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NON-COMPOSTED GRAIN-BASED SUBSTRATES FOR MUSHROOM PRODUCTION (AGARICUS BISPORUS)

机译:用于蘑菇生产的非堆肥基料(琼脂)

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Non-composted grain-based substrates were evaluated for the cultivation of mushrooms ( Agaricus bisporus ) with the goal of eliminating the need for the lengthy and often malodorous composting process. Millet grain, millet grain mixed with soybean, and commercial rye grain spawn were used as substrates. Treatments included different proportions (100%, 75%, 50%, and 25%) of millet grain, or grain spawn with perlite as an inert bulking material. For the millet and soybean mixtures, the biological matter (millet and soybean) was set at 75% by volume, while the ratios of millet to soybean were varied. To induce fructification, all substrates were overlain with a sterilized mixture of peat and calcium carbonate (casing) containing 25% activated charcoal (v/v), which was shown to be as effective as a commercial non-sterile casing. Among the various treatments, the highest mushroom yield among all three grain treatments was recorded for the 100% millet/0% perlite treatment (8.7 kg/m 2 ), which was comparable to that of compost (7.7 kg/m 2 ). In contrast, the millet/soybean mixtures failed to produce any mushrooms when soybean was added to the substrate. The highest recorded mushroom yield for commercial grain spawn was 5.3 kg/m 2 for the 100% spawn/0% perlite treatment. This yield was lower when compared to the millet grain and compost substrates. However, biological efficiency (fresh weight of mushroom divided by dry weight of substrates × 100) was 117% for the 25% spawn/75% perlite treatment, while that of compost and the 75% millet/25% perlite treatment were 98% and 55%, respectively. The results suggest that mushrooms can be grown in a non-composted substrate, but further economic analysis will need to be performed to determine economic viability of alternative substrates
机译:对未堆肥的谷物基基质进行了蘑菇(Agaricus bisporus)栽培的评估,目的是消除冗长且通常有恶臭的堆肥过程。小米籽粒,与大豆混合的小米籽粒和商业黑麦籽粒产卵被用作底物。处理包括不同比例(100%,75%,50%和25%)的谷粒或以珍珠岩作为惰性填充材料的谷粒产生。对于小米和大豆的混合物,生物物质(小米和大豆)的体积百分比设置为75%,而小米与大豆的比例则有所不同。为诱导果糖化,所有底物都覆盖有泥炭和碳酸钙(含25%活性炭(v / v))的无菌混合物,已证明与商用非无菌肠衣一样有效。在各种处理中,记录的三种谷物处理中蘑菇产量最高的是100%小米/ 0%珍珠岩处理(8.7 kg / m 2 ),与堆肥(7.7)相当。 kg / m 2 )。相反,当将大豆添加到底物中时,小米/大豆混合物不能产生任何蘑菇。对于100%产卵/ 0%珍珠岩处理,商品谷类产卵蘑菇的最高记录产量为5.3 kg / m 2 。与小米谷物和堆肥基质相比,该产量较低。然而,对于25%产卵/ 75%珍珠岩处理,生物学效率(蘑菇的鲜重除以基质的干重×100)为117%,而堆肥和75%小米/ 25%珍珠岩处理的生物学效率为98%, 55%。结果表明蘑菇可以在非堆肥基质中生长,但是需要进行进一步的经济分析以确定替代基质的经济可行性。

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