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1.
Arbuscular mycorrhizal fungi (AMF) and members of the genus Trichoderma have emerged as promising groups of microbial inoculants that can induce plant growth and resistance to disease. This study aimed at investigating the potential of AMF and a strain (PR11) of Trichoderma asperellum to promote cacao growth and induce resistance against Phytophthora megakarya. Cacao seedlings were either non-inoculated, or inoculated with the saprophytic fungus T. asperellum and/or a mixture of two different mycorrhizal fungi, Gigaspora margarita and Acaulospora tuberculata. Eighteen weeks after planting, a series of morphological as well as biochemical changes, which are considered to be part of the plant defense response, were measured after a challenge inoculation of the leaves with zoospores of P. megakarya. Inoculation with AMF and T. asperellum alone was essential for the promotion of plant growth. Significant increase in plant height, root and shoot fresh weights, as well as phosphorous uptake was recorded in comparison to non-inoculated control plants. However, dual inoculation of cacao seedlings with T. asperellum and AMF did not always positively benefit the plants. Leaf inoculation showed variation among the treatments, with the lowest disease index (highest level of resistance) recorded in plants inoculated with either AMF or T. asperellum only. This came along with a high synthesis of amino acids and phenolic compounds in both healthy and infected leaves, suggesting that these metabolites are implicated in disease resistance.  相似文献   

2.
Botryosphaeria spp. are ligninolytic ascomyceteous fungi that incite many diseases in economically important woody plant species. Four Botryosphaeria isolates, Botryosphaeria rhodina (Lasiodiplodia theobromae), Botryosphaeria obtusa, Botryosphaeria dothidea and Botryosphaeria ribis (Neofusicoccum ribis) were used in this study. Ten naturally occurring phenolic compounds from plants were tested to evaluate their effect on mycelium growth and the production of ligninolytic and pectinolytic enzymes. The effect of phenolic compounds in vitro varied with the Botryosphaeria isolates. Inhibition of mycelium growth was dose-dependent, and varied from 2 to 100% inhibition in the ten phenolic compounds tested except syringic acid, which has no toxic effect on mycelium of Botryosphaeria isolates. A significant decrease in laccase production occurred when Botryosphaeria isolates were grown on phenolic compounds. Benzoic acid significantly inhibited pectinase activity in all isolates. The percent inhibition of pectinase activity in B. dothidea and B. obtusa was significantly increased in the presence of salicylic acid and syringic acid, respectively.  相似文献   

3.
ABSTRACT

Inoculation of arbuscular mycorrhizal (AM) fungi has a great potential to reduce input of phosphorus fertilizer. In this study, we tested the hypothesis that transplanting of pre-inoculated plants (pre-inoculation) with AM fungal inoculum Glomus sp. strain R-10 (R-10) is more effective for increasing AM fungal colonization and soybean yield than placing R-10 inoculum into field soil (direct inoculation). We cultivated pre-inoculated and direct inoculated plants with and without R-10 in the same field. On the contrary to the hypothesis, hyphal colonization was increased by direct inoculation, but decreased by pre-inoculation in an early growth stage. Shoot phosphorus concentration, shoot dry weight, and yield also showed the same trend as the hyphal colonization. These results indicated that pre-inoculation with R-10 would be less effective for increasing AM fungal colonization and yield than direct inoculation. It may be due to a colonization strategy of R-10 and short duration for establishment of seedling.  相似文献   

4.
Arbuscular mycorrhizal (AM) fungi alleviating the adverse salt effects on growth was tested in bajra (Pennisetum glaucum). Towards this objective we analyzed the photosynthetic activity, proline, phosphatase activity and various antioxidant enzymes such as peroxidase, catalase and superoxide dismutase at 0, 100, 200 and 300 mM salinity levels in AM inoculated and non inoculated bajra plants. Total chlorophyll content was significantly higher in moderate salinity condition in AM fungus (Glomus fasciculatum) inoculated plants, which lead to increase in growth and nutrient uptake capacity of mycorrhizal plants. Antioxidant activity was either increased or decreased due to responses to different salinity stress conditions. Proline accumulation was induced by salt and it was more in shoot of non-AM inoculated plants, but in roots proline accumulation was higher in AM plants at all levels of salinity. This work suggests that the AM fungus helps bajra plants to perform better under moderate salinity levels by enhancing the antioxidant activity and proline accumulation as compared to non-mycorrhizal plants.  相似文献   

