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SUPERWOMAN1 and DROOPING LEAF genes control floral organ identity in rice.

机译:SUPERWOMAN1和DROOPING LEAF基因控制水稻的花器官身份。

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We analyzed recessive mutants of two homeotic genes in rice, SUPERWOMAN1 (SPW1) and DROOPING LEAF (DL). The homeotic mutation spw1 transforms stamens and lodicules into carpels and palea-like organs, respectively. Two spw1 alleles, spw1-1 and spw1-2, show the same floral phenotype and did not affect vegetative development. We show that SPW1 is a rice APETALA3 homolog, OsMADS16. In contrast, two strong alleles of the dl locus, drooping leaf-superman1 (dl-sup1) and drooping leaf-superman2 (dl-sup2), cause the complete transformation of the gynoecium into stamens. In these strong mutants, many ectopic stamens are formed in the region where the gynoecium is produced in the wild-type flower and they are arranged in a non-whorled, alternate pattern. The intermediate allele dl-1 (T65), results in an increase in the number of stamens and stigmas, and carpels occasionally show staminoid characteristics. In the weakest mutant, dl-2, most of the flowers are normal. All four dl alleles cause midrib-less drooping leaves. The flower of the double mutant, spw1 dl-sup, produces incompletely differentiated organs indefinitely after palea-like organs are produced in the position where lodicules are formed in the wild-type flower. These incompletely differentiated organs are neither stamens nor carpels, but have partial floral identity. Based on genetic and molecular results, we postulate a model of stamen and carpel specification in rice, with DL as a novel gene controlling carpel identity and acting mutually and antagonistically to the class B gene, SPW1.
机译:我们分析了水稻中两个同源基因的隐性突变体,SUPERWOMAN1(SPW1)和DROOPING LEAF(DL)。同源突变spw1将雄蕊和sta片分别转化为心皮和类古器官。两个spw1等位基因spw1-1和spw1-2显示相同的花卉表型,并且不影响营养发育。我们显示SPW1是水稻APETALA3的同源物,OsMADS16。相反,dl基因座的两个强等位基因,下垂的叶超人1(dl-sup1)和下垂的叶超人2(dl-sup2),导致妇科生殖细胞完全转化为雄蕊。在这些强突变体中,许多异位雄蕊形成在野生型花朵中产生雌蕊的区域,并且它们以无节距的交替模式排列。中间等位基因dl-1(T65)导致雄蕊和柱头数量增加,而心皮偶尔显示出类雄蕊特征。在最弱的突变体dl-2中,大多数花是正常的。所有四个dl等位基因均导致无中脉下垂的叶子。在野生型花中形成lo的位置,在产生类瓜类器官后,双重突变体spw1 dl-sup的花无限期地产生了不完全分化的器官。这些不完全分化的器官既不是雄蕊也不是心皮,但是具有部分花性。根据遗传和分子结果,我们推测水稻的雄蕊和心皮规格模型,其中DL是控制心皮身份并与B类基因SPW1相互拮抗的新基因。

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