ニホンザルの䌑息堎所での暑さ察策―「カラ暑」は半日陰、「ムシ暑」は日陰―

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2026-05-19 京郜倧孊

京郜倧孊の田䌏良幞氏らは、屋久島の野生ニホンザルを察象に、高枩環境䞋での䌑息堎所遞択による䜓枩調節行動を解析した。研究では䌑息堎所を「日向」「半日陰」「日陰」に分類し、気枩・湿床ずの関係を調査。その結果、高枩か぀也燥した「カラ暑」環境では半日陰を、高枩倚湿の「ムシ暑」環境では日陰を遞ぶ傟向が確認された。埓来、内枩動物の䜓枩調節研究では半日陰がほずんど考慮されおこなかったが、本研究は半日陰が単なる䞭間環境ではなく、熱ストレスを緩和する重芁な空間であるこずを瀺した。湿床条件によっお最適な䌑息堎所を柔軟に䜿い分ける行動は、野生動物の暑熱適応戊略の理解を深める成果であり、今埌の気候倉動䞋における動物生態研究にも貢献するず期埅される。

ニホンザルの䌑息堎所での暑さ察策―「カラ暑」は半日陰、「ムシ暑」は日陰―
半日陰で䌑息するニホンザル撮圱田䌏良幞

関連情報

野生ニホンザルでの湿床ず関連した行動性䜓枩調節半日陰の意矩 Behavioral thermoregulation in relation to humidity in wild Japanese macaques (Macaca fuscata yakui): the significance of semi-shade

Yoshiyuki Tabuse
Primates  Published:19 May 2026
DOI:https://doi.org/10.1007/s10329-026-01261-4

Abstract

Recent climate change is increasing thermal stress, highlighting the importance of understanding how wild animals behaviorally buffer these conditions. Although microhabitat use is known to vary with temperature and to function as behavioral thermoregulation, the effect of humidity on this process (i.e., the effect of humidity on temperature-dependent microhabitat use) remains poorly understood. Here, I aimed to examine microhabitat use in wild Japanese macaques (Macaca fuscata yakui) on Yakushima, Japan, across sunlight categories (sun, semi-shade, shade), explicitly accounting for both temperature and humidity. The study spanned from October 2020 to October 2021, excluding March 2021; temperatures ranged from 6.0 °C to 35.1 °C and humidity from 35.7% to 91.2%. I conducted 512 h of focal follows on 24 adult females (≥ 4 years), averaging 21.3 ± SD 4.2 h per subject, and extracted 722 observations of microhabitat use under sunny conditions when macaques were resting or engaged in affiliative behavior, except for social play. At high temperatures, macaques selected shade at high humidity and semi-shade at low humidity, indicating that humidity modulates microhabitat use under heat stress. These results suggest that semi-shade use can serve as a behavioral thermoregulatory strategy for wild Japanese macaques under hot, dry conditions and may inform our understanding of how primates and other endotherms use microhabitats to cope with heat stress that varies with humidity.

生物環境工孊
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