5.
Mycorrhizal associations imply a remarkable reprogramming of functions in both plant and fungal symbionts. This consequent alteration on plant physiology has a clear impact on the plant responses to biotic stress management. As a consequence, a pot experiment was conducted to study the interactions between the arbuscular mycorrhizal fungus (AMF) Glomus fasciculatum and the two pathogens Fusarium oxysporum and Colletotrichum gloeosporioides and subsequent effect on growth, disease tolerance and the changes in antioxidative ability in cyclamen plants under growth chamber condition were investigated. At plant maturity, inoculation with F. oxysporum and C. gloeosporioides, responsible for Fusarium wilt and anthracnose of cyclamen respectively, significantly reduced shoot and root dry weights, increased both the disease incidence percentage and showed lower antioxidative activity viz. superoxide dismutase (SOD), ascorbate peroxidase (APX), ascorbic acid (AA) and polyphenol contents in plants. In contrast, the growth response and biomass production of cyclamen plants inoculated with AMF was significantly higher than the nonmycorrhizal control plants, both in the presence and absence of the pathogens. Mycorrhization enhanced plants to reduce the Fusarium wilt and anthracnose incidence compared to nonmycorrhizal controls. In every case, without and with pathogen association, plants inoculated with AMF increased the antioxidant (SOD, APX, AA and polyphenol) production compared to control plants. The results demonstrate that AMF have the ability to induce resistance against Fusarium wilt and anthracnose in cyclamen by increasing the antioxidative activity in plants, which promoted plant growth, biomass production and drastically reduced the disease incidence in cyclamen.  相似文献   

6.
Abstract

Arbuscular mycorrhizal fungi (AMF) improve the uptake of immobile mineral nutrients such as phosphate, thereby improving plant growth. In acid sulfate soil (ASS), AMF spore density is generally low which impacts root colonization and phosphate uptake. Thus, inoculation may help increase AMF colonization of crops grown in ASS. AMF spore density decreases after cultivation of a non-host crop or bare fallow. In addition, preceding crops affect the growth and yield of subsequent crops. The production of AMF inocula requires AMF-compatible plants. The objective of the present study is to elucidate the effect of preceding crops on the persistence of inoculated AMF and growth of succeeding maize under an ASS condition with lime application. Spore density of AMF after cultivation of preceding crops (soybean or job’s tears) was maintained in comparison to fallow leading to higher AMF colonization of maize and improved plant growth. Thus, maintenance of AMF spore density, either through selection of preceding crops or application of AMF inoculum, may be a viable strategy to improve maize growth in limed ASS of Thailand.  相似文献   

7.
丛枝菌根真菌诱导玉米根系形态变化及其机理   总被引:3,自引:0,他引:3  
黄京华  刘青  李晓辉  曾任森  骆世明 《玉米科学》2013,21(3):131-135139
以高油115和正大619为实验材料,分别通过盆栽和田间试验研究接种摩西球囊霉和地表球囊霉对玉米根系形态和根系内源生长素含量的影响。结果表明,玉米形成菌根后根系形态明显改变,根条数显著多于对照,并且接种处理与对照间的差异随菌根侵染率的上升而加大,差异极显著。生长60 d时,有菌根的玉米单株总根长度为788.61 cm,根系重量达8.26 g,均显著高于无菌根的对照。根系生长素含量随菌根侵染率上升而增加,并且显著高于不接种的对照。丛枝菌根真菌侵染可以促使玉米根内生长素含量上升,根条数增多,增加吸收面积,促进玉米生长。  相似文献   

