎高,茎直径,茎体积,冠体积,总生物量积累和分支生长的响应。在第一个生长季节结束时,当树木接受单次脱叶时,所有生长性状的显着降低都只接受了最严重的脱叶处理(99%)。在第二个和第三个生长季节之后,当树木接受一到两个强度不同的落叶时,树干直径和体积以及树木总生物量分别减少了67%和99%,而树干高度和树冠体积的减少跟随99%的落叶仅治疗。除两次树冠外,其他所有生长性状均显着降低,但一次树冠则没有。结果表明,甜果糖对低强度,中等强度和高强度的单次脱叶具有很高的回弹力。然而,在为期三年的研究中,反复的高强度脱叶导致生长和生产力的显着下降,这可能会对整个收获周期产生持久影响。

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