Endorsement and phylogenetic analysis of some Fabaceae plants based on DNA barcoding

Author:

Abdelsalam Nader R.,Hasan Mohamed E.,Javed TalhaORCID,Rabie Samar M. A.,El-Wakeel Houssam El-Din M. F.,Zaitoun Amera F.,Abdelsalam Aly Z.,Aly Hesham M.,Ghareeb Rehab Y.,Hemeida Alaa A.,Shah Adnan Noor

Abstract

AbstractBackgroundDNA barcoding have been considered as a tool to facilitate species identification based on its simplicity and high-level accuracy in compression to the complexity and subjective biases linked to morphological identification of taxa. MaturaseK gene (MatK gene)of the chloroplast is very vital in the plant system which is involved in the group II intron splicing. The main objective of this study is to determine the relative utility of the “MatK” chloroplast gene for barcoding in 15 legume as a tool to facilitate species identification based on their simplicity and high-level accuracy linked to morphological identification of taxa.Methods and ResultsMatKgene sequences were submitted to GenBank and the accession numbers were obtained with sequence length ranging from 730 to 1545 nucleotides. These DNA sequences were aligned with database sequence using PROMALS server,Clustal Omega server and Bioedit program. Maximum likelihood and neighbor-joining algorithms were employed for constructing phylogeny. Overall, these results indicated that the phylogenetic tree analysis and the evolutionary distances of an individual dataset of each species were agreed with a phylogenetic tree of all each other consisting of two clades, the first clade comprising(Enterolobium contortisiliquum, Albizia lebbek), Acacia saligna,Leucaena leucocephala, Dichrostachys Cinerea, (Delonix regia, Parkinsonia aculeata), (Senna surattensis, Cassia fistula, Cassia javanica)andSchotia brachypetalawere more closely to each other, respectively. The remaining four species ofErythrina humeana, (Sophora secundiflora, Dalbergia Sissoo, Tipuana Tipu)constituted the second clade.ConclusionMoreover, their sequences could be successfully utilized in single nucleotide polymorphism or as part of the sequence as DNA fragment analysis utilizing polymerase chain reaction in plant systematic. Therefore,MatKgene is considered promising a candidate for DNA barcoding in the plant family Fabaceae and provides a clear relationship between the families.

Funder

The Science, Technology & Innovation Funding Authority

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,General Medicine

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