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首页> 外文期刊>International Journal of Agricultural Research, Innovation and Technology >Screening of drought-tolerant and sensitive genotypes in soybean (Glycine max L.) using different multivariate methods
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Screening of drought-tolerant and sensitive genotypes in soybean (Glycine max L.) using different multivariate methods

机译:使用不同的多元方法筛选大豆(Glycine max L.)的耐旱和敏感基因型

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The soybean is a crop of global importance, which cultivate in worldwide. However, the soybean is more susceptible to water shortages during germination and reproductive growth stages. Stress is an in ordinary physical process of environmental factors effects and it has traumatic ability, which causes unusual metabolism in plants, and it is possible; reduce plant product or causes plant death. Drought indices provide a measure of drought based on loss of yield under drought conditions in comparison to normal and have been used for screening drought tolerant genotypes. We cultivated Ten genotypes of soybean in the research field of seed and plant improvement institute in Karaj- Iran in 2015 June. The experimental design was a randomized block with three replicate in two separate field experiments for normal and stress conditions. We irrigated the normal experiment in 85% field capacity and got 50% filed capacity for stress conditions. Seventeen drought tolerance indices were calculated. Four methods were used to identify more resistant and more susceptible genotypes. After genotypes selection, we carried out experiment in green house with two selected genotypes. Results showed using the indices such as MP, GMP and STI, alone, cannot select a stable genotype and we have to use a combine of all indices or use indices that showed reduction and average yield, together. In second year, results showed that we had a true selection.Int. J. Agril. Res. Innov. & Tech. 7 (2): 7-17, December, 2017.
机译:大豆是具有全球重要性的作物,在世界范围内种植。但是,大豆在发芽和生殖生长阶段更容易缺水。胁迫是环境因素作用的普通物理过程,具有创伤能力,可引起植物异常的新陈代谢,这是可能的。减少植物产品或导致植物死亡。干旱指数根据干旱条件下与正常水平相比的单产损失提供了一种干旱测量方法,并已用于筛选耐旱基因型。 2015年6月,我们在伊朗Karaj种子和植物改良研究所的研究领域培育了10个基因型的大豆。实验设计是在正常和压力条件下的两个单独的野外实验中具有三个重复的随机区组。我们以85%的田间持水量灌溉了正常实验,并获得了50%的应力条件下田间持水量。计算了十七个耐旱指数。使用四种方法来鉴定更具抗性和更易感的基因型。在选择了基因型之后,我们在温室中进行了两种选择的基因型的实验。结果表明,仅使用MP,GMP和STI等指标无法选择稳定的基因型,我们必须结合使用所有指标或将显示降低和平均产量的指标一起使用。在第二年,结果表明我们有一个真正的选择。 J.阿格里尔。 Res。创新和技术。 7(2):7-17,2017年12月。

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