Siena Lorena A, Ortiz Juan Pablo A, Calderini Ornella, Paolocci Francesco, Cáceres Maria E, Kaushal Pankaj, Grisan Simone, Pessino Silvina C, Pupilli Fulvio
Laboratorio de Biología Molecular, Facultad de Ciencias Agrarias, Universidad Nacional de Rosario, (S2125ZAA) Zavalla, Argentina Instituto de Investigaciones en Ciencias Agrarias de Rosario (IICAR-CONICET-UNR), Facultad de Ciencias Agrarias, Universidad Nacional de Rosario, (S2125ZAA) Zavalla, Argentina.
Istituto di Bioscienze e Biorisorse (IBBR-CNR), via della Madonna alta 130, I-06128 Perugia, Italy.
J Exp Bot. 2016 Mar;67(6):1965-78. doi: 10.1093/jxb/erw018. Epub 2016 Feb 2.
Apomixis in plants consists of asexual reproduction by seeds. Here we characterized at structural and functional levels an apomixis-linked sequence of Paspalum simplex homologous to subunit 3 of the ORIGIN RECOGNITION COMPLEX (ORC3). ORC is a multiprotein complex which controls DNA replication and cell differentiation in eukaryotes. Three PsORC3 copies were identified, each one characterized by a specific expression profile. Of these, PsORC3a, specific for apomictic genotypes, is a pseudogene that was poorly and constitutively expressed in all developmental stages of apomictic flowers, whereas PsORC3b, the putative functional gene in sexual flowers, showed a precise time-related regulation. Sense transcripts of PsORC3 were expressed in the female cell lineage of both apomictic and sexual reproductive phenotypes, and in aposporous initials. Although strong expression was detected in sexual early endosperm, no expression was present in the apomictic endosperm. Antisense PsORC3 transcripts were revealed exclusively in apomictic germ cell lineages. Defective orc3 mutants of rice and Arabidopsis showed normal female gametophytes although the embryo and endosperm were arrested at early phases of development. We hypothesize that PsORC3a is associated with the down-regulation of its functional homolog and with the development of apomictic endosperm which deviates from the canonical 2(maternal):1(paternal) genome ratio.
植物无融合生殖包括通过种子进行无性繁殖。在此,我们在结构和功能层面上对与起源识别复合体(ORC)亚基3同源的单穗雀稗无融合生殖相关序列进行了表征。ORC是一种多蛋白复合体,在真核生物中控制DNA复制和细胞分化。我们鉴定出了三个PsORC3拷贝,每个拷贝都具有特定的表达谱。其中,对无融合生殖基因型具有特异性的PsORC3a是一个假基因,在无融合生殖花的所有发育阶段中表达水平较低且恒定,而PsORC3b,即有性花中的推定功能基因,表现出精确的时间相关调控。PsORC3的正义转录本在无融合生殖和有性生殖表型的雌细胞谱系以及无孢子初始细胞中表达。虽然在有性早期胚乳中检测到强表达,但在无融合生殖胚乳中未检测到表达。反义PsORC3转录本仅在无融合生殖生殖细胞谱系中被发现。水稻和拟南芥的orc3缺陷型突变体显示出正常的雌配子体,尽管胚胎和胚乳在发育早期阶段停滞。我们推测,PsORC3a与其功能同源物的下调以及偏离典型的2(母本):1(父本)基因组比例的无融合生殖胚乳的发育有关。