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首页> 外文期刊>Scientific reports. >Comparative analysis of potassium deficiency-responsive transcriptomes in low potassium susceptible and tolerant wheat (Triticum aestivum L.)
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Comparative analysis of potassium deficiency-responsive transcriptomes in low potassium susceptible and tolerant wheat (Triticum aestivum L.)

机译:低钾敏感性和耐性小麦(小麦)的钾缺乏反应性转录组的比较分析

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Potassium (K+) deficiency as a common abiotic stress can inhibit the growth of plants and thus reduce the agricultural yields. Nevertheless, scarcely any development has been promoted in wheat transcriptional changes under K+ deficiency. Here we investigated root transcriptional changes in two wheat genotypes, namely, low-K+ tolerant “Tongzhou916” and low-K+ susceptible “Shiluan02-1”. There were totally 2713 and 2485 probe sets displayed expression changes more than 1.5-fold in Tongzhou916 and Shiluan02-1, respectively. Low-K+ responsive genes mainly belonged to the categories as follows: metabolic process, cation binding, transferase activity, ion transporters and so forth. We made a comparison of gene expression differences between the two wheat genotypes. There were 1321 and 1177 up-regulated genes in Tongzhou916 and Shiluan02-1, respectively. This result indicated that more genes took part in acclimating to low-K+ stress in Tongzhou916. In addition, there were more genes associated with jasmonic acid, defense response and potassium transporter up-regulated in Tongzhou916. Moreover, totally 19 genes encoding vacuolar H+-pyrophosphatase, ethylene-related, auxin response, anatomical structure development and nutrient reservoir were uniquely up-regulated in Tongzhou916. For their important role in root architecture, K+ uptake and nutrient storage, unique genes above may make a great contribution to the strong low-K+ tolerance in Tongzhou916.
机译:钾(K + )缺乏是常见的非生物胁迫,会抑制植物的生长,从而降低农业产量。然而,在K + 不足的条件下,小麦转录变化几乎没有促进。在这里,我们研究了耐低钾 + “通州916”和低钾 + 易感“世lu02-1”两个小麦基因型的根转录变化。在通州916和Shiluan02-1中总共有2713和2485个探针组显示表达变化超过1.5倍。低K + 响应基因主要属于以下几类:代谢过程,阳离子结合,转移酶活性,离子转运蛋白等。我们比较了两种小麦基因型的基因表达差异。通州916和石lu02-1分别有1321和1177个上调基因。该结果表明通州916有更多的基因参与了低K + 胁迫的适应。此外,通州916还有更多与茉莉酸,防御反应和钾转运蛋白相关的基因。此外,通州916共有19个基因编码液泡H + 焦磷酸酶,乙烯相关,植物生长素反应,解剖结构发育和营养储藏。上述独特基因在根系结构,K + 吸收和养分储存中起重要作用,可能对通州916的强低K + 耐受性有很大贡献。

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