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PE7介导的缓解网纹甜瓜(甜瓜变种瑙德)磷饥饿及促进生长作用

PE7-Mediated Alleviation of Phosphate Starvation and Growth Promotion of Netted Melon ( L. var. Naud.).

作者信息

Han Seong Eun, Kim Kil Yong, Maung Chaw Ei Htwe

机构信息

Department of Agricultural Chemistry, Environmentally-Friendly Agricultural Research Center, College of Agriculture and Life Sciences, Chonnam National University, Gwangju 61186, Republic of Korea.

Department of Agricultural and Biological Chemistry, Environmentally-Friendly Agricultural Research Center, College of Agriculture and Life Sciences, Chonnam National University, Gwangju 61186, Republic of Korea.

出版信息

Microorganisms. 2024 Nov 21;12(12):2384. doi: 10.3390/microorganisms12122384.

Abstract

Members of species are able to enhance the level of available phosphorus (P) for plant absorption through mechanisms of P solubilization and mineralization. In our study, PE7 showed P-solubilizing activity in simple phosphate broth (SPB) medium, and acetic acid, iso-butyric acid, and iso-valeric acid were major organic acids responsible for the increase in soluble P and decrease in pH of SPB medium. In addition, strain PE7 released phytase on phytase-screening agar (PSA) medium, and analysis of semi-quantitative reverse transcription and polymerase chain reaction (sqRT-PCR) revealed that the gene expression was the highest at 1 day after incubation. A low concentration of KHPO in SPB medium induced more biofilm formation than a high concentration of KHPO. Strain PE7 showed swimming and swarming motilities in TY and TrA agar media. Under P starvation, inoculation with higher cell numbers of strain PE7 enhanced biomass and nutrient acquisition by melon plants, resulting in higher values of growth parameters and nutrient contents. Moreover, the persistence of bacterial cells on the root surface and in the rhizosphere of melon plants indicated colonization of the plants by strain PE7. Due to its capacity for P solubilization and mineralization, PE7 could be utilized as an alternative to synthetic fertilizer for P deficient-stress management in crop plantation.

摘要

该物种的成员能够通过磷溶解和矿化机制提高植物可吸收的有效磷(P)水平。在我们的研究中,PE7在简单磷酸盐肉汤(SPB)培养基中表现出解磷活性,乙酸、异丁酸和异戊酸是导致SPB培养基中可溶性磷增加和pH值降低的主要有机酸。此外,菌株PE7在植酸酶筛选琼脂(PSA)培养基上释放植酸酶,半定量逆转录和聚合酶链反应(sqRT-PCR)分析表明,孵育1天后基因表达最高。SPB培养基中低浓度的KHPO比高浓度的KHPO诱导更多的生物膜形成。菌株PE7在TY和TrA琼脂培养基中表现出游泳和群集运动能力。在磷饥饿条件下,接种较高细胞数的菌株PE7可提高甜瓜植株的生物量和养分获取量,从而使生长参数和养分含量的值更高。此外,细菌细胞在甜瓜植株根表面和根际的持久性表明菌株PE7在植物上定殖。由于其具有磷溶解和矿化能力,PE7可作为合成肥料的替代品,用于作物种植中缺磷胁迫的管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffb6/11678189/40caf3a6c3da/microorganisms-12-02384-g001.jpg

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