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首页> 外文期刊>Plant and Soil >Effects of different nitrogen forms and combination with foliar spraying with 6-benzylaminopurine on growth, transpiration, and water and potassium uptake and flow in tobacco
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Effects of different nitrogen forms and combination with foliar spraying with 6-benzylaminopurine on growth, transpiration, and water and potassium uptake and flow in tobacco

机译:不同氮素形态及叶面喷洒6-苄氨基嘌呤对烟草生长,蒸腾作用以及水分和钾吸收及流量的影响

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摘要

NH4 +-N can have inhibitory effects on plant growth. However, the mechanisms of these inhibitory effects are still poorly understood. In this study, effects of different N forms and a combination of ammonium + 6-benzylaminopurine (6-BA, a synthetic cytokinin) on growth, transpiration, uptake and flow of water and potassium in 88-days-old tobacco (Nicotiana tabacum L. K 326) plants were studied over a period of 12 days. Plants were supplied with equal amounts of N in different forms: NO3 −, NH4NO3, NH4 + or NH4 ++6-BA (foliar spraying every 2 days after onset of the treatments). For determining flows and partitioning upper, middle and lower strata of three leaves each were analysed. During the 12 days study period, 50% replacement of NO3 −-N by NH4 +-N (NH4NO3) did not change growth, transpiration, uptake and flow of water and K+ compared with the NO3 −-N treatment. However, NH4 +-N as the sole N-source caused: (i) a substantial decrease in dry weight gain to 42% and 46% of the NO3 −-N and NH4NO3 treatments, respectively; (ii) a marked reduction in transpiration rate, due to reduced stomatal conductance, illustrated by more negative leaf carbon-isotope discrimination (δ13C) compared with the NO3 − treatment, especially in upper leaves; (iii) a strong reduction both in total water uptake, and in the rate of water uptake by roots, likely due to a decrease in root hydraulic conductivity; (iv) a marked reduction of K+ uptake to 10%. Under NH4 + nutrition the middle leaves accumulated 143%, and together with upper leaves 206% and the stem 227% of the K+ currently taken up, indicating massive mobilisation of K+ from lower leaves and even the roots. Phloem retranslocation of K+ from the shoot and cycling through the root contributed 67% to the xylem transport of K+, and this was 2.2 times more than concurrent uptake. Foliar 6-BA application could not suppress or reverse the inhibitory effects on growth, transpiration, uptake and flow of water and ions (K+) caused by NH4 +-N treatment, although positive effects by 6-BA application were observed, even when 6-BA (10−8 M) was supplied in nutrient solution daily with watering. Possible roles of cytokinin to regulate growth and development of NH4 +-fed plants are discussed.
机译:NH4 + -N对植物生长具有抑制作用。但是,这些抑制作用的机制仍知之甚少。在这项研究中,不同氮素形式和铵盐+ 6-苄基氨基嘌呤(6-BA,合成细胞分裂素)的结合对88天龄烟草(烟草)的生长,蒸腾,吸收和水和钾的流动的影响(K 326)植物的研究持续了12天。向植物提供等量不同形式的N:NO3 -,NH4 NO3 ,NH4 + 或NH4 + + 6-BA(治疗开始后每2天喷一次叶)。为了确定流量和分区,分别分析了三片叶子的上,中和下层。在研究的12天中,没有用NH4 + -N(NH4 NO3 )替代50%的NO3 - -N。与NO3 - -N处理相比,水和K + 的生长,蒸腾,吸收和流量发生了变化。然而,NH4 + -N作为唯一的氮源导致:(i)干重增加幅度显着下降,分别降至NO3的42%和46%- -N和NH4 NO3 处理; (ii)由于气孔导度的降低,蒸腾速率显着降低,这表明与NO3 -处理相比,叶片碳同位素同位素歧视(δ13 C)更为不利,尤其是在上部叶子; (iii)可能由于根系水力传导率的降低而使总水分吸收和根系水分吸收率都大大降低; (iv)将K + 摄取量显着降低至10%。在NH4 + 营养条件下,中部叶片累积了143%,上部叶片占206%,茎部占227%,目前正在吸收的K + 表明K + 从下部叶子甚至根部开始。钾从茎上的韧皮部易位并在根部循环,这对钾离子木质部转运的贡献占67%,是同时吸收的2.2倍。叶面喷施6-BA虽不能肯定,但不能抑制或逆转NH4 + -N处理对水和离子(K + )的生长,蒸腾,吸收和流动的抑制作用。即使每天在营养液中浇水浇灌6-BA(10-8 M),也能观察到6-BA施用的效果。讨论了细胞分裂素在调节NH4 + 喂养植物生长发育中的可能作用。

著录项

  • 来源
    《Plant and Soil》 |2003年第1期|169-178|共10页
  • 作者单位

    The Key Laboratory of Plant Nutrition MOA Key Laboratory of Plant-Soil Interactions MOE Department of Plant Nutrition China Agricultural University;

    The Key Laboratory of Plant Nutrition MOA Key Laboratory of Plant-Soil Interactions MOE Department of Plant Nutrition China Agricultural University;

    The Key Laboratory of Plant Nutrition MOA Key Laboratory of Plant-Soil Interactions MOE Department of Plant Nutrition China Agricultural University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    6-benzylaminopurine; carbon-isotope discrimination (δ13C); nitrogen forms; potassium; tobacco; transpiration; uptake and flow;

    机译:6-苄氨基嘌呤;碳同位素鉴别(δ13C);氮形态;钾;烟草;蒸腾作用;吸收和流动;

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