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首页> 外文期刊>Plant Biotechnology Journal >OsNAC5 overexpression enlarges root diameter in rice plants leading to enhanced drought tolerance and increased grain yield in the field
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OsNAC5 overexpression enlarges root diameter in rice plants leading to enhanced drought tolerance and increased grain yield in the field

机译:OSNAC5过表达扩大了水稻植物的根直径,导致耐旱性耐受性和粮食产量增加

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摘要

Drought conditions are among the most serious challenges to crop production worldwide. Here, we report the results of field evaluations of transgenic rice plants overexpressing OsNAC5, under the control of either the root-specific (RCc3) or constitutive (GOS2) promoters. Field evaluations over three growing seasons revealed that the grain yield of the RCc3:OsNAC5 and GOS2:OsNAC5 plants were increased by 9%–23% and 9%–26% under normal conditions, respectively. Under drought conditions, however, RCc3:OsNAC5 plants showed a significantly higher grain yield of 22%–63%, whilst the GOS2:OsNAC5 plants showed a reduced or similar yield to the nontransgenic (NT) controls. Both the RCc3:OsNAC5 and GOS2:OsNAC5 plants were found to have larger roots due to an enlarged stele and aerenchyma at flowering stage. Cell numbers per cortex layer and stele of developing roots were higher in both transgenic plants than NT controls, contributing to the increase in root diameter. The root diameter was enlarged to a greater extent in the RCc3:OsNAC5, suggesting the importance of this phenotype for enhanced drought tolerance. Microarray experiments identified 25 up-regulated genes by more than three-fold (P 0.01) in the roots of both transgenic lines. Also identified were 19 and 18 up-regulated genes that are specific to the RCc3:OsNAC5 and GOS2:OsNAC5 roots, respectively. Of the genes specifically up-regulated in the RCc3:OsNAC5 roots, GLP, PDX, MERI5 and O-methyltransferase were implicated in root growth and development. Our present findings demonstrate that the root-specific overexpression of OsNAC5 enlarges roots significantly and thereby enhances drought tolerance and grain yield under field conditions.
机译:干旱条件是在全球范围内生产生产的最严重挑战之一。在此,我们在对根本特异性(RCC3)或组成型(GOS2)启动子的控制下,报告过表达osNAC5过表达osnac5的转基因水稻植物的野外评估结果。在三个生长季节的田间评估显示RCC3:OSNAC5和GOS2的谷物产量分别在正常条件下分别增加了9%-23%和9%-26%。然而,在干旱条件下,RCC3:OSNAC5植物显示出显着提高的谷物产量为22%-63%,而GOS2:OSNAC5植物显示出对非转锰(NT)对照的降低或相似的产率。 RCC3:OSNAC5和GOS2:发现OSNAC5植物由于在开花阶段而被扩大的斯莱尔和雾炎原因具有更大的根。转基因植物的每个皮质层和开发根部的细胞数高于NT对照,促进了根直径的增加。根直径在RCC3:OSNAC5中更大程度地扩大,表明这种表型对增强的抗旱性的重要性。微阵列实验在两种转基因系的根部中鉴定了25个以上尺寸的基因(p <0.01)。还鉴定为19和18个上调基因,其特异于RCC3:OSNAC5和GOS2:OSNAC5根。在RCC3中特别上调的基因:OSNAC5根,GLP,PDX,MERI5和O-甲基转移酶与根生长和发育均值。我们的目前的研究结果表明,OSNAC5的根特异性过表达显着扩大根部,从而在现场条件下提高干旱耐受性和籽粒产量。

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