8.
丛枝菌根真菌对澳洲坚果幼苗的生长效应   总被引:4,自引:0,他引:4  
将澳洲坚果种子进行表面消毒,并播种于盛装已灭菌珍珠岩的塑料育苗盒中,观察其幼苗期接种丛枝菌根真菌【Arbuscular Mycorhiza Fungi,AMF(CL.mosse)】对澳洲坚果幼苗生长效应的影响。试验结果表明,AMF对澳洲坚果幼苗的生长发育均有重要的促进作用。AMF 能促进澳洲坚果幼苗的生长及其幼苗叶片蛋白质及糖分的积累;能促进其根系磷酸酶的活性,磷酸酶活性与AMF侵染率存在显著相关性。接种AMF可增强澳洲坚果幼苗根系活力,促进其根系对N,P等矿质养分的吸收和积累,并促进澳洲坚果植株的光合作用,提高其幼苗  相似文献   

9.
基于云南热区澳洲坚果种植区季节性干旱及先天性低有效磷的土壤特征,探讨丛枝菌根真菌(arbuscular mycorrhizal fungi,AMF)接种对具有排根的引种作物-澳洲坚果幼苗磷利用的影响,为外来物种的本地驯化栽培提供理论依据。在正常水分与水分胁迫条件下,对盆栽的澳洲坚果幼苗分别接种土著丛枝菌根真菌(native arbuscular mycorrhizal fungi)和摩西球囊霉(Glomus mosseae),测定接种不同AMF对澳洲坚果幼苗生长、菌根定殖、酸性磷酸酶活性、柠檬酸分泌及磷素吸收等的影响。结果表明,接种土著AMF(N-AM)处理对澳洲坚果幼苗排根或非排根的侵染率显著高于接种摩西球囊霉(G-AM)处理,正常水分条件下N-AM处理的侵染率最高;两种水分条件下,接种AMF的植株地上部和地下部干重更高,正常水分处理下达到最大。菌根侵染率与排根产生量之间显著正相关,水分胁迫显著抑制了植株的排根产生量;与不接种相比,接种处理能显著提高排根产生量。接种AMF后根系对磷素的活化、吸收及转化能力显著升高,表现为接种的澳洲坚果幼苗根系、茎秆和叶片中全磷含量较高,两种水分条件下均表现为N-AM>G-AM>CK;菌根与排根相互协调共同发挥作用,显著改善了澳洲坚果幼苗根系对磷素的活化和吸收能力,且菌根比排根发挥了更大作用,尤其在水分胁迫条件下。两种AMF均能与澳洲坚果幼苗建立共生关系,N-AM处理的幼苗各指标显著优于G-AM处理,可能是由于拥有多样性优势的土著AMF在澳洲坚果幼苗根系中定殖能力较强或是AMF真菌对外来物种澳洲坚果有正反馈作用。  相似文献   

10.
The effects of biofumigation and soil heating on arbuscular mycorrhizal fungi (AMF) colonisation, strawberry growth and strawberry yield in pot experiments compared with untreated soil and chemical fumigation with dazomet were tested. Three different Brassicaceae species (Brassica juncea, Eruca sativa, Sinapis alba) were used as biofumigant plant green manure and soil heating was applied to simulate soil solarisation. Half of the plants were inoculated with indigenous arbuscular mycorrhizal fungi inoculum. With one exception (E. sativa) among the uninoculated plants, the treatments significantly decreased the mycorrhizal colonisation parameters compared with the untreated control. Dazomet displayed the greatest inhibitory effects on AMF establishment. In addition, the intensity and number of bands corresponding to Glomus spp. obtained with temporal temperature-gradient gel electrophoresis were lower for strawberry plants from biofumigant treatments than from the control. For the inoculated plants, there were almost no significant differences among the mycorrhizal colonisation parameters. The mass of leaves for the uninoculated and inoculated plants was higher for almost all non-chemical soil fumigant treatments compared with the control, except for heating of the uninoculated treatments. The number of strawberry fruits for the uninoculated biofumigant treatments was the highest, being higher than the values observed for the heating treatments, the chemical disinfection treatments and the control. There were no significant differences among the inoculated treatments. Biofumigation with Brassicaceae species resulted in higher soil organic matter and mineral nutrients and had a relatively small effect on AMF colonisation (F% = 59.0, 80.3, 47.3 for Bj, Es and Sa, respectively) compared with uninoculated controls (F% = 84.3). Despite the reduced AMF colonisation, biofumigation resulted in a higher fruit number and mass of leaves. Therefore, it represents a non-chemical soil fumigation method that should be applied in sustainable strawberry production.  相似文献   

