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(00634)An innovative green iron-fertilizer, produced biotechnologically, for correcting iron chlorosis of soybean plants grown in calcareous soils

机译:(00634)一种创新的绿色铁肥,生产生物技术,用于校正在钙质土壤中生长的大豆植物的铁萎缩

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Iron deficiency is one of the main causes of chlorosis in plants, which leads to the loss in the field crops quality and yield. Iron-deficiency is a worldwide problem, particularly sever in calcareous soils (about 30% of world?s land surface). The current use of synthetic iron-chelates to prevent or correct iron-deficiency in plants raises environmental concerns due to their poor biodegradability. Thus, new, more environmentally-friendly efficient solutions are needed to solve iron deficiency-induced chlorosis (IDIC)in crops grown in calcareous soils. In this work, a new green freeze-dried iron fertilizer was produced (patent submitted)from a culture of A. vinelandii containing siderophores of a natural source able to bind iron at pH 9. Soybean plants cultivated under calcareous soils and treated with the green iron-fertilizer responded more significantly and comparable to the positive control, ethylenediaminedi(o-hydroxyphenylacetic)acid, than those treated with the negative control, when evaluated by their growth (dry mass)and chlorophyll concentration (SPAD index). On average, iron content was also greater on green iron-fertilizer treated plants than on negative control treated ones. Results suggest that the freeze-dried product, prepared from A. vinelandii culture, can be a viable alternative for mending IDIC of soybean plants grown in calcareous soils.
机译:铁缺乏是植物萎黄的主要原因之一,这导致野外作物质量和产量的损失。铁缺乏是一个全球问题,特别是钙质土壤中的切片(约占世界陆地面积的30%)。目前使用合成铁螯合物以防止或纠正植物的缺铁由于其生物降解性差,因此引起了环境问题。因此,需要新的,更环保的有效解决方案来解决在钙质土壤中生长的作物中的铁缺乏诱导的萎黄(IDIC)。在这项工作中,由一种新的绿色冷冻干燥的铁肥(专利提交)从含有天然来源的天然来源的培养物中产生(专利),能够在pH9的pH9植物植物植物下培养的植物植物,并用绿色处理铁 - 肥料在通过它们的生长(干质量)和叶绿素浓度(Spad指数)评估时,乙二胺二胺(O-羟基苯基)酸比阳性对照,乙二胺二胺(O-羟基苯基)酸相当,乙二胺二胺(O-羟基苯基乙酰基)酸。平均而言,在生坯肥料处理的植物上也比在阴性对照处理的植物上更大。结果表明,由A. Vinelandii文化制备的冻干产品,可以成为在钙质土壤中生长的豆豆植物的伊科植物的可行替代方案。

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