Recovery of experimentally created gaps within a tropical Zostera capricorni (Aschers.) seagrass meadow, Queensland Australia

被引:76
作者
Rasheed, MA
机构
[1] Queensland Dept Primary Ind, No Fisheries Ctr, Cairns, Qld 4870, Australia
[2] James Cook Univ N Queensland, Dept Trop Environm Studies & Geog, Townsville, Qld 4811, Australia
关键词
monitoring; recovery; regrowth; reproduction; seagrass; succession; Zostera capricorni;
D O I
10.1016/S0022-0981(98)00158-0
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The recovery of experimentally cleared plots in a meadow dominated by Zostera capricorni was monitored monthly by measurements of leaf shoot density and estimates of above-ground biomass from September 1995 to September 1996. The rate of recovery, relative importance of sexual and asexual reproduction and the role of the seed bank on recovery were examined by manipulating the supply of sexual and asexual propagules. Cleared plots were mostly recolonised by Zostera capricorni. Recolonisation occurred principally by asexual growth from surrounding rhizomes. There was no significant recovery by sexual means, although flowering and fruiting were observed during the study period from July through to December with the highest density of sexual shoots in early spring (109.7+/-24.4 shoots m(-2)). Seeds stored in sediments played no role in recovery. Above-ground biomass and shoot density in cleared plots where asexual regrowth was allowed recovered to the level of the uncleared controls after 12 months. Control (uncleared) plots showed distinct seasonality in above-ground biomass, peaking in spring (71.2+/-3.4 g DW m(-2)), but not in shoot density, indicating that shoots became smaller rather than less numerous in winter. The rate of asexual recovery slowed in autumn corresponding to the period of biomass decline,in the control plots but rapidly increased in late winter and spring. (C) 1999 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:183 / 200
页数:18
相关论文
共 58 条
[1]  
[Anonymous], 1989, SEAGRASSES TREATISE
[2]  
[Anonymous], 1989, HIST DREDGING CLEVEL
[3]  
ARAGONES L, 1998, THESIS J COOK U N QU
[4]   SUCCESSION AND PATTERN OF TROPICAL INTERTIDAL SEAGRASSES IN COCKLE BAY, QUEENSLAND, AUSTRALIA - A DECADE OF OBSERVATIONS [J].
BIRCH, WR ;
BIRCH, M .
AQUATIC BOTANY, 1984, 19 (3-4) :343-367
[5]  
Bjorndal Karen A., 1997, P199
[6]  
BRIDGES KW, 1982, AUST J MAR FRESH RES, V33, P273
[7]   DOMINANT ROLE OF SEAWATER OSMOTIC-PRESSURE ON GERMINATION IN CYMODOCEA-NODOSA [J].
CAYE, G ;
BULARD, C ;
MEINESZ, A ;
LOQUES, F .
AQUATIC BOTANY, 1992, 42 (02) :187-193
[8]   EXPERIMENTAL-STUDY OF SEED-GERMINATION IN THE SEAGRASS CYMODOCEA-NODOSA [J].
CAYE, G ;
MEINESZ, A .
AQUATIC BOTANY, 1986, 26 (1-2) :79-87
[9]   GROWTH-CHARACTERISTICS OF ZOSTERA-MARINA SEEDLINGS UNDER ANAEROBIC CONDITIONS [J].
CHURCHILL, AC .
AQUATIC BOTANY, 1992, 43 (04) :379-392
[10]  
Clarke S.M., 1989, Biology of seagrasses, pp, P304