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首页> 外文期刊>Plant and cell physiology >The bHLH transcription factor SPATULA controls final leaf size in Arabidopsis thaliana.
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The bHLH transcription factor SPATULA controls final leaf size in Arabidopsis thaliana.

机译:bHLH转录因子 SPATULA 控制拟南芥(Arabidopsis thaliana)的最终叶片大小。

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摘要

Leaves possess intrinsic information about their final size, but the developmental mechanisms setting the limits of growth are not well characterized. By screening enhancer trap lines that show a specific expression pattern in leaf primordia, we isolated one line, 576. This line contains a T-DNA insertion upstream of the basic helix-loop-helix (bHLH) transcription factor SPATULA (SPT) gene, and shows expression in the basal region of young leaves, where cell proliferation is active. An spt loss-of-function mutation increased leaf size and total cell number within a leaf, while SPT overexpression decreased leaf size and total cell number within a leaf. Although spt mutations did not affect cell size, SPT overexpression decreased the cell size in fully expanded leaves. Genetic analysis suggested that SPT acts independently from another set of cell proliferation-dependent organ size regulators ANGUSTIFOLIA3 (AN3) and GROWTH REGULATING FACTOR5 (AtGRF5). Detailed analysis of spt leaf development showed that the spt mutation enlarged the size of the meristematic region in leaf primordia, while overexpression of AtGRF5 promoted cell proliferation without affecting the enlargement of the meristematic region. These results suggest that SPT functions as a repressor of leaf growth and that meristematic region size in young leaf primordia, in terms of proliferative cell number within leaf primordia, is another target of leaf size determination, which previously had not been identified.
机译:叶片拥有关于其最终大小的内在信息,但是确定生长极限的发育机制尚未得到很好的表征。通过筛选在原基中显示特定表达模式的增强子捕获株系,我们分离出一条株系576。该株系包含在基本螺旋-环-螺旋(bHLH)转录因子 SPATULA 上游的T-DNA插入。 i>( SPT )基因,并显示在幼叶基部区域的表达,该区域的细胞增殖活跃。 spt 功能丧失突变增加了叶片的叶子大小和总细胞数,而 SPT 过表达降低了叶片的叶子大小和总细胞数。尽管 spt 突变不影响细胞大小,但 SPT 的过表达减少了完全展开的叶片中的细胞大小。遗传分析表明, SPT 与另一组依赖细胞增殖的器官尺寸调节剂 ANGUSTIFOLIA3 ( AN3 )和生长调节因子5独立发挥作用( AtGRF5 )。对 spt 叶片发育的详细分析表明, spt 突变扩大了叶片原基中分生组织的大小,而 AtGRF5 的过表达促进了细胞增殖。而不影响分生区域的扩大。这些结果表明, SPT 起到抑制叶片生长的作用,并且根据叶片原基中的增殖细胞数量,年轻叶片原基中的分生组织区域大小是确定叶片大小的另一个目标,以前尚未确定。

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