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1.
冯瑞章  周诰均  魏琴  周万海  范轶玲  秦欢 《广西植物》2016,36(11):1396-1402
筛选具有溶磷能力的植物内生细菌,并探索该类菌的促生和抗逆性能,有助于扩大溶磷微生物来源、研发微生物肥料、改善土壤磷素营养和提高农业产量。该研究以从油樟组织中分离得到的50株内生细菌为材料,通过溶磷圈法初筛得到24株具有溶磷潜能的菌株,利用钼蓝比色法测定它们的溶磷能力和培养液的pH值,并研究溶磷能力较强菌株产生吲哚乙酸( IAA)、铁载体、1-氨基环丙烷-1-羧酸( ACC)脱氨酶、几丁质酶等促生和抗逆性能。结果表明:24株油樟内生细菌都能从磷酸钙中释放出有效磷(溶磷量为51.26~237.08μg·mL-1),其中,YG60、YG43、YG36、YG25、YG49、YG44株菌的溶磷量较高,均大于150μg·mL-1。接种油樟内生菌后,培养液的pH值均有一定程度的降低,但菌株溶磷量与培养液pH值间不存在显著相关性。6株溶磷量大于150μg · mL-1的菌株大部分具有分泌IAA、产铁载体、ACC脱氨酶活性和几丁质酶活性的能力;其中YG43、YG60和YG25分泌IAA的能力较强(IAA分泌量分别为22.55、18.75和16.41μg·mL-1),YG43和YG60产铁载体的能力较强(As/Ar小于0.6),YG43、YG60和YG25的ACC脱氨酶活性(分别为0.194、0.224、0.208 U·mg-1)较高,YG43和YG60的几丁质酶活性(分别为2.968 U和2.502 U)较高。综合菌株的溶磷、促生和抗逆性能,认为YG43、YG60和YG25菌株在促进植物生长、提高植物抗性及生物防治方面具有较好的应用前景。  相似文献   

2.
【目的】从大豆根瘤中筛选具ACC(1-氨基环丙烷-1-羧基)脱氨酶活性的内生细菌,对活性菌株的抗盐碱性、系统分类地位以及代表菌株的促生长作用进行研究,为发掘和应用抗逆、促生优良菌种资源提供理论基础。【方法】以ACC作为唯一氮源测定菌株产ACC脱氨酶特性,采用标准曲线法测定α-丁酮酸含量,比色法定量测定ACC脱氨酶活力,固体平板筛选法对活性菌株进行抗性分析,通过菌体形态及生理生化特性测定、16S rRNA基因序列同源性分析鉴定菌株分类地位,采用盆栽试验验证代表菌株的促生作用。【结果】从河南省13个市(地区)36个点采集的大豆根瘤中筛选出8株ACC脱氨酶内生细菌,其中菌株DD132的酶活性最高(15.712 U/mg)。筛选菌株可耐受4%–6%NaCl,其中菌株DD165、DD132可耐受9%NaCl盐浓度。在pH 11时5株(DD14、DD132、DD67、DD141、DD131)生长良好,说明这些菌株有较强耐碱性。8株产ACC脱氨酶菌株分属于4属,即芽孢杆菌属(Bacillus)、肠杆菌属(Enterobacter)、寡养单胞菌属(Stenotrophomonas)和泛菌属(Pantoea)。接种试验表明内生菌DD132对小麦幼苗生长具有明显促生长作用。【结论】大豆根瘤内具ACC脱氨酶高活性菌株有较强耐盐碱性,其中菌株DD132对小麦幼苗生长有明显促生长作用。为发掘和应用抗逆、促生的优良菌种资源提供理论基础。  相似文献   

