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1.
A pot experiment was conducted to study the allelopathic effects of initial decomposing leaf litter of Cinnamomum camphora on growth and physiology of Impatiens balsamina. Three leaf litter treatments included 20, 40 and 80 g of C. camphora leaf litter mixed with 8 kg of soil, namely T1, T2, and T3, respectively. In order to test the effect of leaf litter addition on the permeability and ventilation of soil simultaneously, a parallel trial with steamed leaf litter was conducted with the three treatments of the leaf litter. The leaf litter was steamed for 2 d to remove the secondary metabolites as much as possible, dried, and then mixed with 8 kg of soil, namely Z1, Z2, and Z3, respectively. No leaf litter was added in control (CK). The growth parameters of I. balsamina were determined at the 20 d, 60 d, 100 d and 120 d after sowing and the main physiology indicators were determined at the 60 d. The results indicated that: (1) The ground surface diameter and height of I. balsamina were inhibited significantly at 60 d (P < 0.05). Photosynthetic pigments and gas exchange parameters of I. balsamina were inhibited significantly at 60 d, and the inhibition effect was stronger with increased amount of leaf litter addition. The chlorophyll content, Pn and Ls decreased significantly with increased amount of leaf litter (P < 0.05). The activity of superoxide dismutase (SOD) and peroxidase (POD) in leaves of I. balsamina decreased with the increase of leaf litter addition. The content of MDA in treatments T1, T2 and T3 were all higher than that in CK, which indicated that I. balsamina suffered oxidative damage in a certain degree. The content of free proline (Pro) and soluble sugar (SS) in leaves of I. balsamina decreased significantly with the increase of the leaf litter (P < 0.05), while the content of soluble protein (SP) increased. (2) In the parallel trial, 60 d after sowing, no obvious difference was observed between CK and any steamed leaf litter treatment in terms of the morphological and physiological features stated above (P > 0.05). It indicated that the soil physical properties were not greatly influenced by leaf litter addition in the dose interval designed, or that the release of secondary metabolites from decomposing leaf litter was probably a better reason to explain the inhibition of leaf litter treatment to I. balsamina growth. (3)The compound effect (CE) of leaf litter decomposition on I. balsamina was enhanced with increase of the leaf litter, to 0.169, 0.354, and 0.497, respectively, in treatments of T1, T2 and T3. The study indicated that initial decomposition of C. camphora leaf litter in soil reduces the content of photosynthetic pigments, inhibits photosynthetic capacity and resistance physiology of I. balsamina, weakens its adaptability to the environment, and restrains growth of the plant. © 2015, Science Press. All rights reserved. 相似文献
2.
Summary. Phytotoxic activity of single and combined application of water soluble and volatile compounds of Cistus ladanifer on germination and early root growth of subterranean clover was investigated. Total germination, lag and speed of germination
were both inhibited and stimulated, with the activity of volatiles on total germination depending upon the presence of water
solubles. Antagonism between water solubles and volatiles was always found, resulting in a reduction of inhibition or a shift
from inhibition to stimulation. It is suggested that the simultaneous presence of water solubles and volatiles might result
in changes of the chemical nature of metabolites released by C. ladanifer. Early root growth was always inhibited but only by water solubles, and no interaction was found. The ecological implications
of these results are discussed in terms of the exhaustion of competitors seedbanks by a two-step process in which germination
is less inhibited or even stimulated by water solubles and volatiles, followed by a stronger and volatiles-independent inhibition
of early root growth.
Received 13 June 2001; accepted 13 Dezember 2001. 相似文献
3.
入侵物种三裂叶蟛蜞菊挥发物的化感作用研究 总被引:16,自引:0,他引:16
对华南地区重要外来入侵物种三裂叶蟛蜞菊挥发物的化感作用进行了研究,以揭示该物种的入侵机制。采用水蒸气蒸馏法提取三裂叶蟛蜞菊地上部分的挥发油,提取率为2.58‰(质量比)。以稗草、三叶鬼针草和青葙3种杂草种子为供试对象,用种子萌发法测定了三裂叶蟛蜞菊挥发物的化感作用活性。结果表明:三裂叶蟛蜞菊的茎叶在密闭系统中产生的挥发性物质对稗草、三叶鬼针草和青葙的幼苗生长有显著抑制作用。稗草的根长、苗高和鲜质量分别比对照减少49.1%、35.0%和27.3%,三叶鬼针草的分别比对照减少18.8%、20.9%和28.6%,青葙的分别比对照减少62.9%、21.2%和50.0%。水蒸气蒸馏法所得的挥发油对稗草、三叶鬼针草和青葙的幼苗生长也有显著抑制作用,且抑制作用随着浓度的增大而增强。稗草的根长、苗高和鲜质量分别比对照减少88.2%、58.3%和45.5%,三叶鬼针草的根长、苗高和鲜质量分别比对照减少38.6%、34.5%和71.4%,青葙的根长、苗高和鲜质量分别比对照减少83.7%、51.5%和75.0%。结论:三裂叶蟛蜞挥发物具有化感作用,其作用机理值得深入研究。 相似文献
4.
