萨彦山地针叶林生态区西伯利亚蚕蛾(Dendrolimus sibiricus)(昆虫纲,蚕蛾科)栖息地的生态特征

S. Sultson, P. V. Mikhailov, A. Goroshko, D. A. Demidko, N. N. Kulakova, O. Slinkina, A. Tatarintsev
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引用次数: 0

摘要

文章专门研究了西伯利亚蚕蛾(Dendrolimus sibiricus Tschetverikov,1908 年)的爆发,这在今天具有重要意义。该研究旨在通过揭示林分抵御害虫侵袭的因素,改进森林病理学监测系统。我们分析了在西伯利亚南部山区(特别是克拉斯诺亚尔斯克地区)暗针叶泰加林中,西伯利亚绢蛾在其发展初期和爆发期间的有利栖息条件。研究以遥感数据为基础,结合在受干扰森林中获得的实地数据,我们还在这些森林中进行了害虫数量评估。栖息地特征基于森林类型、造林和森林清查的详细信息。我们分析了环境条件及其对害虫繁殖的影响。因此,我们根据林分对昆虫攻击的抵抗力进行了划分。一级栖息地是林地苔藓覆盖的林分,二级栖息地是林地草本覆盖的林分,三级栖息地是土壤潮湿的洼地(溪流沿岸森林或沼泽森林)。我们揭示了西伯利亚蝶的种群密度动态与林分结构的关系。通过本研究,我们可以确定易受害虫攻击的森林地点,并对其动态和抵抗力进行空间监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ecological characteristics of the siberian silkmoth (Dendrolimus sibiricus) (Insecta, Lasiocampidae) habitat in the Sayan montane conifer forests ecoregion
The article is devoted to studying the siberian silkmoth ( Dendrolimus sibiricus Tschetverikov, 1908) outbreaks, which is highly relevant today. The study was aimed at improving the system of forest pathology monitoring by revealing factors contributing to forest stand resistance to the pest attacks. We analyze the habitat conditions that are favorable for the siberian silkmoth in the early stages of its development and during the outbreak in dark coniferous taiga in the mountains of Southern Siberia (particularly, the Krasnoyarsk region). The research was based on remote sensing data combined with field data obtained in disturbed forests where we also con-ducted a pest population assessment. The habitat characteristics were based on the forest type and silvicultural and forest inventory details. We an alyzed environmental conditions and their influence on the pest reproduction. As a result, we divided  the forest stands by their resistance to insect attacks. Primary habitats are stands with moss-covered forest floor, secondary habitats are stands with herbs-covered forest floor, and tertiary habitats are depressions with wet soils (forests along streams or swamp forests). We revealed the  D. sibiricus population density dynamics related to the forest stands structure. The present research lets us  determine forest sites vulnerable to pest attacks and conduct spatial monitoring of  their dynamics and resistance.
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