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首页> 外文期刊>Development >Pattern formation and growth during floral organogenesis: HUELLENLOS and AINTEGUMENTA are required for the formation of the proximal region of the ovule primordium in Arabidopsis thaliana.
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Pattern formation and growth during floral organogenesis: HUELLENLOS and AINTEGUMENTA are required for the formation of the proximal region of the ovule primordium in Arabidopsis thaliana.

机译:花器官发生期间的模式形成和生长:拟南芥中胚珠原基的近端区域的形成需要HUELLENLOS和AINTEGUMENTA。

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摘要

Our understanding of the molecular mechanisms that regulate and integrate the temporal and spatial control of cell proliferation during organ ontogenesis, particularly of floral organs, continues to be primitive. The ovule, the progenitor of the seed, of Arabidopsis thaliana has been used to develop an effective model system for the analysis of plant organogenesis. A typical feature of a generalized ovule is the linear arrangement of at least three distinct elements, the funiculus, chalaza and nucellus, along a proximal-distal axis. This pattern is supposed to be established during the early proliferative phase of ovule development. We provide genetic evidence that the young ovule primordium indeed is a composite structure. Two genes, HUELLENLOS and AINTEGUMENTA have overlapping functions in the ovule and differentially control the formation of the central and proximal elements of the primordium. The results indicate that proximal-distal pattern formation in the Arabidopsis ovule takes place in a sequential fashion, starting from the distal end. Furthermore, we show that HUELLENLOS also regulates the initiation and/or maintenance of integument and embryo sac ontogenesis and interestingly prevents inappropriate cell death in the young ovule.
机译:我们对调节和整合器官本体发育期间,特别是花器官的细胞增殖的时空控制的分子机制的理解仍然是原始的。拟南芥的胚珠,即种子的祖先,已被用于开发一种有效的模型系统,用于分析植物器官发生。广义的胚珠的典型特征是沿近端-远端轴至少线性排列了三个不同的元素,即真菌,裂缘和核。这种模式应该在胚珠发育的早期增殖阶段建立。我们提供了遗传学证据,即年轻的胚珠原基确实是一个复合结构。 HUELLENLOS和AINTEGUMENTA这两个基因在胚珠中具有重叠的功能,并差异地控制原基的中央和近端元件的形成。结果表明,从远端开始,拟南芥胚珠中近端-远端模式的形成是连续发生的。此外,我们表明,HUELLENLOS还调节了外被和胚囊的发生和/或维持,并且有趣地防止了年轻胚珠中不适当的细胞死亡。

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