Potential allelopathic effect of Pinus halepensis in the secondary succession: an experimental approach 总被引:1,自引:0,他引:1
Catherine Fernandez Benjamin Lelong Bruno Vila Jean-Philippe Mévy Christine Robles Stéphane Greff Sylvie Dupouyet Anne Bousquet-Mélou 《Chemoecology》2006,16(2):97-105
Summary. Recent economic and social changes in north Mediterranean regions have led to an important rural depopulation. Consequently,
meadows developed on abandoned agricultural lands (characterized by high species richness) undergo reforestation. These former
fields are mainly colonized by Pinus halepensis Miller, which is known to synthetize a wide range of secondary metabolites, among these, some could influence plant succession
through allelopathy. The allelopathic potential of P. halepensis, was tested against two target species (Lactuca sativa L. and Linum strictum L.) with aqueous extracts obtained from different organs (root and needle) taking into account the individual age (±10, ±30
and > 60 years old). Root and needle extracts affected differently germination and growth of the two target species, the responses
varying with concentration of extracts, age and organs tested. The strongest inhibitory effect was observed on the germination
and growth of L. strictum, exposed to needle extracts of young P. halepensis (±10 years old), and root extracts of older P. halepensis (> 30 years old). These extracts contained several phenolic acids (e.g. 4-hydroxybenzoic acid and p-coumaric acid), which are known as allelochemicals and their concentrations vary with age and
organ tested. Hence, P. halepensis could influence secondary succession through the release of potential allelochemicals in the environment by leaf leachates
or root exudates. 相似文献
5.
Summary. Juvenile hormones are sesquiterpenoids that regulate developmental processses such as metamorphosis and reproduction in insects.
Insect juvenile hormone III (JH III), methyl-10R,11-epoxy-3,7,11-trimethyl-2E,6E-dodecadienoate, has also been identified in two sedge species, Cyperus iria and C. aromaticus (Toong et al. 1988). Potential allelopathic activity of this compound and the structurally related sesquiterpenoid farnesol was investigated
using seed germination and seedling growth assays with radish, lettuce and rice. Treatment of seeds with JH III delayed lettuce
seed germination and potently inhibited rice shoot growth. Both farnesol and JH III inhibited the growth of C. iria seedlings. The antimicrobial activity of JH III was also tested on a taxonomic and ecologically diverse range of fungi. Using
the classic cytotoxic disk assay, JH III did not effect growth of the fungal species tested. We believe that JH III may contribute
to the aggressive nature of this invasive weed species.
Received 11 October 1999; accepted 26 February 2000 相似文献
6.
The biological removal of phosphates was carried as a part of treatment strategy. Vetiveria zizanioides (L.) Nash belonging to the family Poaceae was used for biological removal of biostimulants. Vetiver reportedly has mycorrhizal
association; besides having potential for removal of PO4
−3 also showed allelopathic affect on the microorganisms present in the water. In fact after a period of 96 h old roots of this
plant have been found to have killing effects on the E. coli, Enterobacter spp. Pseudomonas spp. belonging to the family Enterobacteriaceae. The paper is opening a new face of study. 相似文献
7.
The weed inhibition of allelopathic rice PI312777 and nonallelopathic rice Lemont, allelopathic potential of rice rhizospheric soils, as well as the microbial physiological traits of rice rhizospheric soils, were studied by field tests after weedremoving and weed treatments. The results showed that the inhibitory rate of PI312777 at the 7-leaf stage on paddy weeds was 85.82%. Results of the Soil-Agar Sandwich method revealed that the allelopathic potential of PI312777 rhizospheric soils on the inhibitory rate of plant dry weight of barnyard grass was significantly higher at the 5-leaf stage than that at the 3-leaf stage, and increased by 20.16% from the 3-leaf stage to the 5-leaf stage after weed treatment. When at the same leaf stage, the soil microbe biomass carbon and soil respiration, the number of soil bacteria, and activity of soil enzymes (urease, protease, and sucrase) were significantly higher in PI312777 rhizospheric soils than in Lemont rhizospheric soils; they were also higher after the weed-removing treatment than after weed treatment. The largest increase of soil allelopathic potentials and soil microbial physiological indexes in PI312777 rhizospheric soils appeared from the 3-leaf stage to the 5-leaf stage. In case of weed treatment, the allelopathic potential of PI312777 rhizospheric soils on the soil microbe biomass carbon, soil respiration, the number of soil bacteria, activity of urease, activity of protease, and activity of sucrase increased by 53.11%, 51.56%, 38.97%, 44.83%, 60.00%, and 41.92%, respectively, from the 3-leaf stage to the 5-leaf stage. These results indicated that rice allelopathy had a close relationship with the activity of rhizospheric soils. Rice allelochemicals lead to the change of soil microbes; rice allelopathy is a process based on plant-soil interaction. © 2018 Science Press. All rights reserved. 相似文献
8.
