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首页> 外文期刊>Plant Molecular Biology >Contrasting cDNA-AFLP profiles between crown and leaf tissues of cold-acclimated wheat plants indicate differing regulatory circuitries for low temperature tolerance
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Contrasting cDNA-AFLP profiles between crown and leaf tissues of cold-acclimated wheat plants indicate differing regulatory circuitries for low temperature tolerance

机译:冷驯化小麦植株的冠和叶组织之间的cDNA-AFLP对比图表明低温耐受性的调节回路不同

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摘要

Low-temperature (LT) tolerance in winter wheat (Triticum aestivum L.) is an economically important but complex trait. Four selected wheat genotypes, a winter hardy cultivar, Norstar, a tender spring cultivar, Manitou and two near-isogenic lines with Vrn-A1 (spring Norstar) and vrn-A1 (winter Manitou) alleles of Manitou and Norstar were cold-acclimated at 6°C and crown and leaf tissues were collected at 0, 2, 14, 21, 35, 42, 56 and 70 days of cold acclimation. cDNA-AFLP profiling was used to determine temporal expression profiles of transcripts during cold-acclimation in crown and leaf tissues, separately to determine if LT regulatory circuitries in crown and leaf tissues could be delineated using this approach. Screening 64 primer combinations identified 4,074 and 2,757 differentially expressed transcript-derived fragments (TDFs) out of which 38 and 16% were up-regulated as compared to 3 and 6% that were down-regulated in crown and leaf tissues, respectively. DNA sequencing of TDFs revealed sequences common to both tissues including genes coding for DEAD-box RNA helicase, choline-phosphate cytidylyltransferase and delta-1-pyrroline carboxylate synthetase. TDF specific to crown tissues included genes coding for phospahtidylinositol kinase, auxin response factor protein and brassinosteroid insensitive 1-associated receptor kinase. In leaf, genes such as methylene tetrahydrofolate reductase, NADH-cytochrome b5 reductase and malate dehydrogenase were identified. However, 30 and 14% of the DNA sequences from the crown and leaf tissues, respectively, were hypothetical or unknown proteins. Cluster analysis of up-, down-regulated and unique TDFs, DNA sequence and real-time PCR validation, infer that mechanisms operating in crown and leaf tissue in response to LT are differently regulated and warrant further studies.
机译:冬小麦(Triticum aestivum L.)的低温(LT)耐性在经济上很重要,但特性复杂。四个选定的小麦基因型,一个耐寒的品种,Norstar,一个嫩的春季品种,Manitou和两个Manitou和Norstar的Vrn-A1(春季Norstar)和vrn-A1(冬季Manitou)等位基因的近等基因系在在0、2、14、21、35、42、56和70天的冷适应时间内,收集6°C的冠和叶组织。 cDNA-AFLP分析用于确定冠和叶组织冷驯化过程中转录本的时间表达谱,并单独确定是否可以使用这种方法描绘冠和叶组织中的LT调节回路。筛选64种引物组合可鉴定出4,074和2,757个差异表达的转录本片段(TDF),其中38%和16%的表达上调,而冠和叶组织中分别为3%和6%的表达下调。 TDF的DNA测序揭示了两个组织共有的序列,包括编码DEAD-box RNA解旋酶,胆碱磷酸胞苷转移酶和delta-1-pyrroline羧酸酯合成酶的基因。冠状组织特有的TDF包括编码磷脂酰肌醇激酶,生长素应答因子蛋白和油菜素甾体不敏感的1相关受体激酶的基因。在叶片中,鉴定了诸如亚甲基四氢叶酸还原酶,NADH-细胞色素b5还原酶和苹果酸脱氢酶的基因。但是,分别来自冠和叶组织的30%和14%的DNA序列是假设的或未知的蛋白质。上,下调和独特的TDF的聚类分析,DNA序列和实时PCR验证表明,响应LT在冠和叶组织中起作用的机制受到不同的调节,值得进一步研究。

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