Zhao Min, Wang Yuan, Yang Wenbin, Zhu Yachao, Zhang Shuyu, Liang Yongliang, Yang Guijun
School of Life Sciences, Ningxia University, Yinchuan 750021, China.
Helan Mountain National Nature Reserve Administration of Ningxia, Yinchuan 750021, China.
Insects. 2025 Apr 5;16(4):388. doi: 10.3390/insects16040388.
Exploring the diversity and community structure of darkling beetles (Tenebrionidae) and the associated environmental factors on an alluvial fan provides useful insights into the ecology of these landscape features. This study investigated Chaqikou in the Helan Mountains, which features unique alluvial fan landforms. Sample plots (200 × 200 m) were established at three positions: the fan top, fan middle, and fan edge. From May to October 2023, pitfall traps were used to survey beetle community composition and its relationship with environmental factors. Significant variations were observed in species composition and diversity indices across different months and sample plots. Strongly xerophilous species exhibited broader ecological niche breadth, while moderately xerophilous species tended to distribute in the mid-to-upper segments of alluvial fans. Non-metric multidimensional scaling analysis revealed temporal shifts in community composition, with beta diversity analysis showing that species nestedness dominated from June to August, while species replacement was prominent in May, September, and October. Redundancy analysis indicated that environmental factors affecting species distribution varied by plot. On the landscape scale, altitude was the primary factor affecting beetle distribution. Variance partitioning analysis showed that topographic, soil, and vegetation factors explained 51.7%, 20.2%, and 9.4% of the variation in the beetle community, respectively. It is evident that altitudinal gradients shape ecological filtering pressures by creating multidimensional heterogeneity in topography, soil properties, and vegetation coverage. The adaptive matching between Tenebrionid species' biological traits and environmental factors ultimately governs the spatial distribution patterns of darkling beetle diversity in alluvial fan desert grasslands.
探索拟步甲科昆虫的多样性和群落结构以及冲积扇上的相关环境因素,有助于深入了解这些地貌特征的生态学。本研究调查了贺兰山的岔口,这里具有独特的冲积扇地貌。在三个位置设置了样地(200×200米):扇顶、扇中、扇缘。2023年5月至10月,使用陷阱诱捕法调查甲虫群落组成及其与环境因素的关系。在不同月份和样地中观察到物种组成和多样性指数存在显著差异。强旱生种表现出更宽的生态位宽度,而中度旱生种倾向于分布在冲积扇的中上部。非度量多维尺度分析揭示了群落组成的时间变化,β多样性分析表明,6月至8月物种嵌套占主导,而5月、9月和10月物种替代较为突出。冗余分析表明,影响物种分布的环境因素因样地而异。在景观尺度上,海拔是影响甲虫分布的主要因素。方差分解分析表明,地形、土壤和植被因素分别解释了甲虫群落变异的51.7%、20.2%和9.4%。显然,海拔梯度通过在地形、土壤性质和植被覆盖方面创造多维异质性来塑造生态过滤压力。拟步甲物种的生物学特性与环境因素之间的适应性匹配最终决定了冲积扇荒漠草原上拟步甲多样性的空间分布格局。