A novel exopolysaccharide-producing bacterium, Pseudescherichia liriopis sp. nov. isolated from Liriope platyphylla, enhances the growth of Daucus carota subsp. sativus under drought and salinity stress

Inhyup Kim, Haejin Woo, G. Chhetri, Sunho Park, T. Seo
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Abstract

Biological and abiotic stresses in plant growth are associated with reduced crop yields. Therefore, improving plant stress resistance can be a crucial strategy to improve crop production. To overcome these problems, plant growth-promoting bacteria are emphasized as one of the alternative tools for sustainable agriculture. This study found a novel strain (L3T) of a plant growth-promoting bacterium in fermented Liriope platyphylla fruit. Strain L3T showed the ability to promote plant growth. The L3T strain promoted plant growth of D. carota subsp. sativus, increasing the length (increase rate compared to the control group, 36.98%), diameter (47.06%), and weight of carrots (81.5%), ultimately increasing the edible area. In addition, we confirmed that plant growth was improved even in situations that inhibited plant growth, such as salinity and drought stress. Strain L3T performed indole production, siderophore production, phosphate solubilization, and nitrogen fixation, all characteristics of a strain that promotes plant growth. Genome analysis revealed genes involved in the growth promotion effects of strain L3T. Additionally, the properties of exopolysaccharides were identified and characterized using FTIR, TGA, and UHPLC. Our results demonstrated that L3 isolated from fermented L. platyphylla fruit can be used to simultaneously alleviate drought and NaCl stress.
从Liriope platyphylla中分离出的一种新型外多糖生产菌Pseudescherichia liriopis sp.
植物生长过程中的生物和非生物胁迫与作物减产有关。因此,提高植物的抗逆性是提高作物产量的关键策略。为了克服这些问题,促进植物生长的细菌被视为可持续农业的替代工具之一。本研究在发酵的 Liriope platyphylla 果实中发现了一种新型植物生长促进菌株(L3T)。菌株 L3T 具有促进植物生长的能力。L3T 菌株促进了 D. carota subsp. sativus 的植物生长,增加了胡萝卜的长度(与对照组相比增加了 36.98%)、直径(47.06%)和重量(81.5%),最终增加了可食用面积。此外,我们还证实,即使在盐碱和干旱胁迫等抑制植物生长的情况下,植物的生长也得到了改善。菌株 L3T 能产生吲哚、产生苷元、溶解磷酸盐和固氮,这些都是促进植物生长的菌株的特征。基因组分析揭示了参与菌株 L3T 生长促进作用的基因。此外,还利用傅立叶变换红外光谱(FTIR)、热重分析(TGA)和超高效液相色谱(UHPLC)对外多糖的特性进行了鉴定和表征。我们的研究结果表明,从发酵的 L. platyphylla 果实中分离出的 L3 菌株可用于同时缓解干旱和 NaCl 胁迫。
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