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1.
Ying Yong Sheng Tai Xue Bao ; 26(11): 3503-8, 2015 Nov.
Article in Chinese | MEDLINE | ID: mdl-26915209

ABSTRACT

To explore the adaptability of plant under salt stress to crude oil pollution of soil and improvement measures, a pot experiment of Helianthus annuus seedlings was conducted using orthogonal experiment method with crude oil-sodium chloride-desulfurization gypsum and cinder-zeolite-desulfurization gypsum-sawdust. The results showed that, with the increase of soil crude oil concentration, the relative growth rate (RGR) of plant height, RGR of aboveground biomass and root N: P ratios of H. annuus seedlings decreased significantly, while the activity of SOD and CAT increased at first and then decreased significantly. The RGR of plant height and aboveground biomass significantly increased (P < 0.05), while the activity of SOD decreased gradually with the increase of the volume fraction of sawdust, indicating that sawdust had the most significant effect in comparison with cinder, zeolite, desulfurization gypsum under salinization condition. The crude oil pollution of soil could decrease the relative growth rate of H. annuus seedling, and sawdust could reduce the influence of crude oil pollution on plant growth under salt stress.


Subject(s)
Adaptation, Physiological , Helianthus/physiology , Petroleum Pollution , Salinity , Soil Pollutants , Biomass , Calcium Sulfate , Helianthus/drug effects , Plant Roots/growth & development , Seedlings/growth & development , Soil/chemistry , Stress, Physiological
2.
Ying Yong Sheng Tai Xue Bao ; 23(5): 1247-53, 2012 May.
Article in Chinese | MEDLINE | ID: mdl-22919834

ABSTRACT

Plant calcium (Ca) is composed of dissociated Ca2+ and easily soluble, slightly soluble, and hard soluble combined Ca salts. The hard soluble Ca salts can often engender Ca crystals. To understand the Ca status in different growth form plants in salinized habitats, 54 plant species were sampled from the salinized habitats in Tianjin, with the Ca crystals examined by microscope and the Ca components determined by sequential fractionation procedure. More Ca crystals were found in 38 of the 54 plant species. In 37 of the 38 plant species, drusy and prismatic Ca oxalate crystals dominated, whereas the cystolith of Ca carbonate crystal only appeared in the leaves of Ficus carica of Moraceae. The statistics according to growth form suggested that deciduous arbors and shrubs had more Ca oxalate crystal, liana had lesser Ca oxalate crystal, and herbs and evergreen arbors had no Ca oxalate crystal. From arbor, shrub, liana to herb, the concentration of HCl-soluble Ca decreased gradually, while that of water soluble Ca was in adverse. The concentration of water soluble Ca in herbs was significantly higher than that in arbors and shrubs. This study showed that in salinized habitats, plant Ca crystals and Ca components differed with plant growth form, and the Ca oxalate in deciduous arbors and shrubs played an important role in withstanding salt stress.


Subject(s)
Calcium Compounds/chemistry , Calcium/chemistry , Ecosystem , Plants/chemistry , Plants/classification , Salinity , Calcium Carbonate/chemistry , Calcium Oxalate/chemistry , China , Crystallization , Plant Development , Soil/analysis , Solubility , Species Specificity
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