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1.
Three-month-old Cedrella odorata seedlings were exposed to a soil-drying treatment. During this period, xylem sap was periodically collected from the plant by applying pneumatic pressure to the roots. This also allowed whole-plant water status to be measured by recording the balancing pressure applied. The concentration of ABA in xylem sap (C) was related to the whole-plant transpiration rate (V) which was measured with a sap flow gauge. The analysis of these paired measurements centred on how the reciprocal of C (R) varied with respect to V. This revealed that (1) the observed increases in C could not be explained by the reductions in V alone, (2) initially, decreases in V were associated with proportional increases in the whole-plant ABA flux (M), and (3) this relationship broke down at low values of V since zero flow was associated with a finite value for C estimated to be 41 pmol ABA mmol?1 H2O. A simple static model is developed from the observations that is able to explain the data well, and the results are discussed in terms of the effects of ABA on stomatal conductance (gsw). 相似文献
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论述中国西南纵向岭谷区外来入侵植物对生物多样性的影响。中国西南纵向岭谷区是我国生物多样性保护的关键地区。目前,该区域已成为外来植物入侵的重灾区,外来入侵植物种类多达70余种,其中,紫茎泽兰Ageratina adenophora(Eupatoriumadenophorum)、飞机草Chromolaena odorata(Eupatorium odoratum)和肿柄菊Tithonia diversifolia等在该区域危害严重,该区域的生态系统的结构与功能遭受破坏,本地物种面临灭绝,农、林、牧生产乃至区域的生态安全受到威胁。该区域的外来入侵植物的危害居全国之冠。研究该区域的外来入侵植物,揭示其危害规律,遏制其危害速度,最终清除该区域的外来入侵植物,恢复该区域的生态平衡,具有十分重要的现实意义和科学价值。文中详细论述了外来入侵植物对植物物种多样性、植物群落多样性、生态系统多样性、农牧业及林业的影响,最后指出消除和控制外来入侵植物的途径。 相似文献
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I. S. Odeyemi F. Y. Olalekan O. S. Sosanya 《Archives Of Phytopathology And Plant Protection》2013,46(11):1046-1052
Pot experiments laid out in a complete randomised design were conducted in the screen house of the Department of Crop Protection, University of Agriculture, Abeokuta, Ogun State, Nigeria to determine the effects of organic fertiliser and Chromolaena odorata residue at 1% w/w on the pathogenicity of Meloidogyne incognita infecting maize. M. incognita significantly reduced the plant height, number of leaves per plant, leaf area, cob weight and grain yield of maize by 6.89, 15.18, 20, 63.92 and 56.16% respectively. C. odorata residue and organic fertiliser significantly suppressed M. incognita galling, inhibited the nematode fecundity and reduced the number of eggs and juveniles on maize. A remarkable increase in plant height, number of leaves per plant, leaf area, cob weight and grain yield were observed on maize plants treated with the mixture of C. odorata and organic fertiliser despite the nematode infection. The observation from this study suggests that C. odorata in combination with organic fertiliser is a viable option for the control of M. incognita on maize. 相似文献
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Volatile Compounds of Viola odorata Absolutes: Identification of Odorant Active Markers to Distinguish Plants Originating from France and Egypt 下载免费PDF全文
Laure Saint‐Lary Céline Roy Jean‐Philippe Paris Pascal Tournayre Jean‐Louis Berdagué Olivier P. Thomas Xavier Fernandez 《化学与生物多样性》2014,11(6):843-860
Absolutes isolated from Viola odorata leaves, valuable materials for the flavor and fragrance industry, were studied. Violets are mainly cultivated in France and Egypt and extracted locally. The absolutes of the two origins showed different olfactory profiles both in top and heart notes, as evidenced by sensory analysis. The aims of this study were i) to characterize the volatile compounds, ii) to determine the odorant‐active ones, and iii) to identify some markers of the plant origin. Two complementary analytical methods were used for these purposes, i.e., headspace solid‐phase microextraction (HS‐SPME) using different fiber coatings followed by GC/MS analysis and gas chromatography – olfactometry/mass spectrometry (GC‐O/MS) applied to violet leaf extracts. From a total of 70 identified compounds, 61 have never been reported so far for this species, 17 compounds were characterized by both techniques (with seven among them known from the literature), 23 compounds were solely identified by HS‐SPME GC/MS (among them only two being already mentioned as components of violet absolutes in the literature), and, finally, 30 compounds were only identified by GC‐O/MS. According to the HS‐SPME GC/MS analyses, ethyl hexanoate and (2E,6Z)‐nona‐2,6‐dienol were specific volatile compounds of the sample with French origin, while (E,E)‐hepta‐2,4‐dienal, hexanoic acid, limonene, tridecane, and eugenol were specific of the samples with Egyptian origin. Additional compounds that were not detected by HS‐SPME GC/MS analysis were revealed by GC‐O analyses, some of them being markers of origin. Pent‐1‐en‐3‐ol, 3‐methylbut‐2‐enal, 2‐methoxy‐3‐(1‐methylethyl)pyrazine, 4‐ethylbenzaldehyde, β‐phenethyl formate, and 2‐methoxy‐3‐(2‐methylpropyl)pyrazine revealed to be odorant markers of the French sample, whereas cis‐rose oxide, trans‐rose oxide, and 3,5,5‐trimethylcyclohex‐2‐enone were odorant markers of the Egyptian samples. 相似文献
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飞机草挥发油的化学组成及其对植物、真菌和昆虫生长的影响 总被引:41,自引:9,他引:32
飞机草挥发油对5种植物幼苗生长有显著的抑制作用,受抑制的大小排序为黑麦草>白菜>萝卜>四季豆>水稻.中等浓度(800mg·L-1)飞机草挥发油对水稻稻温病菌的抑制作用最强,对长春花疫病菌的抑制作用次之,对香蕉枯萎病菌的抑制作用最弱;其抑茵串分别为61.40%、29.27%和14.44%.10-20μl·株^-1的飞机草挥发油对小菜峨和黄曲条跳甲有显著的驱避产卵作用.经GC/MS,飞机草挥发油的化学成分主要是萜类化合物,如反式—石竹烯(16.58%)、δ—杜松烯(15.85%)、α—可巴烯(11.58%)、氧化石竹烯(9.63%)、大根香叶烯(4.96%)和α—Lu草烯(4.32%)。 相似文献
8.
