Soil Transition and Characteristics Along a Periglacial–Agricultural Gradient in the Carihuairazo Volcano Area
Eduardo Antonio Muñoz-Jácome, Pedro Vicente Vaca-Cárdenas, Carlos Cajas-Bermeo, Purificación Galindo Villardón, Leticia Vaca-Cardenas, Roberth Alcivar-Cevallos, Marcela Yolanda Brito-Mancero, Guicela Margoth Ati-Cutiupala, Karen Lizbeth Yumi-Criollo, Maritza Lucia Vaca-Cárdenas, Diego Francisco Cushquicullma-Colcha, Francesco ChiaravallotiClimate change and glacial retreat in the tropical Andes—as evidenced by environmental changes in the Carihuairazo volcano area and human-induced alterations to the páramo—reveal complex environmental dynamics that require an integrated understanding. This study evaluates edaphic variation along a periglacial–agricultural spatial gradient, relating soil properties to sustainable management strategies. Using a methodological approach that includes multi-criteria spatial delineation, altitude-stratified sampling, and multivariate modeling via HJ-Biplot, the physical, chemical, and biological properties were analyzed, with a focus on basal microbial respiration. The data show that periglacial soils exhibit geochemical–mineral control and high basal respiration, potentially influenced by moisture peaks, despite their low organic matter content. In contrast, lowland andisols exhibit biological–structural control conditioned by organic matter accumulation, reflecting distinct conditions associated with agricultural management and land use. It is concluded that understanding these spatial edaphic patterns and their vulnerability to human intervention is essential for designing sustainable management and conservation frameworks that mitigate the impact of climate change on high-mountain ecosystems.