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消失的马尾(vanishing tassel)2 基因编码了一种草特异性色氨酸氨基转移酶,该酶对于玉米的营养生长和生殖生长发育是必需的。

vanishing tassel2 encodes a grass-specific tryptophan aminotransferase required for vegetative and reproductive development in maize.

机构信息

Department of Biology, Pensylvania State University, 208 Mueller Lab, University Park, Pensylvania 16802, USA.

出版信息

Plant Cell. 2011 Feb;23(2):550-66. doi: 10.1105/tpc.110.075267. Epub 2011 Feb 18.

DOI:10.1105/tpc.110.075267
PMID:21335375
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3077783/
Abstract

Auxin plays a fundamental role in organogenesis in plants. Multiple pathways for auxin biosynthesis have been proposed, but none of the predicted pathways are completely understood. Here, we report the positional cloning and characterization of the vanishing tassel2 (vt2) gene of maize (Zea mays). Phylogenetic analyses indicate that vt2 is a co-ortholog of TRYPTOPHAN AMINOTRANSFERASE OF ARABIDOPSIS1 (TAA1), which converts Trp to indole-3-pyruvic acid in one of four hypothesized Trp-dependent auxin biosynthesis pathways. Unlike single mutations in TAA1, which cause subtle morphological phenotypes in Arabidopsis thaliana, vt2 mutants have dramatic effects on vegetative and reproductive development. vt2 mutants share many similarities with sparse inflorescence1 (spi1) mutants in maize. spi1 is proposed to encode an enzyme in the tryptamine pathway for Trp-dependent auxin biosynthesis, although this biochemical activity has recently been questioned. Surprisingly, spi1 vt2 double mutants had only a slightly more severe phenotype than vt2 single mutants. Furthermore, both spi1 and vt2 single mutants exhibited a reduction in free auxin levels, but the spi1 vt2 double mutants did not have a further reduction compared with vt2 single mutants. Therefore, both spi1 and vt2 function in auxin biosynthesis in maize, possibly in the same pathway rather than independently as previously proposed.

摘要

生长素在植物器官发生中起着至关重要的作用。已经提出了多种生长素生物合成途径,但没有一种预测途径被完全理解。在这里,我们报告了玉米(Zea mays)消失的塔索 2(vt2)基因的定位克隆和特性。系统发育分析表明,vt2 是拟南芥色氨酸氨基转移酶 1(TAA1)的共直系同源物,TAA1 在四种假设的色氨酸依赖生长素生物合成途径之一中将色氨酸转化为吲哚-3-丙酮酸。与 TAA1 中的单个突变不同,这些突变在拟南芥中引起微妙的形态表型,vt2 突变体对营养和生殖发育有显著影响。vt2 突变体与玉米中的稀疏花序 1(spi1)突变体有许多相似之处。spi1 被提议编码色氨酸途径中用于色氨酸依赖生长素生物合成的酶,尽管这种生化活性最近受到质疑。令人惊讶的是,spi1 vt2 双突变体的表型仅比 vt2 单突变体略严重。此外,spi1 和 vt2 单突变体都表现出游离生长素水平降低,但与 vt2 单突变体相比,spi1 vt2 双突变体没有进一步降低。因此,spi1 和 vt2 都在玉米的生长素生物合成中起作用,可能在同一途径中,而不是如前所述的独立作用。

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Molecular data from 27 proteins do not support a Precambrian origin of land plants.27 种蛋白质的分子数据不支持陆地植物的前寒武纪起源。
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