Potokina E, Sreenivasulu N, Altschmied L, Michalek W, Graner A
Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstrasse 3, 06466 Gatersleben, Germany.
Funct Integr Genomics. 2002 May;2(1-2):28-39. doi: 10.1007/s10142-002-0050-x. Epub 2002 Mar 28.
A barley cDNA macroarray comprising 1,440 unique genes was used to analyze the spatial and temporal patterns of gene expression in embryo, scutellum and endosperm tissue during different stages of germination. Among the set of expressed genes, 69 displayed the highest mRNA level in endosperm tissue, 58 were up-regulated in both embryo and scutellum, 11 were specifically expressed in the embryo and 16 in scutellum tissue. Based on Blast X analyses, 70% of the differentially expressed genes could be assigned a putative function. One set of genes, expressed in both embryo and scutellum tissue, included functions in cell division, protein translation, nucleotide metabolism, carbohydrate metabolism and some transporters. The other set of genes expressed in endosperm encodes several metabolic pathways including carbohydrate and amino acid metabolism as well as protease inhibitors and storage proteins. As shown for a storage protein and a trypsin inhibitor, the endosperm of the germinating barley grain contains a considerable amount of residual mRNA which was produced during seed development and which is degraded during early stages of germination. Based on similar expression patterns in the endosperm tissue, we identified 29 genes which may undergo the same degradation process.
一个包含1440个独特基因的大麦cDNA微阵列被用于分析发芽不同阶段胚、盾片和胚乳组织中基因表达的时空模式。在一组表达基因中,69个在胚乳组织中显示出最高的mRNA水平,58个在胚和盾片中均上调,11个在胚中特异性表达,16个在盾片组织中特异性表达。基于Blast X分析,70%的差异表达基因可被赋予一个推定功能。一组在胚和盾片组织中均表达的基因包括细胞分裂、蛋白质翻译、核苷酸代谢、碳水化合物代谢和一些转运蛋白方面的功能。另一组在胚乳中表达的基因编码几种代谢途径,包括碳水化合物和氨基酸代谢以及蛋白酶抑制剂和贮藏蛋白。如一个贮藏蛋白和一个胰蛋白酶抑制剂所示,发芽大麦籽粒的胚乳含有相当数量的残留mRNA,这些mRNA是在种子发育期间产生的,并在发芽早期降解。基于胚乳组织中相似的表达模式,我们鉴定出29个可能经历相同降解过程的基因。