3.
【目的】具溶磷能力的植物内生促生细菌的分离筛选及生物多样性的研究将有助于扩大溶磷微生物来源、丰富功能内生细菌资源库及开发新的改善土壤磷素营养途径。【方法】结合内生细菌分离方法从油菜和玉米体内分离筛选具溶磷能力的内生细菌,测定菌株摇瓶条件下的溶磷能力,并研究其产生吲哚乙酸(IAA)、铁载体、1-氨基环丙烷-1-羧酸(ACC)脱氨酶等的特性,采用16SrDNA限制性酶切片段长度多态性分析(RFLP)研究了具溶磷能力的植物内生促生细菌的遗传多样性,并挑选典型菌株进行了鉴定。【结果】分离筛选到32株具稳定溶磷能力的植物内生细菌,所有菌株都能从磷酸钙中释放出有效磷并使培养液pH值降低,释放的有效磷浓度最高达到537.6mg/L。分离自油菜的供试细菌都能产生吲哚乙酸和铁载体,分离自玉米的供试细菌中有68.4%的菌株产生吲哚乙酸,63.2%的菌株产生铁载体,63.2%的菌株具ACC脱氨酶活性。分离菌株在76%相似性水平上可聚类分为8个群。11株典型菌株归属于泛菌属(Pantoea)、假单胞菌属(Pseudomonas)、伯克霍尔德氏菌属(Burkholderia)、不动杆菌属(Acinetobacter)及罗尔斯顿菌属(Ralstonia)等5个属。【结论】油菜和玉米体内溶磷细菌具有丰富多样的生物学特性和遗传多样性。  相似文献   

4.
采用富集筛选法从绞股蓝根中筛选得到6株具有ACC脱氨活性的细菌,其中菌株JDG-6、JDG-7、JDG-14、JDG-16、JDG-23均具有较强的分泌铁载体能力,但菌株JDG-32没有产铁载体能力。抑菌试验结果显示,菌株JDG-6、JDG-7、JDG-14和JDG16对一种或多种供试菌有抑菌作用,其中菌株JDG-14能抑制大肠埃希菌、藤黄八叠球菌和白色念球菌的生长。促生试验表明,菌株JDG-6、JDG-7和JDG-14均能促进水稻幼苗根的伸长,其中菌株JDG-14的促生作用最为明显,与对照组相比水稻幼苗的根长和根鲜重分别增长了26%和21%。通过形态特征观察、生理生化试验以及16S rDNA序列分析,菌株JDG-6、JDG-7、JDG-16和JDG-23属于假单胞杆菌属(Pseudomonas),菌株JDG-14为木糖葡萄球菌(Staphylococcus xylosus),而菌株JDG-32为枯草芽胞杆菌(Bacillus subtilis)。菌株JDG-6、JDG-7和JDG-14均具有ACC脱氨酶活性和抑菌活性的促生菌,具有农业应用潜力。  相似文献   

5.
绿僵菌作为一种广为人知的虫生真菌,在农业绿色防控中担任重要角色,是害虫综合治理的重要组成部分。近年来对绿僵菌的深入研究发现,其也可作为植物内生菌,通过介导昆虫植物碳氮元素交换、分泌代谢产物、诱导植物抗性等途径促进植物生长。本文以绿僵菌根际定植和对植物的促生效果以及分子机理为主要内容,对已有文献进行回顾梳理,并对目前研究局限和未来发展方向进行讨论,为绿僵菌与植物互作研究提供理论参考,同时为制备促生防虫于一体的新型生物制剂提供帮助。  相似文献   

6.
四株红树林促生菌的遗传分析鉴定及其促生能力   总被引:1,自引:1,他引:1  
陆俊锟  陈俊  康丽华 《微生物学报》2010,50(10):1358-1365
【目的】鉴定四株供试菌株的种属地位,了解菌株所具有的促进植物生长能力。【方法】运用nifH与16S rRNA基因序列对供试菌株进行遗传分析,采用钼锑抗比色法和乙炔还原法分别测定菌株的溶磷、固氮能力。通过接种试验验证菌株促进红树植物生长的能力。【结果】通过对菌株nifH与16S rRNA的同源性、系统发育树分析,HN011与需钠弧菌(Vibrio natriegens)的相似性最高,SZ7-1、SZ7-2与产酸克雷伯氏菌(Klebsiella oxytoca)的相似性最高。而SZ002在16S rRNA的系统发育分析中归属为类芽孢杆菌属(Paenibacillus sp.),却在nifH基因分析中与克雷伯氏菌(Klebsiella sp.)的相似性最高。供试菌株都具有较强的溶磷能力和高固氮酶活性。接种后植株有较好的生长表现,部分接种植株在干重、全氮、全磷含量等方面较对照有显著地增加(P0.05)。【结论】首次发现兼具溶磷-固氮两种能力的红树林植物促生菌,接种试验也表现菌株具有良好的促生能力,为红树林人工接种促生菌的应用提供了可靠的理论依据。  相似文献   

