755 resultados para ASPERGILLUS-NIDULANS
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本文筛选出一株能利用木糖产乙醇的丝状真菌Z7,对其利用木糖和半纤维素水解产物产乙醇的发酵条件进行了研究,并对Z7 利用玉米芯产木聚糖酶的条件进行了优化。全文分为三部分: 第一部分:目标微生物筛选、纯化及系统发育分析。以木糖为唯一碳源,采用梯度稀释和平板化线法从高温、中温酒曲中分离到16 株能利用木糖良好生长的丝状真菌;通过发酵试验复筛,获得一株能产乙醇的丝状真菌Z7;综合形态学和ITS 序列分析,初步鉴定为Aspergillus flavus。 第二部分:Z7 的乙醇发酵条件研究。以木糖为碳源,通过单因素试验确定最佳氮源和发酵温度;通过正交试验及SPSS 软件分析得到了不同N、P、K 成分对乙醇、残糖和菌体干重的影响。获得最佳的发酵条件为:(g/L)木糖50,尿素1, NH4NO3 1, K2HPO4 2 , KCl 0.5 , MgSO4.7H2O 0.5 , NaNO3 1 , pH 自然,培养温度33 ℃。以玉米芯半纤维素稀酸水解液为底物进行乙醇发酵,根据稀酸水解的单糖释放量和乙醇产量,确定115 ℃,1 h 为最佳玉米芯预处理条件;结合最佳发酵条件,添加1 g/L 的吐温20 能获得最大的乙醇浓度8.31 g/L。因此,Aspergillus flavus Z7 能利用半纤维素水解产物产乙醇,其中木糖的利用率80%以上。 第三部分:Z7 利用玉米芯产木聚糖酶条件优化。Aspergillus flavus Z7 在具有产乙醇能力的同时还具有产木聚糖酶的能力。本文通过单因素和正交试验得到最佳产酶培养基组分为:(g/L)玉米芯20,尿素2, 酵母膏2.5, K2HPO4 5,NaNO31, MgSO4.7H2O 1。单因素试验表明,用纱布代替塑料布密封摇瓶封口能显著提高产酶量;Z7 在碱性条件下具有更强的产酶性能。在最优条件下发酵,能产生最大木聚糖酶活122.23IU/mL。通过薄层分析,验证了Z7 产生的木聚糖酶具有水解木聚糖生成木糖及木寡糖的能力。 A strain of filamentous fungus which can produce ethanol by using the xylose was isolated in this research. The ethanol fermention conditions from xylose and dilute-acid hydrolyzate of the corn core were studied. The conditions of xylanase production by Z7 were also optimized. The paper involved three parts. Part1: Isolation, purification and phylogenetic analysis of the microbe. By using xylose as the single carbon source and the pla te streaking method, several filamentous fungi were isolated from the wine starter; through the fermentation test, a filamentous fungus Z7 which can produce ethanol was further recognized; furthermore, according to the morphologic observation and ITS seque nces analysis, Z7 was identified as Aspergillus flavus at the first step. Part2: Research on the condition of ethanol fermentation by Z7. By single factor experiment, the optional nitrogen resource and temperature of the fermentation were fixed; meanwhile, through the orthogonal array tests and the analysis of statistic software SPSS, the optional component of the culture medium and the fermentation condition were organized as follows: (g/L) xylose 50, urea 1, NH4NO3 1, K2HPO4 2, KCl 0.5 , MgSO4.7H2O 0.5, NaNO31, pH nature, temperature 33℃. Based on these optimal parameters, the fermentation of dilute-acid hydrolyzate of the corn core was carried on by Z7. According to the quantities of released sugar monomers and content of the ethanol, 115℃ in 1h is the best pretreatment condition; the maximal ethanol content can be obtained when 1g/L Tween 20 was added to. Therefore, the filamentous fungus Aspergillus flavus can use the hydrolysate of hemicellulose to produce ethanol, and the rate of xylose utilization was over 80%. Part3: Optimization of Z7’s xylanase producing condition from corn core. Aspergillus flavus Z7, which can utilize xylose or the hydrolysate of hemicellulose to produce ethanol, also had the ability of xylanase production. The optional component of the culture medium were fixed by the single factor experiment and the orthogonal array tests, and they were organized as follows: (g/L) corn core 20, Urea 2, Yeast extract 2.5, K2HPO4 5, NaNO31, MgSO4.7H2O 1; it was testified by the single factor experiment that sealing the shaking flasks with pledget other than plastic paper can obviously increase the xylanase activity; moreover, Z7 showed better xylanase production ability when in the alkali environment. Under the optional fermentation condition, the maximal xylanase activity 122.23IU/mL was proved. Through the analysis of thin- layer chromatography (TLC), the ability of xylanase from Z7, which can hydrolyze xylan to xylose monomer and oligomer, was vividly displayed.
