4.1 Article

Identification and comparison of allelopathic effects from leaf and flower volatiles of the invasive plants Mikania micrantha

期刊

CHEMOECOLOGY
卷 31, 期 6, 页码 355-365

出版社

SPRINGER BASEL AG
DOI: 10.1007/s00049-021-00356-2

关键词

Allelopathic effects; SPME; Mikania micrantha; Volatile; Terpenes

资金

  1. Natural Science Foundation of Hainan [419QN174]
  2. National Natural Science Foundation of China [31660145]
  3. Scientific Start-up Foundation of Hainan University [hdkyqd201601]

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The study found that volatiles from Mikania micrantha had negative effects on seed germination and seedling growth of other plants, with leaf volatiles showing stronger inhibitory effects than flower volatiles. Terpenoids released through volatilization played an important role in the allelopathic effect of M. micrantha, and the oxygenated monoterpene alpha-terpineol played a crucial role in these effects.
Volatilization, one of the most important mechanisms of the allelopathic effects of an exotic noxious weed Mikania micrantha, has not been adequately investigated to date. In this study, laboratory bioassays showed that the effects of volatiles from the leaves and flowers of M. micrantha on seed germination and seedling growth were negative for all four tested plants (Lactuca sativa, Chrysanthemum coronarium, Bidens pilosa, Abutilon theophrasti). Moreover, the inhibitory effect of the leaf volatiles was generally greater than that of the flower volatiles. To assess the reason for the above differences and further explore which compounds played the most crucial roles, the volatiles from the two tissues were absorbed by solid phase microextraction (SPME) and identified by gas chromatography and mass spectrometry (GC-MS). Then, 19 and 10 terpenes were determined respectively. alpha-Terpineol, beta-ocimene, beta-myrcene, alpha-pinene and caryophyllene had the maximum differences in content and concentration, which were selected for further bioassays with B. pilosa. The results indicated that morphological indices and SOD activity decreased with increasing concentrations of chemicals, whereas the contents of chlorophyll, soluble protein and MDA represented adverse changes. In addition, significant responses were observed in the treatments with alpha-terpineol at 1.0 mu L center dot L-1 and lower concentrations, while similar trends were observed in the treatments with beta-ocimene, beta-myrcene, alpha-pinene and caryophyllene at 10 mu L center dot L-1 and higher concentrations. It was concluded that terpenoids released through volatilization have an important role in the allelopathic effect of M. micrantha, and the oxygenated monoterpene alpha-terpineol played a crucial role in these effects.

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