Banik M, Li C D, Langridge P, Fincher G B
Department of Plant Science, University of Adelaide, South Australia.
Mol Gen Genet. 1997 Feb 20;253(5):599-608. doi: 10.1007/s004380050362.
A gene encoding (1-->4)-beta-xylan xylanohydrolase (EC 3.2.1.8) isoenzyme X-I has been isolated from a barley genomic library and the nucleotide sequence of a 2704-bp fragment defined. The gene contains a single intron of 91 bp in the coding region of the mature enzyme and additional introns may be present in the 5'-untranslated region. Expression of the xylanase gene is restricted to the aleurone layer of germinated grain, where the phytohormone gibberellic acid induces both transcriptional activity of the gene and the secretion of active enzyme from the layers. Abscisic acid abolishes the gibberellic acid induction of xylanase gene expression. The hormonal responses are consistent with the presence of promoter sequences, all of which are within 150 bp of the putative transcription start site, that have been implicated as cis-acting elements within gibberellic acid response complexes in plant genes. The elements include a pyrimidine box, CTCTTTCC, together with TAACGAC and TATCCAT boxes. Three genes encode (1-->4)-beta-xylanase isoenzymes in barley and these have been mapped on the barley genome using two doubled haploid populations and seven wheat-barley addition lines. The three xylanase genes are closely linked on the long arm of chromosome 7 (5H). No recombination was detected between the genes in 234 doubled haploid lines. The genes are flanked by the RFLP markers CDO506 on the proximal side and PSR370 at the distal end.
一个编码(1→4)-β-木聚糖木聚糖水解酶(EC 3.2.1.8)同工酶X-I的基因已从大麦基因组文库中分离出来,并确定了一个2704 bp片段的核苷酸序列。该基因在成熟酶的编码区含有一个91 bp的单一内含子,5'-非翻译区可能还存在其他内含子。木聚糖酶基因的表达仅限于发芽谷物的糊粉层,在那里植物激素赤霉素可诱导该基因的转录活性以及从糊粉层分泌活性酶。脱落酸可消除赤霉素对木聚糖酶基因表达的诱导作用。这些激素反应与启动子序列的存在一致,所有启动子序列都在假定转录起始位点的150 bp范围内,这些序列被认为是植物基因中赤霉素反应复合物内的顺式作用元件。这些元件包括一个嘧啶框CTCTTTCC,以及TAACGAC和TATCCAT框。大麦中有三个基因编码(1→4)-β-木聚糖酶同工酶,利用两个双单倍体群体和七个小麦-大麦附加系,已将它们定位在大麦基因组上。这三个木聚糖酶基因在7号染色体(5H)的长臂上紧密连锁。在234个双单倍体系中未检测到这些基因之间的重组。这些基因在近端一侧由RFLP标记CDO506侧翼,在远端由PSR370侧翼。