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Overexpression of cold-inducible wheat galactinol synthase confers tolerance to chilling stress in transgenic rice

机译:冷诱导小麦半乳糖半乳糖合酶的过表达赋予转基因水稻耐寒性

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摘要

Galactinol synthase (GolS) is considered to be a key regulator of the biosynthesis of Raffinose family oligosaccharides (RFOs). Accumulation of RFOs has been reported to play a role in protection against abiotic stresses. We identified two cDNAs encoding galactinol synthase from wheat (Triticum aestivum L.), which we designated as TaGolS1 and TaGoZS2. Expression of the two TaGo1S genes was induced by cold stress but not by drought, heat stress or ABA treatment in wheat. We generated transgenic lines of rice (Oryza sativa L.) constitutively overexpressing TaGolS1 or TaGoZS2. These transgenic plants accumulated significantly higher levels of galactinol and raffinose than did wild-type plants and exhibited enhanced cold-stress tolerance. The results demonstrate the involvement of galactinol and raffinose in the development of chilling stress in rice and indicate that the genetic modification of the biosynthesis of RFOs by transformation with GolS genes could be an effective method for enhancing chilling-stress tolerance in rice.
机译:半乳糖醇合酶(GolS)被认为是棉子糖家族寡糖(RFO)生物合成的关键调节剂。据报道,RFO的积累在抵抗非生物胁迫中起着作用。我们从小麦(Triticum aestivum L.)中鉴定了两个编码半乳糖醇合酶的cDNA,分别命名为TaGolS1和TaGoZS2。两个TaGo1S基因的表达是由冷胁迫诱导的,而不是由干旱,热胁迫或小麦ABA处理诱导的。我们产生了组成型过量表达TaGolS1或TaGoZS2的水稻转基因品系。这些转基因植物比野生型植物积聚了更高水平的半乳糖醇和棉子糖,并表现出增强的耐寒性。结果表明,半乳糖醇和棉子糖参与了水稻的低温胁迫的发生,并表明通过用GolS基因转化对RFOs的生物合成进行遗传修饰可能是增强水稻的低温胁迫耐受性的有效方法。

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