Characterization of Endophytic Bacteria Isolated from Typha latifolia and Their Effect in Plants Exposed to Either Pb or Cd

Author:

Rubio-Santiago Jesús1,Hernández-Morales Alejandro12ORCID,Rolón-Cárdenas Gisela Adelina12ORCID,Arvizu-Gómez Jackeline Lizzeta3ORCID,Soria-Guerra Ruth Elena1ORCID,Carranza-Álvarez Candy12,Rubio-Salazar Jocabed Eunice4,Rosales-Loredo Stephanie2,Pacheco-Aguilar Juan Ramiro5,Macías-Pérez José Roberto2ORCID,Aldaba-Muruato Liseth Rubí2ORCID,Vázquez-Martínez Juan6ORCID

Affiliation:

1. Facultad de Ciencias Químicas, Universidad Autónoma de San Luis Potosí, San Luis Potosí 78210, Mexico

2. Facultad de Estudios Profesionales Zona Huasteca, Universidad Autónoma de San Luis Potosí, San Luis Potosi 79060, Mexico

3. Secretaría de Investigación y Posgrado, Centro Nayarita de Innovación y Transferencia de Tecnología (CENITT), Universidad Autónoma de Nayarit, Tepic 63173, Mexico

4. Departamento de Diagnóstico Molecular, Universidad de Monterrey, San Pedro Garza García 66238, Mexico

5. Facultad de Química, Universidad Autónoma de Querétaro, Santiago de Querétaro 63173, Mexico

6. Departamento de Ingeniería Química y Bioquímica; Tecnológico Nacional de México Campus Irapuato, Guanajuato 36821, Mexico

Abstract

Plant-associated bacteria in heavy-metal-contaminated environments could be a biotechnological tool to improve plant growth. The present work aimed to isolate lead- and cadmium-tolerant endophytic bacteria from the roots of Typha latifolia growing in a site contaminated with these heavy metals. Endophytic bacteria were characterized according to Pb and Cd tolerance, plant-growth-promoting rhizobacteria activities, and their effect on T. latifolia seedlings exposed and non-exposed to Pb and Cd. Pb-tolerant isolates were identified as Pseudomonas azotoformans JEP3, P. fluorescens JEP8, and P. gessardii JEP33, while Cd-tolerant bacteria were identified as P. veronii JEC8, JEC9, and JEC11. They all exert biochemical activities, including indole acetic acid synthesis, siderophore production, and phosphate solubilization. Plant–bacteria interaction assays showed that P. azotoformans JEP3, P. fluorescens JEP8, P. gessardii JEP33, and P. veronii JEC8, JEC9, JEC11 promote the growth of T. latifolia seedlings by increasing the root and shoot length, while in plants exposed to either 5 mg/L of Pb or 10 mg/L of Cd, all bacterial isolates increased the shoot length and the number of roots per plant, suggesting that they are plant-growth-promoting rhizobacteria that could contribute to T. latifolia adaptation to the heavy metal polluted site.

Funder

CONACYT, Programa Presupuestario

Fondo Sectorial de Investigación para la Educación

Fondos Concurrentes de la UASLP

Jesús Rubio-Santiago

Gisela Adelina Rolón-Cárdenas

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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