11.
为研究不同水分条件下丛枝菌根(Arbuscular mycorrhizal,AM)真菌对茶树生长和茶叶品质的影响,试验以福鼎大白茶(Fuding Dabaicha)为材料,采用温室盆栽法,分别设置正常水分(WW)和干旱胁迫(DS)两个水分条件,研究单接种AM真菌幼套近明球囊霉(Clariodeoglous etunicatum)(+AMF)与不接种(-AMF)处理对福鼎大白茶实生苗叶片数、生物量等生长指标和蔗糖、果糖、儿茶素、氨基酸等品质指标的影响。结果显示,无论水分条件如何,接种AM真菌处理均显著促进了福鼎大白茶实生苗生长,增加了叶片数量和各部分(叶片、茎、根系)生物量,并提高了茶叶品质;与不接种AM真菌(-AMF)相比,茶树叶片蔗糖、葡萄糖、果糖、儿茶素、氨基酸和茶多酚的含量分别增加了7.73%~21.92%、28.49%~53.44%、6.13%~9.59%、18.97%~23.48%、31.29%~39.11%和6.77%~26.32%。接种AM真菌处理在干旱(DS)条件下效果更为显著,干旱抑制了AM真菌对茶苗根系的侵染和茶苗生长,降低了茶叶品质。接种AM真菌能显著缓解这种抑制效应,同时促进茶叶有机物质积累。此外,接种AM真菌还显著上调了干旱胁迫(DS)下茶树叶片谷氨酰胺脱氢酶基因(CsGDH)、谷氨酰胺α-酮戊二酸氨基转移酶基因(CsGOGAT)和3-羟基-3-甲基戊二酰辅酶A还原酶基因(CsHGMR)的表达。研究结果表明,接种AM真菌在不同水分条件,特别是干旱(DS)条件下,可通过显著上调相关基因的表达来促进茶树的生长,改善茶叶品质。  相似文献   

12.
通过筛选获得具有显著促生和抗病能力的AM真菌菌株,为防治柑橘黄龙病提供理论依据和基础,并探索防治新途径。采用盆栽法,于长春花幼苗期分别接种17株AM真菌进行长春花农艺性状和对柑橘黄龙病的抗病性比较试验,研究不同丛枝菌根真菌菌株对长春花的促生效果及对柑橘黄龙病的抑制效果。结果表明,长春花接种AM真菌后,菌株GZ10、GZ5和JX70能显著促进植株生长,其中接种GZ10的株高和茎径分别比CK增加了23.1%和12.1%,接种GZ5的叶片数比CK增加了12.9%;接种菌株GZ1、BNMJ和PWJ有效提高了长春花对柑橘黄龙病的抗病和耐病能力,其相对防效分别为78.39%、66.87%和69.75%。  相似文献   

