Role of plant growth-promoting rhizobacteria in boosting the phytoremediation of stressed soils: Opportunities, challenges, and prospects

被引:89
|
作者
Bhanse, Poonam [1 ,2 ]
Kumar, Manish [1 ]
Singh, Lal [1 ,2 ]
Awasthi, Mukesh Kumar [3 ]
Qureshi, Asifa [1 ,2 ]
机构
[1] CSIR Natl Environm Engn Res Inst CSIR NEERI, Environm Biotechnol & Genom Div, Nehru Marg, Nagpur 440020, Maharashtra, India
[2] Acad Sci & Innovat Res AcSIR, Ghaziabad 201002, India
[3] Northwest A&F Univ, Coll Nat Resources & Environm, Yangling 712100, Shaanxi, Peoples R China
关键词
Contaminants; Phytoremediation; Biotic and abiotic stress; Restoration; Advanced tools and technologies; PERSISTENT ORGANIC POLLUTANTS; HEAVY-METALS; CONTAMINATED SOILS; RISK-ASSESSMENT; ASSISTED PHYTOREMEDIATION; DROUGHT STRESS; ROT FUNGUS; REMEDIATION; HEALTH; BACTERIAL;
D O I
10.1016/j.chemosphere.2022.134954
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Soil is considered as a vital natural resource equivalent to air and water which supports growth of the plants and provides habitats to microorganisms. Changes in soil properties, productivity, and, inevitably contamination/ stress are the result of urbanisation, industrialization, and long-term use of synthetic fertiliser. Therefore, in the recent scenario, reclamation of contaminated/stressed soils has become a potential challenge. Several customized, such as, physical, chemical, and biological technologies have been deployed so far to restore contaminated land. Among them, microbial-assisted phytoremediation is considered as an economical and greener approach. In recent decades, soil microbes have successfully been used to improve plants' ability to tolerate biotic and abiotic stress and strengthen their phytoremediation capacity. Therefore, in this context, the current review work critically explored the microbial assisted phytoremediation mechanisms to restore different types of stressed soil. The role of plant growth-promoting rhizobacteria (PGPR) and their potential mechanisms that foster plants' growth and also enhance phytoremediation capacity are focussed. Finally, this review has emphasized on the application of advanced tools and techniques to effectively characterize potent soil microbial communities and their significance in boosting the phytoremediation process of stressed soils along with prospects for future research.
引用
收藏
页数:24
相关论文
共 50 条
  • [41] Growth response and heavy metals tolerance of Axonopus affinis, inoculated with plant growth-promoting rhizobacteria
    Labra Cardon, Daniela
    Montes Villafan, Silvano
    Rodriguez Tovar, Aida
    Perez Jimenez, Sandra
    Guerrero Zuniga, L. Angelica
    Amezcua Allieri, Myriam A.
    Perez, Nestor O.
    Rodriguez Dorantes, Angelica
    AFRICAN JOURNAL OF BIOTECHNOLOGY, 2010, 9 (51): : 8772 - 8782
  • [42] Use of plant growth-promoting rhizobacteria to control stress responses of plant roots
    Bin Goo Kang
    Woo Taek Kim
    Hye Sup Yun
    Soo Chul Chang
    Plant Biotechnology Reports, 2010, 4 : 179 - 183
  • [43] Plant growth-promoting bacteria isolated from earthworms enhance spinach growth and its phytoremediation potential in metal-contaminated soils
    Houida, Sofia
    Yakkou, Lamia
    Kaya, Leyla Okyay
    Bilen, Serdar
    Raouane, Mohamed
    El Harti, Abdellatif
    Amghar, Souad
    INTERNATIONAL MICROBIOLOGY, 2024, 27 (02) : 545 - 558
  • [44] Plant growth-promoting bacteria in phytoremediation of metal-polluted soils: Current knowledge and future directions
    Alves, Ana R. A.
    Yin, Qifan
    Oliveira, Rui S.
    Silva, Eduardo F.
    Novo, Luis A. B.
    SCIENCE OF THE TOTAL ENVIRONMENT, 2022, 838
  • [45] Plant Growth-Promoting Rhizobacteria (PGPR) and Phosphorus Fertilizer-Assisted Phytoextraction of Toxic Heavy Metals from Contaminated Soils
    Gullap, M. Kerim
    Dasci, Mahmut
    Erkovan, H. Ibrahim
    Koc, Ali
    Turan, Metin
    COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2014, 45 (19) : 2593 - 2606
  • [46] Phytomanagement of Cd-contaminated soils using maize (Zea mays L.) assisted by plant growth-promoting rhizobacteria
    Moreira, Helena
    Marques, Ana P. G. C.
    Franco, Albina R.
    Rangel, Antonio O. S. S.
    Castro, Paula M. L.
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2014, 21 (16) : 9742 - 9753
  • [47] Applications of plant growth-promoting rhizobacteria for increasing crop production and resilience
    Hyder, Sajjad
    Rizvi, Zarrin Fatima
    de los Santos-Villalobos, Sergio
    Santoyo, Gustavo
    Gondal, AmjadShahzad
    Khalid, Noreen
    Fatima, Syeda Noureen
    Nadeem, Mashal
    Rafique, Khizra
    Rani, Akasha
    JOURNAL OF PLANT NUTRITION, 2023, 46 (10) : 2551 - 2580
  • [48] Plant growth-promoting rhizobacteria improve drought tolerance of crops: a review
    Liu, Kewei
    Deng, Fenglin
    Zeng, Fanrong
    Chen, Zhong-Hua
    Qin, Yuan
    Chen, Guang
    PLANT GROWTH REGULATION, 2025, : 567 - 581
  • [49] Enhancing the Phytoremediation of Heavy Metals by Plant Growth Promoting Rhizobacteria (PGPR) Consortium: A Narrative Review
    Rao, Merugu Chandra Surya
    Rahul, Vadlamudi Dinesh
    Uppar, Pandu
    Madhuri, Marpu Lakshmi
    Tripathy, Barsha
    Vyas, Ryali Devi Veda
    Swami, Dokka Venkata
    Raju, Sirivuru Srinivasa
    JOURNAL OF BASIC MICROBIOLOGY, 2024,
  • [50] Regulatory Mechanisms of Plant Growth-Promoting Rhizobacteria and Plant Nutrition against Abiotic Stresses in Brassicaceae Family
    Jalal, Arshad
    Oliveira, Carlos Eduardo da Silva
    Galindo, Fernando Shintate
    Rosa, Poliana Aparecida Leonel
    Gato, Isabela Martins Bueno
    de Lima, Bruno Horschut
    Teixeira Filho, Marcelo Carvalho Minhoto
    LIFE-BASEL, 2023, 13 (01):