| Literature DB >> 22496758 |
Dong Xu1, Zhengquan Gao, Xiaowen Zhang, Xiao Fan, Yitao Wang, Demao Li, Wei Wang, Zhimeng Zhuang, Naihao Ye.
Abstract
Allelopathy, one type of direct plant competition, can be a potent mechanism through which plant communities are structured. The aim of this study was to determine whether allelopathic interactions occur between the opportunistic green tide-forming species Ulva prolifera and the native macroalga Gracilaria lichvoides, both of which were collected from the coastline of East China sea. In laboratory experiments, the presence of G. lichvoides at 1.25 g wet weight L(-1) significantly inhibited growth and photosynthesis of U. prolifera at concentrations of 1.25, 2.50, and 3.75 g wet weight L(-1) (p<0.05) in both semi-continuous co-culture assays and in co-culture assays without nutrient supplementation. In contrast, although U. prolifera had a density effect on G. lichvoides, the differences among treatments were not significant (p>0.05). Culture medium experiments further confirmed that some allelochemicals may be released by both of the tested macroalgae, and these could account for the observed physiological inhibition of growth and photosynthesis. Moreover, the native macroalgae G. lichvoides was a stronger competitor than the opportunistic species U. prolifera. Collectively, the results of the present study represent a significant advance in exploring ecological questions about the effects of green tide blooms on the macroalgal community.Entities:
Mesh:
Year: 2012 PMID: 22496758 PMCID: PMC3322121 DOI: 10.1371/journal.pone.0033648
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Figure 1Interactions between U. prolifera and G. lichvoides in fresh thalli batch co-culture experiment.
A) Growth-inhibition effects, B) Photosynthetic effects. Values (means ± SD) in bars that have the same letter are not significantly different (p>0.05).
Figure 2Interactions between the fresh thalli of U. prolifera and G. lichvoides in semi-continuous cultivation.
A) Growth-inhibition effects, B) Photosynthetic effects. Values (means ± SD) in bars that have the same letter are not significantly different (p>0.05).
Figure 3Variations of nutrient concentration with culture time in fresh thalli batch co-culture experiment.
A) Changes in nitrate concentrations, B) Changes in phosphorus concentrations.
Changes of pH values with culture time in the fresh thalli co-culture.
| Treatment | In no nutrients added assays | In semi-continuous assays | ||
| Time(h) | 48 h | 96 h | 48 h | 96 h |
| 1G | 8.01 | 8.14 | 8.02 | 8.11 |
| 1U | 8.54 | 8.69 | 8.51 | 8.63 |
| 1G1U | 8.56 | 8.74 | 8.53 | 8.69 |
| 1G2U | 8.85 | 9.02 | 8.60 | 8.78 |
| 1G3U | 8.93 | 9.12 | 8.80 | 8.91 |
Figure 4Effects of macroalgal culture filtrates in semi-continuous cultivation.
A) Growth-inhibition effects, B) Photosynthetic effects. Values (means ± SD) in bars that have the same letter are not significantly different (p>0.05).