首页> 美国卫生研究院文献>DNA Research: An International Journal for Rapid Publication of Reports on Genes and Genomes >Soybean Seed Extracts Preferentially Express Genomic Loci of Bradyrhizobium japonicum in the Initial Interaction with Soybean Glycine max (L.) Merr
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Soybean Seed Extracts Preferentially Express Genomic Loci of Bradyrhizobium japonicum in the Initial Interaction with Soybean Glycine max (L.) Merr

机译:大豆种子提取物在与大豆Glycine max(L.)Merr的初始相互作用中优先表达日本根瘤菌的基因组位点

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摘要

Initial interaction between rhizobia and legumes actually starts via encounters of both partners in the rhizosphere. In this study, the global expression profiles of Bradyrhizobium japonicum USDA 110 in response to soybean (Glycine max) seed extracts (SSE) and genistein, a major soybean-released isoflavone for nod genes induction of B. japonicum, were compared. SSE induced many genomic loci as compared with genistein (5.0 µM), nevertheless SSE-supplemented medium contained 4.7 µM genistein. SSE markedly induced four predominant genomic regions within a large symbiosis island (681 kb), which include tts genes (type III secretion system) and various nod genes. In addition, SSE-treated cells expressed many genomic loci containing genes for polygalacturonase (cell-wall degradation), exopolysaccharide synthesis, 1-aminocyclopropane-1-carboxylate deaminase, ribosome proteins family and energy metabolism even outside symbiosis island. On the other hand, genistein-treated cells exclusively showed one expression cluster including common nod gene operon within symbiosis island and six expression loci including multidrug resistance, which were shared with SSE-treated cells. Twelve putatively regulated genes were indeed validated by quantitative RT-PCR. Several SSE-induced genomic loci likely participate in the initial interaction with legumes. Thus, these results can provide a basic knowledge for screening novel genes relevant to the B. japonicum- soybean symbiosis.
机译:根瘤菌和豆类植物之间的初始相互作用实际上是通过根际中两个伴侣的相遇而开始的。在这项研究中,比较了大豆根瘤菌(Bradyrhizobium japonicum)USDA 110对大豆(Glycine max)种子提取物(SSE)和染料木黄酮(一种大豆释放的主要大豆异黄酮的Nod基因诱导,其诱导基因)的响应的全球表达特征。与染料木黄酮(5.0 µM)相比,SSE诱导了许多基因组位点,但是补充了SSE的培养基中却含有4.7 µM染料木黄酮。 SSE明显诱导了一个大共生岛(681 kb)中的四个主要基因组区域,其中包括tts基因(III型分泌系统)和各种nod基因。此外,经SSE处理的细胞表达了许多基因组位点,这些基因位点包括聚半乳糖醛酸酶(细胞壁降解),胞外多糖合成,1-氨基环丙烷-1-羧酸脱氨酶,核糖体蛋白家族以及甚至在共生岛外的能量代谢。另一方面,金雀异黄素处理的细胞仅显示一个表达簇,包括共生岛内的常见nod基因操纵子,六个表达基因座(包括多药耐药性),与SSE处理的细胞共有。通过定量RT-PCR确实验证了12个推定调控的基因。几种SSE诱导的基因组基因座可能参与了与豆类的初始相互作用。因此,这些结果可为筛选与日本血吸虫-大豆共生相关的新基因提供基础知识。

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