Department of Botany and Plant Sciences, University of California Riverside, Riverside, CA 92521, USA.
School of Integrative Plant Science, Section of Plant Biology and the L.H. Bailey Hortorium, Cornell University, Ithaca, NY 14853, USA.
Genes (Basel). 2020 Sep 19;11(9):1097. doi: 10.3390/genes11091097.
Floral organ size, especially the size of the corolla, plays an important role in plant reproduction by facilitating pollination efficiency. Previous studies have outlined a hypothesized organ size pathway. However, the expression and function of many of the genes in the pathway have only been investigated in model diploid species; therefore, it is unknown how these genes interact in polyploid species. Although correlations between ploidy and cell size have been shown in many systems, it is unclear whether there is a difference in cell size between naturally occurring and synthetic polyploids. To address these questions comparing floral organ size and cell size across ploidy, we use natural and synthetic polyploids of (Solanaceae) as well as their known diploid progenitors. We employ a comparative transcriptomics approach to perform analyses of differential gene expression, focusing on candidate genes that may be involved in floral organ size, both across developmental stages and across accessions. We see differential expression of several known floral organ candidate genes including , , and . Results from linear models show that ploidy, cell width, and cell number positively influence corolla tube circumference; however, the effect of cell width varies by ploidy, and diploids have a significantly steeper slope than both natural and synthetic polyploids. These results demonstrate that polyploids have wider cells and that polyploidy significantly increases corolla tube circumference.
花器官大小,特别是花瓣的大小,通过促进授粉效率在植物繁殖中起着重要作用。先前的研究已经概述了一个假设的器官大小途径。然而,该途径中的许多基因的表达和功能仅在模式二倍体物种中进行了研究;因此,尚不清楚这些基因在多倍体物种中如何相互作用。尽管在许多系统中已经显示出了倍性与细胞大小之间的相关性,但尚不清楚自然发生的和人工合成的多倍体之间的细胞大小是否存在差异。为了解决这些问题,我们比较了(茄科)的天然和人工多倍体及其已知的二倍体祖先的花器官大小和细胞大小。我们采用比较转录组学方法来进行差异基因表达分析,重点是可能参与花器官大小的候选基因,包括发育阶段和不同品系的分析。我们观察到几个已知的花器官候选基因的差异表达,包括、、和。线性模型的结果表明,倍性、细胞宽度和细胞数量对花瓣管周长有正向影响;然而,细胞宽度的影响因倍性而异,并且二倍体的斜率明显高于天然和人工多倍体。这些结果表明多倍体具有更宽的细胞,并且多倍体显著增加了花瓣管的周长。