7.
铁载体是微生物在缺铁条件下分泌的小分子有机化合物,以获取铁元素维持其生长。细菌分泌的铁载体在拮抗植物病原菌和促进植物生长方面具有重要作用。本文总结了细菌铁载体拮抗植物病原真菌的营养和生态位竞争、诱导植物诱导性系统抗性、扰乱病原菌铁稳态的机制,以及促进植物生长的作用,以解释细菌分泌的铁载体在多功能微生物菌剂研制中的重要作用。  相似文献   

8.
两株具促生作用的苜蓿内生菌的分离纯化与鉴定   总被引:3,自引:1,他引:2  
【目的】分离具有植物促生功能的苜蓿内生菌。【方法】从苜蓿的新鲜组织中分离纯化菌株,进行16S r RNA基因序列分析,生理生化鉴定并检测内生菌对苜蓿的促生特性。【结果】获得两株苜蓿内生菌,成团泛菌ASR16和短小芽孢杆菌ALR33。两株菌株均能产生植物生长激素IAA和嗜铁素,能溶解磷,对苜蓿的促生作用明显。【结论】获得两株具有植物促生特性的苜蓿内生菌ASR16和ALR33,可作为微生物菌肥的研究基础。  相似文献   

9.
氢氧化细菌分离、筛选及促生机制研究进展   总被引:4,自引:0,他引:4  
氢氧化细菌是一类以氢作为电子供体,通过氧化H2获得能量并同化CO2的无机化能自养菌。近年来,发现作为豆科作物根际主要生理类群的氢氧化细菌促生作用明显,因而受到各国学者的广泛关注。氢氧化细菌在农业、环境保护和人类健康等领域有巨大的应用潜力。目前,由于人们对氢氧化细菌的分类、分离和筛选技术的认识不足,严重影响了氢氧化细菌的研究进程和水平。概述氢氧化细菌的分离及筛选方法,并着重论述了氢氧化细菌促生作用及促生机理的最新研究进展,最后探讨其应用前景。随着研究的深入,氢氧化细菌将受到各国学者的广泛关注。  相似文献   

10.
根际微生物组是决定农作物健康状况的关键因素之一,也是调节农作物与生物和非生物环境相互作用的重要因素。植物根际促生菌(plant growth-promoting rhizobacteria, PGPR)为农作物宿主提供了多种有益作用,通过化学交流以复杂的方式与农作物、土壤相互作用,进而促进农作物生长。本文综述了PGPR对农作物的促生机制、PGPR与农作物的互作及其在农业实践中的应用,并展望了PGPR在农业实践中应用的发展趋势,以期为今后PGPR的应用和研究提供新的思路和理论支撑。  相似文献   

11.
Fungal endophytes were isolated from surface sterilised leaf segments of five medicinal plants collected from Mandi district, Himachal Pradesh, India. A total of 373 fungal strains belonging to 15 fungal genera and 18 species, Aspergillus niger, A. flavus, A. clavatus, A. variecolor, Penicillium chrsogenum, Alternaria alternata, Curvularia lunata, Haplosporium sp., Phoma sp., Nigrospora sp., Colletotrichum sp., Cladosporium sp., Stemphylium sp., Fusarium sp., Geotrichum sp., Phomopsis sp., Trichoderma sp., Rhizopus sp. and some sterile mycelium were isolated from all the plants. The relative frequency, isolation rate and colonisation rates of endophytes were used to study the endophytic diversity. The results showed that the highest colonisation rate (93.05%) was observed in Adhathoda vasica, while it was 91.66% in Ocimum sanctum, 85% in Viola odorata, 82.81% Cannabis sativa and lowest (61.11%) in Withania somnifera. Moreover, reading the richness and diversity of the endophytic fungi, the highest was obtained for O. sanctum, W. somnifera and C. sativa having eight species each, while lowest (6 and 4) was obtained from A. vasica and V. odorata, respectively. As the role of endophytic organisms in defensive mechanisms of plants is now well established, the present study is an important step to find new and interesting endophytes among the medicinal plants.  相似文献   

