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首页> 外文期刊>Journal of Microbiological Methods >Development of a simple root model to study the effects of single exudates on the development of bacterial community structure.
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Development of a simple root model to study the effects of single exudates on the development of bacterial community structure.

机译:开发一个简单的根模型以研究单个渗出物对细菌群落结构发展的影响。

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The plant root interface is a hot spot for microbial activities. Root exudates are the key compounds that drive microbial performance. However quality and amount of root exudates are highly dynamic in time and space, thus a direct influence of a single compound on a microbial community composition is fairly impossible to study in nature. Therefore it was the aim of this project to develop an artificial root model (ARM), and investigate the influence of three compounds which have often been described as root exudates acting as model compounds for carbohydrates, organic acids and amino acids (glucose, malic acid and serine) on the development of bacterial communities and time on the ARM based on 16S rRNA derived TRFLP pattern. The ARM consisted of a slide covered with low melting agarose, where 8 different compounds which have been described as typical root exudates were embedded. The ARMs were incubated in soil for 2, 5, 9 and 20 days, before the analysis of the developed bacterial community structure was done. The bacterial community composition was in good agreement after 9 days of incubation of the ARM in soil with the root associated microflora of Arabidopsis thaliana shortly before flowering. The single compounds of the exudates mix had different effects on the development of ARM derived bacterial communities. Whereas the experiments where glucose was omitted gave no significant differences in the development of bacterial communities over time compared to the ARM where the standard mixture of exudates had been applied, there was a pronounced effect visible mainly after two days of incubation of the ARM in the experiments where no malic acid was added to the exudate mixture. At later time points ARMs with standard exudates' mixture and those where malic acid had been omitted, the bacterial community composition did not differ. The experiments where serine was omitted mainly induced shifts in the bacterial community composition compared to the ARM with standard exudates' mixture at the latest sampling time point (20 days of incubation).
机译:植物根界面是微生物活动的热点。根系分泌物是驱动微生物性能的关键化合物。然而,根系分泌物的质量和数量在时间和空间上是高度动态的,因此自然界中几乎不可能研究单一化合物对微生物群落组成的直接影响。因此,本项目的目的是开发一种人工根模型(ARM),并研究三种化合物的影响,这些化合物通常被称为根分泌物,可作为碳水化合物,有机酸和氨基酸(葡萄糖,苹果酸)的模型化合物和丝氨酸)基于16S rRNA衍生的TRFLP模式在ARM上细菌群落的发育和时间。 ARM由覆盖有低熔点琼脂糖的载玻片组成,其中嵌入了8种不同的化合物,这些化合物被描述为典型的根系分泌物。在对发育的细菌群落结构进行分析之前,将ARM在土壤中孵育2、5、9和20天。开花前不久,ARM在土壤中与拟南芥根相关菌群一起温育9天后,细菌群落组成非常一致。渗出液混合物中的单个化合物对ARM衍生细菌群落的发育具有不同的影响。与使用标准渗出液混合物的ARM相比,省略葡萄糖的实验对细菌群落的发展没有明显的影响,但主要是在ARM中孵育了两天后才可见明显的效果。在没有将苹果酸加入渗出液混合物的实验中。在稍后的时间点,具有标准渗出物混合物的ARM和那些省略了苹果酸的混合物,细菌群落组成没有变化。与在最新采样时间点(孵育20天)使用标准渗出液混合物的ARM相比,省略丝氨酸的实验主要引起细菌群落组成的变化。

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