Suppr超能文献

蒺藜苜蓿冷响应半乳糖醇合酶基因(MfGolS1)受肌醇诱导,赋予其多种非生物胁迫耐受性。

A cold responsive galactinol synthase gene from Medicago falcata (MfGolS1) is induced by myo-inositol and confers multiple tolerances to abiotic stresses.

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Physiol Plant. 2013 Sep;149(1):67-78. doi: 10.1111/ppl.12019. Epub 2013 Jan 28.

Abstract

Galactinol synthase (GolS, EC 2.4.1.123) catalyzes formation of galactinol and the subsequent synthesis of raffinose family oligosaccharides. The relationship of GolS to drought and salt tolerance has been well documented, however, little information is available about the role of GolS gene in cold tolerance. A coding sequence of MfGolS1 cDNA was cloned from Medicago sativa spp falcata (i.e. M. falcata), a species that exhibits greater cold tolerance than alfalfa (M. sativa). MfGolS1 transcript was not detected in untreated vegetative tissues using RNA blot hybridization; however, it was greatly induced in leaves, but not in stem and petiole, after cold treatment. Higher levels of MfGolS1 transcript were induced and maintained in M. falcata than in M. sativa during cold acclimation. Accordingly, more sugars including sucrose, galactinol, raffinose and stachyose were accumulated in M. falcata than in M. sativa. The data indicated that MfGolS1 transcript and its resultant sugar accumulation were associated with the differential cold tolerance between M. falcata and M. sativa. MfGolS1 transcript was weakly induced by dehydration and salt stresses, but not responsive to abscisic acid. MfGolS1 could be induced by myo-inositol, which is proposed to participate in cold-induced MfGolS1 expression. Overexpression of MfGolS1 in tobacco resulted in elevated tolerance to freezing and chilling in transgenic plants as a result of enhanced levels of galactinol, raffinose and stachyose. Tolerance to drought and salt stresses was also increased in the transgenic tobacco plants. It is suggested that MfGolS1 plays an important role in plant tolerance to abiotic stresses.

摘要

半乳糖苷蔗糖合酶(GolS,EC 2.4.1.123)催化半乳糖醇的形成和随后的棉子糖家族低聚糖的合成。GolS 与干旱和耐盐性的关系已有很好的记录,但关于 GolS 基因在耐冷性中的作用的信息很少。从 Medicago sativa spp falcata(即 M. falcata)克隆出半乳糖苷蔗糖合酶 1(MfGolS1)的编码序列,该物种比紫花苜蓿(M. sativa)具有更强的耐冷性。使用 RNA 印迹杂交,在未经处理的营养组织中未检测到 MfGolS1 转录物;然而,在冷处理后,叶片中大量诱导,而在茎和叶柄中则不诱导。在冷驯化过程中,M. falcata 中 MfGolS1 转录物的诱导和维持水平高于 M. sativa。因此,与 M. sativa 相比,M. falcata 中积累了更多的糖,包括蔗糖、半乳糖醇、棉子糖和水苏糖。数据表明,MfGolS1 转录物及其产生的糖积累与 M. falcata 和 M. sativa 之间的差异耐冷性有关。MfGolS1 转录物受脱水和盐胁迫的弱诱导,但不受脱落酸的响应。肌醇可诱导 MfGolS1 表达,推测其参与冷诱导的 MfGolS1 表达。MfGolS1 在烟草中的过表达导致转基因植物中半乳糖醇、棉子糖和水苏糖水平升高,从而提高了对冷冻和冷胁迫的耐受性。转基因烟草植物的耐旱和耐盐性也有所提高。这表明 MfGolS1 在植物对非生物胁迫的耐受性中起着重要作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验