Department of Molecular Biosciences, The University of Texas at Austin, Austin, TX 78712, USA.
Genetics. 2023 Feb 9;223(2). doi: 10.1093/genetics/iyac161.
Seed size is related to plant evolution and crop yield and is affected by genetic mutations, imprinting, and genome dosage. Imprinting is a widespread epigenetic phenomenon in mammals and flowering plants. ETHYLENE INSENSITIVE2 (EIN2) encodes a membrane protein that links the ethylene perception to transcriptional regulation. Interestingly, during seed development EIN2 is maternally expressed in Arabidopsis and maize, but the role of EIN2 in seed development is unknown. Here, we show that EIN2 is expressed specifically in the endosperm, and the maternal-specific EIN2 expression affects temporal regulation of endosperm cellularization. As a result, seed size increases in the genetic cross using the ein2 mutant as the maternal parent or in the ein2 mutant. The maternal-specific expression of EIN2 in the endosperm is controlled by DNA methylation but not by H3K27me3 or by ethylene and several ethylene pathway genes tested. RNA-seq analysis in the endosperm isolated by laser-capture microdissection show upregulation of many endosperm-expressed genes such as AGAMOUS-LIKEs (AGLs) in the ein2 mutant or when the maternal EIN2 allele is not expressed. EIN2 does not interact with DNA and may act through ETHYLENE INSENSITIVE3 (EIN3), a DNA-binding protein present in sporophytic tissues, to activate target genes like AGLs, which in turn mediate temporal regulation of endosperm cellularization and seed size. These results provide mechanistic insights into endosperm and maternal-specific expression of EIN2 on endosperm cellularization and seed development, which could help improve seed production in plants and crops.
种子大小与植物进化和作物产量有关,受基因突变、印迹和基因组剂量的影响。印迹是哺乳动物和开花植物中广泛存在的一种表观遗传现象。ETHYLENE INSENSITIVE2 (EIN2) 编码一种膜蛋白,它将乙烯感知与转录调控联系起来。有趣的是,在种子发育过程中,EIN2 在拟南芥和玉米中母系表达,但 EIN2 在种子发育中的作用尚不清楚。在这里,我们表明 EIN2 在胚乳中特异性表达,并且母系特异性 EIN2 表达影响胚乳细胞化的时间调节。结果,使用 ein2 突变体作为母本的遗传杂交或在 ein2 突变体中,种子大小增加。EIN2 在胚乳中的母系特异性表达受 DNA 甲基化控制,但不受 H3K27me3 或乙烯和测试的几种乙烯途径基因控制。通过激光捕获显微切割分离胚乳进行的 RNA-seq 分析显示,在 ein2 突变体或当母系 EIN2 等位基因不表达时,许多胚乳表达基因如 AGAMOUS-LIKEs (AGLs) 上调。EIN2 不与 DNA 相互作用,可能通过存在于孢子组织中的 ETHYLENE INSENSITIVE3 (EIN3) 来激活靶基因,如 AGLs,从而反过来介导胚乳细胞化和种子大小的时间调节。这些结果为 EIN2 在胚乳细胞化和种子发育中的胚乳和母系特异性表达提供了机制上的见解,这可能有助于提高植物和作物的种子产量。