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本文主要研究了泸州老窖古酿酒作坊内外环境空气真菌和空气细菌的群落结构和分布特征。结果如下: 作坊内外环境空气微生物浓度差别显著,并随季节变换而变化,春、夏季微生物浓度较高,秋、冬季较低,空气真菌在夏季达到最高,细菌在春季最高。 古作坊内外环境检测到的真菌均为16 属,但优势菌属不同,作坊外的优势菌属为青霉属(Penicillium)、曲霉属(Aspergillus)、无孢菌(non-sporing)、枝孢霉属(Cladosporium)和链格孢属(Alternaria);而作坊内优势菌属为曲霉属、青霉属、酵母菌(Yeast)、无孢菌,作坊内还含有较高浓度的根霉属(Rhizopus)、毛霉属(Mucor)、短梗霉属(Aureobasidiu),枝孢霉属和链格孢属等,曲霉属、酵母菌、根霉属、毛霉属为古酿酒作坊重要的酿酒真菌,青霉属、链格孢属为酿酒不利菌群。对古作坊内曲霉属进行了初步鉴定,主要是小冠曲霉(A.cristatellus)、米曲霉(A.oryzae)、黑曲霉(A.niger)和白曲霉(A.cadidus)。 空气细菌10 属21 种,作坊内外环境的优势菌属均为芽孢杆菌属(Bacillus)、微球菌属(Micrococcus)、葡萄球菌属(Staphylococcus)、假单胞菌属(Pseudomonad),其中芽孢杆菌属在作坊内占有绝对的优势,浓度比在40℅以上,是古酿酒作坊重要的酿酒细菌,另外还检测到较高浓度的乳酸杆菌(lactobucillus),这类菌容易使酒味发涩发苦,为酿酒不利菌。 作坊内外环境空气微生物表现出明显的交流现象。作坊内,青霉属、枝孢霉属、链格孢属、葡萄球菌属等杂菌占有一定比例;而在作坊外,芽孢杆菌属、曲霉属、根霉属(Rhizopus)、酵母菌等处于相对较高水平,绿化环境较好的营沟头作坊内的短梗霉属,枝孢霉属和链格孢属等杂菌含量低于什字头和新街子作坊。 The community structure and distribution characteristic of airborne microbes was investigated in ancient brewage workshops of luzhoulaojiao. The results are as follows: The concentration of airborne microbes was different in interior and exterior environment of ancient workshops, and also varied by seasons. microbial concentration was higher in spring and summer, and lower in fall and winner. The highest levels of airborne bacteria was in spring, but the fungal’s in summer. The identified genus of fungi were 16 in interior and exterior environment of the ancient workshops. But the dominant genus were different , The advantage genus in the interior were Aspergillus, Yeasts, Penicillum and Nonsporing and in the exterior were Penicillum, Nonsporing, Cladosporium, Aspergillus and Aureobasidiu. Rhizopus ,mucor, Aureobasidiu, Cladosporium, Alternaria and all also were at a higher level. Among these, Aspergillus, Yeasts, Rhizopus ,mucor are important vintage flora . Penicillum, Alternaria do harm to vintage. Aspergillus of ancient workshops was identified , the preponderant aspergillus species were A.cristatellus, A.oryzae, A.niger and A.cadidus in ancient brewage workshops. 10 genus 21 species bacteria were identified, the advantage genuses among the interior and exterior of the three workshops were bacillus, microccus, Staphylococcus Pseudomonas. Bacillus, which account for beyond 40℅ of the total bacteria concentration in all sampling pots, was the most dominant genus. Lactobacillus was identified at a high level in ancient workshops, it makes spirit taste bitter and astringent. So it is not a kind of good bacterium for vintage. The fungus in the interior and exterior atmosphere characterized intercommunion phenomenon. Obviously, the concentration of profitless fungus such as Penicillum, Cladosporium, Alternaria appeared in the interior, and the fungus such as Bacillus, Aspergillus, Rhizopus and Yeasts in the exterior were at a relatively high level. the harmfull fungus in yinggoutou workshops such as Aureobasidiu, Cladosporium, Alternaria and all were lower than shenzitou and xinjiezi workshops.
