Institut Jean-Pierre Bourgin, Unité Mixte de Recherche 1318, Institut National de la Recherche Agronomique AgroParisTech, 78026 Versailles cedex, France.
Plant Cell. 2012 Feb;24(2):463-81. doi: 10.1105/tpc.111.091306. Epub 2012 Feb 3.
The conserved Target of Rapamycin (TOR) kinase forms high molecular mass complexes and is a major regulator of cellular adaptations to environmental cues. The Lethal with Sec Thirteen 8/G protein β subunit-like (LST8/GβL) protein is a member of the TOR complexes, and two putative LST8 genes are present in Arabidopsis thaliana, of which only one (LST8-1) is significantly expressed. The Arabidopsis LST8-1 protein is able to complement yeast lst8 mutations and interacts with the TOR kinase. Mutations in the LST8-1 gene resulted in reduced vegetative growth and apical dominance with abnormal development of flowers. Mutant plants were also highly sensitive to long days and accumulated, like TOR RNA interference lines, higher amounts of starch and amino acids, including proline and glutamine, while showing reduced concentrations of inositol and raffinose. Accordingly, transcriptomic and enzymatic analyses revealed a higher expression of genes involved in nitrate assimilation when lst8-1 mutants were shifted to long days. The transcriptome of lst8-1 mutants in long days was found to share similarities with that of a myo-inositol 1 phosphate synthase mutant that is also sensitive to the extension of the light period. It thus appears that the LST8-1 protein has an important role in regulating amino acid accumulation and the synthesis of myo-inositol and raffinose during plant adaptation to long days.
雷帕霉素靶蛋白(TOR)激酶形成高分子质量复合物,是细胞适应环境信号的主要调节因子。致死性与 Sec13 8/G 蛋白β亚基样(LST8/GβL)蛋白是 TOR 复合物的成员,拟南芥中有两个假定的 LST8 基因,其中只有一个(LST8-1)表达显著。拟南芥 LST8-1 蛋白能够互补酵母 lst8 突变体,并与 TOR 激酶相互作用。LST8-1 基因突变导致营养生长和顶端优势减弱,花发育异常。突变体植物对长日照也高度敏感,并积累了与 TOR RNAi 系类似的更高量的淀粉和氨基酸,包括脯氨酸和谷氨酰胺,而肌醇和棉子糖的浓度降低。因此,转录组和酶分析显示,当 lst8-1 突变体转移到长日照时,参与硝酸盐同化的基因表达上调。在长日照下,lst8-1 突变体的转录组与肌醇 1 磷酸合酶突变体的转录组具有相似性,后者也对光照时间的延长敏感。因此,LST8-1 蛋白在调节植物适应长日照时氨基酸积累和肌醇及棉子糖的合成方面具有重要作用。