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Miracle Tree : Status of the Genetic Diversity, Breeding, In Vitro Propagation, and a Cogent Source of Commercial Functional Food and Non-Food Products

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Journal Plants (Basel)
Date 2022 Nov 26
PMID 36432862
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Abstract

Lam. (MO) is a fast-growing drought-resistant tree belonging to the family Moringaceae and native to the Indian subcontinent and cultivated and/or naturalized worldwide with a semi-arid climate. MO is also popularly known as a miracle tree for its repertoire of nutraceutical, pharmacological, and phytochemical properties. The MO germplasm is collected, conserved, and maintained by various institutions across the globe. Various morphological, biochemical, and molecular markers are used for determining the genetic diversity in MO accessions. A higher yield of leaves and pods is often desirable for making various products with commercial viability and amenable for trade in the international market. Therefore, breeding elite varieties adapted to local agroclimatic conditions and in vitro propagation are viable and sustainable approaches. Here, we provide a comprehensive overview of MO germplasm conservation and various markers that are employed for assessing the genetic diversity among them. Further, breeding and in vitro propagation of MO for various desirable agronomic traits are discussed. Finally, trade and commerce of various functional and biofortified foods and non-food products are enumerated albeit with a need for a rigorous and stringent toxicity evaluation.

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References
1.
Korasick D, Enders T, Strader L . Auxin biosynthesis and storage forms. J Exp Bot. 2013; 64(9):2541-55. PMC: 3695655. DOI: 10.1093/jxb/ert080. View

2.
Muluvi , Sprent , Soranzo , Provan , Odee , Folkard . Amplified fragment length polymorphism (AFLP) analysis of genetic variation in Moringa oleifera Lam. Mol Ecol. 1999; 8(3):463-70. DOI: 10.1046/j.1365-294x.1999.00589.x. View

3.
Neale D, Martinez-Garcia P, De La Torre A, Montanari S, Wei X . Novel Insights into Tree Biology and Genome Evolution as Revealed Through Genomics. Annu Rev Plant Biol. 2017; 68:457-483. DOI: 10.1146/annurev-arplant-042916-041049. View

4.
Kiran U, Khan S, Mirza K, Ram M, Abdin M . SCAR markers: a potential tool for authentication of herbal drugs. Fitoterapia. 2010; 81(8):969-76. DOI: 10.1016/j.fitote.2010.08.002. View

5.
Ravi R, Siril E, Nair B . The efficiency of Cytochrome P450 gene-based markers in accessing genetic variability of drumstick (Moringa oleifera Lam.) accessions. Mol Biol Rep. 2020; 47(4):2929-2939. DOI: 10.1007/s11033-020-05391-w. View