Department of Food Sciences, Obihiro University of Agiculture and Veterinary Medicine, Obihiro, Hokkaido, Japan.
Mol Plant Microbe Interact. 2010 May;23(5):628-37. doi: 10.1094/MPMI-23-5-0628.
The genome-wide expression profiles of Bradyrhizobium japonicum in response to soybean (Glycine max (L.) Merr.) seed extract (SSE) and genistein were monitored with time at a low temperature (15 degrees C). A comparison with the expression profiles of the B. japonicum genome previously captured at the common growth temperature (30 degrees C) revealed that the expression of SSE preferentially induced genomic loci, including a large gene cluster encoding the type III secretion system (T3SS), were considerably delayed at 15 degrees C, whereas most nodulation (nod) gene loci, including nodD1 and nodW, were rapidly and strongly induced by both SSE and genistein. Induction of the T3SS genes was progressively activated upon the elevation of temperature to 30 degrees C and positively responded to culture population density. In addition, genes nolA and nodD2 were dramatically induced by SSE, concomitantly with the expression of T3SS genes. However, the deletion mutation of nodD2 but not nolA led to elimination of the T3SS genes expression. These results indicate that the expression of the T3SS gene cluster is tightly regulated with integration of environmental cues such as temperature and that NodD2 may be involved in its efficient induction in B. japonicum.
在低温(15°C)下,监测了大豆(Glycine max(L.)Merr.)种子提取物(SSE)和染料木黄酮对根瘤菌(Bradyrhizobium japonicum)全基因组表达谱的反应随时间的变化。与先前在常见生长温度(30°C)下捕获的 B. japonicum 基因组表达谱进行比较后发现,SSE 优先诱导基因组基因座的表达,包括编码 III 型分泌系统(T3SS)的大型基因簇,在 15°C 时被显著延迟,而大多数结瘤(nod)基因座,包括 nodD1 和 nodW,被 SSE 和染料木黄酮迅速而强烈地诱导。当温度升高到 30°C 时,T3SS 基因的诱导逐渐被激活,并对培养物种群密度有积极响应。此外,nolA 和 nodD2 基因被 SSE 显著诱导,与 T3SS 基因的表达同时发生。然而,nodD2 而不是 nolA 的缺失突变导致 T3SS 基因表达的消除。这些结果表明,T3SS 基因簇的表达受到温度等环境线索的紧密调控,并且 NodD2 可能参与其在 B. japonicum 中的有效诱导。