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采用微生物菌落计数方法和Pearson相关性分析,以辽河油田锦采污水处理厂稠油废水为对象,研究了不同季节稠油废水中优势微生物的种群组成及其变化规律。结果表明,在稠油废水处理过程中微生物种群组成及其作用均以细菌为主,真菌次之,放线菌最小;细菌菌落形态多样性指数(H′)与均匀度指数(E)均能较准确地反映废水中的细菌多样性,但不能反映水质状况,不宜作为该水质评价的生物指标;细菌数量与总石油烃(TPH)和COD均呈强正相关,统计学上关系显著,适宜作为废水水质评价的生物指标;经鉴定,废水中的优势菌株为液化金杆菌(Aureobateriumliquefaciens)和弗氏丙酸杆菌(Propionibacterium freudenreichii),主要真菌为青霉属(Penicillium)、曲霉属(Aspergillus)、木霉属(Trichoderma)和交链孢霉属(Alternaria)。
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In this paper, it was found that glucose oxidase (GOD) has been stably immobilized on glassy carbon electrode modified with mesoporous carbon FDU-15 (MC-FDU-15) and Nafion by simple technique. The sorption behavior of GOD immobilized on MC-FDU-15 matrix was characterized by transmission electron microscopy (TEM), ultraviolet-visible (UV-vis), FTIR, respectively, which demonstrated that MC-FDU-15 could facilitate the electron exchange between the active center of GOD and electrode. The direct electrochemistry and electrocatalysis behavior of GOD on the modified electrode were characterized by cyclic voltammogram (CV) which indicated that GOD immobilized on Nafion and MC-FDU-15 matrices display direct, reversible and surface-controlled redox reaction with an enhanced electron transfer rate constant of 4.095 s(-1) in 0.1 M phosphate buffer solution (PBS) (pH 7.12).
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Cultivation of the endophytic fungus Chaetomium globosum, which was isolated from the inner tissue of the marine red alga Polysiphonia urceolata, resulted in the isolation of chaetopyranin (1), a new benzaldehyde secondary metabolite. Ten known compounds were also isolated, including two benzaldehyde congeners, 2-(2 ',3-epoxy-1 ',3 '-heptadienyl)-6-hydroxy- 5-(3-methyl-2-butenyl) benzaldehyde (2) and isotetrahydroauroglaucin (3), two anthraquinone derivatives, erythroglaucin (4) and parietin (5), five asperentin derivatives including asperentin ( 6, also known as cladosporin), 5 '-hydroxy-asperentin-8-methylether (7), asperentin-8-methyl ether (8), 4 '-hydroxyasperentin (9), and 5 '-hydroxyasperentin (10), and the prenylated diketopiperazine congener neoechinulin A (11). The structures of these compounds were determined on the basis of their spectroscopic data analysis (H-1, C-13, H-1-H-1 COSY, HMQC, and HMBC NMR, as well as low- and high-resolution mass experiments). To our knowledge, compound 1 represents the first example of a 2H-benzopyran derivative of marine algal-derived fungi as well as of the fungal genus Chaetomium. Each isolate was tested for its DPPH (1,1-diphenyl-2-picrylhydrazyl) radical-scavenging property. Compounds 1-4 were found to have moderate activity. Chaetopyranin (1) also exhibited moderate to weak cytotoxic activity toward several tumor cell lines.
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Marine Streptomyces are potential candidates for novel natural products and industrial catalysts. In order to set up biosynthesis approach for a holomycin-producing strain M095 isotated from Jiaozhou Bay, China, a genetic transformation system was established using intergeneric conjugation. The plasmid pIJ8600 consists of an origin of replication for Escherichia coli, a phage integrase directing efficient site-specific integration in bacterial chromosome, thiostrepton-induced promoter and an attP sequence. Using E. coli ET12567 (pUZ8002) carrying pIJ8600 as a conjugal donor, while it was mated with strain M095, pIJ8600 was mobilized to the recipient and the transferred DNA was also integrated into the recipient chromosome. The frequency of exconjugants was 1.9 +/- 0.13 x 10(-4) per recipient cell. Analysis of eight exconjugants showed pIJ8600 was stable integrated at a single chromosomal site (attB) of the Streptomyces genome. The DNA sequence of the attB was cloned and shown to be conserved. The results of growth and antimicrobial activity analysis indicated that the integration of pIJ8600 did not seem to affect the biosynthesis of antibiotics or other essential amino acids. To demonstrate the feasibility of above gene transfer system, the allophycocyanin gene (apc) from cyanobacterium Anacystis nidulans UTEX625 was expressed in strain M095, and the results indicated heterologous allophycocyanin could be expressed and folded effectively. (c) 2006 Elsevier GmbH. All rights reserved.
