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Potassium Substitution by Sodium in Root Medium Influencing Growth Behavior and Potassium Efficiency in Cotton Genotypes

机译:钠在根系中的钾替代作用对棉花基因型生长行为和钾效率的影响

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摘要

Potassium (K) deficiency affects cotton (Gossypium hirsutum L.) growth. Sodium (Na) can substitute K for some non-specific functions in plants. Four cotton genotypes were evaluated for their growth rates and K use efficiency grown at various K:Na. The cotton genotypes and treatments had significant (p < 0.01) effect on biomass production, growth rate related parameters, K use efficiency, and K: Na ratio. Maximum total dry matter (2.57 g plant-1) was accumulated by 'NIBGE-2' and minimum (1.91 g plant-1) was by 'FH-1000'. Maximum K:Na ratio in shoot was obtained by 'MNH-786' and minimum was by 'NIBGE-2'when 1/3rd K was replaced with Na. Genotypes and various treatments significantly (p < 0.05) influenced specific utilization rate (SUR) and K transport rate (KTR). There was a significant relationship (R2 = 0.84, n = 60) between shoot dry matter and K: Na ratio in shoot. Overall, the growth was better when K and Na were added in ratio of 3:1.
机译:钾(K)缺乏会影响棉花(陆地棉)的生长。钠(Na)可以代替K代替植物中的某些非特定功能。评估了四种棉花基因型的生长速度和在各种K:Na下生长的钾利用效率。棉花的基因型和处理方式对生物量生产,生长速率相关参数,钾利用效率和钾钠比均具有显着(p <0.01)影响。 “ NIBGE-2”累积了最大总干物质(2.57 g plant-1),而“ FH-1000”累积了最小(1.91 g plant-1)。当用Na代替第1/3 K时,最大的K:Na比值通过'MNH-786'获得,最小的是'NIBGE-2'。基因型和各种处理显着(p <0.05)影响比利用率(SUR)和钾转运率(KTR)。茎干物质与茎中钾:钠比之间存在显着关系(R2 = 0.84,n = 60)。总体而言,当钾和钠的比例为3:1时,生长会更好。

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