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对具有多种促进植物生长特性的植酸盐矿化细菌的探索。

Exploration of phytate-mineralizing bacteria with multifarious plant growth-promoting traits.

作者信息

Kaur Rajinder, Kaur Sukhminderjit

机构信息

Chandigarh University, Punjab, India.

出版信息

BioTechnologia (Pozn). 2022 Jun 29;103(2):99-112. doi: 10.5114/bta.2022.116204. eCollection 2022.

Abstract

Phytate-mineralizing bacteria (PMB) with plant growth-promoting activity can be considered as a potential biofertilizer for plant nutrition. PMB catalyzes the conversion of insoluble sugar phosphates, inositols, nucleic acids, phospholipids, nucleotides, phytate, and phytin into soluble forms that can be assimilated by plants. The present study aimed to isolate potential PMB from rhizospheric soils and to study their plant growth-promoting potential for the possible development of a potential phosphobacterium biofertilizer. For this purpose, 34 PMB isolates were isolated that showed potent phytate-mineralizing potential. These isolates were tested for their potential to solubilize tricalcium phosphate (TCP) and for various other plant growth-promoting activities. Significant differences were found among the isolates with regard to phytate mineralization and other plant growth-promoting characteristics. The bacterial isolates biochemically identified as , , , and exhibited high/medium P solubilization, medium/high phytohormone production, and medium/low siderophore and ammonia production. Among all these isolates, isolate A14 ( strain FDAARGOS_7) was the promising isolate with high TCP solubilization, medium phytate mineralization, high enzyme production, medium/high phytohormone production, and medium ammonia production. This strain also showed nitrogen fixation activity, zinc solubilizing potential, potassium solubilization, ACC deaminase production, and catalase production. Hence, it can be concluded that can be the potential candidate for biofertilizer development. Future studies are planned for exploring the role of PMB in biofertilizer formulations.

摘要

具有促进植物生长活性的植酸盐矿化细菌(PMB)可被视为一种潜在的植物营养生物肥料。PMB催化不溶性糖磷酸盐、肌醇、核酸、磷脂、核苷酸、植酸盐和植酸转化为植物可吸收的可溶性形式。本研究旨在从根际土壤中分离潜在的PMB,并研究其促进植物生长的潜力,以开发潜在的磷细菌生物肥料。为此,分离出34株具有强大植酸盐矿化潜力的PMB菌株。对这些菌株进行了溶解磷酸三钙(TCP)的潜力以及其他各种促进植物生长活性的测试。在植酸盐矿化和其他促进植物生长特性方面,各菌株之间存在显著差异。经生化鉴定为 、 、 和 的细菌菌株表现出高/中度的磷溶解、中度/高度的植物激素产生以及中度/低度的铁载体和氨产生。在所有这些菌株中,菌株A14( 菌株FDAARGOS_7)是最有前景的菌株,具有高TCP溶解、中度植酸盐矿化、高酶产生、中度/高度植物激素产生和中度氨产生。该菌株还表现出固氮活性、锌溶解潜力、钾溶解、ACC脱氨酶产生和过氧化氢酶产生。因此,可以得出结论, 可能是生物肥料开发的潜在候选菌株。计划开展进一步研究以探索PMB在生物肥料配方中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a05c/9642947/2b4aa77cd439/BTA-103-2-47019-g001.jpg

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