This dataset archives a total of 24919 valid observation records of 12 mammal species obtained via infrared camera monitoring in Jiangshan Xianxialing Nature Reserve, China, from January 2021 to November 2023. Based on this dataset, analyses of species diversity, studies on diel activity rhythms of mammals, and discussions on seasonal distribution patterns along the altitudinal gradient are conducted, so as to provide scientific support for biodiversity conservation in this region.
Les données de cette ressource données d'échantillonnage ont été publiées sous forme d'une Archive Darwin Core (Darwin Core Archive ou DwC-A), le format standard pour partager des données de biodiversité en tant qu'ensemble d'un ou plusieurs tableurs de données.
Le tableur de données du cœur de standard (core) contient 97 enregistrements.
1 tableurs de données d'extension existent également. Un enregistrement d'extension fournit des informations supplémentaires sur un enregistrement du cœur de standard (core). Le nombre d'enregistrements dans chaque tableur de données d'extension est illustré ci-dessous.
Cet IPT archive les données et sert donc de dépôt de données. Les données et métadonnées de la ressource sont disponibles pour téléchargement dans la section téléchargements. Le tableau des versions liste les autres versions de chaque ressource rendues disponibles de façon publique et permet de tracer les modifications apportées à la ressource au fil du temps.
Le tableau ci-dessous n'affiche que les versions publiées de la ressource accessibles publiquement.
Les chercheurs doivent citer cette ressource comme suit:
Wang X, Chen J (2026). Camera trap survey of mammal diversity and activity rhythms of threatened species in Xianxialing Nature Reserve, Zhejiang Province, China. Version 1.2. Chinese Academy of Sciences (CAS). Samplingevent dataset. https://www.gbifchina.org.cn/resource?r=wxy2000724&v=1.2
Les chercheurs doivent respecter la déclaration de droits suivante:
L’éditeur et détenteur des droits de cette ressource est Chinese Academy of Sciences (CAS).
Ce travail est sous licence Creative Commons Attribution (CC-BY) 4.0.
infrared camera; community composition; threatened mammals; activity rhythm; species distribution; Observation
The geographic coordinates of Xianxialing Reserve range from 28°15′26″N to 28°21′11″N, and 118°33′42″E to 118°41′05″E . The region has an annual average temperature of approximately 15.0 ℃, an annual precipitation ranging from 1650 mm to 2200 mm, and an average altitude of about 1000 m. Owing to its complex topography and terrain, the area maintains four distinct seasons with coordinated light and temperature conditions, while exhibiting pronounced microclimatic characteristics.
| Enveloppe géographique |
Sud Ouest [28,263, 118,337], Nord Est [28,461, 118,681] |
This study covers the following taxonomic groups: Class: Mammalia; Orders: Lagomorpha, Carnivora, Artiodactyla and Primates; Families: Leporidae, Mustelidae, Suidae, Cervidae, Bovidae, Cercopithecidae, Viverridae.
| Class |
Mammalia (Mammals)
|
| Order |
Lagomorpha (Hares),
Carnivora (Carnivores),
Primates (Primates),
Artiodactyla (Ruminants)
|
| Family |
Cercopithecidae (Monkeys),
Leporidae (Hares),
Suidae (Pigs),
Cervidae (Deers),
Bovidae (Bovids),
Mustelidae (Mustelids),
Viverridae (Civets)
|
| Date de début / Date de fin |
2021-01-01 / 2023-11-14 |
This study aims to: (1) characterize the baseline diversity and species composition of mammals in the Xianxialing Nature Reserve; (2) analyze the relative abundance, diel activity patterns, α-diversity indices, daily activity rhythms and annual activity patterns of nine representative threatened species, and (3) explore the mechanism by which the environmental factor of elevation influences the distribution of these nine species across different seasons. This study is expected to provide data support for the conservation and refined management of rare and endangered mammals in the Xianxialing Nature Reserve.
| Titre |
Camera trap survey of mammal diversity and activity rhythms of threatened species in Xianxialing Nature Reserve, Zhejiang Province, China |
| Identifiant |
wxy20000724 |
| Financement |
This research was funded by the National Natural Science Foundation of China (NSFC 32470458; 32001222) and the Innovation and Entrepreneurship Training Programme for Undergraduates Students (2025026111; 2025026611). |
| Description du domaine d'étude / de recherche |
The geographic coordinates of Xianxialing Reserve range from 28°15′26″N to 28°21′11″N, and 118°33′42″E to 118°41′05″E . The region has an annual average temperature of approximately 15.0 ℃, an annual precipitation ranging from 1650 mm to 2200 mm, and an average altitude of about 1000 m. Owing to its complex topography and terrain, the area maintains four distinct seasons with coordinated light and temperature conditions, while exhibiting pronounced microclimatic characteristics. |
| Description du design |
The photos and video data captured by infrared cameras are archived separately by camera ID, with corresponding folders created, and species identification processing and independent valid photo screening are performed for each camera individually. We deployed infrared cameras at relatively open understory sites in close proximity to water sources, and cleared interfering vegetation in front of the cameras to ensure an unobstructed field of view. Cameras were fixed on tree trunks at a height of approximately 80–100 cm using ropes, with the spacing between adjacent cameras set to no less than 100 m. The cameras were configured to the "3 photos + 1 video" mode, and conducted continuous 24-hour all-weather monitoring. To ensure the independence of mammal records, consecutive captures of the same species by a single camera within an interval of 30 minutes are counted as one independent valid detection event. One camera operating in the field for 24 hours is defined as one effective camera day. |
Les personnes impliquées dans le projet:
The photos and video data captured by infrared cameras are archived separately by camera ID, with corresponding folders created, and species identification processing and independent valid photo screening are performed for each camera individually. We deployed infrared cameras at relatively open understory sites in close proximity to water sources, and cleared interfering vegetation in front of the cameras to ensure an unobstructed field of view. Cameras were fixed on tree trunks at a height of approximately 80–100 cm using ropes, with the spacing between adjacent cameras set to no less than 100 m. The cameras were configured to the "3 photos + 1 video" mode, and conducted continuous 24-hour all-weather monitoring. To ensure the independence of mammal records, consecutive captures of the same species by a single camera within an interval of 30 minutes are counted as one independent valid detection event. One camera operating in the field for 24 hours is defined as one effective camera day.
