Soil-litter Collembolan Diversity in an Arabica Coffee-Benguet Pine-Based Agroforestry System

Luis Lang-Udan Calama, Elaida Fiegalan
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Abstract

The study aimed to determine the effect of Arabica coffee- Benguet pine based agroforestry system on soil-litter collembolan diversity. Under this agroforestry system, two coffee production systems were identified in this study, the Agroforestry Coffee System (ACS) and Lone Coffee System (LCS). ACS have coffee plants growing under Benguet pine trees while LCS have coffee plants that are not under any shade trees. Shannon diversity index (H’), Margalef’s richness index (Dmg), Soil temperature (ST), and Soil Moisture Content (SMC) data were gathered and subjected to linear regression with correlation analysis, and student T-test. The result of this study revealed a higher species richness of collembola under ACS (Dmg =3.52±0.47) than LCS (Dmg = 1.75±0.36). Similarly, ACS has higher diversity index (H’ = 1.68±0.66) than LCS (H’ = 0.90±0.49). ACS ST and SMC was 18.60±0.21℃ and 68.34±12.22% while LCS was 21.24±1.31℃ and 55.38±5.52%. ST had significant negative association with diversity and SMC had positive association with diversity. However, only Dmg had significant correlation with SMC. In regression analysis, 18.7% of the total variation in H’ was explained by ST. While for Dmg, 56.6% and 21.7% of its total variations were explained by ST and SMC, respectively. These results showed that ACS can conserve collembolan diversity because it creates a microclimatic condition favorable for the collembolans. This finding could serve as basis for endeavors to promote and develop agroforestry systems.
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阿拉比卡咖啡-本盖松复合农林业系统土壤凋落物collbolan多样性
本研究旨在确定以阿拉比卡咖啡-本盖特松为基础的农林复合系统对土壤凋落物collbolan多样性的影响。在这种农林复合系统下,本研究确定了两种咖啡生产系统,农林复合咖啡系统(ACS)和单一咖啡系统(LCS)。ACS的咖啡树生长在Benguet松树下,而LCS的咖啡树不生长在任何遮荫树下。收集Shannon多样性指数(H’)、Margalef丰富度指数(Dmg)、土壤温度(ST)和土壤含水量(SMC)数据,进行线性回归、相关分析和学生t检验。结果表明,ACS生境下弹线虫的物种丰富度(Dmg =3.52±0.47)高于LCS生境(Dmg = 1.75±0.36)。同样,ACS的多样性指数(H′= 1.68±0.66)高于LCS (H′= 0.90±0.49)。ACS ST和SMC分别为18.60±0.21℃和68.34±12.22%,LCS分别为21.24±1.31℃和55.38±5.52%。ST与多样性呈显著负相关,SMC与多样性呈显著正相关。然而,只有Dmg与SMC有显著相关。在回归分析中,H′的总变异中有18.7%是由ST解释的,而Dmg的总变异中,由ST和SMC解释的分别占56.6%和21.7%。这些结果表明,ACS能够保护龙骨多样性,因为它创造了有利于龙骨的小气候条件。这一发现可作为促进和发展农林复合系统的基础。
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