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首页> 外文期刊>Journal of plant nutrition and soil science >Seedball-induced changes of root growth and physico-chemical properties-a case study with pearl millet
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Seedball-induced changes of root growth and physico-chemical properties-a case study with pearl millet

机译:幼苗诱导的根生长和物理化学性能变化 - 用珍珠小米为例

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摘要

Seedball is a cheap "seed-pelleting-technique" that combines local materials, seeds and optionally additives such as mineral fertilizer to enhance pearl millet (Pennisetum glaucum (L.) R.Brown) early growth under poor soil conditions. The major objective here was to study the mechanisms behind positive seedball effects. Chemical effects in the rhizosphere and early root development of seedball-derived pearl millet seedlings were monitored using micro-suction-cups to extract soil solutions and X-ray tomography to visualize early root growth. Pearl millet (single seedling) was grown in soil columns in a sandy soil substrate. Root and shoot biomass were sampled. X-ray tomography imaging revealed intense development of fine roots within the nutrient-amended seedball. Seedball and seedball+NPK treatments, respectively, were 65% and 165% higher in shoot fresh weight, and 108% and 227% higher in shoot dry matter than the control treatment. Seedball+NPK seedlings showed promoted root growth in the upper compartment and 105% and 30% increments in root fresh and dry weights. Soil solution concentrations indicate that fine root growth ass stimulated by release of nutrients from the seedballs to their direct proximity. Under real field conditions, the higher root length density and finer roots could improve seedlings survival under early drought conditions due to better ability to extract water and nutrients from a greater soil volume.
机译:种子是一种廉价的“种子 - 颗粒技术”,将局部材料,种子和任选的添加剂如矿物肥料结合起来,以增强珍珠米(Pennisetum glaucum(L.)R.Brown)早期生长。这里的主要目标是研究积极种子球的作用背后的机制。使用微吸杯监测干燥率和早期根系的化学效果,使用微吸杯来提取土壤溶液和X射线断层扫描,以可视化早期生长。珍珠米(单幼苗)在沙质底物中生长在土壤柱中。取样根和芽生物质。 X射线断层扫描成像显示出营养修订的种蛛内细根的强烈发展。幼球和种蛛+ NPK治疗分别为65%和165%的枝次鲜重,芽干燥物质比对照处理更高的108%和227%。种子+ NPK幼苗在上隔室中促进了根生长,并在根新鲜和干重中增量105%和30%。土壤溶液浓度表明,通过从种子球的营养素释放到其直接接近营养素刺激的细根生长叶。在真实的现场条件下,由于更好地从更大的土壤体积提取水和营养物质,较高的根长度和更细的根部可以改善早期干旱条件下的幼苗存活。

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