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首页> 外文期刊>Journal of Applied Phycology >Effect of Nostoc sp. on soil characteristics, plant growth and nutrient uptake
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Effect of Nostoc sp. on soil characteristics, plant growth and nutrient uptake

机译:Nostoc sp。的作用对土壤特性,植物生长和养分吸收的影响

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摘要

The arid desert area is expanding by 6 million ha year-p#. Nostoc, a terrestrial cyanobacterium, is known as a pioneer organism which can photosynthesize, fix atmospheric nitrogen, and secrete polysaccharides. In order to explore the potential of Nostoc as a countermeasure to soil desertification, we have investigated the effects of Nostoc on the chemical and physical properties of soil and on plant growth in outdoor and laboratory experiments. The effect of Nostoc on soil properties, when applied on the surface of soil in plastic containers, was determined after cultivation for 90 days outdoors. Its effect on plant growth and nutrient uptake was determined by growing Nostoc with Komatsuna (Brassica rapa var. peruviridis) on a soil-less culture in a plastic petri dish incubated inside a growth chamber for 14 days. Two colonies of Nostoc with different shapes were also examined for their tolerance to dryness and salinity. Nostoc application resulted in an increase in the organic carbon and nitrogen content of the surface soil and enhanced plant growth and plant iron uptake, but soil temperature and moisture were maintained. Spherical-shaped Nostoc showed a higher tolerance to dryness and salinity than irregular-shaped Nostoc, and the former was able to rectify problematic soil better than the latter. The results indicate that the application of Nostoc to soil has a potential for increasing soil organic matter and reclaiming degraded soil ecosystems.
机译:干旱的沙漠地区正在以每年600万公顷的速度增长。陆生蓝藻Nostoc是一种先驱生物,可以光合作用,固定大气中的氮并分泌多糖。为了探索Nostoc作为土壤荒漠化对策的潜力,我们在室外和实验室实验中研究了Nostoc对土壤化学和物理特性以及植物生长的影响。将Nostoc施用到塑料容器中的土壤表面后,在室外培养90天后即可确定其对土壤特性的影响。通过将Nostoc与Komatsuna(芸苔变种peruviridis)在无土培养物中的塑料陪替氏培养皿中在生长室内孵育14天来生长,从而确定其对植物生长和养分吸收的影响。还检查了两个具有不同形状的诺斯托克菌落对干燥和盐度的耐受性。 Nostoc的施用增加了表层土壤的有机碳和氮含量,增强了植物的生长和植物对铁的吸收,但保持了土壤温度和水分。球形的Nostoc对干燥和盐分的耐受性比不规则的Nostoc高,并且前者能够比后者更好地纠正有问题的土壤。结果表明,将Nostoc应用于土壤具有增加土壤有机质和恢复退化的土壤生态系统的潜力。

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