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« Previous Abstract[Allelopathy and chemical constituents of Ligularia virgaurea volatile]    Next AbstractAmphiphilic CdTe Quantum Dots@Layered Double Hydroxides/Arachidate Nanocomposite Langmuir-Blodgett Ultrathin Films: Its Assembly and Response Mechanism as VOC Fluorescence Sensors »

Ying Yong Sheng Tai Xue Bao


Title:"[Allelopathy of aqueous extract from Ligularia virgaurea, a dominant weed in psychro-grassland, on pasture plants]"
Author(s):Ma R; Wang M; Zhao K; Guo S; Zhao Q; Sun K;
Address:"Department of Biology, Hanshan Normal University, Chaozhou 521041, China. ruijunma2003@yahoo.com.cn"
Journal Title:Ying Yong Sheng Tai Xue Bao
Year:2006
Volume:17
Issue:5
Page Number:845 - 850
DOI:
ISSN/ISBN:1001-9332 (Print) 1001-9332 (Linking)
Abstract:"Ligularia virgaurea is a noxious weed widely distributed in the alpine grassland of east Qinghai-Tibet Plateau of China. This paper studied the allelopathy of its aqueous extract on the pasture plants Festuca sinensis, Bromus magnus, Elymus nutans, Poa annua, and F. ovina in the region. The mean response index (RI) values of the pasture plants were calculated, and used to quantitatively assess the allelopathic sensitivity of the receptors at three levels, i. e., growth items, development stages, and species. Corresponding values of the weed were also treated in similar way to assess the allelopathic potential of the donor. The results showed that the allelopathic sensitivity was in the order of P. annua > B. magnus > F. sinensis > F. ovina > E. nutans. Both the seed germination and the seedling growth of test pasture plants were inhibited at species level, suggesting that rain eluviation was one of the means by which the weed released allelochemicals. The aqueous extracts from L. virgaurea root and leaf had a significant inhibitory effect at species level, and the effect of root extract was stronger than that of leaf extract, suggesting the competition among species on the underground resources in natural grassland. Allelopathy played an important role in L. virgaurea invasion, and might be responsible to the formation of mono-dominant community and the degeneration of grassland"
Keywords:Altitude Asteraceae/*growth & development/metabolism Bromus/drug effects/*growth & development China Climate Cold Temperature Ecosystem Festuca/drug effects/*growth & development Pheromones/*pharmacology Plant Extracts/pharmacology Poaceae/growth & develo;
Notes:"MedlineMa, Ruijun Wang, Mingli Zhao, Kun Guo, Shoujun Zhao, Qingfang Sun, Kun chi English Abstract Research Support, Non-U.S. Gov't China 2006/08/04 Ying Yong Sheng Tai Xue Bao. 2006 May; 17(5):845-50"

 
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