Biological Research Centre, Institute of Plant Biology, Hungarian Academy of Sciences, Temesvári krt. 62, Szeged, 6726, Hungary.
Plant Cell Rep. 2013 Mar;32(3):339-48. doi: 10.1007/s00299-012-1367-0. Epub 2012 Nov 16.
Wheat genes differentially expressed in the egg cell before and after fertilization were identified. The data support zygotic gene activation before the first cell division in wheat. To have an insight into fertilization-induced gene expression, cDNA libraries have been prepared from isolated wheat egg cells and one-celled zygotes. Two-hundred and twenty-six egg cell and 253 zygote-expressed EST sequences were determined. Most of the represented transcripts were detected in the wheat egg cell or zygote transcriptome at the first time. Expression analysis of fourteen of the identified genes and three controls was carried out by real-time quantitative PCR. The preferential expression of all investigated genes in the female gametophyte-derived samples (egg cells, zygotes, two-celled proembryos, and basal ovule parts with synergids) in comparison to the anthers, and the leaves were verified. Three genes with putative signaling/regulatory functions were expressed at a low level in the egg cell but exhibited increased (2-to-33-fold) relative expression in the zygote and the proembryo. Genes with high EST abundance in cDNA libraries exhibited strong expression in the egg cell and the zygote, while the ones coding for unknown or hypothetical proteins exhibited differential expression patterns with preferential transcript accumulation in egg cells and/or zygotes. The obtained data support the activation of the zygotic genome before the first cell division in wheat.
鉴定了在受精前后卵细胞中差异表达的小麦基因。该数据支持小麦第一次细胞分裂前合子基因的激活。为了深入了解受精诱导的基因表达,我们从分离的小麦卵细胞和单细胞合子中制备了 cDNA 文库。确定了 226 个卵细胞和 253 个合子表达的 EST 序列。大多数代表的转录本在第一次在小麦卵细胞或合子转录组中检测到。通过实时定量 PCR 对鉴定的 14 个基因和 3 个对照基因的表达分析进行了研究。与花药相比,所有研究基因在雌性配子体衍生样品(卵细胞、合子、二细胞原胚和具助细胞的胚珠基部)中的表达更为优先,而在叶片中则不优先。三个具有假定信号/调节功能的基因在卵细胞中低水平表达,但在合子和原胚中表达水平升高(2 至 33 倍)。在 cDNA 文库中具有高 EST 丰度的基因在卵细胞和合子中表达强烈,而编码未知或假设蛋白的基因则表现出不同的表达模式,在卵细胞和/或合子中优先转录本积累。获得的数据支持小麦第一次细胞分裂前合子基因组的激活。