Li Yongping, Feng Jia, Cheng Laichao, Dai Cheng, Gao Qi, Liu Zhongchi, Kang Chunying
Key Laboratory of Horticultural Plant Biology (Ministry of Education), College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, China.
National Key Laboratory of Crop Genetic Improvement, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, China.
Front Plant Sci. 2019 Dec 13;10:1624. doi: 10.3389/fpls.2019.01624. eCollection 2019.
, a wild diploid strawberry, has recently emerged as a model for the cultivated strawberry and other members of the Rosaceae. Differentiation and maintenance of meristems largely determines plant architecture, flower development and ultimately fruit yield. However, in strawberry, our knowledge of molecular regulation of meristems in different developmental context is limited. In this study, we hand dissected three types of tissues than contain meristematic tissues corresponding to shoot apical meristem (SAM), flower meristem (FM), and receptacle meristem (REM), in for RNA-seq analyses. A total of 3,009 differentially expressed genes (DEGs) were identified through pairwise comparisons. These DEGs were grouped into nine clusters with dynamic and distinct expression patterns. In these nine clusters, 336 transcription factor genes belong to 46 families were identified; some of which were significantly enriched in FM and REM such as the MADS-box family or in REM such as the B3 family. We found conserved and distinctive expression patterns of totally 149 genes whose homologs regulate flowering time or SAM, leaf, and flower development in other plant species. In addition to the ABCE genes in flower development, new MADS box genes were identified to exhibit differential expression in these different tissues. Additionally, the cytokinin and auxin pathway genes also exhibited distinct expression patterns. The Arabidopsis homeobox gene (), essential for stem cell maintenance, is expressed in organizing center of meristems. The homolog exhibited a broader expression domain in young strawberry flowers than its Arabidopsis counterpart. Altogether, this work provides a valuable data resource for dissecting gene regulatory networks operating in different meristematic tissues in strawberry.
野生二倍体草莓最近已成为栽培草莓和蔷薇科其他成员的模型。分生组织的分化和维持在很大程度上决定了植物结构、花的发育以及最终的果实产量。然而,在草莓中,我们对不同发育背景下分生组织分子调控的了解有限。在本研究中,我们手工解剖了三种含有对应于茎尖分生组织(SAM)、花分生组织(FM)和花托分生组织(REM)的分生组织的组织类型,用于RNA测序分析。通过成对比较共鉴定出3009个差异表达基因(DEG)。这些DEG被分为九个具有动态和不同表达模式的簇。在这九个簇中,鉴定出属于46个家族的336个转录因子基因;其中一些在FM和REM中显著富集,如MADS-box家族,或在REM中显著富集,如B3家族。我们发现了总共149个基因的保守和独特表达模式,其同源物在其他植物物种中调节开花时间或SAM、叶和花的发育。除了花发育中的ABCE基因外,还鉴定出新的MADS盒基因在这些不同组织中表现出差异表达。此外,细胞分裂素和生长素途径基因也表现出不同的表达模式。拟南芥中对干细胞维持至关重要的同源异型盒基因在分生组织的组织中心表达。该同源物在年轻草莓花中的表达域比其拟南芥对应物更宽。总之,这项工作为剖析草莓不同分生组织中运作的基因调控网络提供了宝贵的数据资源。