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Cultivation of the fungal strain Eurotium rubrum, an endophytic fungus that was isolated from the inner tissue of stems of the mangrove plant Hibiscus tiliaceus, resulted in the isolation of two new dioxopiperazine derivatives, namely, dehydrovariecolorin L (1) and dehydroechinulin (2), together with eight known dioxopiperazine compounds including variecolorin L (3), echinulin (4), isoechinulin A (5), dihydroxyisoechinulin A (6), preechinulin (7), neoechinulin A (8), neoechinulin E (9), and cryptoechinuline D (10). The structures of the isolated compounds were determined by extensive analysis of their spectroscopic data as well as by comparison with literature. Compounds 1, 2, 9, and 10 were investigated for their a,a-diphenyl-beta-picrylhydrazyl (DPPH) radical-scavenging activity. In addition, the new compounds, 1 and 2, were evaluated for their cytotoxic activity against the P-388, HL-60, and A549 cell lines.
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作者所在的课题组,自1998年以来从胶州湾海泥中陆续分离了800株海洋放线菌,并从4株放线菌中分离出了12个新结构活性化合物。选择产生新颖抗肿瘤抗生素的海洋放线菌M045和M048,产全霉素的海洋放线菌M095和产蒽醌类化合物的海洋放线菌M097为研究材料,建立了海洋放线菌的遗传转化体系,为海洋放线菌的遗传工程操作及天然化合物组合生物合成奠定了基础。 (1)通过接合转移建立了菌株M045的遗传转化体系。用来源于蓝藻Anacystis nidulans UTEX625的别藻蓝蛋白基因验证了转化体系的有效性。通过PCR及基因组步移方法获得长度为1709bp的部分聚酮合成酶(PKS)基因,分析其同放射菌素基因具有同源性,利用基因中断插入失活该基因,但未获得突变株。因此尝试通过反向遗传学方法,克隆该菌株中新骨架抗肿瘤抗生素——中国霉素的生物合成基因簇,本研究已经构建了该菌株Fosmid基因组文库,对基因组文库的筛选工作正在进行中。 (2)利用PEG-介导的质粒pIJ702转化原生质体和接合转移两种方法均成功获得菌株M048的转化子,其中接合转移率高达10-4。菌株M048来源于高盐的海洋环境,维持原生质体所需渗透压与模式菌株—变铅青链霉菌(Streptomyces lividans)有很大差异,本研究对菌株M048原生质体形成和再生的各种因素进行了优化,获得了渗透压稳定剂蔗糖最佳浓度为0.4M。 质粒pIJ8600整合于菌株M048染色体上,对该转化株的抑菌活性、薄层层析(TLC)以及HPLC-MS进行了分析。结果表明,同野生菌株相比,该转化株对7种受试菌的抑菌活性显著增强,TLC显示差异的化合物条带,HPLC-MS显示化合物组分有差异。因此质粒pIJ8600的整合,引起菌株次级代谢产物生物合成途径的改变,使有抑菌活性的化合物大量累积。 从菌株M048染色体上克隆获得了1196bp的部分PKS基因,通过基因中断插入失活该基因,结果显示M048突变株次级代谢产物抑菌活性增强,HPLC分析发现显著差异。初步分析该PKS基因的中断使菌株体内某些生物合成途径受阻,而大量合成抗菌活性强的chandrananimycin C,或者产生了抑菌活性强的其它化合物。 (3)本研究成功建立了菌株M095的接合转移体系。M095/pIJ8600转化株的生物学活性分析并未发现差异,表明该菌株染色体上的整合位点(attB)是中性(neutral)的。通过PCR以及基因组步移的方法克隆获得了该菌株的部分糖基转移酶基因,该基因中断突变株对4株受试菌的抑菌活性增强,HPLC显示有差异,表明该糖基转移酶基因参与了菌株M095活性次级代谢产物的生物合成过程。 (4)对于菌株M097,用接合转移法成功获得了转化子。实现了别藻蓝蛋白基因的重组表达,并纯化了表达产物,体外试验表明其具有清除羟基自由基能力。结果表明来源于蓝藻的外源基因可以在海洋放线菌体内有效表达和正确折叠,初步验证了本研究所建立的海洋放线菌遗传转化体系的稳定性及有效性。对M097/pIJ8600转化株的生物学活性分析,未发现差异,表明该菌株染色体上的整合位点是中性的。 本论文首次将基因工程技术引入四株海洋放线菌,建立了海洋放线菌自身的基因转移系统,为利用基因工程技术改造海洋放线菌的天然化合物生物合成途径提供了方法。对部分PKS基因中断突变株的生物学活性及化学分析,初步揭示了通过遗传转化方法进行化合物组合生物合成的可行性。
