Zhang Yanxiang, Paschold Anja, Marcon Caroline, Liu Sanzhen, Tai Huanhuan, Nestler Josefine, Yeh Cheng-Ting, Opitz Nina, Lanz Christa, Schnable Patrick S, Hochholdinger Frank
INRES, Institute of Crop Science and Resource Conservation, Crop Functional Genomics, University of Bonn, Friedrich-Ebert-Allee 144, 53113 Bonn, Germany.
Department of Agronomy, Iowa State University, Ames 50011-3650, Iowa, USA.
J Exp Bot. 2014 Sep;65(17):4919-30. doi: 10.1093/jxb/eru249. Epub 2014 Jun 13.
The maize (Zea mays L.) Aux/IAA protein RUM1 (ROOTLESS WITH UNDETECTABLE MERISTEMS 1) controls seminal and lateral root initiation. To identify RUM1-dependent gene expression patterns, RNA-Seq of the differentiation zone of primary roots of rum1 mutants and the wild type was performed in four biological replicates. In total, 2 801 high-confidence maize genes displayed differential gene expression with Fc ≥2 and FDR ≤1%. The auxin signalling-related genes rum1, like-auxin1 (lax1), lax2, (nam ataf cuc 1 nac1), the plethora genes plt1 (plethora 1), bbm1 (baby boom 1), and hscf1 (heat shock complementing factor 1) and the auxin response factors arf8 and arf37 were down-regulated in the mutant rum1. All of these genes except nac1 were auxin-inducible. The maize arf8 and arf37 genes are orthologues of Arabidopsis MP/ARF5 (MONOPTEROS/ARF5), which controls the differentiation of vascular cells. Histological analyses of mutant rum1 roots revealed defects in xylem organization and the differentiation of pith cells around the xylem. Moreover, histochemical staining of enlarged pith cells surrounding late metaxylem elements demonstrated that their thickened cell walls displayed excessive lignin deposition. In line with this phenotype, rum1-dependent mis-expression of several lignin biosynthesis genes was observed. In summary, RNA-Seq of RUM1-dependent gene expression in maize primary roots, in combination with histological and histochemical analyses, revealed the specific regulation of auxin signal transduction components by RUM1 and novel functions of RUM1 in vascular development.
玉米(Zea mays L.)生长素/吲哚乙酸蛋白RUM1(无根且分生组织不可见1)控制种子根和侧根的起始。为了确定RUM1依赖的基因表达模式,对rum1突变体和野生型主根分化区进行了4次生物学重复的RNA测序。总共,2801个高可信度的玉米基因显示出差异基因表达,倍数变化(Fc)≥2且错误发现率(FDR)≤1%。在突变体rum1中,生长素信号相关基因rum1、类生长素1(lax1)、lax2、(NAM、ATAF、CUC1、NAC1)、多胚基因plt1(多胚1)、bbm1(婴儿潮1)和hscf1(热休克互补因子1)以及生长素响应因子arf8和arf37均下调。除nac1外,所有这些基因都是生长素诱导型的。玉米arf8和arf37基因是拟南芥MP/ARF5(单胚/ARF5)的直系同源基因,后者控制维管细胞的分化。对突变体rum1根的组织学分析揭示了木质部组织缺陷以及木质部周围髓细胞的分化异常。此外,对晚后生木质部元件周围扩大的髓细胞进行组织化学染色表明,其增厚的细胞壁显示出过多的木质素沉积。与此表型一致,观察到了几个木质素生物合成基因的RUM1依赖的错误表达。总之,玉米主根中RUM1依赖基因表达的RNA测序,结合组织学和组织化学分析,揭示了RUM1对生长素信号转导成分的特异性调控以及RUM1在维管发育中的新功能。