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酵母海藻糖-6-磷酸合酶 1 对干旱胁迫条件下马铃薯叶片基因表达和碳水化合物含量的影响。

Effects of yeast trehalose-6-phosphate synthase 1 on gene expression and carbohydrate contents of potato leaves under drought stress conditions.

机构信息

Agricultural Biotechnology Center, Szent-Györgyi Albert u. 4, Gödöllő, Hungary.

出版信息

BMC Plant Biol. 2012 May 30;12:74. doi: 10.1186/1471-2229-12-74.

Abstract

BACKGROUND

The development of drought-tolerant, elite varieties of potato (Solanum tuberosum L.) is a challenging task, which might be achieved by introducing transgenic lines into breeding. We previously demonstrated that strains of the White Lady potato cultivar that express the yeast trehalose-6-phosphate synthase (TPS1) gene exhibit improved drought tolerance.

RESULTS

We investigated the responses of the drought-sensitive potato cultivar White Lady and the drought-tolerant TPS1 transgenic variant to prolonged drought stress at both the transcriptional and metabolic levels. Leaf mRNA expression profiles were compared using the POCI microarray, which contains 42,034 potato unigene probes. We identified 379 genes of known function that showed at least a 2-fold change in expression across genotypes, stress levels or the interaction between these factors. Wild-type leaves had twice as many genes with altered expression in response to stress than TPS1 transgenic leaves, but 112 genes were differentially expressed in both strains. We identified 42 transcription factor genes with altered expression, of which four were uniquely up-regulated in TPS1 transgenic leaves. The majority of the genes with altered expression that have been implicated in photosynthesis and carbohydrate metabolism were down-regulated in both the wild-type and TPS1 transgenic plants. In agreement with this finding, the starch concentration of the stressed leaves was very low. At the metabolic level, the contents of fructose, galactose and glucose were increased and decreased in the wild-type and TPS1 transgenic leaves, respectively, while the amounts of proline, inositol and raffinose were highly increased in both the wild-type and TPS1 transgenic leaves under drought conditions.

CONCLUSIONS

To our knowledge, this study is the most extensive transcriptional and metabolic analysis of a transgenic, drought-tolerant potato line. We identified four genes that were previously reported as drought-responsive in non-transgenic Andean potato cultivars. The substantial increases in proline, inositol and raffinose contents detected in both the wild-type and TPS1 transgenic leaves appears to be a general response of potatoes to drought stress. The four transcription factors uniquely up-regulated in TPS1 transgenic leaves are good candidates for future functional analyses aimed at understanding the regulation of the 57 genes with differential expression in TPS1 transgenic leaves.

摘要

背景

培育耐旱、优良的马铃薯(Solanum tuberosum L.)品种是一项具有挑战性的任务,可通过将转基因品系引入育种来实现。我们之前证明,表达酵母海藻糖-6-磷酸合酶(TPS1)基因的 White Lady 马铃薯品种的菌株表现出增强的耐旱性。

结果

我们研究了耐旱性 TPS1 转基因变体和敏感型 White Lady 马铃薯品种对长期干旱胁迫的转录和代谢水平的响应。使用 POCI 微阵列比较叶片 mRNA 表达谱,该微阵列包含 42,034 个马铃薯单基因探针。我们鉴定了 379 个具有已知功能的基因,这些基因在基因型、胁迫水平或这些因素之间的相互作用方面的表达至少发生了 2 倍变化。野生型叶片中受胁迫影响而表达改变的基因数量是 TPS1 转基因叶片的两倍,但在两种菌株中均有 112 个基因表达不同。我们鉴定了 42 个表达改变的转录因子基因,其中 4 个在 TPS1 转基因叶片中被特异上调。与光合作用和碳水化合物代谢有关的大多数表达改变的基因在野生型和 TPS1 转基因植物中均下调。与这一发现一致的是,受胁迫叶片的淀粉浓度非常低。在代谢水平上,在野生型和 TPS1 转基因叶片中,果糖、半乳糖和葡萄糖的含量分别增加和减少,而脯氨酸、肌醇和棉子糖的含量在干旱条件下在野生型和 TPS1 转基因叶片中均显著增加。

结论

据我们所知,这是对转基因耐旱马铃薯品系进行的最广泛的转录和代谢分析。我们鉴定了四个先前在非转基因安第斯马铃薯品种中报告为干旱响应的基因。在野生型和 TPS1 转基因叶片中检测到的脯氨酸、肌醇和棉子糖含量的大量增加似乎是马铃薯对干旱胁迫的普遍反应。在 TPS1 转基因叶片中特异上调的四个转录因子是未来功能分析的良好候选基因,旨在理解在 TPS1 转基因叶片中差异表达的 57 个基因的调控。

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