2014•Plant Species BiologyRequires access

Effects of Spirogyra arcta on biomass and structure of submerged macrophyte communities

Bi‐Cheng Dong, Rui‐Hua Liu, Fei‐Hai Yu

Open publisher page 8 citations

Abstract

Abstract The presence of algae can greatly reduce the amount of light that reaches submerged macrophytes, but few experimental studies have been conducted to examine the effects of algae on biomass and structure of submerged macrophyte communities. We constructed communities with four submerged macrophytes ( Hydrilla verticillata , Egeria densa , Ceratophyllum demersum , and Chara vulgaris ) in three environments in which 0 (control), 50 and 100% of the water surface was covered by Spirogyra arcta . Compared to the control treatment, the 100% spirogyra treatment decreased biomass of the submerged macrophyte communities and of all the four macrophytes except C. demersum . Compared to the control and 50% treatments, the 100% treatment significantly increased relative abundance of C. demersum and decreased that of E. densa . Therefore, the presence of S. arcta can greatly affect the productivity and alter the structure of submerged macrophyte communities. To restore submerged macrophyte communities in conditions with abundant algae, assembling communities consisting of C. demersum or similar species may be a good practice.

About this research paper

What this paper is about

Abstract The presence of algae can greatly reduce the amount of light that reaches submerged macrophytes, but few experimental studies have been conducted to examine the effects of algae on biomass and structure of submerged macrophyte communities. We constructed communities with four submerged macrophytes ( Hydrilla verticillata , Egeria densa , Ceratophyllum demersum , and Chara vulgaris ) in three environments in which 0 (control), 50 and 100% of the water surface was covered by Spirogyra arcta . Compared to the control treatment, the 100% spirogyra treatment decreased biomass of the submerged macrophyte communities and of all the four macrophytes except C. demersum . Compared to the control and 50% treatments, the 100% treatment significantly increased relative abundance of C. demersum and decreased that of E. densa . Therefore, the presence of S. arcta can greatly affect the productivity and alter the structure of submerged macrophyte communities. To restore submerged macrophyte communities in conditions with abundant algae, assembling communities consisting of C. demersum or similar species may be a good practice.

Why it matters

OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract The presence of algae can greatly reduce the amount of light that reaches submerged macrophytes, but few experimental studies have been conducted to examine the effects of algae on biomass and structure of submerged macrophyte communities. We constructed communities with four submerged macrophytes ( Hydrilla verticillata , Egeria densa , Ceratophyllum demersum , and Chara vulgaris ) in three environments in which 0 (control), 50 and 100% of the water surface was covered by Spirogyra arcta . Compared to the control treatment, the 100% spirogyra treatment decreased biomass of the submerged macrophyte communities and of all the four macrophytes except C. demersum . Compared to the control and 50% treatments, the 100% treatment significantly increased relative abundance of C. demersum and decreased that of E. densa . Therefore, the presence of S. arcta can greatly affect the productivity and alter the structure of submerged macrophyte communities. To restore submerged macrophyte communities in conditions with abundant algae, assembling communities consisting of C. demersum or similar species may be a good practice.

Key concepts: Ceratophyllum demersum, Hydrilla, Macrophyte, Spirogyra, Biomass (ecology), Biology, Botany, Algae

Related papers

Back to paper searchBrowse research topicsOriginal source
Effects of Spirogyra arcta on biomass and structure of submerged macrophyte communities — Research Paper | ScholarLens