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利用来自单一细胞类型的数据鉴定根瘤菌感染基因的核心集。

Identification of a core set of rhizobial infection genes using data from single cell-types.

作者信息

Chen Da-Song, Liu Cheng-Wu, Roy Sonali, Cousins Donna, Stacey Nicola, Murray Jeremy D

机构信息

State Key Laboratory of Agricultural Microbiology, College of Life Science and Technology, Huazhong Agricultural University, Wuhan China.

John Innes Centre, Department of Cell and Developmental Biology, Norfolk UK.

出版信息

Front Plant Sci. 2015 Jul 28;6:575. doi: 10.3389/fpls.2015.00575. eCollection 2015.

Abstract

Genome-wide expression studies on nodulation have varied in their scale from entire root systems to dissected nodules or root sections containing nodule primordia (NP). More recently efforts have focused on developing methods for isolation of root hairs from infected plants and the application of laser-capture microdissection technology to nodules. Here we analyze two published data sets to identify a core set of infection genes that are expressed in the nodule and in root hairs during infection. Among the genes identified were those encoding phenylpropanoid biosynthesis enzymes including Chalcone-O-Methyltransferase which is required for the production of the potent Nod gene inducer 4',4-dihydroxy-2-methoxychalcone. A promoter-GUS analysis in transgenic hairy roots for two genes encoding Chalcone-O-Methyltransferase isoforms revealed their expression in rhizobially infected root hairs and the nodule infection zone but not in the nitrogen fixation zone. We also describe a group of Rhizobially Induced Peroxidases whose expression overlaps with the production of superoxide in rhizobially infected root hairs and in nodules and roots. Finally, we identify a cohort of co-regulated transcription factors as candidate regulators of these processes.

摘要

全基因组范围内关于结瘤的表达研究规模各异,从整个根系到解剖后的根瘤或含有根瘤原基(NP)的根段。最近,研究工作集中在开发从受感染植物中分离根毛的方法以及将激光捕获显微切割技术应用于根瘤。在这里,我们分析了两个已发表的数据集,以确定在感染期间在根瘤和根毛中表达的一组核心感染基因。所鉴定的基因中包括那些编码苯丙烷类生物合成酶的基因,其中查尔酮-O-甲基转移酶是产生强效结瘤基因诱导剂4',4-二羟基-2-甲氧基查尔酮所必需的。对编码查尔酮-O-甲基转移酶同工型的两个基因在转基因毛状根中的启动子-GUS分析表明,它们在根瘤菌感染的根毛和根瘤感染区表达,但在固氮区不表达。我们还描述了一组根瘤菌诱导的过氧化物酶,其表达与根瘤菌感染的根毛、根瘤和根中超氧化物的产生重叠。最后,我们确定了一组共同调控的转录因子作为这些过程的候选调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c01f/4517396/219b939444f5/fpls-06-00575-g001.jpg

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