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Sex determination in cucurbits [Le d??terminisme du sexe chez les cucurbitac??es]

机译:葫芦的性别决定[葫芦的性别决定]

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Sex determination in plants leads to the development of unisexual flowers from an originally bisexual floral meristem. Cucurbits are not only species of agronomic interest but they also represent model species for the study of plant sex determination, because of their ability to harbor different sexual types. Such sexual forms are controlled by the identity of the alleles at the following loci: andromonoecious (a) and gynoecious (g) in melon, or androecious (a), Female (F), and Monoecious (M) in cucumber. We firstly showed that the andromonoecious a gene in melon encodes for an ACC synthase (CmACS7) and demonstrated that andromonoecy results from a mutation in the active site of the enzyme. Expression of the active enzyme inhibits the development of the male organs and is not required for carpel development. Because the a gene in melon and M gene in cucumber control the same sexual transition, monoecy to andromonoecy, we isolated the andromonoecy M gene in cucumber using a candidate gene approach in combination with genetic and biochemical analysis. We demonstrated the co-segregation of CsACS2, a close ortholog of CmACS7, with the M locus, and showed that the cucumber andromonoecious phenotype is also due to a loss of ACS enzymatic activity. CsACS2 is expressed specifically in carpel primordia of female flowers and should play a similar role to that of CmACS7 in melon in the inhibition of stamina development. Finally, we also showed that the transition from male to female flowers in the gynoecious lines results from epigenetic changes in the promoter of a C 2H 2 zinc-finger transcription factor, CmWIP1. This epigenetic change is elicited by the insertion of a DNA transposon, which causes the spreading of DNA methylation to the CmWIP1 promoter. Expression of CmWIP1 leads to carpel abortion, resulting in the development of unisexual male flowers. From all these results, we built a model in which CmACS7 and CmWIP1 interact to control the development of male, female and hermaphrodite flowers in melon. ? 2012 Soci??t?? de Biologie.
机译:植物中的性别决定导致原始双性恋花分生组织产生单性花。葫芦不仅是农艺学上感兴趣的物种,而且由于它们具有不同性类型的能力,它们还代表了用于研究植物性别决定的模型物种。这种性形式受以下位点等位基因的身份控制:瓜中的雄性单性(a)和雌性(g),黄瓜中的雄性(a),雌性(F)和雌性(M)。我们首先表明,瓜中的雄性单性基因编码ACC合酶(CmACS7),并证明雄性单性是由该酶活性位点的突变引起的。活性酶的表达抑制雄性器官的发育,而心皮发育不需要。由于瓜中的a基因和黄瓜中的M基因控制着相同的性过渡,从单性到雄性单性,我们使用候选基因方法结合遗传和生化分析分离了黄瓜中的雄性单性M基因。我们证明了CsACS2,CmACS7的一个直系同源物与M基因座的共分离,并且表明黄瓜雄激素表型也归因于ACS酶活性的丧失。 CsACS2特别在雌花的心皮原基中表达,并且在抑制耐力发展中应与瓜中的CmACS7发挥相似的作用。最后,我们还表明,从雌花系中的雄花到雌花的过渡是由C 2H 2锌指转录因子CmWIP1启动子的表观遗传变化引起的。这种表观遗传学变化是由DNA转座子的插入引起的,DNA转座子的插入导致DNA甲基化扩散到CmWIP1启动子。 CmWIP1的表达导致心皮流产,导致单性雄花的发育。根据所有这些结果,我们建立了一个模型,其中CmACS7和CmWIP1相互作用以控制瓜中雄性,雌性和雌雄同体花的发育。 ? 2012 Soci ?? t ?? de Biologie。

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