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首页> 外文期刊>Planta: An International Journal of Plant Biology >SpeciWc role of LeMAN2 in the control of seed germination exposed by overexpression of the LeMAN3 gene in tomato plants
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SpeciWc role of LeMAN2 in the control of seed germination exposed by overexpression of the LeMAN3 gene in tomato plants

机译:LeMAN2在控制番茄植物LeMAN3基因过表达暴露的种子萌发中的特殊作用

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摘要

Endo-mannanase is one of the key enzymes involved in the hydrolysis of the mannan-rich cell walls of tomato (Solanum lycopersicon) seeds. Two isoforms of endo-mannanase have been characterized in tomato seeds: LeMAN2 is active in the micropylar area prior to germination and LeMAN1 is active after germination in all endosperm cells surrounding the cotyledons. To explore whether general mannanase activity in the endosperm cap is suYcient to promote germination, the gene encoding LeMAN3 was inserted into transgenic tomato plants under the control of a CaMV-35S promoter. Expression of LeMAN3 was evident in the endosperm cap and in the lateral endosperm of the transgenic seeds 10 min after imbibition. An activity test indicated increased activity of endo- mannanase in the transgenic lines relative to the control line in all seed parts, during the Wrst 20 h of imbibition. However, overexpression of LeMAN3 in transgenic seeds inhibited seed germination at both optimal and suboptimal temperatures. Detailed RT-PCR analyses revealed the transcription patterns of the genes encoding the various mannanase isoforms, and indicated a delay in LeMAN2 transcription in the endosperm cap of the transgenic seeds. Interestingly, tissue-print assays indicated similar mannanase activity in the micropylar areas for both transgenic and control seeds. These results indicate that overexpression of active endo--mannanase in the endosperm cap is not suYcient to enable hydrolysis of the cell walls or to promote germination of tomato seeds. Cell-wall hydrolysis in these endosperm cells is under tight control and requires the speciWc activity of LeMAN2.
机译:内切甘露聚糖酶是参与水解番茄种子富含甘露聚糖的细胞壁的关键酶之一。番茄种子中已鉴定出两种甘露聚糖内切酶同工型:LeMAN2在发芽前的毛孔区域活跃,LeMAN1在发芽后的子叶周围所有胚乳细胞中活跃。为了探讨胚乳帽中的一般甘露聚糖酶活性是否足以促进发芽,将编码LeMAN3的基因插入到CaMV-35S启动子控制下的转基因番茄植株中。吸水后10分钟,LeMAN3的表达在转基因种子的胚乳帽和侧胚乳中很明显。活性测试表明,在吸水的第一个20小时内,所有种子部分中的甘露聚糖酶在转基因品系中的活性均高于对照品系。但是,LeMAN3在转基因种子中的过表达会在最佳和次佳温度下抑制种子发芽。详细的RT-PCR分析揭示了编码各种甘露聚糖酶同工型的基因的转录模式,并表明转基因种子的胚乳帽中LeMAN2转录的延迟。有趣的是,组织印迹试验表明,在转基因种子和对照种子的小孔中,甘露聚糖酶的活性相似。这些结果表明,在胚乳帽中过量表达活性内切甘露聚糖酶不足以使细胞壁水解或促进番茄种子发芽。这些胚乳细胞中的细胞壁水解受到严格控制,并需要LeMAN2的特定活性。

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