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首页> 外文期刊>BioMed research international >Characterization of the Newly Developed Soybean Cultivar DT2008 in Relation to the Model Variety W82 Reveals a New Genetic Resource for Comparative and Functional Genomics for Improved Drought Tolerance
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Characterization of the Newly Developed Soybean Cultivar DT2008 in Relation to the Model Variety W82 Reveals a New Genetic Resource for Comparative and Functional Genomics for Improved Drought Tolerance

机译:与模型品种W82相关的新开发的大豆品种DT2008的表征揭示了一种新的遗传资源,用于改善干旱耐受性的比较和功能基因组学

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Soybean (Glycine max) productivity is adversely affected by drought stress worldwide, including Vietnam. In the last few years, we have made a great effort in the development of drought-tolerant soybean cultivars by breeding and/or radiation-induced mutagenesis. One of the newly developed cultivars, the DT2008, showed enhanced drought tolerance and stable yield in the field conditions. The purpose of this study was to compare the drought-tolerant phenotype of DT2008 and Williams 82 (W82) by assessing their water loss and growth rate under dehydration and/or drought stress conditions as a means to provide genetic resources for further comparative and functional genomics. We found that DT2008 had reduced water loss under both dehydration and drought stresses in comparison with W82. The examination of root and shoot growths of DT2008 and W82 under both normal and drought conditions indicated that DT2008 maintains a better shoot and root growth rates than W82 under both two growth conditions. These results together suggest that DT2008 has better drought tolerance degree than W82. Our results open the way for further comparison of DT2008 and W82 at molecular levels by advanced omic approaches to identify mutation(s) involved in the enhancement of drought tolerance of DT2008, contributing to our understanding of drought tolerance mechanisms in soybean. Mutation(s) identified are potential candidates for genetic engineering of elite soybean varieties to improve drought tolerance and biomass.
机译:大豆(MAX)生产率受到全球干旱压力的不利影响,包括越南。在过去的几年里,我们通过育种和/或辐射诱导的诱变来发展耐旱大豆品种的努力。新开发的品种DT2008中的一种,在现场条件下表现出增强的干旱耐受性和稳定的产量。本研究的目的是通过评估脱水和/或干旱胁迫条件下的水分损失和生长速率作为提供遗传资源的方法,比较DT2008和威廉姆斯82(W82)的耐旱性表型以提供进一步的比较和功能基因组学的遗传资源。我们发现DT2008与W82相比,DT2008在脱水和干旱胁迫下减少了水分损失。在正常和干旱条件下,对DT2008和W82的根和芽生长的检查表明,在两个生长条件下,DT2008维持比W82更好的芽和根生长率。这些结果在一起表明DT2008具有比W82更好的干旱耐受程度。我们的结果通过先进的OMIC方法进一步比较DT2008和W82,以识别参与DT2008的耐旱耐受耐旱性的突变,有助于我们在大豆中对耐旱机制的理解有所了解。确定的突变是精英大豆品种基因工程的潜在候选者,以改善耐旱性和生物质。

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