Rodrigues Julio C M, Tucker Matthew R, Johnson Susan D, Hrmova Maria, Koltunow Anna M G
Commonwealth Scientific and Industrial Research Organization Plant Industry, Glen Osmond, South Australia 5064, Australia.
Plant Cell. 2008 Sep;20(9):2372-86. doi: 10.1105/tpc.108.059287. Epub 2008 Sep 23.
A Polycomb-Group (PcG) complex, FERTILIZATION INDEPENDENT SEED (FIS), represses endosperm development in Arabidopsis thaliana until fertilization occurs. The Hieracium genus contains apomictic species that form viable seeds asexually. To investigate FIS function during apomictic seed formation, FERTILIZATION INDEPENDENT ENDOSPERM (FIE), encoding a WD-repeat member of the FIS complex, was isolated and downregulated in sexual and apomictic Hieracium species. General downregulation led to defects in leaf and seed development, consistent with a role in developmental transitions and cell fate. PcG-like activity of Hieracium FIE was also supported by its interaction in vitro with the Arabidopsis CURLY LEAF PcG protein. By contrast, specific downregulation of FIE in developing seeds of sexual Hieracium did not result in autonomous endosperm proliferation but led to seed abortion after cross-pollination. Furthermore, in apomictic Hieracium, specific FIE downregulation inhibited autonomous embryo and endosperm initiation, and most autonomous seeds displayed defective embryo and endosperm growth. Therefore, FIE is required for both apomictic and fertilization-induced seed initiation in Hieracium. Since Hieracium FIE failed to interact with FIS class proteins in vitro, its partner proteins might differ from those in the FIS complex of Arabidopsis. These differences in protein interaction were attributed to structural modifications predicted from comparisons of Arabidopsis and Hieracium FIE molecular models.
一种多梳蛋白复合体(Polycomb-Group,PcG),即非受精种子(FERTILIZATION INDEPENDENT SEED,FIS),在拟南芥中抑制胚乳发育,直至受精发生。山柳菊属包含无融合生殖物种,这些物种能无性形成有活力的种子。为了研究FIS在无融合生殖种子形成过程中的功能,编码FIS复合体中一个WD重复成员的非受精胚乳(FERTILIZATION INDEPENDENT ENDOSPERM,FIE)在有性和无融合生殖的山柳菊物种中被分离并下调表达。普遍下调导致叶片和种子发育缺陷,这与它在发育转变和细胞命运中的作用一致。山柳菊FIE的类PcG活性也得到其在体外与拟南芥卷曲叶PcG蛋白相互作用的支持。相比之下,在有性山柳菊发育种子中特异性下调FIE并没有导致胚乳自主增殖,而是导致异花授粉后种子败育。此外,在无融合生殖的山柳菊中,特异性下调FIE抑制了胚和胚乳的自主起始,并且大多数自主种子表现出胚和胚乳生长缺陷。因此,FIE是山柳菊无融合生殖和受精诱导种子起始所必需的。由于山柳菊FIE在体外未能与FIS类蛋白相互作用,其伙伴蛋白可能与拟南芥FIS复合体中的不同。这些蛋白质相互作用的差异归因于从拟南芥和山柳菊FIE分子模型比较中预测的结构修饰。