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Smoke produced from plants waste material elicits growth of wheat (Triticum aestivum L.) by improving morphological physiological and biochemical activity

机译:植物废料产生的烟雾通过改善形态生理和生化活性而促进了小麦(Triticum aestivum L.)的生长。

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摘要

The experimental work presented in this study was carried out with the hypothesis that plant derived smoke enhanced the morphological, physiological and biochemical attributes of a cereal crop, wheat (Triticum aestivum L.). Furthermore, this study supported the hypothesis that plant derived smoke acts as vegetative growth promoter, inexpensive, rapid and most appropriate eco-friendly bio-fertilizer for sustainable agriculture. Plant derived smoke was generated by burning of plant material (leaf, straws etc) in a specially designed furnace, and seeds were treated with this smoke for different time duration. Four level of plant derived smoke (1 h, 2 h, 3 h and 4 h) along with control were tested on four wheat cultivars in CRD repeated pot experiment. The smoke-related treatments modified number of morphological, physiological and biochemical features of wheat. Compared with the control, aerosol smoke treatment of the seeds significantly improved root length (2.6%), shoot length (7.7%), RFW (0.04%), SFW (0.7%), SDW (0.1%) and leaf area (63.9%). All the smoke-related treatments significantly promoted RWC (17.3%), water potential (1.5%), osmotic potential (1.4%) and MSI (14.6%) whereas a pronounced increase in chlorophyll a (24.9%), chlorophyll b (21.7%) and total chlorophyll contents (15.5%) were recorded in response to aerosol-smoke treatments. Plant derived smoke exposure applied for short time i.e. 1 h & 2 h induced significant results as compared to prolonged PDS exposure (3 h and 4 h). The best results were observed in Pak-13 and Glaxy-13 wheat cultivars. These findings indicated that the plant-derived smoke treatment has a great potential to improve morphological, physiological and biochemical features of wheat crop.
机译:本研究提出的实验工作是基于以下假设进行的:植物衍生的烟雾增强了谷物作物小麦(Triticum aestivum L.)的形态,生理和生化特性。此外,这项研究支持以下假设:植物烟气可作为营养生长促进剂,廉价,快速且最适合可持续农业的生态友好型生物肥料。在特殊设计的炉子中燃烧植物材料(叶,稻草等)会产生植物产生的烟雾,并用这种烟雾处理不同时间的种子。在CRD重复盆栽试验中,对四个小麦品种测试了四种水平的植物烟气(1 h,2 h,3 h和4 h)以及对照。烟相关处理改变了小麦的形态,生理和生化特性。与对照相比,对种子进行气雾处理显着改善了根长(2.6%),芽长(7.7%),RFW(0.04%),SFW(0.7%),SDW(0.1%)和叶面积(63.9%) )。所有与烟有关的处理均显着促进RWC(17.3%),水势(1.5%),渗透势(1.4%)和MSI(14.6%),而叶绿素a(24.9%),叶绿素b(21.7%)显着增加。 )和总的叶绿素含量(15.5%)被记录为对烟雾处理的响应。与延长PDS暴露时间(3 h和4 h)相比,在短时间内即1 h和2 h施用植物衍生的烟尘会产生明显的结果。在Pak-13和Glaxy-13小麦品种中观察到最佳结果。这些发现表明,植物来源的烟气处理具有改善小麦作物形态,生理和生化特性的巨大潜力。

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