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acetic acid bacteria相关的网络例句

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Natural fermentation of corn in the process of lactic acid bacteria as the most important advantage of strain, the article on lactic acid fermentation process in detail the analytical results show that: from chemical constituents, the ferment of lower ash, soluble sugar, fat content, protein, starch proportion cases raising; from the structure of starch, amylose fermentation in the increase, in molecular weight amylopectin rice amylopectin close to the molecular weight of the development.

在玉米米粉制作的过程中,发酵的方法能改良玉米的性质使其具有可加工性、改善玉米的不良风味。玉米自然发酵的过程中,乳酸菌为最主要的优势作用菌种。对乳酸菌发酵的过程进行详细的解析表明:从化学成分上来讲,发酵作用降低了灰分、可溶性糖、脂肪的含量,使蛋白质、淀粉所占比例提高;从淀粉结构来讲,发酵使直链淀粉含量增加,支链淀粉分子量朝着接近大米支链淀粉分子量的范围发展。

The L-lactic acid production by anaerobic fermentation of lactic acid bacteria was studied.

1前言发酵法生产L-乳酸的菌种主要有乳酸杆菌属和根霉属[1]。

However, no significant effects on the populations of actinomycete, aerobic nitrogen fixing bacteria and kalium-solubilizing bacteria were observed.

与各自对照相比,转Bt基因棉对细菌和真菌生长繁殖有促进作用,对放线菌、好气固氮菌和钾细菌数量没有显著影响。

In different replant years, the quantity of bacteria, actinomycete and fungi and the proportion of each in total numbers were different, the quantities of bacteria and fungi increased with replant year increased, while, that of the actinomycete reduced along with replant years increasing.

不同栽培年限蘑菇覆土层土壤中的细菌、放线菌和真菌的数量及其在微生物总数中所占的比例不同:不同栽培年限的土壤样品中,细菌和真菌的数量随着栽培年限而增加,放线菌的数量随着栽培年限的增加而减少。

Results Causing the pathogen of the infection regard the Green's surname feminine gender rod bacteria as principle,occupying 90.2%,the escherichia coli is the most familiar to occupy 65% the next in order for transform the rod bactenia,viceescherichia coli,sewerage intestine rod bacteria,etc.of aerobacter aerogenes.

结果:引起感染的病原体以革兰阴性杆菌为主,占90.2%,大肠埃希菌最常见占65%,其次为变形杆菌、副大肠杆菌、阴沟肠杆菌、产气杆菌等。

Six bacteria named 1#、2#、3#、4#、5#、6# which can utilize diniconazole as sole carbon source were isolated from activated sludge of pesticide manufacturer.The results showed that all six bacteria were aerobiosis.

从生产烯唑醇的农药厂废水处理池的活性污泥中驯化、分离得到6株能以烯唑醇为唯一碳源生长的细菌,分别命名为1#、2#、3#、4#、5#、6#。

The rhizosphere soil microorganism and rhizosphere soil enzyme activity werepositive correlated with each other.Except aerobic bacteria and actinomycetes andfungi did not achieve significant or extreme significant correlation with urease,theother factors all achieved significant or extreme significantcorrelation.Besides,through a correlation analysis between rhizosphere agrobiologyand rhizosphere soil nutrient,except rapidly available K was negative correlation with urease and catalase,the other agrobiology factors were positive correlation with soilnutrient, aerobic bacteria and sucrase and catalase were extreme significantcorrelation with alkaline hydrolytic N and organism matter and rapidly available P;actinomycetes was extreme significant correlation with all soil nutrient factors;fungiwas extreme significant correlation with alkaline hydrolytic N and organism matterand rapidly available P, significant correlation with rapidly available K;urease wasextreme significant correlation with alkaline hydrolytic N, significant correlation withrapidly available P.

本试验所测定的根系土壤微生物与根系土壤酶活性间均呈正相关,除了好、气性细菌、放线菌、真菌与脲酶间未达到显著或极显著相关外,其余因子间均呈显著或极显著相关;此外,通过根系土壤生物学因子与根系土壤养分相关分析,发现除了速效K与脲酶、过氧化氢酶呈负相关外,其余生物因子与土壤养分因子间均呈正相关,其中,好气性细菌、蔗糖酶、过氧化氢酶与水解N、有机质和速效P极显著相关;放线菌与所有养分因子间均极显著相关;真菌与水解N、有机质和速效P极显著相关,与速效K显著相关;脲酶与水解N极显著相关,与速效P显著相关。

The number of bacteria, fungi, ammonifier and nitrobacteria were positively correlated with the biomass of growing roots and absorbing roots, while the number of nitrogen-fixing bacteria was negatively correlated with absorbing root biomass.

细菌、真菌、氨化细菌和硝化细菌数量与生长根和吸收根生物量之间显著正相关;固氮菌则仅与吸收根生物量显著负相关;而纤维素分解菌与根系生物量的相关关系不显著。

Results: Variations of heterotrophic bacteria, vibro, denitrifying bacteria, ammonifier, sulfatereductin...

结果:总异养菌、弧菌、反硝化细菌、氨化细菌、硫酸还原菌、总大肠菌群和粪大肠菌群在水体、底泥和梭子蟹体内具有相同的数量变化趋势。

The number of bacteria、fungi、ammonifier、cellulose-decomposing bacteria and the activity of urease、cellulosase、proteinase and phosphatase in organic and inorganic mixed substrates were significantly higher than that in inorganic mixed substrates.

有机无机混合基质中的细菌、真菌、氨化菌、纤维素分解菌总数及尿酶、纤维素酶、蛋白酶、磷酸酶活性均显著高于无机混合基质的。

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