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大豆根瘤中慢生根瘤菌类菌体的全基因组转录分析。

Genome-wide transcript analysis of Bradyrhizobium japonicum bacteroids in soybean root nodules.

作者信息

Pessi Gabriella, Ahrens Christian H, Rehrauer Hubert, Lindemann Andrea, Hauser Felix, Fischer Hans-Martin, Hennecke Hauke

机构信息

Institute of Microbiology, Eidgenössische Technische Hochschule, CH-8093 Zürich, Switzerland.

出版信息

Mol Plant Microbe Interact. 2007 Nov;20(11):1353-63. doi: 10.1094/MPMI-20-11-1353.

Abstract

The transcriptome of endosymbiotic Bradyrhizobium japonicum bacteroids was assessed, using RNA extracted from determinate soybean root nodules. Results were compared with the transcript profiles of B. japonicum cells grown in either aerobic or microaerobic culture. Microoxia is a known trigger for the induction of symbiotically relevant genes. In fact, one third of the genes induced in bacteroids at day 21 after inoculation are congruent with those up-regulated in culture by a decreased oxygen concentration. The other induced genes, however, may be regulated by cues other than oxygen limitation. Both groups of genes provide a rich source for the possible discovery of novel functions related to symbiosis. Samples taken at different timepoints in nodule development have led to the distinction of genes expressed early and late in bacteroids. The experimental approach applied here is also useful for B. japonicum mutant analyses. As an example, we compared the transcriptome of wild-type bacteroids with that of bacteroids formed by a mutant defective in the RNA polymerase transcription factor sigma54. This led to a collection of hitherto unrecognized B. japonicum genes potentially transcribed in planta in a sigma54-dependent manner.

摘要

利用从有限生长型大豆根瘤中提取的RNA,对共生慢生根瘤菌类菌体的转录组进行了评估。将结果与在有氧或微需氧培养条件下生长的日本慢生根瘤菌细胞的转录谱进行了比较。微氧是诱导共生相关基因的已知触发因素。事实上,接种后第21天在类菌体中诱导表达的基因中有三分之一与在培养物中因氧浓度降低而上调的基因一致。然而,其他诱导基因可能受氧限制以外的信号调控。这两组基因都为发现与共生相关的新功能提供了丰富的来源。在根瘤发育的不同时间点采集的样本,区分了类菌体中早期和晚期表达的基因。这里应用的实验方法对日本慢生根瘤菌突变体分析也很有用。例如,我们将野生型类菌体的转录组与由RNA聚合酶转录因子sigma54缺陷型突变体形成的类菌体的转录组进行了比较。这导致了一组迄今未被识别的日本慢生根瘤菌基因,这些基因可能在植物中以sigma54依赖的方式转录。

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