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海洋微生物拥有丰富多样的次生代谢途径,其中海洋生物内生真菌次生代谢产物研究日益受到天然产物化学界的重视。本论文以菌丝体生物量、发酵产物重量、抗菌与细胞毒活性、薄层色谱分析结果以及高效液相色谱分析结果等为评价依据对采自青岛沿海的13株海藻内生真菌在四种液体培养基上的静置发酵产物进行了综合评价,并从中选择了黑曲霉Aspergillus niger EN-13(分离自褐藻囊藻Colpomenia sinuosa)和杂色曲霉A. versicolor EN-7(分离自褐藻鼠尾藻Sargassum thunbergii)两株真菌进行了30升规模发酵(分别采用GPYM培养基和PDB培养)和化学成分的研究,对分离得到的大部分化合物进行了初步的生物活性筛选。 发酵提取物采用常规的硅胶柱层析、反相硅胶柱层析,凝胶Sephadex LH-20柱层析、制备薄层层析、半制备高效液相色谱以及重结晶等分离手段,得到单体化合物。利用各种现代波谱技术(IR、UV、EI-MS、FAB-MS、HR-ESI-MS、1H-NMR、13C-NMR、DEPT、1H-1H COSY、HSQC、HMBC等)并结合化学方法从两种菌株发酵提取物中鉴定了55个化合物的结构。其中从菌株A. niger EN-13分离鉴定了31个化合物,发现9个新化合物,包括2个鞘酯类化合物(AN-1~2)、3个萘并-γ-吡喃酮类化合物(AN-3~5)、3个苯乙基取代的α-吡喃酮类化合物(AN-17, AN-19~20)和1个甾体Diels-Alder加成产物(AN-21),另有1个新的天然环二肽(AN-27)被分离鉴定;从菌株A. versicolor EN-7分离鉴定了24个化合物,发现2个新化合物,为蒽醌AV-12与AV-17,另外,从前一菌株(A. niger EN-13)中鉴定的2个新鞘酯类化合物(AN-1~2)在A. versicolor EN-7中也被再次分离到。 对大部分单体化合物进行了抗菌活性、DPPH自由基清除活性和细胞毒活性测试。结果显示新化合物AN-1、AN-5和AN-20具有弱或中等强度的抑制白色念珠菌生长的活性,AN-4、AN-5、AN-21显示了弱或中等强度的抑制黑曲霉生长的活性,AV-12、AV-17显示了弱的抑制大肠杆菌生长的活性。在DPPH自由基清除活性筛选中,AN-5显示了中等强度的活性,其EC50为109.3 mM,与阳性对照BHT相近(EC50为81.8 mM)。其它部分已知化合物在抗菌和DPPH自由基清除活性的筛选中也显示了弱或中等强度的活性。在针对人肝癌细胞株SMMC-7721和人肺腺癌细胞株A549的体外细胞毒活性筛选中,所测样品均未显示显著活性。
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微生物与矿物间的相互作用是自然界中广泛发生的一种地质作用,微生物直接参与了自然界的物质循环,微生物对矿物风化作用的过程和机理与矿物种类、菌种及环境条件密切相关。目前还缺乏对矿物风化微观过程及风化过程中微生物生理生化特征的研究资料,随着分子生物学理论与技术的快速发展,用地球化学结合微生物学与分子生物学的理论和方法来综合研究微生物的矿物风化过程已成为可能。从分子水平和微观作用过程研究其风化过程与机理,理解微生物与矿物界面之间的相互作用及其反馈机制,是表生作用过程中生物地球化学的重要研究内容。 选用胶质芽孢杆菌(Bacillus mucilaginosus)、黑曲霉(Aspergillus niger)和青霉(Penicillium sp.),以磷矿石和方解石为例,探讨实验条件下微生物对矿物的风化作用过程与机理。微生物对矿物风化作用具有能耗低、污染小和流程短等特点,充分利用这些特点是解决土壤中无效磷的有效利用、磷矿资源的开发以及减少环境污染等问题的有效途径,对矿产资源的可持续利用和建立健康的生态环境具有十分重要的意义。采用离子色谱、ICP-OES、XRD、TEM、EDS、2-DE、电子探针和MC-ICP-MS等分析测试手段,研究微生物对矿物的风化过程与机理,得到如下结果: (1) 在黑曲霉对磷矿石风化过程中,由黑曲霉生长引发的生物机械破坏作用和生物化学降解作用是对磷矿石风化的主要趋动力,包括菌丝生长对矿物的穿插作用以及机械剥蚀作用;此外,菌体及生物大分子形成生物膜覆盖在矿物表面形成易于发生生化降解的微环境,有机酸络合Ca生成次生矿物草酸钙促进了磷矿石的风化。