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Potential of soil amendments (Biochar and Gypsum) in increasing water use efficiency of Abelmoschus esculentus L. Moench

机译:土壤改良剂(生物炭和石膏)在提高Abelmoschus esculentus L. Moench水分利用效率方面的潜力

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摘要

Water being an essential component for plant growth and development, its scarcity poses serious threat to crops around the world. Climate changes and global warming are increasing the temperature of earth hence becoming an ultimate cause of water scarcity. It is need of the day to use potential soil amendments that could increase the plants resistance under such situations. Biochar and gypsum were used in the present study to improve the water use efficiency (WUE) and growth of Abelmoschus esculentus L. Moench (Ladys Finger). A 6 weeks experiment was conducted under greenhouse conditions. Stress treatments were applied after 30 days of sowing. Plant height, leaf area, photosynthesis, transpiration rate (Tr), stomatal conductance and WUE were determined weekly under stressed [60% field capacity (F.C.)] and non-stressed (100% F.C.) conditions. Stomatal conductance and Tr decreased and reached near to zero in stressed plants. Stressed plants also showed resistance to water stress upto 5 weeks and gradually perished at sixth week. On the other hand, WUE improved in stressed plants containing biochar and gypsum as compared to untreated plants. Biochar alone is a better strategy to promote plant growth and WUE specifically of A. esculentus, compared to its application in combination with gypsum.
机译:水是植物生长和发育的重要组成部分,其稀缺性对世界各地的农作物构成了严重威胁。气候变化和全球变暖正在升高地球的温度,因此成为缺水的最终原因。在这种情况下,有一天需要使用可能会增加植物抗性的潜在土壤改良剂。在本研究中,使用了生物炭和石膏来提高水分利用效率(WUE)和Abelmoschus esculentus L. Moench(Ladys Finger)的生长。在温室条件下进行了6周的实验。播种30天后进行胁迫处理。每周在压力[60%田间持水量(FC。在胁迫植物中,气孔导度和Tr降低并接近于零。胁迫的植物还显示出对水分胁迫的抗性直至5周,并在第六周逐渐消失。另一方面,与未处理的植物相比,在含有生物炭和石膏的胁迫植物中WUE有所改善。与将其与石膏组合施用相比,单独使用生物炭是一种更好的策略来促进植物的生长和特别是食草拟南芥的WUE。

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