13.
Scutellaria species have been used in many traditional medical systems and is well known among the Native American tribes as a strong emmenagogue and as a female medicinal herb. The inoculation of arbuscular mycorrhiza fungi (AMF) into the roots of micropropagated plantlets could help not only mass propagate these species, but also help grow in marginal, phosphorus deficient soils. Leaves, shoot apices, and nodal segments from wild as well as from greenhouse-grown plants were used to initiate cultures in Murashige and Skoog (MS) medium supplemented with cytokinins benzyladenine (BA), kinetin, thidiazuron (TDZ), naphthalene acetic acid (NAA), and indole butyric acid (IBA) Among all the explants tested for shoot bud induction, only shoot tips and nodal explants were responsive. Explants swelled and became rough on the surface at the end of 3-week incubation with many green shoot buds. Two to 3 weeks after transfering to rooting media with or without IBA, all shoots developed roots. In vitro raised plants were acclimatized in a mist chamber and transferred to 6-l containers in the greenhouse to study the role of AMF on plant growth and development. Inoculation with AMF, showed positive effects on plant growth, particularly root development compared with the control plants. Among the five AMF strains tested, S3004 increased plant height and fresh weights of shoot, root, and seed.  相似文献   

14.
There are numerous studies evaluating biocontrol of root rot by using the antagonistic effects of either arbuscular mycorrhizal fungi (AMF) or rhizobacteria, but usually independently. Fewer studies, although growing in number, report on evaluating the effectiveness of concurrent fungi–bacteria inoculation in combating root rot; and furthermore, there are none to date reported with papaya. In this study, an indigenous Pseudomonas sp. (PPV3) was isolated from roots of papaya (Carica papaya L. cv. Maradol) and used with an AMF complex (MTZ01) consisting of four fungi Glomus intraradices, Glomus mosseae, Glomus etunicatum and Gigaspora albida to inoculate roots of papaya in order to determine their antagonistic effects against Fusarium oxysporum, individually and in combination. It was found that with inoculation with PPV3 and MTZ01 protection was highest (85%) and had reduced disease (10%) as well as reducing F. oxysporum colonization in papaya seedlings. Inoculations with MTZ01 or PPV3 showed an efficacy of 54 and 60%, with a level of disease severity of the 38 and 22%, respectively. The combination of the AMF complex (MTZ01) with rhizobacterial Pseudomonas sp. (PPV3) modified the effects of F. oxysporum and provided increased protection for C. papaya than either acting alone. These results suggest that rhizobacteria and arbuscular mycorrhizal fungi acting together formed a mutualistic relationship that enhances disease control against F. oxysporum and stimulates growth in C. papaya.  相似文献   

15.
球囊霉属3种AM真菌对香蕉枯萎病的影响   总被引:3,自引:0,他引:3  
以巴西蕉(Musa AAA Giant Cavendish cv.Baxi)试管苗为材料,在温室盆栽条件下研究了丛枝菌根(Arbuscular Mycorrhiza,AM)真菌Glomus mosseae(Nicol.&Gerd.)Gerdemann、G.aggregatum(Schenck&Smith)Koske和G.etunicatum Becker&Gerdemann对香蕉枯萎病(fusarium wilt of banana)的影响。结果表明:巴西蕉植株的菌根侵染率为23.13%~44.72%,接种AM真菌促进了巴西蕉植株的营养生长,显著地增加地上部分和根系的干重,显著减少根际土壤周围镰刀菌数量,对植株的株高、叶片数和叶片长度略有提高;降低香蕉枯萎病发病率和病情指数,从而减轻香蕉枯萎病的危害。单接种AM真菌显著促进巴西蕉植株地上和根部分P和K含量和吸收量;与单接种镰刀菌的植株相比,双接种混合AM真菌与镰刀菌处理能显著提高植株地上部分P的含量和吸收量及根系部分K的含量和吸收量。结果还表明,混合接种剂的生长防病效果好于单一接种剂。  相似文献   

