Department of Biology and Biochemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.
BMC Plant Biol. 2010 Apr 20;10:72. doi: 10.1186/1471-2229-10-72.
Crossing plants of the same species but different ploidies can have dramatic effects on seed growth, but little is known about the alterations to transcriptional programmes responsible for this. Parental genomic imbalance particularly affects proliferation of the endosperm, with an increased ratio of paternally to maternally contributed genomes ('paternal excess') associated with overproliferation, while maternal excess inhibits endosperm growth. One interpretation is that interploidy crosses disrupt the balance in the seed of active copies of parentally imprinted genes. This is supported by the observation that mutations in imprinted FIS-class genes of Arabidopsis thaliana share many features of the paternal excess phenotype. Here we investigated gene expression underlying parent-of-origin effects in Arabidopsis through transcriptional profiling of siliques generated by interploidy crosses and FIS-class mutants.
We found that fertilized fis1 mutant seeds have similar profiles to seeds with paternal excess, showing that the shared phenotypes are underpinned by similar patterns of gene expression. We identified genes strongly associated with enhanced or inhibited seed growth; this provided many candidates for further investigation including MADS-box transcription factors, cell cycle genes, and genes involved in hormone pathways.
The work presented here is a step towards understanding the effects on seed development of the related phenomena of parental genome balance and imprinting.
同种但不同倍性的植物杂交会对种子生长产生显著影响,但对于导致这种影响的转录程序的改变知之甚少。亲本基因组的不平衡特别影响胚乳的增殖,父本基因组与母本基因组的比例增加(“父本过剩”)与过度增殖有关,而母本过剩则抑制胚乳生长。一种解释是,倍性间杂交破坏了种子中双亲印迹基因活性拷贝的平衡。拟南芥 FIS 类印迹基因的突变与父本过剩表型具有许多共同特征,这支持了这一观点。在这里,我们通过对倍性间杂交和 FIS 类突变体产生的蒴果进行转录谱分析,研究了拟南芥中亲本来源效应的基因表达。
我们发现,受精的 fis1 突变体种子与父本过剩的种子具有相似的图谱,表明共享的表型是由相似的基因表达模式支撑的。我们鉴定了与增强或抑制种子生长密切相关的基因;这为进一步研究提供了许多候选基因,包括 MADS 框转录因子、细胞周期基因和参与激素途径的基因。
这里介绍的工作是朝着理解与亲本基因组平衡和印迹相关的现象对种子发育的影响迈出的一步。