磷矿石直接与菌体接触所发生的风化作用强于磷矿石装入透析袋中的间接风化作用。 (2) 在胶质芽孢杆菌对磷矿石的风化过程中,菌体及其胞外多糖类物质在矿粉表面形成生物膜、菌体生长、代谢产物及有机物的机械剥蚀破碎作用等是造成矿物风化的重要原因;磷矿石直接与菌体接触进行的风化作用强于磷矿石装入透析袋中的间接风化作用。 (3) 黑曲霉对磷矿石的风化作用强于胶质芽孢杆菌,两者对磷矿石进行风化时,生物物理风化作用是导致矿物风化的主要因素;胶质芽孢杆菌风化磷矿石的过程中没有草酸钙的产生。 (4) 胶质芽孢杆菌对磷矿石的风化过程中,菌体蛋白质的表达发生变化,蛋白质的量与质的变化与磷矿石的风化密切有关。磷矿石的加入导致菌体生理代谢途径改变以适应环境的变化,并分泌相关的蛋白质导致矿物的风化。 (5) 采用Sr同位素示踪研究黑曲霉与青霉对磷灰石和方解石混合物的风化差异。黑曲霉作用混合矿物的初期,培养液pH值相对较低,对其中方解石有风化作用;中后期由于pH值升高,对磷灰石有较强的风化作用,对磷灰石的风化是由黑曲霉产生的大分子有机物对磷灰石中Ca络合的结果。青霉与混合矿物发生相互作用时,在最初的很短时间内青霉对磷灰石有风化作用,但对方解石的风化作用却表现在整个风化作用时间段,相比而言,青霉对磷灰石的风化作用不明显。这种风化差异与真菌的生物学特性有关,并表现为微生物对矿物风化的选择性。 本项研究对进一步认识土壤植被生态系统中的磷循环规律和循环过程中微生物所起的作用,以及用微生物风化作用的方式促进磷矿资源开发利用具有重要理论和实际意义。
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A madeira é o material mais utilizado para embalagem de hortaliças noBrasil, principalmente devido ao seu baixo custo e alta resistênciamecânica. O objetivo deste trabalho foi estimar a absorção e a perdaprogressiva de água de ripas de madeira de Pinus utilizadas namontagem de caixas do tipo "K" em três condições de umidade relativae determinar o crescimento de fungos em sua superfície. O experimentofoi conduzido no Laboratório de Pós-Colheita da Embrapa Hortaliças, emBrasília-DF, em 2003. Trinta ripas novas de madeira de Pinus (52 x 6 x0,6cm) foram pesadas individualmente, imersas em água durante 1h epesadas novamente para avaliar a absorção de água. Em outroexperimento, dez ripas foram incubadas ao acaso em cada uma das trêscâmaras úmidas (61%, 86% e 94% UR) mantidas a 25oC (±2oC). A perda progressiva de água foi avaliada por pesagens diárias das ripasindividualmente e o desenvolvimento de fungos na madeira foi avaliadocom uma escala de notas (0-3) durante oito dias. A madeira nova dePinus pode absorver até 38% de seu peso em água, e permanecerúmida durante vários dias de acordo com a condição dearmazenamento. A umidade relativa do ambiente afetou a taxa de perdade água diária da madeira, estimada em 4,7%, 2,5% e 1,0%respectivamente a 61% UR, 86% UR e 94% UR, e ao final de oito diasalcançou 37,5%, 19,9% e 7,9%, respectivamente. Os fungospredominantes foram Trichoderma harzianum e Rhizopus stolonifer, mastambém observou-se crescimento de Aspergillus sp. e Penicillium sp.
