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NUBBIN和JAGGED基因决定拟南芥雄蕊和心皮的形状。

NUBBIN and JAGGED define stamen and carpel shape in Arabidopsis.

作者信息

Dinneny José R, Weigel Detlef, Yanofsky Martin F

机构信息

Division of Biological Sciences, University of California San Diego, La Jolla, CA 92093, USA.

出版信息

Development. 2006 May;133(9):1645-55. doi: 10.1242/dev.02335. Epub 2006 Mar 22.

DOI:10.1242/dev.02335
PMID:16554365
Abstract

Differential growth of tissues during lateral organ development is essential for producing variation in shape and size. Previous studies have identified JAGGED (JAG), a gene that encodes a putative C2H2 zinc-finger transcription factor, as a key regulator of shape that promotes growth in lateral organs. Although JAG expression is detected in all floral organs, loss-of-function jag alleles have their strongest effects on sepal and petal development, suggesting that JAG may act redundantly with other factors in stamens and carpels. Here, we show that NUBBIN (NUB), a gene closely related to JAG, is responsible for this redundancy. Unlike JAG, NUB is exclusively expressed in leaves, stamens and carpels, and briefly in petal primordia. Furthermore, whereas JAG expression extends into all cell layers of lateral organs, NUB is restricted to the interior adaxial side. Our analysis focuses on stamen and gynoecium development, where we find that NUB acts redundantly with JAG to promote the growth of the pollen-bearing microsporangia of the anthers and the carpel walls of the gynoecium, which enclose the ovules. JAG and NUB also act redundantly to promote the differentiation of adaxial cell types in the carpel walls, and in the establishment of the correct number of cell layers. The important role these two factors play in regulating organ growth is further demonstrated by gain-of-function experiments showing that ectopic NUB expression is sufficient to drive the proliferation of tissues and the amplification of cell-layer number.

摘要

侧生器官发育过程中组织的差异生长对于产生形状和大小的变化至关重要。先前的研究已确定JAGGED(JAG),一个编码假定的C2H2锌指转录因子的基因,是促进侧生器官生长的形状关键调节因子。尽管在所有花器官中都检测到JAG表达,但功能缺失的jag等位基因对萼片和花瓣发育的影响最为强烈,这表明JAG可能与雄蕊和心皮中的其他因子发挥冗余作用。在这里,我们表明与JAG密切相关的基因NUBBIN(NUB)负责这种冗余。与JAG不同,NUB仅在叶、雄蕊和心皮中表达,在花瓣原基中短暂表达。此外,JAG的表达延伸到侧生器官的所有细胞层,而NUB则局限于内部近轴侧。我们的分析集中在雄蕊和雌蕊的发育上,我们发现NUB与JAG发挥冗余作用,促进花药中含花粉的小孢子囊和包裹胚珠的雌蕊心皮壁的生长。JAG和NUB还发挥冗余作用,促进心皮壁近轴细胞类型的分化以及正确细胞层数的建立。功能获得实验进一步证明了这两个因子在调节器官生长中的重要作用,该实验表明异位NUB表达足以驱动组织增殖和细胞层数扩增。

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