Variability in flood disturbance and the impact on riparian tree recruitment in two contrasting river systems

被引:29
作者
Pettit N.E. [1 ]
Froend R.H. [1 ]
机构
[1] Centre for Ecosystem Management, Edith Cowan University, Perth, WA 6027, Joondalup
关键词
Flood disturbance; Riparian vegetation; Tree recruitment; Water regime;
D O I
10.1023/A:1008471100136
中图分类号
学科分类号
摘要
The vegetation within the riparian zone performs an important ecological function for in-stream processes. In Australia, riparian zones are regarded as the most degraded natural resource zone due to disturbances such as river regulation and livestock grazing. This study looks at factors influencing vegetation dynamics of riparian tree species on two contrasting river systems in Western Australia. The Blackwood River in south-western Australia is influenced by a Mediterranean type climate with regular seasonal winter flows. The Ord River in north-western Australia is characterized by low winter base flows and episodic, extreme flows influenced by monsoon rains in the summer. For both rivers, reproductive phenology of studied overstory species is timed to coincide with seasonal river hydrology and rainfall. An even distribution of size classes of trees on the Blackwood River indicated recruitment into the population is continual and related to the regular predictable seasonal river flows and rainfall. In contrast, on the Ord River tree size class distribution was clustered, indicating episodic recruitment. On both rivers tree establishment is also influenced by elevation above the river, microtopography, moisture status and soil type. In terms of vegetation dynamics riparian vegetation on the Ord River consists of long periods of transition with short lived stable states in contrast to the Blackwood river where tree population structure is characterized by long periods of stable states with short transitions.
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页码:13 / 25
页数:12
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共 51 条
  • [1] Abido M.S., The use of riparian vegetation in the Damascus basin, Riparian Ecosystems and their Management: Reconciling Conflicting Uses, pp. 467-469, (1985)
  • [2] Ashton D.H., Studies of flowering behaviour in Eucalyptus regnans F. Muell., Australian J. Bot., 23, pp. 399-411, (1975)
  • [3] Baker W.L., Size class structure of contiguous riparian wood-lands along a Rocky Mountain river, Physical Geography, 9, pp. 1-14, (1988)
  • [4] Baker W.L., Climatic and hydrologic effects on the regeneration of Populus angustifolia James along the Animas River, Colorado, J. Biogeography, 17, pp. 59-73, (1990)
  • [5] Baker W.L., Walford G.M., Multiple stable states and models of riparian vegetation succession on the Animas River, Colorado, Annals of the Association of American Geographers, 85, pp. 320-338, (1995)
  • [6] Barnes W.J., Population dynamics of woody plants on a river island, Canadian J. Bot., 63, pp. 647-655, (1985)
  • [7] Beard J., The vegetation of the Kimberley area, Western Australia: 1: 1,000,000 series, (1979)
  • [8] Bell D.T., Hopkins A.J.M., Pate J.S., Fire in the Kwongan, Kwongan: Plant Life of the Sandplain, pp. 178-204, (1982)
  • [9] Bell D.T., Koch J.M., Post-fire succession in the jarrah forest of Western Australia, Australian J. Ecol., 5, pp. 9-14, (1980)
  • [10] Boland D.J., Brooker M.I.H., Chippendale G.M., Hall N., Hyland B.P.M., Johnston R.D., Kleinig D.A., Turner J.D., Forest Trees of Australia, (1989)