Department of Genetics, Development, and Cell Biology; Iowa State University; Ames, Iowa, United States of America.
Department of Plant and Microbial Biology; University of Minnesota; St. Paul, Minnesota, United States of America.
PLoS Genet. 2021 Apr 8;17(4):e1009491. doi: 10.1371/journal.pgen.1009491. eCollection 2021 Apr.
Fertilization and seed development is a critical time in the plant life cycle, and coordinated development of the embryo and endosperm are required to produce a viable seed. In the endosperm, some genes show imprinted expression where transcripts are derived primarily from one parental genome. Imprinted gene expression has been observed across many flowering plant species, though only a small proportion of genes are imprinted. Understanding how imprinted expression arises has been complicated by the reliance on single nucleotide polymorphisms between alleles to enable testing for imprinting. Here, we develop a method to use whole genome assemblies of multiple genotypes to assess for imprinting of both shared and variable portions of the genome using data from reciprocal crosses. This reveals widespread maternal expression of genes and transposable elements with presence-absence variation within maize and across species. Most maternally expressed features are expressed primarily in the endosperm, suggesting that maternal de-repression in the central cell facilitates expression. Furthermore, maternally expressed TEs are enriched for maternal expression of the nearest gene, and read alignments over maternal TE-gene pairs indicate that these are fused rather than independent transcripts.
受精和种子发育是植物生命周期中的一个关键时期,需要协调胚胎和胚乳的发育才能产生有活力的种子。在胚乳中,一些基因表现出印迹表达,其转录本主要来自一个亲本基因组。印迹基因表达已在许多开花植物物种中观察到,但只有一小部分基因是印迹的。由于依赖等位基因之间的单核苷酸多态性来检测印迹,因此理解印迹表达的产生变得复杂。在这里,我们开发了一种方法,使用多个基因型的全基因组组装来评估使用来自正反交的数据对基因组的共享和可变部分进行印迹。这揭示了玉米和跨物种中广泛的基因和转座元件的母系表达,存在缺失变异。大多数母系表达的特征主要在胚乳中表达,表明中央细胞中的母系去阻遏有助于表达。此外,母系表达的转座元件在最近基因的母系表达中富集,并且在母系 TE-基因对上的读取比对表明这些是融合而不是独立的转录物。