Heu Chan C, Kurtti Timothy J, Nelson Curtis M, Munderloh Ulrike G
Department of Entomology, University of Minnesota, 219 Hodson Hall, 1980 Folwell Ave, St. Paul, Minnesota, United States of America.
PLoS One. 2015 Sep 9;10(9):e0137214. doi: 10.1371/journal.pone.0137214. eCollection 2015.
Rickettsia bellii is an obligate intracellular bacterium that is one of the few rickettsiae that encode a complete set of conjugative transfer (tra) genes involved in bacterial conjugation and has been shown to exhibit pili-like structures. The reductive genomes of rickettsiae beg the question whether the tra genes are nonfunctional or functioning to enhance the genetic plasticity and biology of rickettsiae. We characterized the transcriptional dynamics of R. bellii tra genes in comparison to genes transcribed stably and above the background level to understand when and at what levels the tra genes are active or whether the tra genes are degenerative. We determined that the best reference genes, out of 10 tested, were methionyl tRNA ligase (metG) or a combination of metG and ribonucleoside diphosphate reductase 2 subunit beta (nrdF), using statistical algorithms from two different programs: Normfinder and BestKeeper. To validate the use of metG with other rickettsial genes exhibiting variable transcriptional patterns we examined its use with sca2 and rickA, genes involved in actin based motility. Both were shown to be up-regulated at different times of replication in Vero cells, showing variable and stable transcription levels of rickA and sca2, respectively. traATi was up-regulated at 72 hours post inoculation in the tick cell line ISE6, but showed no apparent changes in the monkey cell line Vero and mouse cell line L929. The transcription of tra genes was positively correlated with one another and up-regulated from 12 to 72 hours post inoculation (HPI) when compared to RBE_0422 (an inactivated transposase-derivative found within the tra cluster). Thus, the up-regulation of the tra genes indicated that the integrity and activity of each gene were intact and may facilitate the search for the optimal conditions necessary to demonstrate conjugation in rickettsiae.
贝利立克次氏体是一种专性细胞内细菌,是少数编码参与细菌接合的完整一套接合转移(tra)基因的立克次氏体之一,并且已显示出具有菌毛样结构。立克次氏体的简化基因组引发了一个问题,即tra基因是无功能的还是发挥作用以增强立克次氏体的遗传可塑性和生物学特性。我们对贝利立克次氏体tra基因的转录动态进行了表征,并与稳定转录且高于背景水平的基因进行比较,以了解tra基因何时以及在何种水平上活跃,或者tra基因是否已退化。我们使用来自两个不同程序(Normfinder和BestKeeper)的统计算法,确定在测试的10个基因中,最佳的内参基因是甲硫氨酰tRNA连接酶(metG)或metG与核糖核苷二磷酸还原酶2亚基β(nrdF)的组合。为了验证metG与其他表现出可变转录模式的立克次氏体基因一起使用的情况,我们研究了它与sca2和rickA的使用,这两个基因参与基于肌动蛋白的运动。结果表明,它们在Vero细胞复制的不同时间均上调,分别显示出rickA和sca2可变和稳定的转录水平。traATi在蜱细胞系ISE6接种后72小时上调,但在猴细胞系Vero和小鼠细胞系L929中未显示出明显变化。与RBE_0422(在tra簇中发现的一种失活转座酶衍生物)相比,tra基因的转录彼此呈正相关,并且在接种后12至72小时(HPI)上调。因此,tra基因的上调表明每个基因的完整性和活性都是完整的,并且可能有助于寻找在立克次氏体中证明接合所需的最佳条件。