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Kyoto's gardens provide habitats for local amphibians

Kyoto's gardens provide habitats for local amphibians

phys.org 20.08.2026 01:20 14 views
Where they could once hop and amble freely, urbanization is diminishing amphibians' habitats. Yet small-scale water bodies managed by people—such as those found in the gardens of Japan's temples, shrines and schools—rema

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: Where they could once hop and amble freely, urbanization is diminishing amphibians' habitats. Yet small-scale water bodies managed by people—such as those found in the gardens of Japan's temples, shrines and schools—remain within urban areas, providing oases for our moist neighbors.

Though the ponds and streams in the gardens of Kyoto's temples and shrines are maintained as cultural landscapes, their function as habitats for urban amphibians has not been fully explored. This inspired a Kyoto University-led research team to examine the habitat capacity of these gardens. The team saw their potential as biocultural aquatic landscapes, where culture and biodiversity intersect.

The researchers used both visual and DNA analyses in their search for local amphibians, as some species are difficult to observe directly while others are hard to detect at certain times of the year. They conducted visual surveys at 80 water bodies within 31 temples, shrines and associated facilities in Kyoto's Higashiyama area. These surveys helped them identify adults, eggs and larvae, while auditory surveys helped them identify calls.

The team also performed environmental DNA analyses at 43 of these water bodies. In addition, they recorded the type of water body, water source and flow, distance from forest, riparian structure, and the presence or absence of carp to analyze the relationship between species and environmental conditions. The research is published in the journal Urban Ecosystems.

Ultimately, the scientists identified seven frog species—six native and one non-native—and one newt species inhabiting Kyoto's gardens. They also observed that each species' relationship with its environmental conditions varied. Furthermore, the team's use of both visual and DNA analyses proved complementary: While they identified the species Rana tagoi solely based on environmental DNA, direct observation of the frogs' eggs and tadpoles was essential for confirming reproduction.

"We observed amphibians at considerably more water bodies than we had expected, and this made us realize just how rich in wildlife the local watersides—including those around temples and shrines—truly are," says first author Kae Okoshi. These findings provide an opportunity to reconsider these cultural water features as habitats for biodiversity and could influence the management of school and park ponds, as well as the assessment of sites promoting coexistence with nature. "We intend to expand our work to include those who own and manage gardens to jointly develop approaches to waterside management that value both cultural heritage and biodiversity," says Okoshi.

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