Khodakovskaya Mariya, Zhao Degang, Smith William, Li Yi, McAvoy Richard
Plant Science Department, University of Connecticut, 06269-4163, Storrs, CT, USA.
Plant Cell Rep. 2006 Nov;25(11):1181-92. doi: 10.1007/s00299-006-0181-y. Epub 2006 Jun 20.
Cytokinins play important roles in regulating plant growth and development. A new genetic construct for regulating cytokinin content in plant cells was cloned and tested. The gene coding for isopentenyl transferase (ipt) was placed under the control of a 0.821 kb fragment of the 1-aminocyclopropane-1-carboxylic acid (ACC) oxidase gene promoter from Lycopersicon esculentum (LEACO1) and introduced into Nicotiana tabacum (cv. Havana). Some LEACO1(0.821) (kb)-ipt transgenic plant lines displayed normal shoot morphology but with a dramatic increase in the number of flower buds compared to nontransgenic plants. Other transgenic lines produced excessive lateral branch development but no change in flower bud number. Isolated leaves of transgenic tobacco plants showed a significantly prolonged retention of chlorophyll under dark incubation (25 degrees C for 20 days). Leaves of nontransformed plants senesced gradually under the same conditions. Experiments with LEACO1(0.821) (kb)-gus transgenic tobacco plants suggested auxin and ethylene involvement in induction of LEACO1(0.821) (kb) promoter activity. Multiple copies of nucleotide base sequences associated with either ethylene or auxin response elements were identified in the LEACO1(0.821) (kb) promoter fragment. The LEACO1(0.821) (kb)-ipt fusion gene appears to have potential utility for improving certain ornamental and agricultural crop species by increasing flower bud initiation and altering branching habit.
细胞分裂素在调节植物生长发育中发挥着重要作用。一种用于调节植物细胞中细胞分裂素含量的新基因构建体被克隆并进行了测试。编码异戊烯基转移酶(ipt)的基因置于来自番茄(LEACO1)的1-氨基环丙烷-1-羧酸(ACC)氧化酶基因启动子的0.821 kb片段的控制之下,并被导入烟草(品种哈瓦那)。一些LEACO1(0.821)(kb)-ipt转基因植株系表现出正常的茎形态,但与非转基因植株相比,花芽数量显著增加。其他转基因系产生了过多的侧枝发育,但花芽数量没有变化。转基因烟草植株的离体叶片在黑暗培养(25℃,20天)下叶绿素保留时间显著延长。在相同条件下,未转化植株的叶片逐渐衰老。对LEACO1(0.821)(kb)-gus转基因烟草植株的实验表明,生长素和乙烯参与了LEACO1(0.821)(kb)启动子活性的诱导。在LEACO1(0.821)(kb)启动子片段中鉴定出了与乙烯或生长素反应元件相关的多个核苷酸碱基序列拷贝。LEACO1(0.821)(kb)-ipt融合基因似乎具有通过增加花芽起始和改变分枝习性来改良某些观赏作物和农作物品种的潜在用途。