16.
在盆栽条件下,以柑橘砧木枳(Fructus aurantii)幼苗为试验材料,在基质中接种从广西土壤中分离得到的不同丛枝菌根(AM)真菌菌株,探讨不同AM真菌对枳根系的侵染能力和植株生长的影响。结果表明:用于试验的14个AM真菌菌株均能与枳根系形成共生关系,平均侵染率为36.16%,其中侵染率最高的菌株是黄雷德克囊霉(Redeckera fulvum, Rf),侵染率高达92.83%,侵染率最低的菌株是副冠球囊霉(Glomus coronatum, Gc),侵染率仅为0.23%;接种黄雷德克囊霉、摩西斗管囊霉(Funneliformis mosseae, Fm2)和副冠球囊霉这3个菌株处理的枳植株的株高、茎粗、叶片数和叶柄长均高于CK,是枳的优势菌株,能促进枳的生长。  相似文献   

17.
Summary

Arbuscular mycorrhizae were inoculated into phosphorus-deficient soil fertilized with either organic or chemical fertilizer with cucumber (Cucumis sativus L.) as the first crop and lettuce (Lactu-ca sativa L.) as the second crop but without additional fertilization and AM inoculation. AM increased dry matter and fruit yield of cucumber significantly in the unfertilized, organic-fertilized and P-deficient plants compared with the fully chemical-fertilized plants. AM inoculation increased the available phosphorus in plant and soil by around 30% for all treatments except for those chemically-fertilized. The rate of AM infection did not differ significantly among the fertilization treatments, but the infection intensity was higher in unfertilized, organic-fertilized and phosphorus-deficient treatments than chemical-fertilized treatment. The residual effects of AM-inoculated to cucumber were evident for lettuce in all pre-treatments that were unfertilized and un-inoculated for the second cropping. Without P-fertilization, neither crop could grow optimally even when the soil was inoculated with AM, suggesting that AM could not serve as a substitute for phosphorus fertilizer. However, the other beneficial effects of AM on crop growth and yield could not be fulfilled with phosphorus fertilizer.  相似文献   

18.
为了研究菌根真菌接种对盆栽杜鹃花生长的影响,以 2 个杜鹃花品种为材料,开展了 3 个菌株在有机肥和无机肥施肥组中的菌根真菌接种实验。结果表明,未接种菌根真菌的盆栽杜鹃花菌根侵染率较低(5%~7%),接种的盆栽杜鹃花菌根侵染率提高至 12%~20%;2 个品种的接种植株在株高、地径、总分枝数和叶面积上均有显著增加,其中树粉孢属真菌菌株接种和施用无机缓释肥的组合处理盆栽杜鹃花生长量最大。  相似文献   

19.
为了研究菌根真菌接种对盆栽杜鹃花生长的影响,以 2 个杜鹃花品种为材料,开展了 3 个菌株在有机肥和无 机肥施肥组中的菌根真菌接种实验。结果表明,未接种菌根真菌的盆栽杜鹃花菌根侵染率较低(5%~7%),接种的盆栽 杜鹃花菌根侵染率提高至 12%~20%;2 个品种的接种植株在株高、地径、总分枝数和叶面积上均有显著增加,其中树 粉孢属真菌菌株接种和施用无机缓释肥的组合处理盆栽杜鹃花生长量最大。  相似文献   

20.
The efficacy of resistance in tomato plants, induced by rhizobacteria isolated from Jeju Island in Korea, against late blight disease caused by Phytophthora infestans was tested. Among the bacterial isolates tested, pre-inoculation with four isolates induced an effective defense against late blight. The four isolates, TRH423-3, TRH427-2, KRJ502-1 and KRY505-3, were identified as Burkholderia gladioli, Miamiensis avidus, Acinetobacter quenomosp and Bacillus cereus, respectively, by sequencing the ribosomal intergenic spacer region. They also promoted the growth of tomato seedlings. To illustrate resistance mechanisms, the infection process by P. infestans was examined using a fluorescence microscope. There were no noticeable differences in the rate of germination and appressorium formation between the untreated and pre-inoculated plants. However, callose was more frequently formed at the penetration sites on the leaves of pre-inoculated plants than the untreated plants, suggesting that these rhizobacterial isolates induce defense responses against P. infestans.  相似文献   

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