Genomic DNA extraction and phenolic content of salty and tannic plant material of two mangrove tree species from the mexican pacific coast

Author:

Cunill-Flores J. M.1,Salgado Escobar I.2,Ramírez D Guerra3,Jiménez-Juárez N.4,Nettel-Hernanz A.5,Horta-Valerdi G. M.6,Matamoros W. A.7,Pacheco Hernández Y.8

Affiliation:

1. 1 Instituto de Ciencias Biológicas , Universidad de Ciencias y Artes de Chiapas , Libramiento Nte. Pte. 1150, Caleras Maciel, 29029 Tuxtla Gutiérrez, Chiapas, México. Universidad Politécnica Metropolitana de Puebla. Calle Popocatépetl s/n. colonia Tres Cerritos. Puebla , Puebla . . México .

2. 2 Escuela de Diseño, Ingeniería y Arquitectura, Departamento de Física y Matemáticas , Instituto Tecnológico y de Estudios Superiores de Monterrey, Campus Ciudad de México, Calle del Puente 222 Col. Ejidos de Huipulco, Tlalpan, CDMX , . México .

3. 3 Laboratorio de Productos Naturales, Área de Química, Departamento de Preparatoria Agrícola , Universidad Autónoma Chapingo , Apartado 74, Oficina de Correos Chapingo, Km 38.5 carretera México-Texcoco, Chapingo, México, 56230 . México

4. 4 School of Engineering and Sciences , Department of Sciences, Puebla City Campus, Instituto Tecnologico de Estudios Superiores de Monterrey . Atlixcáyotl 5718, Reserva Territorial Atlixcáyotl, 72453 Puebla , Puebla . México .

5. 5 Instituto de Ciencias Biológicas , Universidad de Ciencias y Artes de Chiapas , Libramiento Nte. Pte. 1150, Caleras Maciel, 29029 Tuxtla Gutiérrez, Chiapas, México.6*Universidad Politécnica Metropolitana de Puebla. Calle Popocatépetl s/n. colonia Tres Cerritos. Puebla, Puebla. 72480 . México .

6. 6 Universidad Politecnica Metropolitana de Puebla . Calle Popocatepetl s/n. colonia Tres Cerritos. Puebla, Puebla. 72480 . Mexico .

7. 7 Instituto de Ciencias Biológicas , Universidad de Ciencias y Artes de Chiapas , Libramiento Norte Poniente 1150, Caleras Maciel, 29029 Tuxtla Gutiérrez, Chiapas , México .

8. 8 Universidad Politécnica Metropolitana de Puebla . Calle Popocatépetl s/n. colonia Tres Cerritos. Puebla, Puebla. 72480 . Mexico .

Abstract

Abstract Mangroves, unique tree and shrub species inhabiting coastal saline environments, exhibit distinctive ecological and morpho-physiological traits, including forming pure intertidal stands and possessing specialized mechanisms for salt excretion and aerial root respiration. These species produce valuable antioxidants, such as phenols and tannins, with significant pharmacological, ecological, and toxicological implications. This study aimed to develop a highly efficient DNA extraction protocol for mangrove leaves rich in salt and tannins. The commonly used CTAB extraction protocol and a commercial DNA extraction kit were modified to enhance DNA purity and yield. The antioxidant capacity of the samples was assessed using various protocols. The results demonstrated that the modified commercial kit outperformed other methods in extracting DNA from mangrove leaves, effectively overcoming challenges associated with high salt and phenolic compounds that could impede next-generation sequencing (NGS) analysis. Furthermore, the findings revealed an inverse relationship between tannin concentration and DNA extraction yield. This study offers a valuable resource for DNA extraction protocols from tannin-rich plant materials. In conclusion, the modified commercial kit represents the most efficient and effective approach for extracting DNA from tannin-rich mangrove leaves.

Publisher

Walter de Gruyter GmbH

Subject

Genetics,Forestry

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