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2000
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Material necessário para o Blotter Test; Procedimentos; Alternaria sp.; Aspergillus sp.; Cercospora kikuchii; Cercospora sojina; Chaetomium sp.; Colletotrichum truncatum; Curvularia sp.; Diaporthe sp.; Fusarium sp.; Glomerella glycines; Helminthosporium sp.; Macrophomina phaseolina; Myrothecium sp.; Nematospora corylli; Penicillium sp.; Peronospora manshurica; Pestalotia sp.; Phomopsis sp.; Rhizoctonia solani; Rosellinea sp.; Septoria glycines; Trichothecium roseum.
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A importância da patologia de sementes reside no fato de que aproximadamente 90% das culturas utilizadas para a alimentação são propagadas por semente. Dentre essas, nove são consideradas de importância primordial: soja, trigo, arroz, milho, feijão, amendoim, sorgo, cevada e beterraba açucareira.Todas essas culturas podem ser afetadas por patógenos muito agressivos transmitidos através da semente. Assim, o teste de sanidade de semente pode ser considerado como "medicina preventiva", tanto nos programas de quarentena quanto no sistema de produção de semente certificada. Nesta publicação, em sua primeira parte, são abordados os principais aspectos da patologia de sementes, como os seus históricos no mundo e no Brasil, os diferentes métodos utilizados e os fatores que podem causar variação nos resultados dos testes. Em sua segunda parte, são discutidos, em detalhe, os principais patógenos causadores de doenças na cultura da soja que são transmitidos pela semente. Dentre esses, destacam-se, Phomopsis sp. e Fusarium semitectum, causadores de problemas de germinação no laboratório quando ocorrem chuvas durante as fases de maturação e colheita da semente (podridão de semente); Diaporthe phaseolorum f.sp. meridionalis (Phomopsis meridionalis) (cancro da haste); Colletotrichum truncatum (antracnose); Cercospora kikuchii (mancha púrpura); Cercospora sojina (mancha olho-de-rã); Sclerotinia sclerotiorum (podridão branca); Sclerotium rolfsii (tombamento e morte de plantas); Macrophomina phaseolina (podridão de carvão); Rhizoctonia solani (tombamento) e Aspergillus spp. (A. flavus) que, além de ser considerado fungo de armazenagem, é responsável pela podridão da semente no solo, quando a semeadura é feita em solos com baixa disponibilidade de água, sem o tratamento da semente com fungicida. Finalmente é discutida a importância do tratamento de semente de soja com fungicidas, cuja tecnologia, desde a safra 2001/02, vem sendo utilizada em mais de 93% da área semeada com soja no Brasil.
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Procedimento para identificação dos fungos das sementes de trigo; Descrição diagnostica dos principais fungos das sementes de trigo; Sclerotium Tode; Rhizoctonia DC; Chaetomium Kunze; Pleospora Rabenh; Sporobolomyces Kluy. & Niel; Rhodotorula Harrison; Phoma Sacc.; Septoria tritici Rob; Stagonospora nodorum (Berk.) Cas. & Germ.; Stagonospora avenae (Frank) Bisset f. sp. triticae; Colletotrichum graminicola (Ces.) Wilson; Fusarium tricinctum (Corda) Sacc; Fusarium moniliforme Sheldon; Fusarium avenaceum (Fr.) Sacc; Fusarium acuminatum Ell. & Kellerm; Fusarium equiseti (Corda) Sacc.; Fusarium graminearum Schw.; Mucor Micheli; Rhizopus Ehrenb; Aspergillus Link.; Penicillium Link.; Alternaria Nees; Epicoccum Link; Cladosporium Link; Nigrospora Zimm; Curvularia Boedijn; Drechslera tritici-repentis (Died.) Drech; Bipolaris sorokiniana (Sacc. in Sorok.) Shoem; Chave sistemática dos principais fungos de sementes de trigo; Ilustrações dos principais fungos encontrados em sementes de trigo.