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首页> 外文期刊>Archives of Agronomy and Soil Science >Morphological and physiological response of rice roots to the application of calcium polyamino acid under saline-alkali soil conditions
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Morphological and physiological response of rice roots to the application of calcium polyamino acid under saline-alkali soil conditions

机译:盐碱土条件下水稻根系对多氨基酸钙施用的形态生理响应

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Although application of calcium polyamino acid (Ca-polyAA) is one of the effective ways to improve saline-alkali soil and promote plant growth, the clear mechanisms are unknown. A two-year field experiment with four Ca-polyAA application treatments (added at rates of 0, 7.5, 15.0, and 22.5 x 10(3) kg ha(-1)) was conducted on saline-alkali soil in Songnen Plain of China. In the first year (2016), Ca-polyAA increased soil porosity and decreased pH, electrical conductivity (EC1:5) and exchangeable sodium percentage (ESP). Root Na+/K+ and Na+/Ca2+ ratio were reduced whereas hydraulic conductivity was increased. The hormone concentration and enzyme activity in the root were enhanced at tillering stage. Root structure development at the root tip was promoted after the application of Ca-polyAA. The total root length, surface area, volume and biomass were increased by increasing Ca-polyAA added rate. Similar results were obtained in the second year (2017). Path analysis demonstrate that Ca-polyAA can promote the accumulation of root biomass mainly by decreasing Na+/ K+ ratio, increasing root hydraulic conductivity and the activity of carbon metabolism enzymes, and the development of the root cortex. These results revealed that Ca-polyAA, as an efficient ameliorator, is capable to enhance agronomical and morphophysiological traits of rice in saline-alkali soil.
机译:虽然施用钙聚氨基酸(Ca-polyAA)是改善盐碱土和促进植物生长的有效途径之一,但其机制尚不清楚。在中国松嫩平原的盐碱地上进行了为期两年的田间试验,采用4种Ca-polyAA处理(以0、7.5、15.0和22.5 x 10(3) kg ha(-1)的速率添加)。第一年(2016年),Ca-polyAA增加了土壤孔隙度,降低了pH值、电导率(EC1:5)和可交换钠百分比(ESP)。根系Na+/K+和Na+/Ca2+比值降低,而导水率增加。分蘖期根系激素浓度和酶活性均有所提高。应用Ca-polyAA后,促进了根尖根结构的发育。通过增加Ca-polyAA添加量,增加了总根长、表面积、体积和生物量。第二年(2017年)也获得了类似的结果。通径分析表明,Ca-polyAA主要通过降低Na+/K+比值、提高根系导水性和碳代谢酶活性以及促进根系皮层发育等方式促进根系生物量积累。这些结果表明,Ca-polyAA作为一种高效的改良剂,能够提高盐碱土水稻的农艺和形态生理性状。

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