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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >P-SAG12-IPT overexpression in eggplant delays leaf senescence and induces abiotic stress tolerance
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P-SAG12-IPT overexpression in eggplant delays leaf senescence and induces abiotic stress tolerance

机译:P-SAG12-IPT过度表达在茄子延迟叶片衰老并诱导非生物胁迫耐受性

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摘要

The isopentytransperase (IPT) gene, coupled to the SAG12 promoter, was successfully transferred into the eggplant (Solanum melongena L.) mediated by Agrobacterium tumefaciens. Four P-SAG12 IPT overexpressing transgenic plants were identified by Southern blotting. Reverse transcription polymerase chain reaction revealed that IPT was expressed in senescent leaves under the control of SAG12 promoter. Compared with wild type eggplants, the leaf senescence was significantly delayed and tolerance to drought and cold stress was enhanced in the T-1 generation of P-SAG12-IPT transgenic eggplants. The contents of chlorophyll, indoleacetic acid, zeatin riboside, and gibberellic acid in the transgenic eggplants were higher than those in the wild type eggplants. The activities of reactive oxygen species-scavenging enzymes in the transgenic eggplants were also higher than those in the wild type eggplants. Abscisic acid and malondialdehyde levels were lower in the transgenic plants than in the wild type plants. Also the vegetative growth rate and yield of the transgenic plants were higher than those of the wild type eggplant. Our study suggests that the P-SAG12-IPT expression cassette may be suitable for the genetic improvement of eggplant.
机译:偶联到SAG12启动子的异偶杂种(IPT)基因成功转移到由土壤杆菌癌症介导的茄子(Solanum Melongena L.)中。通过Southern印迹鉴定了过表达转基因植物的四种P-SAG12 IPT。逆转录聚合酶链反应显示,在SAG12启动子的控制下,IPT在衰老叶中表达。与野生型茄子相比,叶片衰老显着延迟,并且在P-SAG12-IPT转基因茄子的T-1代生成中提高了对干旱和冷应激的耐受性。转基因茄子中叶绿素,吲哚乙酸,扎肽核苷和甘油酸的含量高于野生型茄子中的含量。转基因茄子中的活性氧物质 - 清除酶的活性也高于野生型茄子中的活性氧合酶。转基因植物中脱落酸和丙二醛水平低于野生型植物。此外,转基因植物的植物生长速率和产量高于野生型茄子。我们的研究表明,P-SAG12-IPT表达盒可以适用于茄子的遗传改善。

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