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土壤细菌的英文

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"土壤细菌"怎么读用"土壤细菌"造句

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  • soil bacteria

例句与用法

  • Most often infected wounds are found to harbor ordinary soil-dwelling bacteria, such as the clostridia .
    大多数感染的伤口含有普通的土壤细菌,如梭菌。
  • Significant seasonal changes of microbial numbers were observed in surface horizon
    Cm深土壤细菌生物量有明显的季节性变化,从
  • In microbe composition the amount of bacteria was the most , in the next place was that of fungi , and that of actinomycetes was the least
    在土壤生物学性质方面,林地土壤细菌、真菌、放线菌和微生物总数均为表层大于底层,细菌占总数的绝大多数,其次为真菌,放线菌最少。
  • Soil bacteria could be used to help steady buildings against earthquakes , according to researchers at uc dais . the microbes can literally conert loose , sandy soil into rock
    据加利福尼亚?戴维斯大学研究者的研究,土壤细菌可以用来帮助稳定建筑物对抗地震。细菌能逐渐把松散的,沙土型土壤变成石头。
  • The natural place to seek such enzymes is in soil bacteria and fungi , as these aggregates , despite not being degraded in mammals , do not accumulate in soil in which animal carcasses are decaying , nor in graveyards where humans are decaying
    寻找这些酶的自然地方是土壤细菌和真菌,因为这些聚集物,尽管不能在哺乳动物中被降解,但不会积累在动物尸体腐朽的土壤中,也不会积累在人类腐尸的墓地中。
  • The number of soil bacterial , actinomycetes and fungus in red soils polluted by heavy metals decreased greatly compared with non - polluted soil samples . the order of sensitivity to heavy metals pollution was actinomycetes > bacteria > fungus
    镉、铅污染红壤微生物群落结构的研究结果亦表明,镉、铅严重污染破坏了土壤微生物区系,使土壤细菌、放线菌及真菌数量下降,其中放线菌对重金属毒性影响最为敏感,细菌次之,真菌受其毒性影响较少。
  • Presently , the scientist have made out some successes by using biotechnology and molecuology , for example , planting out regeneration shoots , culture suspended cell in ferment tank , screening mutant tissue with high content of flavonoids , cloning and sup - expression of key enzyme , restraining derivative pathway by anti - dna or anti - rna and inducing genetic transformated hairy root
    通过培养水母雪莲的发状根将是获得雪莲类黄酮极有前途的方法,目前还是一项待填补的空白。发根农杆菌( agrobacteriumrhizogenes )是一种革兰氏阴性土壤细菌,细胞内有200kb左右的双链闭环dna ? ri质粒( rootinducingplasmid ) 。
  • The percentage of autumn degradation bacteria was the biggest , it was 0 . 547 % . among degradation bacteria genus , the bacillus proportion in each season was the biggest , that was 44 . 44 % , 50 . 00 % , 48 . 15 % and 47 . 22 % in spring , summer , autumn and winter respectively , other bacteria genus ' s proportion were less than bacillus . this was probably related to the basic proterties of soil , the alternation of four seasons , the change of temprature and the difference of vegetation were fairly suitable to the growth of bacillus
    土壤细菌总数上,夏季的细菌数量最多,其次分别为春、秋、冬各季;在土壤中降解氧乐果的细菌数量上,夏季土壤中的降解菌株数量也最多,其次分别为春、秋、冬各季,土壤磷的含量与降解氧乐果细菌的数量之间并没有太大的相关性( r = 0 . 494 ) ;在降解菌占细菌总数百分比上,秋季降解菌株所占百分比最大,为0 . 547 % ;在降解菌株中,芽孢杆菌属( bacillus )在每一季节所占的比例都是最大的,春、夏、秋、冬分别为44 . 44 % 、 50 . 00 % 、 48 . 15 % 、 47 . 22 % ,其它菌属所占比例都比较少,这可能跟土壤的基本性状有关,春夏秋冬四季的轮换,气温的变化,植被的差异,耕作的不同,比较适合抗逆性较强的芽孢杆菌属( bacillus )的生长。
  • It has been wildly accepted that it is a good idea to search new genes from these uncultured microorganisms during the course of study to isolate new genes from total dnas prepared from uncultured bacteria in soil , we obtained a 4 . 7 - kb dna fragment that made e . coli host cells produce a red fluorescence light under exposure of ultraviolet ( uv )
    在研究和开发未能培养的微生物的过程中,从土壤细菌中克隆到一条全长4 . 7kb的dna片段,与质粒puc118连接后转入大肠杆菌jm109菌株中,其编码的产物可以使重组菌体在紫外线照射下呈现红色荧光。将基因称为红色基因( redgene ) ,含该基因的重组菌称为red - clone 。
  • 1 . ecological effects of long - term organophasphate pesticides contamination on soil microflora the long - term effects of organophosphate pesticides contamination on soil microflora were investigated in the present study . little difference in total counts of bacteria , actinomycetes and fungi was observed between the contaminated and the non - contaminated soil . compared with the control there were a slight decrease in total counts of free - living nitrogen - fixer and denitrifying bacteria and a significant increase in those of ammonifying and ammonia - oxidizing and nitrifying _ bacteria in the methylparathion contaminated soil
    一、甲基对硫磷长期污染对土壤微生物的生态学效应研究了有机磷农药甲基对硫磷长期污染对土壤微生物的影响,实验表明:土壤细菌、放线菌、真菌总的数量影响不大;自生固氮菌和反硝化细菌数量减少;氨化细菌、亚硝化细菌、硝化细菌的数量在污染土壤中却有所增加;与对照土壤相比,污染土壤呼吸作用下降了29 . 93 ;氨化作用和硝化作用强度得到增强。
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