12.
黄酮类化合物在药用植物中的分布   总被引:9,自引:0,他引:9  
将蕨类植物、裸子植物、被子植物的32个科的50种植物所含的黄酮类化合物列举出来,可以作为进一步开发药用价值以及进行植物分类的依据。  相似文献   

13.
Various rhizobacteria are known for their beneficial effects on plants, i. e. promotion of growth and induction of systemic resistance against pathogens. These bacteria are categorized as plant growth promoting rhizobacteria (PGPR) and are associated with plant roots. Knowledge of the underlying mechanisms of plant growth promotion in vivo is still very limited, but interference of bacteria with plant hormone metabolism is suggested to play a major role. To obtain new growth promoting bacteria, we started a quest for rhizobacteria that are naturally associated to Arabidopsis thaliana. A suite of native root-associated bacteria were isolated from surface-sterilized roots of the Arabidopsis ecotype Gol-1 derived from a field site near Golm (Berlin area, Germany). We found several Pseudomonas and a Microbacterium species and tested these for growth promotion effects on the Arabidopsis ecotypes Gol-1 and Col-0, and for growth-promotion associated traits, such as auxin production, ACC deaminase activity and phosphate solubilization capacity. We showed that two of the bacteria strains promote plant growth with respect to rosette diameter, stalk length and accelerate development and that the effects were greater when bacteria were applied to Col-0 compared with Gol-1. Furthermore, the capability of promoting growth was not explained by the tested metabolic properties of the bacteria, suggesting that further bacterial traits are required. The natural variation of growth effects, combined with the extensive transgenic approaches available for the model plant Arabidopsis, will build a valuable tool to augment our understanding of the molecular mechanisms involved in the natural Arabidopsis - PGPR association.  相似文献   

14.
Abstract

Bacterium Pseudomonas spp. olive green (OG) was isolated from marine water, yet, it was characterized as plant growth promoting bacterium (PGPB). Multiple plant growth promoting traits of OG isolate were determined in vitro. It was tested positive for Indole-3-acetic acid (IAA) production with 29 µg ml?1 of IAA yield, phosphate solubilization with 34 µg ml?1 solubilization of Tri-calcium-phosphate and it showed maximum of 32 µg ml?1 of ammonia production. OG isolate was affirming siderophore production, hydrocyanic acid (HCN) production and catalase production. 16S rRNA gene sequence comparison was used to identify the isolate which showed its closest neighbor to be Pseudomonas fluoroscens strain BCPBMS-1. Efficacy of this PGPB was tested on the seedling growth of two test plants chickpea and green gram. Both the test plants treated with OG-based talc bioformulation showed significant growth promotion. Chickpea showed enhanced overall fresh biomass by 24%, overall dry biomass by 27% was observed after 15 days of seeded in pots. Green gram showed enhanced overall dry biomass by 28% was observed after 10 days of seeded in pots.  相似文献   

15.
中国药用植物资源开发利用研究的回顾与展望   总被引:11,自引:0,他引:11  
本文对药用植物资源开发的方法学进行了讨论,并简要综述了近年来我国在药用植物资源开发利用研究方面的成就,还就药用植物资源开发利用中的一些重要问题:生物多样性的保护;资源数据库的建立及管理;新技术和新方法的引进以及中药外向过程中资源的宏观调控管理等进行了讨论。  相似文献   

16.
金明龙  冯利平   《广西植物》2005,25(6):544-548,538
对浙江新昌县植物资源作了系统调查。经鉴定并根据已掌握的资料,新昌县有药用维管植物155科 504属807种,其中蕨类植物20科34属51种,种子植物135科470属756种。按其药用功能划分成清热药、 解表药等十类,并对每一类的药用功能作了详细介绍。进一步发现在新昌药用植物中有22种属于国家级或 省级珍稀植物。最后对新昌县药用植物资源的保护和持续利用提出了建议。  相似文献   

