Institute of Biosciences and Bioresources (IBBR), National Research Council (CNR), 06128, Perugia, Italy.
Instituto de Investigaciones en Ciencias Agrarias de Rosario (IICAR), CONICET-UNR and Laboratorio de Biología Molecular, Facultad de Ciencias Agrarias, Universidad Nacional de Rosario, S2125ZAA, Zavalla, Argentina.
J Exp Bot. 2023 May 19;74(10):3074-3093. doi: 10.1093/jxb/erad069.
Pseudogamous apomixis in Paspalum simplex generates seeds with embryos genetically identical to the mother plant and endosperms deviating from the canonical 2(maternal):1(paternal) parental genome contribution into a maternal excess 4m:1p genome ratio. In P. simplex, the gene homologous to that coding for subunit 3 of the ORIGIN OF RECOGNITION COMPLEX (PsORC3) exists in three isogenic forms: PsORC3a is apomixis specific and constitutively expressed in developing endosperm whereas PsORCb and PsORCc are up-regulated in sexual endosperms and silenced in apomictic ones. This raises the question of how the different arrangement and expression profiles of these three ORC3 isogenes are linked to seed development in interploidy crosses generating maternal excess endosperms. We demonstrate that down-regulation of PsORC3b in sexual tetraploid plants is sufficient to restore seed fertility in interploidy 4n×2n crosses and, in turn, its expression level at the transition from proliferating to endoreduplication endosperm developmental stages dictates the fate of these seeds. Furthermore, we show that only when being maternally inherited can PsORC3c up-regulate PsORC3b. Our findings lay the basis for an innovative route-based on ORC3 manipulation-to introgress the apomictic trait into sexual crops and overcome the fertilization barriers in interploidy crosses.
假受精无融合生殖的帕斯帕鲁姆 simplex 产生的种子具有与母株遗传完全相同的胚胎和胚乳,胚乳的经典 2(母本):1(父本)亲本基因组贡献偏离为母体过剩的 4m:1p 基因组比例。在帕斯帕鲁姆 simplex 中,与编码 ORIGIN OF RECOGNITION COMPLEX(PsORC3)亚基 3 的同源基因存在三种同基因形式:PsORC3a 是无融合生殖特异性的,在发育中的胚乳中持续表达,而 PsORCb 和 PsORCc 在有性胚乳中上调,在无融合生殖的胚乳中沉默。这就提出了一个问题,即这三个 ORC3 同基因的不同排列和表达模式如何与产生母体过剩胚乳的异倍体杂交中种子的发育相关。我们证明,下调有性四倍体植物中的 PsORC3b 足以恢复异倍体 4n×2n 杂交中的种子育性,并且其在从增殖到内减数分裂胚乳发育阶段过渡时的表达水平决定了这些种子的命运。此外,我们表明,只有当 PsORC3c 从母本继承时,才能上调 PsORC3b。我们的研究结果为基于 ORC3 操作的创新途径奠定了基础,该途径可以将无融合生殖特性导入有性作物中,并克服异倍体杂交中的受精障碍。