Department of Plant Biology, University of Minnesota, St Paul, MN 55108-1095, USA.
Plant J. 2010 Oct;64(2):304-17. doi: 10.1111/j.1365-313X.2010.04329.x. Epub 2010 Sep 1.
Transcriptome analysis using the Affymetrix ATH1 platform has been completed on purified trichomes from the gl3-sst mutant. These trichomes display immature features, such as glassy cell walls and blunted branches. The gl3-sst trichome transcriptome was greatly enriched for genes involved in lipid biosynthesis, including those mediating the synthesis of fatty acids and wax. In addition, gl3-sst trichomes displayed reduced expression of the R3 MYBs TRY and CPC, which normally function to limit trichome development. The expression of the MIXTA-like MYB gene NOK was elevated. Members of the MIXTA-like family promote conical cell outgrowth, and in some cases, trichome initiation in diverse plant species. In contrast, NOK limits trichome outgrowth in wild-type Arabidopsis plants. Similar to other MIXTA-like genes, NOK was required for the expansion of gl3-sst trichomes, as the gl3-sst nok double mutant trichomes were greatly reduced in size. Expression of NOK in nok mutants reduced branch formation, whereas in gl3-sst nok, NOK expression promoted trichome cell outgrowth, illustrating duel roles for NOK in both promoting and limiting trichome development. MIXTA-like genes from phylogenetically diverse plant species could substitute for NOK in both nok and gl3-sst nok backgrounds. These findings suggest that certain aspects of NOK and MIXTA-like gene function have been conserved.
利用 Affymetrix ATH1 平台进行的转录组分析已完成于从 gl3-sst 突变体中纯化的毛状体。这些毛状体表现出不成熟的特征,如玻璃状细胞壁和钝的分支。gl3-sst 毛状体转录组富含参与脂质生物合成的基因,包括那些介导脂肪酸和蜡合成的基因。此外,gl3-sst 毛状体显示出参与脂肪酸和蜡合成的基因表达上调,TRY 和 CPC 基因的表达下调。TRY 和 CPC 基因通常作用于限制毛状体的发育。MIXTA-like MYB 基因 NOK 的表达升高。MIXTA-like 家族的成员促进锥形细胞的向外生长,并在某些情况下促进不同植物物种的毛状体起始。相反,NOK 限制野生型拟南芥植物毛状体的向外生长。与其他 MIXTA-like 基因一样,NOK 是 gl3-sst 毛状体扩张所必需的,因为 gl3-sst nok 双突变体毛状体的大小大大减小。在 nok 突变体中表达 NOK 减少了分支形成,而在 gl3-sst nok 中,NOK 表达促进了毛状体细胞的向外生长,这表明 NOK 在促进和限制毛状体发育方面具有双重作用。来自系统发育上不同植物物种的 MIXTA-like 基因可以在 nok 和 gl3-sst nok 背景中替代 NOK。这些发现表明,NOK 和 MIXTA-like 基因功能的某些方面已经保守。