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Isolation of Anther-specific Gene Promoters Suitable for Transgene Expression in Rice

机译:水稻中适合转基因表达的花药特异性基因启动子的分离

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摘要

To isolate rice anther-specific promoters that allow strong and constitutive expression of transgenes under chilling stress conditions, a genome-wide screen using a microarray was conducted. Six candidate genes for anther-specific expression were selected after comparison of expression levels in leaf and anther tissues from booting stage plants. These genes encoded a mandelonitrile lyase (OsACE1), a sterol desaturase (OsCER1), a MADS-box protein (OsMADS58), a polygalacturonase (OsPGT1), an ERF-like AP2 domain-containing protein (OsERFL1), and a ribosome-inactivating protein-like gene (OsRIP1). Reverse transcriptase-polymerase chain reaction analyses confirmed anther-specific expression of these genes under controlled and in-field chilling conditions. Promoter regions of the selected genes were isolated and fused to the β-glucuronidase (GUS) reporter gene, and the constructs were introduced into rice plants. GUS expression in all transgenic plants except for those carrying OsERFL1and OsRIP1 constructs was only detectable in anthers within the panicles, and no GUS activity was detected in leaves. However, OsERFL1 and OsRIP1 promoters were shown to drive GUS expression in paleae and glumes as well as anthers. GUS expression levels of four transgenic plants were also tested with 2-week-old seedlings and grains. Promoters for OsACE1, OsCER1, OsMADS58, and OsPGT1 were shown to be silent in roots and aerial parts of the seedlings and mature grains. Therefore, these four promoters were deemed suitable for anther-specific transgene expression in rice.
机译:为了分离水稻花药特异的启动子,该启动子在寒冷胁迫条件下能强而组成型地表达转基因,使用微阵列进行了全基因组筛选。比较启动期植物的叶片和花药组织中的表达水平后,选择了六个花药特异性表达的候选基因。这些基因编码了扁桃腈裂解酶(OsACE1),固醇去饱和酶(OsCER1),MADS-box蛋白(OsMADS58),聚半乳糖醛酸酶(OsPGT1),ERF样AP2域含蛋白(OsERFL1)和核糖体失活蛋白样基因(OsRIP1)。逆转录酶-聚合酶链反应分析证实了这些基因在控制和田间冷却条件下的花药特异性表达。分离所选基因的启动子区域,并与β-葡萄糖醛酸苷酶(GUS)报道基因融合,并将该构建体引入水稻植株中。除携带OsERFL1和OsRIP1构建体的植物外,所有转基因植物中的GUS表达仅在穗内的花药中可检测到,在叶片中未检测到GUS活性。但是,显示OsERFL1和OsRIP1启动子可驱动古菌,颖花和花药中的GUS表达。还用2周龄的幼苗和谷物测试了四种转基因植物的GUS表达水平。 OsACE1,OsCER1,OsMADS58和OsPGT1的启动子在幼苗的根部和空中部分以及成熟谷物中均保持沉默。因此,认为这四个启动子适合于水稻中的花药特异性转基因表达。

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