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首页> 外文期刊>Developmental genetics >Morphological and molecular analysis of a double-flowered mutant of thedioecious plant white campion showing both meristic and homeotic effects
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Morphological and molecular analysis of a double-flowered mutant of thedioecious plant white campion showing both meristic and homeotic effects

机译:雌雄异株植物白色双花双花突变体的形态和分子分析,显示兼具顺势和顺势效应

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Many double-flowered plants, in which petals replace stamens, are highly valued by the horticultural industry. These mutants exhibit a homeotic conversion of floral organs and frequently also a meristic increase in floral organ number. By gamma irradiation we generated a novel double-flowered mutant, Sl-dfl, in a male genetic background of the dioecious plant white campion (Silene latifolia). This mutant shows a homeotic conversion of stamens to petals, together with uncontrolled growth and division of second and third whorl floral organ primordia, causing a proliferation of petal and chimeric petal-stamen organs. We characterize this mutant developmentally by scanning electron microscopy and demonstrate that the effects of the mutation commence following the formation of a correctly partitioned floral meristem with a wild-type arrangement of organ primordia. We have commenced a molecular investigation of the Sl-dfl mutant by testing the expression and genomic organization of the known while campion putative MADS-box floral. homeotic genes. These si;dies indicate Four MADS-box genes to be unlikely to be mutated in the double-flowered mutant. The possibility that a putative C-function MADS-box gene may cause the mutant phenotype has not currently been excluded, though our morphological studies suggest that a C-funciion mutation is not involved in this case. We conclude that a number of different classes of double-flowered mutation exist, not all of which are currently known from model plant species. This may be indicative of important developmental differences between species and may also emphasize a need for comparative studies of floral development. (C) 1999 Wiley-Liss, Inc.
机译:园艺业高度重视许多用花瓣代替雄蕊的重花植物。这些突变体表现出花器官的同源转化,并且经常还花器官数目的大量增加。通过伽马射线辐射,我们在雌雄异株的白色小花(Silene latifolia)的雄性遗传背景中产生了一个新的双花突变体Sl-dfl。该突变体显示雄蕊向花瓣的同源转化,以及第二和第三轮花器官原基的不受控制的生长和分裂,导致花瓣和嵌合的花瓣-雄蕊器官的增殖。我们通过扫描电子显微镜表征该突变体的发育,并证明该突变的影响始于器官原基野生型排列的正确分配的花卉分生组织的形成。我们已经通过测试已知的同时假定的假定的MADS盒花的表达和基因组组织开始了Sl-dfl突变体的分子研究。同源基因。这些结果表明在双花突变体中不太可能发生四个MADS-box基因突变。尽管我们的形态学研究表明在这种情况下不涉及C-功能性突变,但目前尚未排除推定的C功能MADS-box基因可能导致突变表型的可能性。我们得出的结论是,存在许多不同类别的双花突变,目前并非从模型植物物种中得知所有这些。这可能表明物种之间重要的发育差异,也可能强调需要对花卉发育进行比较研究。 (C)1999 Wiley-Liss,Inc.

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