M. M. TREZZI R. A. VIDAL D. P. DICK M. C. R. PERALBA N. D. KRUSE 《Journal of environmental science and health. Part. B》2013,48(4):345-356
Sorgoleone (SGL) exuded by sorghum roots inhibits the development of some weeds. Due to its high hydrophobicity, it is expected that SGL presents low soil mobility and limited allelopathic activity in the field. This work aims to evaluate the sorptivity of sorgoleone in octanol-water and in soil under two solvent systems. The two solvent systems were methanol:water (60:40) (MeOH:H2O) and pure methanol (MeOH). These two solvent systems promote different conditions for SGL solubility. Treatments were arranged in a 2 × 6 factorial (solvent systems × equilibrium concentrations in the solution (EC)). For each solvent, the sorption was achieved by shaking 500 mg of soil with 10 ml of 0, 5, 10, 15, 25, 40, and 60 mg L?1 of SGL solution, during 24 h. After centrifugation, the supernatant was filtered and the SGL concentration was determined by high performance liquid chromatography (HPLC). Data of sorbed amount of SGL were submitted to variance analysis, using a hierarchic factorial model. The data of sorbed amount (x/m) and equilibrium concentration (C) were fitted to the linear (x/m = a + K d C) and to the Freundlich (x/m = K f C 1/n ) models. The isotherm obtained for the MeOH:H2O system presented linear shape, whereas for the MeOH system a two subsequent linear isotherm was fitted. Sorgoleone is a highly hydrophobic compound, presenting a log K ow of 6.1. The sorption of sorgoleone to the soil was very high. The organic environment stimulated the sorgoleone sorption to the soil. 相似文献
9.
The significance of metal hyperaccumulation for biotic interactions 总被引:13,自引:0,他引:13
Metal hyperaccumulating plants contain very high metal contents. Because of the general toxicity of metals, chemically-mediated
biotic interactions involving hyperaccumulating plants may differ greatly from those of non-hyperaccumulators. Recent research
has demonstrated a defensive function for hyperaccumulated metals against herbivores and pathogens. We predict that some herbivore/pathogen
species have evolved metal tolerance, and suggest that resulting high metal levels in herbivores/pathogens may defend them
against their own predators. Little is known regarding interference and commensal interactions involving hyperaccumulating
plants. Decreased competition may occur through an interference interaction similar to allelopathy, in which enrichment of
metal in the soil under a hyperaccumulator plant's canopy may inhibit another plant species, thus resulting in “elemental
allelopathy”. Metal enrichment of soil under hyperaccumulators also may result in commensalism if another plant species (possibly
another hyperaccumulator) derives a benefit from growing in the metal-enriched soil under the canopy of a hyperaccumulating
overstory plant. It seems likely that high-metal plant litter will host a specialized microflora of decomposers and may affect
nutrient cycling rates. Mutualist biotic interactions also may be affected by the elevated metal contents of hyperaccumulating
species. Mycorrhizal fungi may form mutualisms with hyperaccumulators, but the phenomenon is poorly-explored. The few cases
investigated to date have not detected mycorrhizae. Pollination and seed dispersal mechanisms may require biotic vectors that
might be affected by plant metal content. Hyperaccumulating plants may have solved this dilemma in three ways. First, some
may rely on abiotic vectors for pollen or seed dispersal. Second, biotic vectors used by these species may have varied diets
and thus dilute metal intake to non-toxic levels. Finally, biotic vectors may have evolved tolerance of elevated dietary levels
of metals, and perhaps have become specialists on hyperaccumulator species.
Received 7 November 1997; accepted 28 December 1997. 相似文献
10.
Allelopathic potential of Cistus ladanifer chemicals in response to variations of light and temperature 总被引:2,自引:0,他引:2
Natividad Chaves Lobón Juan Carlos Alias Gallego Teresa Sosa Diaz José Carlos Escudero Garcia 《Chemoecology》2002,12(3):139-145
Summary. Earlier studies have demonstrated the allelopathic potential of the exudate of Cistus ladanifer leaves, and have identified the compounds responsible for the effect. It is here shown that the effect of each of these compounds
and their interactions on germination and seedling development varies depending on the light and temperature parameters to
which they are subjected. The allelochemicals show a fairly heterogeneous response when studied separately, there being no
general pattern to the behaviour. When they act conjointly, however, their activity is enhanced by high temperatures, and
the greatest phytotoxicity in inhibiting both germination and seedling development is attained with high temperatures and
long photoperiods. These results suggest that the environmental factors temperature and photoperiod may alter the allelopathic
effect of Cistus ladanifer.
Received 5 December 2001; accepted 11 March 2002. 相似文献