17.
To feed all of the world's people, it is necessary to sustainably increase agricultural productivity. One way to do this is through the increased use of plant growth-promoting bacteria; recently, scientists have developed a more profound understanding of the mechanisms employed by these bacteria to facilitate plant growth. Here, it is argued that the ability of plant growth-promoting bacteria that produce 1-aminocyclopropane-1-carboxylate (ACC) deaminase to lower plant ethylene levels, often a result of various stresses, is a key component in the efficacious functioning of these bacteria. The optimal functioning of these bacteria includes the synergistic interaction between ACC deaminase and both plant and bacterial auxin, indole-3-acetic acid (IAA). These bacteria not only directly promote plant growth, they also protect plants against flooding, drought, salt, flower wilting, metals, organic contaminants, and both bacterial and fungal pathogens. While a considerable amount of both basic and applied work remains to be done before ACC deaminase-producing plant growth-promoting bacteria become a mainstay of plant agriculture, the evidence indicates that with the expected shift from chemicals to soil bacteria, the world is on the verge of a major paradigm shift in plant agriculture.  相似文献   

18.
陈欣  付锐锐  张鸿  李家儒 《生物资源》2018,40(5):443-449
尿苷二磷酸葡萄糖醛酸转移酶(UDP-glucuronosyltransferase,UGT)家族是植物体内最大的糖基转移酶家族。编码合成UGT的基因属于UGT基因家族。UGT催化的糖基化反应广泛地存在于药用植物次生代谢物质的合成过程中。作为代谢通路中的下游修饰,供体分子在UGT的催化下,将糖基连接到受体分子上。这一过程往往会改变终产物的理化及生物学性质,最终影响其实际的利用价值及利用方式。本文综述分析了药用植物UGT家族基因挖掘分析、功能验证和生产应用等方面近年来的研究进展。  相似文献   

19.
A great many Brazilian medicinal plants are used in wound healing. They are usually applied directly to wounds, somein natura as poultices, some as dried powders, and others as water extracts (teas) for bathing. Sixteen plants from the Atlantic Rain Forest of the State of Rio de Janeiro in Brazil were analyzed to determine the concentration of five minerals: silicon, manganese, iron, copper, and zinc to study their possible role in the healing processes. The analysis was performed in plant samples and in teas prepared from them. There appears to be a correlation between the healing effect of the plants and their content of these element.  相似文献   

20.
棕榈科植物种子内生细菌群落多样性的高通量测序分析   总被引:1,自引:0,他引:1  
【目的】探究棕榈科种子内生细菌群落组成及其随物种的差异。【方法】运用MiSeq高通量方法测定蒲葵、棕榈、加拿利海枣、山棕、软叶刺葵、短穗鱼尾葵及三药槟榔7种棕榈科种子内生细菌群落16S rRNA基因V3–V4区序列并进行生物信息学分析。【结果】7种测试种子中获得的V3–V4区有效序列数在2341–40671条之间,聚成97–590个操作分类单元(OTU),Shannon指数计算为1.35–2.94,以加拿利海枣种子最高,山棕种子最低;种群归类结果显示不同种子中测得的各级细菌分类阶层总数及组成不同,总丰度以厚壁菌门的肠球菌属最高,同为厚壁菌门的芽孢杆菌属次之;属级水平上,第一优势细菌属分别为:蒲葵种子(芽孢杆菌属,45.8%),棕榈种子(肠球菌属,51.2%),山棕种子(肠球菌属,12.1%),短穗鱼尾葵种子(肠球菌属,32.6%),三药槟榔种子(肠球菌属,42.9%),软叶刺葵种子(肠球菌属,28.3%),加拿利海枣种子(糖多孢菌属,31.2%)。各种子中次优势细菌属分别为:蒲葵种子(乳球菌属),棕榈、山棕及三药槟榔种子(类芽孢杆菌属),加拿利海枣种子(戈登氏菌属),软叶刺葵和短穗鱼尾葵种子(鞘脂单胞菌属);PICRUST基因预测显示各种子均包含多个与人体器官及人类疾病相关的KEGG功能模块。此外,各种子中均产生了丰度较高的外源物质降解、萜和聚酮合成、多糖合成等有益功能信息。【结论】棕榈科植物种子内生细菌群落多样性较为丰富,群落组成随物种不同而异。各种子内生细菌群体中普遍含多个与人和动物体相关的种群和功能信息,也定殖多种具有益功能性状的细菌类群,值得进一步研究。  相似文献   

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