Department of Biology, University of Brasília - UnB, Campus Darcy Ribeiro S/N - Asa Norte, Brasília, DF, 70.910-900, Brazil.
Embrapa Genetic Resources and Biotechnology, Parque Estação Biológica, PqEB Av. W5 Norte., Caixa Postal 02372, Brasília, DF, 70.770-917, Brazil.
Mol Biol Rep. 2023 Jun;50(6):4887-4897. doi: 10.1007/s11033-023-08295-7. Epub 2023 Apr 18.
In Brachiaria sexual reproduction, during ovule development, a nucellar cell differentiates into a megaspore mother cell (MMC) that, through meiosis and mitosis, gives rise to a reduced embryo sac. In aposporic apomictic Brachiaria, next to the MMC, other nucellar cells differentiate into aposporic initials that enter mitosis directly forming an unreduced embryo sac. The IPT (isopentenyltransferase) family comprises key genes in the cytokinin (CK) pathway which are expressed in Arabidopsis during ovule development. BbrizIPT9, a B. brizantha (syn. Urochloa brizantha) IPT9 gene, highly similar to genes of other Poaceae plants, also shows similarity with Arabidopsis IPT9, AtIPT9. In this work, we aimed to investigate association of BbrizIPT9 with ovule development in sexual and apomictic plants.
RT-qPCR showed higher BbrizIPT9 expression in the ovaries of sexual than in the apomictic B. brizantha. Results of in-situ hybridization showed strong signal of BbrizIPT9 in the MMC of both plants, at the onset of megasporogenesis. By analyzing AtIPT9 knockdown mutants, we verified enlarged nucellar cell, next to the MMC, in a percentage significantly higher than in the wild type, suggesting that knockout of AtIPT9 gene triggered the differentiation of extra MMC-like cells.
Our results indicate that AtIPT9 might be involved in the proper differentiation of a single MMC during ovule development. The expression of a BbrizIPT9, localized in male and female sporocytes, and lower in apomicts than in sexuals, and effect of IPT9 knockout in Arabidopsis, suggest involvement of IPT9 in early ovule development.
在臂形草属植物有性生殖过程中,珠心细胞在胚珠发育过程中分化为大孢子母细胞(MMC),通过减数分裂和有丝分裂,产生减数胚囊。在无融合生殖的臂形草属植物中,除 MMC 外,其他珠心细胞分化为无融合生殖起始细胞,直接进入有丝分裂,形成未减数的胚囊。IPT(异戊烯基转移酶)家族是细胞分裂素(CK)途径中的关键基因,在拟南芥胚珠发育过程中表达。BbrizIPT9 是一种 B. brizantha(同义词 Urochloa brizantha)IPT9 基因,与其他禾本科植物的基因高度相似,也与拟南芥 IPT9(AtIPT9)相似。在这项工作中,我们旨在研究 BbrizIPT9 与有性和无融合生殖植物胚珠发育的关系。
RT-qPCR 显示,有性生殖的 B. brizantha 中 BbrizIPT9 的表达高于无融合生殖的 B. brizantha。原位杂交结果显示,在两种植物的 MMC 中,在大孢子发生开始时,BbrizIPT9 有强烈的信号。通过分析 AtIPT9 敲低突变体,我们验证了在 MMC 旁边的珠心细胞明显增大,其比例显著高于野生型,这表明 AtIPT9 基因的敲除触发了额外的 MMC 样细胞的分化。
我们的结果表明,AtIPT9 可能参与了胚珠发育过程中单个 MMC 的正确分化。在雄性和雌性孢原细胞中表达的 BbrizIPT9 比在无融合生殖的植物中表达的要低,而在拟南芥中 IPT9 的敲除效应表明,IPT9 参与了早期胚珠的发育。