Ohad N, Margossian L, Hsu Y C, Williams C, Repetti P, Fischer R L
Proc Natl Acad Sci U S A. 1996 May 28;93(11):5319-24. doi: 10.1073/pnas.93.11.5319.
The mechanisms that initiate reproductive development after fertilization are not understood. Reproduction in higher plants is unique because it is initiated by two fertilization events in the haploid female gametophyte. One sperm nucleus fertilizes the egg to form the embryo. A second sperm nucleus fertilizes the central cell to form the endosperm, a unique tissue that supports the growth of the embryo. Fertilization also activates maternal tissue differentiation, the ovule integuments form the seed coat, and the ovary forms the fruit. To investigate mechanisms that initiate reproductive development, a female-gametophytic mutation termed fie (fertilization-independent endosperm) has been isolated in Arabidopsis. The fie mutation specifically affects the central cell, allowing for replication of the central cell nucleus and endosperm development without fertilization. The fie mutation does not appear to affect the egg cell, suggesting that the processes that control the initiation of embryogenesis and endosperm development are different. FIE/fie seed coat and fruit undergo fertilization-independent differentiation, which shows that the fie female gametophyte is the source of signals that activates sporophytic fruit and seed coat development. The mutant fie allele is not transmitted by the female gametophyte. Inheritance of the mutant fie allele by the female gametophyte results in embryo abortion, even when the pollen bears the wild-type FIE allele. Thus, FIE carries out a novel, essential function for female reproductive development.
受精后启动生殖发育的机制尚不清楚。高等植物的繁殖是独特的,因为它由单倍体雌配子体中的两次受精事件启动。一个精核使卵细胞受精形成胚胎。另一个精核使中央细胞受精形成胚乳,胚乳是一种支持胚胎生长的独特组织。受精还激活母体组织分化,胚珠珠被形成种皮,子房形成果实。为了研究启动生殖发育的机制,在拟南芥中分离出一种称为fie(非受精依赖型胚乳)的雌配子体突变体。fie突变体特异性地影响中央细胞,使中央细胞核能够复制并在未受精的情况下发育出胚乳。fie突变体似乎不影响卵细胞,这表明控制胚胎发生和胚乳发育起始的过程是不同的。FIE/fie种皮和果实经历非受精依赖型分化,这表明fie雌配子体是激活孢子体果实和种皮发育信号的来源。突变的fie等位基因不能由雌配子体传递。即使花粉携带野生型FIE等位基因,雌配子体遗传突变的fie等位基因也会导致胚胎流产。因此,FIE对雌性生殖发育执行一种新的、必不可少的功能。