投稿中心

审稿中心

编辑中心

期刊出版

网站地图

友情链接

引用本文:潘柏含,邹雅,邓正苗,谢永宏,侯志勇,李旭,曾静,吴滔,谢洪涛,黎慧娟.洞庭湖湿地短尖薹草(Carex brevicuspis)种群克隆生长对泥沙淤积的适应.湖泊科学,2024,36(5):1470-1478. DOI:10.18307/2024.0533
Pan Baihan,Zou Ya,Deng Zhengmiao,Xie Yonghong,Hou Zhiyong,Li Xu,Zeng Jing,Wu Tao,Xie Hongtao,Li Huijuan.Clonal growth adaptation of Carex brevicuspis to sediment deposition in Lake Dongting wetland. J. Lake Sci.2024,36(5):1470-1478. DOI:10.18307/2024.0533
【打印本页】   【HTML】   【下载PDF全文】   查看/发表评论  【EndNote】   【RefMan】   【BibTex】
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 1104次   下载 1187 本文二维码信息
码上扫一扫!
分享到: 微信 更多
洞庭湖湿地短尖薹草(Carex brevicuspis)种群克隆生长对泥沙淤积的适应
潘柏含1,2, 邹雅1, 邓正苗2, 谢永宏2, 侯志勇2, 李旭2, 曾静2, 吴滔1, 谢洪涛3, 黎慧娟4
1.湖南师范大学生命科学学院, 长沙 410081;2.中国科学院亚热带农业生态研究所, 亚热带农业生态过程重点实验室, 洞庭湖湿地生态系统观测研究站, 长沙 410125;3.湖南省益阳市林业局, 益阳 413000;4.湖南鑫远环境科技股份有限公司, 湖南省环境保护入河湖湿地生态修复工程技术中心, 长沙 410008
摘要:
泥沙淤积是影响湿地植物生存和生长的重要因素。克隆植物是湿地生态系统的主要植物类型之一。在自然水文条件下,湿地克隆植物种群对不同淤积速率的响应研究相对较少。本研究以洞庭湖湿地优势克隆植物短尖薹草(Carex brevicuspis)为对象,通过连续3年的野外控制实验,研究了不同淤积速率(0、2、4、6 cm/a,分别对应对照组,低、中和高淤积速率组)对湿地克隆植物种群的影响。结果表明:淤积速率对短尖薹草的种群密度影响显著,淤积处理的密度显著低于对照处理。随着淤积速率的增加,密度下降,地下/地上生物量比增加,高淤积速率下种群的密度最低,地下/地上生物量比最高。与对照处理相比,泥沙淤积促进了更多的短根(<10 cm)、长根茎(≥1 cm)和游击型克隆分株的形成,长根茎的长度随淤积速率的增加而增加。高淤积速率下的长根茎数量较低,但其根长最长,表明其克隆生长策略由密集型向游击型转变。由此可见,短尖薹草种群可通过对密度、生物量分配、根系长度和克隆生长策略的调节,有效地应对不同泥沙淤积速率的影响。
关键词:  淤积速率  湿地植物  种群特征  根系  克隆生长
DOI:10.18307/2024.0533
分类号:
基金项目:国家自然科学基金区域创新联合基金项目(U21A2009)、国家基础性工作调查专项(2019FY100602)和湖南省教育厅科学研究项目(19B378)联合资助。
Clonal growth adaptation of Carex brevicuspis to sediment deposition in Lake Dongting wetland
Pan Baihan1,2, Zou Ya1, Deng Zhengmiao2, Xie Yonghong2, Hou Zhiyong2, Li Xu2, Zeng Jing2, Wu Tao1, Xie Hongtao3, Li Huijuan4
1.College of Life Sciences, Hunan Normal University, Changsha 410081, P. R. China;2.Key Laboratory of Agro-ecological Processes in Subtropical Region, Dongting Lake Station for Wetland Ecosystem Research, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, P. R. China;3.Forestry Bureau of Yiyang City, Hunan Province, Yiyang 413000, P. R. China;4.Hunan Xinyuan Environment Technology Co., Ltd., Engineering Technology Center for Environmental Protection and Ecological Restoration of River-Lake Wetland in Hunan Province, Changsha 410008, P. R. China
Abstract:
Sediment deposition is an important factor affecting the survival and growth of wetland plants. Clonal plants are one of the most important plants in the wetland ecosystem. At present, there are few studies on the response of clonal plant populations to different deposition rates in wetlands under natural hydrological conditions. In this study, Carex brevicuspis, a typical clonal plant in Lake Dongting wetland, was chosen to investigate its population response to different deposition rates (0, 2, 4, 6 cm/a, corresponding to control, low, medium, and high deposition rates, respectively) by field control experiments for three consecutive years. Results showed that sedimentation rate had a significant effect on the plant population density, with significantly lower population density in the sedimentation treatment. Plant population density decreased and the ratio of underground/aboveground biomass increased with sedimentation rate increase. With the treatment of the highest sedimentation rate, the plant population has lowest density and the highest ratio of underground/aboveground biomass. Sediment burial promoted the formation of more short roots (<10 cm), long rhizomes (≥1 cm), and spreading ramets. The length of long rhizomes increased with the deposition rate. The number of long rhizomes was lower and the length of long rhizomes was longer in high sedimentation rate than other treatments, which indicated that the clonal growth strategy of C. brevicuspis population changed from phalanx type to guerrilla type. Therefore, at the population level, plants can effectively deal with the influence of different sediment deposition rates by regulating their population density, biomass allocation, root length, and clonal growth strategies.
Key words:  Sedimentation rate  wetland plant  population characteristics  root system  clonal growth
分享按钮