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Effects of phosphorus stress on the root morphology and root exudates in different sugar beet genotypes

机译:磷胁迫对不同基因型甜菜根系形态和根系分泌物的影响

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Phosphorus deficiency was induced in sugar beet plants (Beta Vulgaris L., ‘var. 14’, ‘var. 17’ and ‘var. 20’ with different resistance ability to phosphorus stress), cultured hydroponically and sandily under standardized environmental conditions, by removing phosphorus from the nutrient supply at the seedling stage. Root morphology, H+ excretion and organic acid in rhizosphere were investigated. The main results were showed as following: the average length of roots and the ratio of root to shoot in all genotypes were increased significantly (p<0.05), among which, the decreasing range of ‘var. 14’ was the biggest one; sugar beet root mainly excreted oxalic, lactic, maleic acid and trans-butenedioic acid, among which, the first two kinds of the organic acids were the main ingredient, and the phenomena of the significant increase in the secretion amount of those two kinds acids was only appeared in ‘var. 20’ with higher resistance to phosphorus stress; phosphorus deficiency stimulated the environment changed in root vicinity of sugar beet, and showed as an increase of the H+ secretion in all the genotypes used in the experiment, but the increased amount of H+ were genetic dependent, i.e. ‘var.20’>‘var.17’>‘var.14’.
机译:在甜菜植物(Beta Vulgaris L。,“ var.14”,“ var.17”和“ var.20”,具有不同的抗磷胁迫能力)中诱导磷缺乏,在标准的环境条件下通过水培和沙质培养,通过在苗期从营养供应中去除磷。研究了根际的根系形态,H + 排泄物和有机酸。主要结果如下:所有基因型的平均根长和根与芽的比率均显着增加(p <0.05),其中“ var”的减小范围。 14’是最大的一个;甜菜根主要分泌草酸,乳酸,马来酸和反丁烯二酸,其中,前两种有机酸是主要成分,这两种酸的分泌量显着增加的现象是只出现在'var。 20'具有更高的抗磷胁迫能力;缺磷刺激了甜菜根部周围环境的变化,并在实验中使用的所有基因型均表现为H + 分泌增加,但H + < / sup>是遗传相关的,即'var.20'>'var.17'>'var.14'。

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