首页> 外文期刊>Acta Agrobotanica >Effects of Palm Leaf Biochar on the Availability of Soil Nutrients, Leaf Nutrient Concentration, and Physiological Characteristics of Melon Plants (Cucumis melo L.) Under Drought Stress
【24h】

Effects of Palm Leaf Biochar on the Availability of Soil Nutrients, Leaf Nutrient Concentration, and Physiological Characteristics of Melon Plants (Cucumis melo L.) Under Drought Stress

机译:棕榈叶生物炭对干旱胁迫下甜瓜植物土壤养分,叶片养分浓度和生理特性的影响

获取原文
           

摘要

To investigate the effect of palm leaf biochar on the element absorption and reduction of drought stress effects in melon plants, an experiment was conducted using a split plot in a randomized complete block design with three replications in two successive years. The main plot contained three levels of drought stress (60%, 85%, and 100% water requirement) and the subplot contained four levels of biochar (0, 150, 300, and 450 g per plant). The results revealed that biochar application reduced the effect of drought stress and thus proline content in plants. Application of 300 g biochar per plant with 100% water requirement increased total chlorophyll by 131% compared to control. The treatment of 450 g biochar per plant with 100% water requirement increased chlorophyll a and b and leaf nitrogen (N), potassium (K), calcium (Ca), and manganese (Mn) content by 169%, 127%, 58%, 65%, 44%, and 48%, respectively, compared to control. The treatment of 450 g biochar per plant increased phosphorus (P) and magnesium (Mg) content of leaves by 20% and 31%, respectively, in comparison with control. The interaction of drought stress and biochar indicated that the treatment of 450 g biochar per plant with 60% of water requirement increased plant iron, zinc, and copper by 60%, 44%, and 66%, respectively, compared to the biochar-free treatment with 100% water requirement. Addition of 450 g biochar per plant and irrigation with 60% of water requirement increased soil N, P, and K by 150%, 13%, and 75%, respectively, compared to the biochar-free treatment with 100% water requirement. The results indicated that the use of biochar can be a successful strategy for improving water use efficiency and reducing drought stress in melon plants.
机译:为了探讨棕榈叶生物炭对瓜植物中的元素吸收和降低干旱胁迫影响的影响,在连续两年内使用三种复制的随机完全嵌段设计进行了实验。主曲线含有三种水平的干旱胁迫(60%,85%和100%的水需求),并且该子料含有四个水平的生物炭(0,150,300和450克,每株)。结果表明,生物炭应用减少了干旱胁迫的影响,从而减少了植物中的脯氨酸含量。与对照相比,每株植物每株植物每株植物的应用增加了131%的总叶绿素。每植物治疗450克生物炭,100%水需求增加叶绿素A和B和B和B氮(N),钾(K),钙(CA)和锰(Mn)含量为169%,127%,58%与对照相比,分别为65%,44%和48%。与对照相比,每株植物每株(P)和镁(Mg)含量增加450g生物炭,叶片的磷(P)和镁(Mg)含量分别为20%和31%。干旱胁迫和生物炭的相互作用表明,与生物炭相比,每植物每株植物需求增加450克生物炭,植物铁,锌和铜,均有60%,44%和66%治疗100%的水需求。与100%水需求的生物腐蚀处理相比,每株每株植物每株植物和60%的水需求灌溉量增加150%,13%和75%。结果表明,生物炭的使用可以是改善水使用效率和减少甜瓜植物的干旱胁迫的成功策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号