Department of Plant Biology, University of California, Davis, California 95616, USA.
Plant Cell. 2012 Aug;24(8):3264-77. doi: 10.1105/tpc.112.096420. Epub 2012 Aug 7.
Double fertilization of the egg cell and the central cell by two sperm cells, resulting in the formation of the embryo and the endosperm, respectively, is a defining characteristic of flowering plants. The Arabidopsis thaliana female gametophytic mutant glauce (glc) can exhibit embryo development without any endosperm. Here, we show that in glc mutant embryo sacs one sperm cell successfully fuses with the egg cell but the second sperm cell fails to fuse with the central cell, resulting in single fertilization. Complementation studies using genes from the glc deletion interval identified an unusual genomic locus having homology to BAHD (for BEAT, AHCT, HCBT, and DAT) acyl-transferases with dual transcription units and alternative splicing that could rescue the sterility defect of glc. Expression of these transcripts appears restricted to the central cell, and expression within the central cell is sufficient to restore fertility. We conclude that the central cell actively promotes its own fertilization by the sperm cell through a signaling mechanism involving products of At1g65450. Successful fertilization of the egg cell is not blocked in the glc mutant, suggesting that evolution of double fertilization in flowering plants involved acquisition of specific functions by the central cell to enable its role as a second female gamete.
两个精子细胞分别使卵细胞和中央细胞受精,分别形成胚胎和胚乳,这是开花植物的一个定义特征。拟南芥雌性配子体突变体 glc(glc)可以表现出没有胚乳的胚胎发育。在这里,我们表明在 glc 突变体胚囊中,一个精子细胞成功地与卵细胞融合,但第二个精子细胞未能与中央细胞融合,导致单受精。使用 glc 缺失区间的基因进行的互补研究鉴定出一个不寻常的基因组位点,该位点与具有双转录单元和可变剪接的 BAHD(代表 BEAT、AHCT、HCBT 和 DAT)酰基转移酶同源,可挽救 glc 的不育缺陷。这些转录物的表达似乎仅限于中央细胞,并且中央细胞内的表达足以恢复育性。我们得出结论,中央细胞通过涉及 At1g65450 产物的信号机制主动促进自身与精子细胞的受精。在 glc 突变体中,卵细胞的受精并未受阻,这表明在开花植物中双受精的进化涉及中央细胞获得特定功能,从而使其能够作为第二个雌性配子发挥作用。