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Spatial Distribution Patterns of Root-Associated Bacterial Communities Mediated by Root Exudates in Different Aged Ratooning Tea Monoculture Systems

机译:不同衰老再生茶单作系统中根系分泌物介导的根系相关细菌群落的空间分布格局

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摘要

Positive plant–soil feedback depends on beneficial interactions between roots and microbes for nutrient acquisition; growth promotion; and disease suppression. Recent pyrosequencing approaches have provided insight into the rhizosphere bacterial communities in various cropping systems. However; there is a scarcity of information about the influence of root exudates on the composition of root-associated bacterial communities in ratooning tea monocropping systems of different ages. In Southeastern China; tea cropping systems provide the unique natural experimental environment to compare the distribution of bacterial communities in different rhizo-compartments. High performance liquid chromatography–electrospray ionization–mass spectrometry (HPLC–ESI–MS) was performed to identify and quantify the allelochemicals in root exudates. A high-throughput sequence was used to determine the structural dynamics of the root-associated bacterial communities. Although soil physiochemical properties showed no significant differences in nutrients; long-term tea cultivation resulted in the accumulation of catechin-containing compounds in the rhizosphere and a lowering of pH. Moreover; distinct distribution patterns of bacterial taxa were observed in all three rhizo-compartments of two-year and 30-year monoculture tea; mediated strongly by soil pH and catechin-containing compounds. These results will help to explore the reasons why soil quality and fertility are disturbed in continuous ratooning tea monocropping systems; and to clarify the associated problems.
机译:植物-土壤的积极反馈取决于根与微生物之间有利于养分吸收的相互作用。促进增长;和疾病抑制。最近的焦磷酸测序方法提供了对各种种植系统中根际细菌群落的了解。然而;在不同年龄的再生茶单作系统中,缺乏关于根系分泌物对根系相关细菌群落组成影响的信息。在中国东南部;茶叶种植系统提供了独特的自然实验环境,可以比较不同根际区室中细菌群落的分布。进行了高效液相色谱-电喷雾电离-质谱(HPLC-ESI-MS)鉴定和定量根分泌物中的化感物质。高通量序列用于确定与根相关的细菌群落的结构动力学。尽管土壤理化特性在养分上没有显着差异;长期茶栽培导致根际中含儿茶素类化合物的积累和pH值降低。此外;在两年和三十年的单一栽培茶的所有三个根际隔间中观察到不同的细菌类群分布模式。由土壤pH和含儿茶素的化合物强烈介导。这些结果将有助于探讨在连续再生茶单作系统中土壤质量和肥力受到干扰的原因;并澄清相关问题。

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