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超man,拟南芥花同源异型基因的一个调控因子。 (注:这里的“SUPERMAN”可能是特定的基因名称之类的,直接音译为“超man”,具体含义需结合专业背景确定)

SUPERMAN, a regulator of floral homeotic genes in Arabidopsis.

作者信息

Bowman J L, Sakai H, Jack T, Weigel D, Mayer U, Meyerowitz E M

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

Development. 1992 Mar;114(3):599-615. doi: 10.1242/dev.114.3.599.

Abstract

We describe a locus, SUPERMAN, mutations in which result in extra stamens developing at the expense of the central carpels in the Arabidopsis thaliana flower. The development of superman flowers, from initial primordium to mature flower, is described by scanning electron microscopy. The development of doubly and triply mutant strains, constructed with superman alleles and previously identified homeotic mutations that cause alterations in floral organ identity, is also described. Essentially additive phenotypes are observed in superman agamous and superman apetala2 double mutants. The epistatic relationships observed between either apetala3 or pistillata and superman alleles suggest that the SUPERMAN gene product could be a regulator of these floral homeotic genes. To test this, the expression patterns of AGAMOUS and APETALA3 were examined in superman flowers. In wild-type flowers, APETALA3 expression is restricted to the second and third whorls where it is required for the specification of petals and stamens. In contrast, in superman flowers, APETALA3 expression expands to include most of the cells that would normally constitute the fourth whorl. This ectopic APETALA3 expression is proposed to be one of the causes of the development of the extra stamens in superman flowers. The spatial pattern of AGAMOUS expression remains unaltered in superman flowers as compared to wild-type flowers. Taken together these data indicate that one of the functions of the wild-type SUPERMAN gene product is to negatively regulate APETALA3 in the fourth whorl of the flower. In addition, superman mutants exhibit a loss of determinacy of the floral meristem, an effect that appears to be mediated by the APETALA3 and PISTILLATA gene products.

摘要

我们描述了一个名为SUPERMAN的基因座,其突变会导致拟南芥花中额外的雄蕊发育,同时中央心皮的发育受到抑制。通过扫描电子显微镜描述了超雄花从初始原基到成熟花的发育过程。还描述了用超雄基因等位基因和先前鉴定的导致花器官特征改变的同源异型突变构建的双突变和三突变菌株的发育情况。在超雄无配子和超雄花瓣缺失2双突变体中观察到基本的累加表型。在花瓣缺失3或雌蕊缺失与超雄基因等位基因之间观察到的上位关系表明,SUPERMAN基因产物可能是这些花同源异型基因的调节因子。为了验证这一点,研究了超雄花中无配子基因和花瓣缺失3基因的表达模式。在野生型花中,花瓣缺失3基因的表达仅限于第二轮和第三轮,这是花瓣和雄蕊特化所必需的。相比之下,在超雄花中,花瓣缺失3基因的表达扩展到包括大多数通常构成第四轮的细胞。这种异位的花瓣缺失3基因表达被认为是超雄花中额外雄蕊发育的原因之一。与野生型花相比,超雄花中无配子基因表达的空间模式保持不变。综合这些数据表明,野生型SUPERMAN基因产物的功能之一是在花的第四轮中负向调节花瓣缺失3基因。此外,超雄突变体表现出花分生组织确定性的丧失,这种效应似乎是由花瓣缺失3基因和雌蕊缺失基因产物介导的。

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