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Production exopolysaccharide from Kosakonia cowanii LT-1 through solid-state fermentation and its application as a plant growth promoter

机译:通过固态发酵产生kosakonia cowanii lt-1的产量泛果糖及其作为植物生长促进剂的应用

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摘要

Exopolysaccharide has the activity of promoting plants growth. Herein, several agro-industrial residues were used for EPS biosynthesis through solid-state fermentation (SSF) using an EPS producing stain Kosakonia cowanii LT-1. Then the influences of cane molasses powder (CMP), NaNO3 and temperature on EPS biosynthesis through SSF were studied using response surface methodology. Maximum EPS yield (41.62 mg/gds) was obtained in a mixed substrate composed of cane bagasse and broadbean seed capsule (2:1, w/w) supplemented with CMP (5.09%, w/w) and NaNO3 (4.16%0, w/w), which achieved about 30.43% cost savings for substrates. Transcriplomic analysis explained the mechanism of NaNO 3 promoting EPS production. Repeated batch SSF was performed eight Limes with 10% substrate as the seeds of the next SST cycle successfully. Therefore, the fermented SSF substrate containing K. cowanii LT-1 and its EPS was applied in maize growth, which could promote seed germination rate and growth vigor of maize. Hence, fermented SSF substrates would be an ideal candidate for application as a plant growth promoter in agriculture field. (C) 2019 Elsevier B.V. All rights reserved.
机译:胞外多糖具有促进植物生长的活性。在此,几个农工业残渣通过固态发酵(SSF),使用产生污点Kosakonia cowanii LT-1的EPS用于EPS的生物合成。然后甘蔗糖蜜粉末(CMP),硝酸钠和温度对EPS生物合成通过SSF的影响,使用响应面分析法研究。在甘蔗渣和蚕豆种子胶囊组成的混合底物,得到最大EPS产量(41.62毫克/ GDS)(2:1,w / w的),补充有CMP(5.09%,重量/重量)和硝酸钠(4.16%0,重量/重量),这实现了约节省30.43%成本用于衬底。 Transcriplomic分析解释硝酸钠的机制,促进生产EPS。重复分批SSF进行8个酸橙,用10%的底物作为下一个SST周期的种子成功。因此,含有该发酵SSF基板K. cowanii LT-1和它的EPS是在玉米生长,这可能会促进种子的发芽率和玉米的生长势施加。因此,发酵SSF衬底将是应用在农业领域中的植物生长促进剂的理想候选。 (c)2019 Elsevier B.v.保留所有权利。

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