生物多样性

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基于被动声学监测的麋鹿发情期发声节律及其影响因素

彭俊杰, 曹志强, 刘国卿, 武大伟, 郑思豪, 宛凤英, 邱之恒, 张方   

  1. 安徽师范大学生命科学学院, 241002
    安徽师范大学图书馆, 241002
  • 收稿日期:2026-03-26 修回日期:2026-05-25
  • 通讯作者: 张方
  • 基金资助:
    安徽省重要生物资源保护与利用研究重点实验室(No. 591601)

Vocalization rhythms and influencing factors of Milu during the rutting season based on passive acoustic monitoring technology

Junjie Peng, Zhiqiang Cao, Guoqing Liu, Dawei Wu, Sihao Zheng, Fengying Wan, Zhiheng Qiu, Fang Zhang   

  1. College of Life Sciences, Anhui Normal University 241002,
    Library, Anhui Normal University 241002,
  • Received:2026-03-26 Revised:2026-05-25
  • Contact: Zhang, Fang
  • Supported by:
    Anhui Provincial Key Laboratory of the Conservation and Exploitation of Biological Resources(No. 591601)

摘要: 多配偶制反刍动物的发情行为具有严格的季节性,发情期雄性会展现出复杂的炫耀行为,其中发声活动是重要的展示方式。由于此类动物活动范围大且发情周期长,对其繁殖状态的长期监测存在一定难度。为此,本研究利用被动声学监测技术(PAM)对麋鹿(Elaphurus davidianus)群体发声活动进行了跨发情期的长期追踪。结果表明,随着发情期推进,麋鹿群体发声活动逐渐增加,于七月中旬达到最高峰。麋鹿群体日发声活动呈明显的多峰模式,由晨昏两个主峰主导,其次在上午、下午和夜间也出现较小高峰。此外,雌鹿与幼鹿叫声高度同步,且母幼发声活动与发情雄鹿发声活动增加存在显著时序关联。发情雄鹿的群体发声强度随气象条件波动,与温度、降水量及太阳短波辐射量显著相关,但不受风速、湿度和气压影响。本研究揭示了麋鹿群体发声活动在整个发情期内的时间变化趋势及日节律特征,证实了母幼发声活动与发情雄鹿发声活动之间存在时间尺度上的单向预测关系,并明确了部分气象因子对发情雄鹿群体发声活动的影响。本研究为大型有蹄类动物发情期声学活动模式的生态监测提供了有效数据,并为PAM技术在长期监测大型野生动物方面的可行性提供了案例。

关键词: 麋鹿, 发情期, 发声活动, 气象因子, 被动声学监测

Abstract

Aims: The estrous behavior of polygynous ruminants is strictly seasonal, and males exhibit complex display behaviors during the rut, with vocal activity serving as an important display. The Milu (Elaphurus davidianus) is a typical large polygynous ruminant. During the rut, stags attract females and repel rivals through frequent roaring. This species has a large home range and a prolonged estrous period, making long term monitoring of its reproductive status challenging. Passive acoustic monitoring (PAM) technology has become an effective method for tracking vocalization behavior and population dynamics of wildlife due to its convenience, covertness, and capacity for long term operation. In this study, we employed PAM technology to conduct long term tracking of vocal activity in Milu across the rutting season. 

Methods: We employed PAM technology to record the group vocal activity of a Milu herd throughout the rut. Based on 92 days of acoustic data, we analyzed the seasonal and diurnal rhythms of vocal activity, examined the temporal coordination between mother - calf call interactions and the vocal activity of stags, and explored the effects of meteorological factors on the number of rutting roars produced by stags. 

Results: Vocal activity increased progressively as the rut advanced, peaking in mid July. The diurnal rhythm exhibited a distinct multimodal distribution, dominated by two primary peaks at dawn and dusk, with smaller peaks also occurring in the morning, afternoon, and at night. Calls of females and calves were highly synchronized, and mother - calf call interactions promoted vocal activity in rutting stags. The vocal intensity of rutting stags fluctuated with meteorological conditions and was significantly correlated with temperature, precipitation, and solar shortwave radiation, but not with wind speed, humidity, or atmospheric pressure. 

Conclusion: The vocal activity of Milu exhibited pronounced rhythmicity. Mother - calf call interactions promote the vocal activity of rutting stags, whose vocal intensity also fluctuates with meteorological conditions. This study provides valuable data for ecological monitoring of acoustic activity patterns in large ungulates during the rut and validates the feasibility of PAM technology for long term monitoring of large wildlife.

Key words: Elaphurus davidianus, rutting season, vocal activity, meteorological factors, passive acoustic monitoring