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拟南芥中INDEHISCENT对果实模式的调控。

Control of fruit patterning in Arabidopsis by INDEHISCENT.

作者信息

Liljegren Sarah J, Roeder Adrienne H K, Kempin Sherry A, Gremski Kristina, Østergaard Lars, Guimil Sonia, Reyes Daengnoy K, Yanofsky Martin F

机构信息

Section of Cell and Developmental Biology, Division of Biological Sciences, University of California, San Diego, 9500 Gilman Drive, Department 0116, La Jolla, CA 92093, USA.

出版信息

Cell. 2004 Mar 19;116(6):843-53. doi: 10.1016/s0092-8674(04)00217-x.

Abstract

The Arabidopsis seedpod opens through a spring-loaded mechanism known as pod shatter, which is essential for dispersal of the seeds. Here, we identify INDEHISCENT (IND), an atypical bHLH protein, that is necessary for fruit opening and is involved in patterning each of the three fruit cell types required for seed dispersal. Previous studies suggested that FRUITFULL (FUL), a member of the MADS-domain transcription factor family, is required for fruit growth since ful mutant fruit fail to undergo the dramatic enlargement that normally occurs after fertilization. Here we show, however, that FUL is not directly required for fruit elongation and instead is required to prevent ectopic activity of IND. Our molecular and genetic studies suggest a model for the regulatory interactions among the genes that control fruit development and the mechanism that results in the expression of IND in a narrow stripe of cells.

摘要

拟南芥的角果通过一种名为角果开裂的弹簧加载机制打开,这对种子传播至关重要。在这里,我们鉴定出了一种非典型的bHLH蛋白——开裂缺陷蛋白(IND),它是果实开裂所必需的,并且参与了种子传播所需的三种果实细胞类型中每一种的模式形成。先前的研究表明,MADS结构域转录因子家族成员FUL对果实生长是必需的,因为ful突变体果实无法经历受精后通常发生的显著膨大。然而,我们在这里表明,FUL并非果实伸长直接所需,而是用于防止IND的异位活性。我们的分子和遗传学研究提出了一个控制果实发育的基因之间调控相互作用的模型,以及导致IND在窄细胞条带中表达的机制。

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