1、

Thermophilic anaerobes are Archaea and Bacteria that grow optimally at temperatures of 50 ℃ or higher and do not require the use of O2 as a terminal electron acceptor for growth.

嗜热厌氧菌包括最佳生长温度在50℃以上的细菌或古菌,其生长不需要氧作为电子受体。

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2、

animals are eukaryotic and usually multicellular (although see myxozoa), which separates them from bacteria, archaea and most protists.

动物通常是多细胞真核生物(除了粘体动物亚门),使它们区别于细菌,古细菌和大多数原生生物。

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3、

the results showed the relative abundance of eubacteria is higher than that of archaea.

成熟厌氧污泥中,真细菌相对丰度大于古细菌。

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4、

the quantity of archaea was less than eubacteria, but increased gradually;

古细菌含量低于真细菌,但有逐渐增多的趋势;

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5、

the creatures are single-celled organisms called archaea which are able to thrive in an ecosystem where sunlight never penetrates.

这些可以在没有阳光的环境里茁壮生长的单细胞生物被称为古细菌。

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6、

We show here some examples in archaea and bacteria with different taxon levels.

我们在古细菌和真细菌中,分别给出了一些不同分类特异级别的单例.

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7、

They include Bacteria, Fungi Archaea and Protista.

他们包括细菌, 真菌以及原生生物.

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8、

The metabolic networks of 75 organisms including 8 eukaryote, 56 bacteria and 11 archaea were constructed based on existing metabolic databases.

基于已有的代谢网络数据库,重构了75个物种的全基因组代谢网络,其中包含8个真核生物、56个细菌和11个古菌物种。

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9、

Biodiversity of Culturable Halophilic Archaea Isolated from Tamarix Rhizosphere Soil in Lop Nur Region of XinJiang, China

新疆罗布泊地区柽柳属(Tamarix)植物根际土壤中可培嗜盐古菌多样性研究

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10、

Features of Methane Produced in Anaerobic Digestion and Analysis of Archaea Diversity

生活垃圾厌氧堆肥产甲烷及古细菌多样性分析

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11、

In this study, the whole research data was limited in archaea to examine whether a difference exists between substitution patterns in different domains.

本研究为了检验氨基酸替代模式是否在生物域间存在差异,我们将研究数据局限于古细菌生物域。

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12、

These microfossils displays the same form and aggregate structure that is characteristic of archaea/ sulfate reducing bacteria colonies.

这些化石形态和集合体结构表明可能是石化的甲烷氧化细菌和硫酸盐还原细菌。

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13、

Sequences related to putative ammonia-oxidizing Archaea were also detected in the deep layer of sediment sample in Lake Taihu.

同时发现,氨氧化古菌存在于太湖较深的底泥样品中。

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14、

In Escherichia coli, it takes part in conjugational recombination and DNA repair but is not as important as that in archaea.

在大肠杆菌中,RadA蛋白也参与了重组和DNA损伤修复过程,但远没有在古细菌中的功能那么重要。

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15、

Isolation and 16S rDNA sequence analysis of extremely halophilic archaea from Saline in Altun region

阿尔金山盐湖极端嗜盐古生菌的分离及16S rdna序列分析

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16、

In this dissertation, we reviewed the development of bacterial taxonomy, the study on halophilic archaea. and the structure, function and application of BR protein.

本文对细菌分类学、嗜盐古菌的研究和BR蛋白结构、功能和应用进行了概述。

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17、

The diversity of Archaea community associated with the leachate of a traditional municipal solid waste landfill was examined by cultivation-independent analysis.

传统垃圾填埋场渗滤液中古细菌群落的多样性通过不依赖于培养的分析而获得。

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18、

Composition of ammonia-oxidizing bacteria and ammonia-oxidizing archaea communities in paddy soils of different rice cultivars

不同品种水稻土壤氨氧化细菌和氨氧化古菌群落结构组成

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19、

Back in the lab, the sediments were fed methane, which triggered archaea growth-along with their viral parasites.

回到实验室后,向沉积物输入甲烷,激活了古生菌的生长,以及寄生它们的病毒。

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20、

And sediment samples brought carefully to the surface were found to contain bacteria and archaea.

科学家还发现从深海小心翼翼带到地表的沉积物样本里含有细菌和古代细菌。

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