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解磷根际细菌菌株介导的狗尾草幼苗生物刺激作用

Mineral Solubilizing Rhizobacterial Strains Mediated Biostimulation of Rhodes Grass Seedlings.

作者信息

Javaid Shaista, Mushtaq Saira, Mumtaz Muhammad Zahid, Rasool Ghulam, Naqqash Tahir, Afzal Maha, Mushtaq Uzma, Ali Hayssam M, Akhtar Muhammad Fakhar-U-Zaman, Abbas Ghulam, Li Lingling

机构信息

Institute of Molecular Biology and Biotechnology, The University of Lahore Main Campus, Lahore 54000, Pakistan.

Institute of Molecular Biology and Biotechnology, Bahauddin Zakariya University, Multan 60800, Pakistan.

出版信息

Microorganisms. 2023 Oct 12;11(10):2543. doi: 10.3390/microorganisms11102543.

Abstract

Minerals play a dynamic role in plant growth and development. However, most of these mineral nutrients are unavailable to plants due to their presence in fixed forms, which causes significant losses in crop production. An effective strategy to overcome this challenge is using mineral solubilizing bacteria, which can convert insoluble forms of minerals into soluble ones that plants can quickly assimilate, thus enhancing their availability in nutrient-depleted soils. The main objective of the present study was to isolate and characterize mineral solubilizing rhizobacteria and to assess their plant growth-promoting potential for Rhodes grass. Twenty-five rhizobacterial strains were isolated on a nutrient agar medium. They were characterized for solubilization of insoluble minerals (phosphate, potassium, zinc, and manganese), indole acetic acid production, enzymatic activities, and various morphological traits. The selected strains were also evaluated for their potential to promote the growth of Rhodes grass seedlings. Among tested strains, eight strains demonstrated strong qualitative and quantitative solubilization of insoluble phosphate. Strain MS2 reported the highest phosphate solubilization index, phosphate solubilization efficiency, available phosphorus concentration, and reduction in medium pH. Among tested strains, 75% were positive for zinc and manganese solubilization, and 37.5% were positive for potassium solubilization. Strain MS2 demonstrated the highest quantitative manganese solubilization, while strains MS7 and SM4 reported the highest solubilization of zinc and potassium through acidifying their respective media. The strain SM4 demonstrated the most increased IAA production in the presence and absence of L-tryptophan. The majority of strains were positive for various enzymes, including urease, catalase protease, and amylase activities. However, these strains were negative for coagulase activity except strains SM7 and MS7. Based on 16S rRNA gene sequencing, six strains, namely, SM2, SM4, SM5, MS1, MS2, and MS4, were identified as , while strains SM7 and MS7 were identified as and . These strains significantly improved growth attributes of Rhodes grass, such as root length, shoot length, and root and shoot fresh and dry biomasses compared to the uninoculated control group. The present study highlights the significance of mineral solubilizing and enzyme-producing rhizobacterial strains as potential bioinoculants to enhance Rhodes grass growth under mineral-deficient conditions sustainably.

摘要

矿物质在植物生长发育中起着动态作用。然而,这些矿质养分大多以固定形式存在,植物无法利用,这导致作物产量大幅损失。克服这一挑战的有效策略是使用解磷细菌,它可以将不溶性矿物质转化为植物能够快速吸收的可溶性矿物质,从而提高其在养分贫瘠土壤中的有效性。本研究的主要目的是分离和鉴定解磷根际细菌,并评估它们对狗牙根的促生长潜力。在营养琼脂培养基上分离出25株根际细菌菌株。对它们进行了不溶性矿物质(磷、钾、锌和锰)溶解、吲哚乙酸产生、酶活性及各种形态特征的鉴定。还评估了所选菌株促进狗牙根幼苗生长的潜力。在测试菌株中,有8株表现出对不溶性磷的强烈定性和定量溶解能力。菌株MS2的解磷指数、解磷效率、有效磷浓度最高,培养基pH值降低幅度最大。在测试菌株中,75%的菌株对锌和锰的溶解呈阳性,37.5%的菌株对钾的溶解呈阳性。菌株MS2的定量锰溶解能力最高,而菌株MS7和SM4通过酸化各自培养基对锌和钾的溶解能力最高。菌株SM4在有无L-色氨酸的情况下,IAA产量增加最多。大多数菌株对包括脲酶、过氧化氢酶、蛋白酶和淀粉酶活性在内的各种酶呈阳性。然而,除菌株SM7和MS7外,这些菌株的凝固酶活性呈阴性。基于16S rRNA基因测序,6株菌株,即SM2、SM4、SM5、MS1、MS2和MS4被鉴定为 ,而菌株SM7和MS7被鉴定为 和 。与未接种的对照组相比,这些菌株显著改善了狗牙根的生长特性,如根长、茎长以及根和茎的鲜重和干重。本研究强调了解磷和产酶根际细菌菌株作为潜在生物菌剂在可持续提高缺矿条件下狗牙根生长方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5ba/10609362/2381cb2267f8/microorganisms-11-02543-g001.jpg

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