首页> 美国卫生研究院文献>Saudi Journal of Biological Sciences >Variation of Pleurotus ostreatus (Jacq. Ex Fr.) P. Kumm. (1871) performance subjected to differentdoses and timings of nano-urea
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Variation of Pleurotus ostreatus (Jacq. Ex Fr.) P. Kumm. (1871) performance subjected to differentdoses and timings of nano-urea

机译:平菇的变异​​(Jacq。Ex Fr.)P. Kumm。 (1871)性能受到纳米尿素不同剂量和时间的影响

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摘要

Supplementation of the growing substrate by nitrogenous additives has been known to improve the production of oyster mushroom ( (Jacq. ex Fr.) P. Kumm. (1871)). However, the application of nano-additives has not been reported in such cultivation yet. The study investigated the effect of nano-urea added in two different doses (3 g and 5 g per kg substrate), once (at spawning or after first flush) or twice (at spawning and after first flush) to the growing substrate consisting of wheat straw and spent oyster substrate (1:1, w/w). Results showed that the application of nano-urea once has induced the highest number of mushroom flushes (four flushes) despite the dose applied. Contrarily to early findings, where high doses of nitrogen have caused inhibition of mushroom growth and production, nano-urea application has had better effects when applied twice. With 5 g/kg, it induced the shortest period between the first and the third flush (15 days). With 3 g/kg, it resulted in the highest biological and economic yields at the third flush (332.7 g/bag and 283.1 g/bag respectively), in total (973.4 g/bag and 854.0 g/bag respectively), the highest biological efficiency (109.6%), and pileus diameter/stipe length ratio (2.8). Experimental findings of the current study may be potentially applied at commercial scale.
机译:已知通过添加含氮添加剂来补充生长中的底物可以改善牡蛎蘑菇的产量((Jacq。ex Fr.)P. Kumm。(1871))。但是,尚未在这种栽培中报道使用纳米添加剂。这项研究调查了以两种不同剂量(每千克底物3 g和5 g)添加纳米尿素的效果,一次(在产卵时或第一次冲洗后)或两次(在产卵时和第一次冲洗后)向正在生长的底物组成,小麦秸秆和废牡蛎基质(1:1,w / w)。结果表明,尽管施用了一定剂量,但纳米尿素的施用一次诱导了最多的蘑菇潮红(四潮红)。与早期发现相反,在早期发现中,高剂量的氮会抑制蘑菇的生长和生产,而两次施用纳米尿素的效果更好。剂量为5 g / kg时,第一次和第二次冲洗之间的间隔时间最短(15天)。以3克/千克计算,第三次冲洗的生物和经济产量最高(分别为332.7克/袋和283.1克/袋),总计(分别为973.4克/袋和854.0克/袋),是最高的生物效率(109.6%),绒头直径/刀柄长比(2.8)。当前研究的实验结果可能会以商业规模应用。

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