飞机草挥发油对真菌和昆虫的生物活性及其化学成分研究 总被引:8,自引:0,他引:8
研究结果表明 :飞机草挥发油在中等浓度 (80 0mg·l-1)时 ,对水稻稻瘟病菌 (Pryiculariagrisea)的抑制作用最强 ,对长春花疫病菌 (Phytophthoranicotianae)的抑制作用次之 ,对香蕉枯萎病菌(Fusariumoxysporum)的抑制作用最弱 ,其抑菌率分别为 6 1.4 0 %、2 9.2 7%和 14 .4 4 %。用 10~ 2 0 μl·株 -1的飞机草挥发油 ,对小菜蛾 (Plutellaxylostella)和黄曲条跳甲 (Phyllotretastriolata)有显著的驱避产卵作用。用GC/MS详细分析了飞机草挥发油的化学成分 ,共鉴定了 33个化合物。主要成分是萜类化合物 ,如反式 石竹烯 (16 5 8% )、δ 杜松烯 (15 .85 % )、α 可巴烯 (11.5 8% )、氧化石竹烯 (9.6 3% )、大根香叶烯 (4.96 % )和α 律草烯 (4.32 % )。 相似文献
9.
Joseph S. Vitelli F. Dane Panetta Barbara A. Madigan Peter E. Van Haaren 《Ecological Management & Restoration》2018,19(1):88-93
The perennial shrub Siam Weed (Chromolaena odorata (L.) R. M. King & H. Rob.), a native of the rainforests of central and southern America, is predicted to invade most countries between the Tropics of Cancer and Capricorn. Subsequent to its discovery in northern Queensland, Australia in 1994, it was unsuccessfully targeted for eradication, with early control efforts restricted to manual removal and foliar spraying with triclopyr/picloram. A chemical trial involving five herbicides and three application methods (foliar, basal bark and cut stump) was undertaken in northern Queensland to identify effective chemicals to control this weed. Of the foliar herbicides tested, fluroxypyr (70 g/100 L) provided 99% mortality, triclopyr/picloram (105/35 g/100 L) 95%, while metsulfuron‐methyl (9 g/100 L) killed 85% of the treated plants. The herbicides fluroxypyr (300 g/100 L), picloram (43 g/1 kg) and triclopyr/picloram (400/200 g/100 L) killed greater than 98% of the plants when applied as basal bark or cut stump. The integration of fire into the management strategy either as a primary or secondary control option could have a major role, given that in this study, 99% of the Siam Weed soil seed bank was located on the soil surface. 相似文献
10.
Kongkeat Jampasri Maleeya Kruatrachue Puey Ounjai Acharaporn Kumsopa 《International journal of phytoremediation》2016,18(10):994-1001
Phytoremediation is widely promoted as a cost-effective technology for treating heavy metal and total petroleum hydrocarbon (TPH) co-contaminated soil. This study investigated the concurrent removal of TPHs and Pb in co-contaminated soil (27,000 mg kg?1 TPHs, 780 mg kg?1 Pb) by growing Siam weed (Chromolaena odorata) in a pot experiment for 90 days. There were four treatments: co-contaminated soil; co-contaminated soil with C. odorata only; co-contaminated soil with C. odorata and Micrococcus luteus inoculum; and co-contaminated soil with M. luteus only. C. odorata survived and grew well in the co-contaminated soil. C. odorata with M. luteus showed the highest Pb accumulation (513.7 mg kg?1) and uptake (7.7 mg plant?1), and the highest reduction percentage of TPHs (52.2%). The higher TPH degradation in vegetated soils indicated the interaction between the rhizosphere microorganisms and plants. The results suggested that C. odorata together with M. luteus and other rhizosphere microorganisms is a promising candidate for the removal of Pb and TPHs in co-contaminated soils. 相似文献