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Titlebook: Legume Genomics; Methods and Protocol Mukesh Jain,Rohini Garg Book 2020 Springer Science+Business Media, LLC, part of Springer Nature 2020

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Developing Transposable Element Marker System for Molecular Breeding,r of TE markers in several crop plants for genomics studies. Here we describe some of these methods including the recent whole genome search. We also review the application of TE markers in molecular breeding.
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Updates on Legume Genome Sequencing, materials, many studies in the field of legume genomics, including genome sequencing, have been conducted over the last decade. Here, we update the progress in genome sequencing of legume crops, including soybean (. [L.] Merr.), mung bean (. var. .), adzuki bean (. var. .), common bean (. L.), pige
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Updates on Genomic Resources in Chickpea for Crop Improvement, on important advancements made on availability of genomic resources for this crop. The availability of reference genome and transcriptome sequences, and resequencing of several accessions have enabled the discovery of gene space and molecular markers in chickpea. These resources have helped in eluc
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Legume Pangenome Construction Using an Iterative Mapping and Assembly Approach,e characterization of genetic variations and mining of variable genes which may play important roles in phenotypes of interest. Recent advances in sequencing technologies have facilitated draft genome sequence construction and have made pangenome constructions feasible. Here, we present a reference
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Methods and Tools for Plant Organelle Genome Sequencing, Assembly, and Downstream Analysis, function of photosynthesis and aerobic respiration. Organellar genomes are also very important for plant systematic studies. Here we have described the methods for isolation of the mitochondrial and plastid DNA and its subsequent sequencing with the help of NGS technology. We have also discussed in
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