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Microclimate in agroforestry systems in central Amazonia: does canopy closure matter to soil organisms?

机译:中亚马孙地区农林业系统中的小气候:冠层封闭对土壤生物是否重要?

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Microclimate was recorded and soil organisms were collected 1997-1999 in ecosystem stands of contrasting structure in central Amazonia (a primary forest, a 12-year secondary forest, two different agroforestry systems, a rubber tree (Hevea brasiliensis) plantation, and a peach palm (Bactris gasipaes) monoculture with a densely closed canopy). The aim was to look at the effects of canopy closure on microclimate and soil organisms. Monthly maxima temperature, average air and soil temperatures, and saturation deficit were highest in September 1997, and total annual rainfall in 1997 was 12-28% lower than in the other study years. The monthly average litter temperatures were consistently 2-4 °C higher in the plantation sites than in the rainforest and the secondary forest, and temperatures on single days (not the monthly averages) in the plantations were up to 10 °C higher than in the primary forest. The highest average litter and soil temperatures and the highest temperature maxima were recorded in the agroforestry plantations. Canopy closure strongly determined the litter temperatures in the sites. Soil macrofauna biomass was also strongly correlated to canopy closure (linear regression, P = 0.05). We conclude that a well developed canopy effectively protects the soil macrofauna from high temperature variation and drought stress. Therefore, optimizing these agroforestry systems for canopy closure may contribute to a better management of the beneficial soil decomposer community.
机译:1997-1999年,在亚马逊地区中部(原生林,12年生次生林,两种不同的农林业系统,橡胶树(巴西橡胶树)人工林和桃棕榈树)形成鲜明对比的生态系统林分中,记录了小气候并收集了土壤生物。 (Bactris gasipaes)具有密闭冠层的单培养)。目的是研究封盖对小气候和土壤生物的影响。 1997年9月,月最高温度,平均空气和土壤温度以及饱和度不足最高,1997年的年总降雨量比其他研究年份低12-28%。人工林地的月平均凋落物温度始终比雨林和次生林高2-4°C,人工林的单日温度(不是月平均温度)比人工林高出10°C。原始森林。农林业人工林记录的最高平均凋落物和土壤温度以及最高温度最高值。遮篷的封闭强烈地决定了场地的垫料温度。土壤大型动物的生物量也与冠层的闭合密切相关(线性回归,P = 0.05)。我们得出的结论是,成熟的冠层可以有效地保护土壤大型动物免受高温变化和干旱胁迫的影响。因此,优化这些农林业系统来封闭冠层可能有助于更好地管理有益的土壤分解者群落。

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