花前期盐胁迫和H2O2胁迫下的酸石榴形态生理

J. D. Capitulino, G. S. Lima, C. A. D. Azevedo, A. A. R. D. Silva, L. A. A. Soares, T. F. L. Arruda, Vitória D. de Sousa, H. Gheyi
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引用次数: 1

摘要

在巴西东北部的半干旱地区,水源通常具有高水平的盐分,这是限制植物生长发育的非生物胁迫之一。在此背景下,本研究的目的是评价过氧化氢叶面施用对开花前盐胁迫下酸石榴形态生理的影响。试验采用随机区组设计和4 × 4因子设计,采用4个灌溉水电导率值ECw(0.8、1.6、2.4和3.2 dS m-1)和4个过氧化氢浓度H2O2(0、10、20和30 μM), 3个重复。水电导率从0.8 dS - m-1开始增加,气孔导度、CO2同化速率、瞬时羧化效率和叶片水分饱和亏缺降低。在移栽后370天,它抑制了酸菜植株的生长。在花前期,1.8 dS - m-1水条件下,10 μM浓度的双氧水可提高刺果叶片蒸腾和水分利用效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Morphophysiology of soursop under salt stress and H2O2 application in the pre-flowering phase
ABSTRACT In the semi-arid region of the Brazilian Northeast, water sources generally have high levels of salts, standing out as one of the abiotic stresses that restrict the growth and development of plants. In this context, the objective of the present study was to evaluate the effects of foliar applications of hydrogen peroxide on the morphophysiology of soursop under salt stress in the pre-flowering phase. The experiment was carried out in a greenhouse, using a randomized block design and a 4 × 4 factorial arrangement, with four values of electrical conductivity of the irrigation water - ECw (0.8, 1.6, 2.4, and 3.2 dS m-1) and four concentrations of hydrogen peroxide - H2O2 (0, 10, 20, and 30 μM), with three replicates. An increase in water electrical conductivity from 0.8 dS m-1 reduced stomatal conductance, CO2 assimilation rate, instantaneous carboxylation efficiency, and leaf water saturation deficit. It inhibited the growth of soursop plants at 370 days after transplanting. Hydrogen peroxide at concentrations of up to 10 μM increased leaf transpiration and water use efficiency of soursop plants irrigated with 1.8 dS m-1 water in the pre-flowering phase.
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