Ngo Quy A, Moore James M, Baskar Ramamurthy, Grossniklaus Ueli, Sundaresan Venkatesan
Section of Plant Biology, University of California, One Shields Avenue, Davis, CA 95616, USA.
Development. 2007 Nov;134(22):4107-17. doi: 10.1242/dev.007310.
Early seed development of sexually reproducing plants requires both maternal and paternal genomes but is prominently maternally influenced. A novel gametophytic maternal-effect mutant defective in early embryo and endosperm development, glauce (glc), has been isolated from a population of Arabidopsis Ds transposon insertion lines. The glc mutation results from a deletion at the Ds insertion site, and the molecular identity of GLC is not known. glc embryos can develop up to the globular stage in the absence of endosperm and glc central cells appear to be unfertilized. glc suppresses autonomous endosperm development observed in the fertilization-independent seed (fis) class mutants. glc is also epistatic to mea, one of the fis class mutants, in fertilized seeds, and is essential for the biparental embryonic expression of PHE1, a repressed downstream target of MEA. In addition, maternal GLC function is required for the paternal embryonic expression of the ribosome protein gene RPS5a and the AMP deaminase gene FAC1, both of which are essential for early embryo and endosperm development. These results indicate that factors derived from the female gametophyte activate a subset of the paternal genome of fertilized seeds.
有性繁殖植物的早期种子发育需要母本和父本基因组,但主要受母本影响。从拟南芥Ds转座子插入系群体中分离出一个在早期胚胎和胚乳发育中存在缺陷的新型配子体母本效应突变体,即苍白突变体(glc)。glc突变是由Ds插入位点的缺失导致的,GLC的分子特性尚不清楚。在没有胚乳的情况下,glc胚胎可以发育到球形阶段,且glc中央细胞似乎未受精。glc抑制了在非受精种子(fis)类突变体中观察到的自主胚乳发育。在受精种子中,glc对fis类突变体之一的MEA也是上位性的,并且对于MEA的一个受抑制的下游靶标PHE1的双亲胚胎表达至关重要。此外,核糖体蛋白基因RPS5a和AMP脱氨酶基因FAC1的父本胚胎表达需要母本GLC功能,这两个基因对于早期胚胎和胚乳发育都是必不可少的。这些结果表明,来自雌配子体的因子激活了受精种子父本基因组的一个子集。