论文

繁殖季节同域分布的红腹角雉和血雉的觅食生境选择

展开
  • 1 北京师范大学生命科学学院, 生物多样性与生态工程教育部重点实验室, 北京 100875
    2 山东农业大学动物科技学院, 泰安 271018

收稿日期: 2007-06-19

  录用日期: 2007-10-25

  网络出版日期: 2008-02-20

基金资助

国家自然科学基金重点项目(30330050);新世纪优秀人才支持计划资助

Foraging habitat selection by sympatric Temminck’s tragopan and blood pheasant during breeding season in southwestern China

Expand
  • 1 Ministry of Education Key Laboratory for Biodiversity Science and Ecological Engineering, College of Life Science, Beijing Normal University, Beijing 100875
    2 College of Animal Science & Technology, Shandong Agricultural University, Tai’an 271018

Received date: 2007-06-19

  Accepted date: 2007-10-25

  Online published: 2008-02-20

摘要

红腹角雉(Tragopan temminckii)和血雉(Ithaginis cruentus)是主要分布在中国的受胁雉类, 到目前为止, 对这两种雉类的生态学特征的了解并不多。作者于2006年5-8月, 在四川省栗子坪自然保护区公益海, 运用样线法和样方取样法对红腹角雉和血雉在繁殖季节的觅食生境选择进行了对比研究。研究结果表明, 两种雉在海拔分布和觅食生境上都存在重叠, 红腹角雉主要分布在较低海拔(1,950-3,450 m), 血雉分布在相对较高海拔(2,760-3,800 m)。它们对针叶林和针阔混交林都表现出正选择性, 而对箭竹林表现出负选择性。微生境尺度上, 两种雉觅食生境的乔木和草本盖度均较大, 草本高度高; 两种雉的活动区内针叶林面积较大, 距林区公路较近; 红腹角雉对坡向没有选择性, 血雉偏好西南坡向的生境。与对照样方相比, 红腹角雉的觅食生境的箭竹高度和盖度小, 血雉觅食生境的箭竹高度和盖度与对照样方无显著差异。红腹角雉活动区内的箭竹林面积比例显著小于血雉活动区, 针阔混交林面积比例显著大于血雉活动区。表明两种雉类在需要某些共同资源的情况下, 对觅食生境的利用产生了分异, 这是两种雉类能够同域分布的基础条件之一。

本文引用格式

崔鹏, 康明江, 邓文洪 . 繁殖季节同域分布的红腹角雉和血雉的觅食生境选择[J]. 生物多样性, 2008 , 16(2) : 143 -149 . DOI: 10.3724/SP.J.1003.2008.07165

Abstract

Temminck’s tragopan (Tragopan temminckii) and blood pheasant (Ithaginis cruentus) are two threatened species mainly distributed in China. However, we know little about the ecology of these two pheasants. Between May and August in 2006, we investigated foraging habitat selection by the two sympatric species in Liziping Nature Reserve in Sichuan Province, China, using line transect and systematic sampling methods. Temminck’s tragopans occurred at relatively low altitudes (1,950-3,450 m), while blood pheasants occurred at higher altitudes (2,760-3,800 m). No differences were found between the two species in terms of use of forest types. Both species preferred coniferous and mixed coniferous-broadleaved forest and they seldom occurred in forest areas with dense arrow bamboo (Fargesia spathacea). At the microhabitat scale, both species were consistently associated with dense tree coverage, and dense coverage of tall herbaceous plants. Home ranges of the two species contained more coniferous trees than random, and foraging sites were close to forest roads. We did detect some habitat use differences between the two species. Blood pheasant foraging habitats were associated with southwest-facing slopes, while Temminck’s tragopans did not select sites based on aspect. The habitats of Temminck’s tragopans were associated with lower arrow bamboo and sparse bamboo coverage compared to the control sites. There were more mixed coniferous-broadleaved forests and less forest-bamboo mixed forests in Temminck’s tragopans’ home ranges than in blood pheasants’ home ranges. We suggest that basic differences in habitat use can explain how the two species are able to maintain sympatric distributions.