| Etendue de l'étude |
The geographic coordinates of Xianxialing Reserve range from 28°15′26″N to 28°21′11″N, and 118°33′42″E to 118°41′05″E . The region has an annual average temperature of approximately 15.0 ℃, an annual precipitation ranging from 1650 mm to 2200 mm, and an average altitude of about 1000 m. Owing to its complex topography and terrain, the area maintains four distinct seasons with coordinated light and temperature conditions, while exhibiting pronounced microclimatic characteristics. |
| Contrôle qualité |
This study identified species based on the systematic review of all photographs and video footage obtained from infrared cameras, using the "Atlas of Mammals in China" along with relevant specimens and literature. Chinese and Latin names of species were determined according to the "List of Mammals in China." Conservation status was referenced from the "National List of Key Protected Wild Animals" (2021), the "IUCN Red List of Threatened Species" (2026), and the "China Biodiversity Red List—Vertebrates" (2020). In the final data analysis, all records that could only be identified to the family level (Muridae or Sciuridae) without species-level determination were excluded. |
Description des étapes de la méthode:
-
The photo and video data captured by the infrared cameras were archived and saved according to the camera numbers, and corresponding folders were created. Information such as the file numbers, formats, and shooting dates and times were extracted from each folder and recorded in Excel. Species identification was conducted using the image data, and independent detections were screened. An independent photo refers to adjacent images of the same individual at the same camera site with an interval of at least 30 minutes.
| Remerciements |
Infrared camera data and samples were provided by the Xianxialing Nature Reserve, and we sincerely appreciate the support of the relevant staff. |
| Introduction |
Mammalian diversity and activity patterns are crucial for understanding adaptive evolution and formulating conservation strategies. However, systematic analyses of the activity rhythms of threatened mammals in Xianxialing Nature Reserve, Jiangshan, Zhejiang—a biodiversity hotspot—have been lacking. This study systematically monitored mammalian diversity and the diurnal and seasonal activity patterns of nine threatened species within the reserve. Using continuous data from 97 infrared camera traps over 106215 trap-days, we obtained 24919 valid independent mammal photographs, identifying 12 species (excluding Muridae and Sciuridae), belonging to four orders and seven families. The top three species in terms of relative abundance, from highest to lowest, are: Reeves ’Muntjacs (Muntiacus reevesi), Masked Palm Civets (Paguma larvata), and Hog Badgers (Arctonyx collaris). Reeves ’Muntjacs and Black Muntjacs exhibited bimodal daily activity patterns with distinct crepuscular tendencies, while Masked Palm Civets, Chinese Hares and Chinese Ferret-badgers were clearly nocturnal. Furthermore, peak activity varied seasonally or monthly; for example, Rhesus Macaques showed significantly higher activity peaks in October compared to other months, whereas Chinese Hare displayed the highest activity intensity during winter. Different species also showed varying preferences for elevation across seasons. |
| Premiers pas |
The photos and video data captured by infrared cameras are archived separately by camera ID, with corresponding folders created, and species identification processing and independent valid photo screening are performed for each camera individually. We deployed infrared cameras at relatively open understory sites in close proximity to water sources, and cleared interfering vegetation in front of the cameras to ensure an unobstructed field of view. Cameras were fixed on tree trunks at a height of approximately 80–100 cm using ropes, with the spacing between adjacent cameras set to no less than 100 m. The cameras were configured to the "3 photos + 1 video" mode, and conducted continuous 24-hour all-weather monitoring. To ensure the independence of mammal records, consecutive captures of the same species by a single camera within an interval of 30 minutes are counted as one independent valid detection event. One camera operating in the field for 24 hours is defined as one effective camera day. |
| Objet |
This study aims to: (1) characterize the baseline diversity and species composition of mammals in the Xianxialing Nature Reserve; (2) analyze the relative abundance, diel activity patterns, α-diversity indices, daily activity rhythms and annual activity patterns of nine representative threatened species, and (3) explore the mechanism by which the environmental factor of elevation influences the distribution of these nine species across different seasons. This study is expected to provide data support for the conservation and refined management of rare and endangered mammals in the Xianxialing Nature Reserve. |
| Identifiants alternatifs |
bbc9d999-a8f4-4ce2-8744-1c5a6826f4a1 |
|
https://www.gbifchina.org.cn/resource?r=wxy2000724 |