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有性生殖、孢子体发育和模式藓类植物拟南芥中的分子变异:引入生态型 Reute。

Sexual reproduction, sporophyte development and molecular variation in the model moss Physcomitrella patens: introducing the ecotype Reute.

机构信息

Plant Cell Biology, Faculty of Biology, University of Marburg, Karl-von-Frisch-Str. 8, 35043, Marburg, Germany.

BIOSS Centre for Biological Signaling Studies, University of Freiburg, Freiburg, Germany.

出版信息

Plant J. 2017 May;90(3):606-620. doi: 10.1111/tpj.13501. Epub 2017 Mar 25.

Abstract

Rich ecotype collections are used for several plant models to unravel the molecular causes of phenotypic differences, and to investigate the effects of environmental adaption and acclimation. For the model moss Physcomitrella patens collections of accessions are available, and have been used for phylogenetic and taxonomic studies, for example, but few have been investigated further for phenotypic differences. Here, we focus on the Reute accession and provide expression profiling and comparative developmental data for several stages of sporophyte development, as well as information on genetic variation via genomic sequencing. We analysed cross-technology and cross-laboratory data to define a confident set of 15 mature sporophyte-specific genes. We find that the standard laboratory strain Gransden produces fewer sporophytes than Reute or Villersexel, although gametangia develop with the same time course and do not show evident morphological differences. Reute exhibits less genetic variation relative to Gransden than Villersexel, yet we found variation between Gransden and Reute in the expression profiles of several genes, as well as variation hot spots and genes that appear to evolve under positive Darwinian selection. We analyzed expression differences between the ecotypes for selected candidate genes in the GRAS transcription factor family, the chalcone synthase family and in genes involved in cell wall modification that are potentially related to phenotypic differences. We confirm that Reute is a P. patens ecotype, and suggest its use for reverse-genetics studies that involve progression through the life cycle and multiple generations.

摘要

丰富的生态型收集品被用于几种植物模式,以揭示表型差异的分子原因,并研究环境适应和驯化的影响。对于模式藓Physcomitrella patens,可获得收集品,并已用于系统发育和分类学研究,例如,但很少进一步研究表型差异。在这里,我们专注于 Reute 收集品,并提供几个孢子体发育阶段的表达谱和比较发育数据,以及通过基因组测序获得的遗传变异信息。我们分析了跨技术和跨实验室的数据,以定义一组 15 个成熟孢子体特异性基因。我们发现,标准实验室品系 Gransden 产生的孢子体比 Reute 或 Villersexel 少,尽管配子体具有相同的时间进程,并且没有明显的形态差异。Reute 相对于 Gransden 的遗传变异比 Villersexel 少,但我们发现 Gransden 和 Reute 之间的几个基因的表达谱存在差异,以及潜在与表型差异相关的变异热点和似乎受到正达尔文选择的基因。我们分析了选择 GRAS 转录因子家族、查尔酮合酶家族和细胞壁修饰基因中候选基因的生态型之间的表达差异,这些基因可能与表型差异有关。我们确认 Reute 是 P. patens 的一个生态型,并建议将其用于涉及生命周期和多个世代的反向遗传学研究。

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