首页> 外文期刊>Acta Physiologiae Plantarum >Modulation in growth, photosynthetic efficiency, activity of antioxidants and mineral ions by foliar application of glycinebetaine on pea ( Pisum sativum L.) under salt stress.
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Modulation in growth, photosynthetic efficiency, activity of antioxidants and mineral ions by foliar application of glycinebetaine on pea ( Pisum sativum L.) under salt stress.

机译:在盐胁迫下对豌豆(Pisum sativum L.)进行叶面施用甘氨酸甜菜碱调节生长,光合效率,抗氧化剂和矿物质离子的活性。

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摘要

A pot experiment was carried out to explore the role of glycinebetaine (GB) as foliar spray foliar on two pea ( Pisum sativum L.) varieties (Pea 09 and Meteor Fsd) under saline and non-saline conditions. Thirty-two-day-old plants were subjected to two levels 0 and 150 mM of NaCl stress. Salt treatment was applied in full strength Hoagland's nutrient solution. Three levels 0, 5 and 10 mM of GB were applied as foliar treatment on 34-day-old pea plants. After 2 weeks of foliar treatment with GB data for various growth and physiochemical attributes were recorded. Rooting-medium applied salt (150 mM NaCl) stress decreased growth, photosynthesis, chlorophyll, chlorophyll fluorescence and soluble protein contents, while increasing the activities of enzymatic (POD and CAT) and non-enzymatic (ascorbic acid and total phenolics) antioxidant enzymes. Foliar application of GB decreased root and shoot Na + under saline conditions, while increasing shoot dry matter, root length, root fresh weight, stomatal conductance ( gs), contents of seed ascorbic acid, leaf phenolics, and root and shoot Ca 2+ contents. Of three GB (0, 5, 10 mM) levels, 10 mM proved to be more effective in mitigating the adverse effects of salinity stress. Overall, variety Pea 09 showed better performance in comparison to those of var. Meteor Fsd under both normal and salinity stress conditions. GB-induced modulation of seed ascorbic acid, leaf phenolics, gs, and root Ca 2+ values might have contributed to the increased plant biomass, reduction of oxidative stress, increased osmotic adjustment and better photosynthetic performance of pea plants under salt stress.
机译:进行了盆栽试验,探讨了甘氨酸甜菜碱(GB)在两种豌豆(Pisum sativum L.)品种(Pea 09和Meteor Fsd)在盐和非盐条件下作为叶面喷雾剂的作用。将32天大的植物分别置于0和150 mM的NaCl胁迫水平。将盐处理应用于全强度Hoagland的营养液中。在34日龄的豌豆植株上进行了三种水平的0、5和10 mM GB的叶面处理。用GB叶面处理2周后,记录了各种生长和理化特性的数据。生根培养基施加的盐(150 mM NaCl)胁迫降低了生长,光合作用,叶绿素,叶绿素荧光和可溶性蛋白质含量,同时增加了酶促(POD和CAT)和非酶促(抗坏血酸和总酚类)抗氧化剂的活性。叶面喷施GB可以降低生理条件下的根和茎Na +含量,同时增加茎干物质,根长度,根鲜重,气孔导度(gs),种子抗坏血酸含量,叶片酚类含量以及根和芽Ca 2+含量。 。在三个GB(0、5、10 mM)水平中,事实证明10 mM可以更有效地缓解盐分胁迫的不利影响。总体而言,豌豆09品种比var品种表现更好。在正常和盐分胁迫条件下的流星FSD。 GB诱导的种子抗坏血酸,叶片酚,gs和根Ca 2+值的调节可能有助于增加植物生物量,减少氧化胁迫,增加渗透调节并在盐胁迫下增强豌豆植物的光合性能。

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