首页> 外文期刊>Asian Journal of Plant Sciences >Impact of Putrescine and 24-epibrassinolide on Growth, Yield and Chemical Constituents of Cotton (Gossypium barbadense L.) Plant Grown under Drought Stress Conditions
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Impact of Putrescine and 24-epibrassinolide on Growth, Yield and Chemical Constituents of Cotton (Gossypium barbadense L.) Plant Grown under Drought Stress Conditions

机译:Putrescine和24倍刺激素对干旱胁迫条件下棉花(Gossypium Barbadense L.)植物生长,产量和化学成分的影响

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Background: Field experiment was carried during the two successive seasons (2014 and 2015) to study the effects of putrescine (Put) and 24-epibrassinolide (EBL) foliar applications on the growth, yield and chemical composition of Egyptian cotton L., cv., Giza 90) plants grown under drought stress conditions. Materials and Methods: The soil of the experimental site was clay loam and plants were grown under three irrigation regimes, i.e., 100% as control, 75 and 50% from well watering. Three differentdoses of Put (0,1 and 2 ppm) and EBL (0,10~(-9) and 10~(-7) M) were sprayed on plants 5 times started at the day 40 after planting (DAP) and repeated every 15 days. Results: Drought caused a significantly and gradually decreases in the growth characters,yield and its components and chemical compositionse.g.,N,P and Kconcentrations and CAT activity by increasing drought level, while increased lint percentage, Na percentage, total sugars, total soluble phenols, total free amino acid and proline concentrations, antioxidant enzymes POX, PPO and SOD activities. Moreover, the mean values for Relative Growth Rate (RGR) and Net Assimilation Rate (NAR) tended to be lower under drought stress espedally 50% drought level compared to control non-stressed plant but its increased at 75% drought level between 60 and 90 DAP. Applications of Put and EBL positively affected cotton growth and yield under drought stress conditions. These treatments resulted an increase in morphological characters e.g., plant height, number of leaves/plant, leaf area/plant and total plant dry weight. Also, Put and EBL increase chemical constituents related to drought tolerance either fnorganic (N, P, K and Na) or organic constituents e.g., total free amino acids, total sugars, total soluble phenols, antioxidant enzymes CAT, POX and SOD activities, while proline concentration, PPO activity as well as lint percentage were decreased. As a result of promoting growth induced by previous foliar applications, yield components e.g., number ofopen bolls, fiber length, fiber strength and micronaire value increased. Conclusion: Generally, Put at 2 ppm and EBL at 10~(-7) M applications recorded the highest values of growth and yield characters.
机译:背景:现场实验是在两次连续季节(2014和2015)中进行的,以研究Putrescine(Put)和24倍刺激素(EBL)叶面应用对埃及棉L.,CV的生长,产量和化学成分的影响。 ,吉萨90)在干旱胁迫条件下种植的植物。材料和方法:实验部位的土壤是粘土壤土,植物在三次灌溉制度下生长,即100%作为对照,75%和50%从浇水浇水。喷洒植物(0,11和2ppm)和EBL(0,10〜(-9)和10〜(-7)m)的三种不同的物质在植物上喷洒在植物(DAP)和重复的第40天开始的植物5次每15天。结果:干旱引起了显着且逐渐降低了生长特征,产量及其组分和化学成分。,n,p和kcoctrations和猫活性,通过增加干旱水平,而棉绒百分比,na百分比,总糖,总糖可溶性酚,无游离氨基酸和脯氨酸浓度,抗氧化酶POX,PPO和SOD活性。此外,与对照的非应激植物相比,相对生长速率(RGR)和净同化率(NAR)的平均值趋于降低50%的干旱水平,但其在60至90之间增加了75%的干旱水平。 dap。 Put和EBL在干旱胁迫条件下产生棉花生长和产量的应用。这些治疗导致形态学特性的增加,例如植物高度,叶子/植物数量,叶面积/植物和总植物干重。此外,放入和EBL增加与旱化耐受Fnorics(N,P,K和Na)或有机成分的化学成分,例如,总游离氨基酸,总糖,总可溶性酚,抗氧化酶猫,痘和草皮活动脯氨酸浓度,PPO活性以及棉绒百分比减少。由于促进先前叶面应用诱导的生长,产量组分例如,Open棉铃,纤维长度,纤维强度和微素值的数量增加。结论:一般来说,在10〜( - 7)M申请中置于2 ppm和Ebl,记录了生长和产量字符的最高值。

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