首页> 外文期刊>Frontiers in Plant Science >Genotypic Differences in Phosphorus Efficiency and the Performance of Physiological Characteristics in Response to Low Phosphorus Stress of Soybean in Southwest of China
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Genotypic Differences in Phosphorus Efficiency and the Performance of Physiological Characteristics in Response to Low Phosphorus Stress of Soybean in Southwest of China

机译:磷效率的基因型差异及生理特性对中国西南大豆低磷胁迫的影响

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Southwest of China is one of the major soybean ( Glycine max L.) production regions in China with low availability of soil phosphorus (P). Whereas little information is available on P-efficient soybean genotypes in this region, even though using P-efficient soybean genotypes is a sustainable P management strategy for enhancing yield and P use efficiency. To assess the genetic variation on P use efficiency, 274 soybean genotypes were employed to compare the yields and P acquisition potentials in the field. Additionally, 10 representational genotypes (5 P-efficient genotypes and 5 P-inefficient genotypes) were grown in hydroponic media containing low P treatment (0.05 mM L~(?1)) and high P treatment (0.25 mM L~(?1)) to further investigate P assimilation characteristics and the related mechanisms of P-efficient soybean genotypes. In the field trial, the models described the relationships between yield and seed P concentration ( R ~(2)= 0.85), shoot P accumulation ( R ~(2)= 0.84), HI ( R ~(2)= 0.82) well. The yield, seed P concentration and shoot P accumulation ranged from 5.5 to 36.0 g plant~(?1), from 0.045 to 0.93% and from 0.065 to 0.278 mg plant~(?1), respectively. In the hydroponic trial, P-efficient genotypes under low P treatment showed significantly better plant growth, P accumulation and root: shoot ratio than P-inefficient genotypes. Simultaneously, total root length, specific root length, root surface area and root volume of P-efficient were significantly greater than P-inefficient under low P treatment. Higher rate of organic acid exudation and acid phosphatase activities was observed in the P-efficient soybean genotypes under low P condition when compared to the P-inefficient soybean genotypes. It indicated that significant genetic variation for P use efficiency existed in this region, and the P-efficient soybean genotypes, especially E311 and E141, demonstrated great tolerance to P deficiency, which could be potential materials using in improving production and P use efficiency in low availability of soil P region.
机译:中国西南部是中国的主要大豆(Glycine Max L.)生产区之一,土壤磷的可用性低(P)。虽然在该地区的高效大豆基因型上有很少的信息,但即使使用P型高豆豆基因型是一种可持续的P管理策略,可提高产量和P使用效率。为了评估P使用效率的遗传变异,采用274种大豆基因型进行比较现场的产量和P获取潜力。另外,10个代表性基因型(5个高效基因型和5个低低效基因型)在含有低P处理的水培介质中生长(0.05mM L〜(α1))和高P处理(0.25mm L〜(α1) )进一步研究P效率大豆基因型的P助剂特征和相关机制。在现场试验中,模型描述了产量和种子P浓度之间的关系(R〜(2)= 0.85),拍摄P累积(R〜(2)= 0.84),HI(R〜(2)= 0.82)井。产率,种子P浓度和芽P堆积的植物〜(α1)分别为0.045至0.065至0.278毫克〜(α1)。在水耕试验中,低P治疗下的高效基因型显示出明显更好的植物生长,P累积和根源:芽比对低效基因型。同时,在低P处理下,对高效的总根长度,特异性根长,根表面积和根体积显着大于对低效的高效。与P效率大豆基因型相比,在低P效率的大豆基因型中观察到较高的有机酸渗出和酸性磷酸酶活性。它表明,该区域中存在的P使用效率的显着遗传变异,并且P型效率大豆基因型,特别是E311和E141,表现出对P缺乏的巨大耐受性,这可能是在改善生产中的潜在材料和低的使用效率土壤P区的可用性。

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