参考文献

[1] Bibby CJ, Burgess ND, Hill DA (1992) Bird Census Techniques. Academic Press, London.
[2] Deng WH, Zheng GM (2004) Landscape and habitat factors affecting cabot’s tragopanTragopan caboti occurrence in habitat fragments . Biological Conservation, 117,25-32.
[3] Ding P(丁平), Jiang SR(姜仕仁), Zhuge Y(诸葛阳) (2000) The study on fragmentation of habitat used by elliot’s pheasant in western Zhejiang. Zoological Research (动物学研究), 21,65-69. (in Chinese with English abstract)
[4] Jia CX(贾陈喜), Zheng GM(郑光美), Zhou XP(周小平), Zhang HM(张和民) (2004) Home range and habitat characteristics of blood pheasant in summer. Sichuan Journal of Zoology (四川动物), 23,349-352. (in Chinese with English abstract)
[5] Lu QB(鲁庆彬), Wang XM(王小明), Wang ZH(王正寰) (2006) Correlation of group and habitat requirement for alpine blood pheasants in the initial mating period in Shiqu, Sichuan. Zoological Research (动物学研究), 27,243-248. (in Chinese with English abstract)
[6] Lu TC(卢汰春) (1991) The Rare and Endangered Gamebirds in China (中国珍稀濒危野生鸡类). Fujian Science and Technology Press, Fuzhou. (in Chinese)
[7] Namgail T, Fox JL, Bhatnagar YV (2004) Habitat segregation between sympatric Tibetan argali Ovis ammon hodgsoni and blue sheep Pseudois nayaur in the Indian Trans-Himalaya . Journal of Zoology, 262,57-63.
[8] Neu CW, Byers CR, Peek JM (1974) A technique for analysis of utilization-availability data. The Journal of Wildlife Management, 38,541-545.
[9] Parra GJ (2006) Resource partitioning in sympatric delphinids: space use and habitat preferences of Australian snubfin and Indo-Pacific humpback dolphins. Journal of Animal Ecology, 75,862-874.
[10] Shi DC(史东仇), Li GH(李贵辉) (1985) The study on diet of blood pheasant in Nanpingbaihe Reserve, Sichuan. Zoological Research (动物学研究), 6,139-145. (in Chinese)
[11] Shi HT(史海涛), Zheng GM(郑光美) (1998) The study on diet of Temminck’s tragopan. Zoological Research (动物学研究), 19,225-229. (in Chinese with English abstract)
[12] Shi HT(史海涛), Zheng GM(郑光美) (1999) Study on the relation between habitat selection and diet of Temminck’s tragopan (Tragopan temminckii). Zoological Research (动物学研究), 20,131-136. (in Chinese with English abstract)
[13] Shi HT(史海涛), Zheng GM(郑光美), Jiang H(蒋鸿), Wu ZK(吴至康) (1996a) Studies on the home range of Temminck’s tragopan (Tragopan temminckii) by radiotracking . In:Studies on Chinese Ornithology (中国鸟类学研究) (eds China Ornithology Society (中国鸟类学会), Wild Bird Society of Taipei (台北市野鸟学会) and China Wildlife Conservation Association (中国野生动物保护协会)), pp.222-229. China Forestry Publishing House, Beijing. (in Chinese with English abstract)
[14] Shi HT(史海涛), Zheng GM(郑光美), Jiang H(蒋鸿), Wu ZK(吴至康) (1996b) The study on habitat selection of Temminck’s tragopan (Tragopan temminckii). Acta Zoologica Sinica (动物学报), 42(Suppl.),90-95. (in Chinese with English abstract)
[15] Sun YH, Klaus S, Fang Y, Selsam P, Jia CX (2006) Habitat isolation and fragmentation of the Chinese grouse ( Bonasa sewerzowi) at Lianhuashan Mountains, Gansu, China . Acta Zoologica Sinica (动物学报), 52(Suppl.),202-204.
[16] Tirpak JM, Giuliano WM, Miller A (2005) Nocturnal roost habitat selection by ruffed grouse broods. Journal of Field Ornithology, 76,168-174.
[17] Wei FW(魏辅文), Feng ZJ(冯祚建), Wang ZW(王祖望) (1999) Habitat selection by giant pandas and red pandas in Xiangling mountains. Acta Zoologica Sinica (动物学报), 45,57-63. (in Chinese with English abstract)
[18] Xu JL(徐基良), Zhang XH(张晓辉), Zhang ZW(张正旺), Ruan XF(阮祥锋), Zhu JG(朱家贵), Xi B(溪波) (2006) Multi-scale analysis on wintering habitat selection of Reeves’s pheasant (Syrmaticus reevesii) in Dongzhai National Nature Reserve, Henan Province, China . Acta Ecologica Sinica (生态学报), 26,2061-2067. (in Chinese with English abstract)
[19] Zar JH (1999) Biostatistical Analysis. Prentice-Hall. Inc.,New Jersey, USA.
[20] Zhang FC, Zheng GM, Zhou XP (1997) The interspecific relationship between Tragopan temminckii and other birds—with the guild structure method . Journal of Beijing Normal University (Natural Science) (北京师范大学学报(自然科学版)), 33,403-408.
[21] Zheng GM(郑光美), Wang QS(王岐山) (1998) China Red Data Book of Endangered Animals: Aves (中国濒危动物红皮书·鸟类卷). Science Press, Beijing. (in Chinese)
文章导航

/

005-0094/bottom_cn.htm"-->