Advances in Molecular Breeding of Vegetable Crops

Vegetable crops provide valuable minerals and vitamins that are indispensible for human health. Scientists have been working on the genetics of vegetable crops, deciphering the molecular bases of agronomically important traits. These genetic bases and variations in vegetable traits will greatly faci...

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Year of Publication:2022
Language:English
Physical Description:1 electronic resource (242 p.)
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245 1 0 |a Advances in Molecular Breeding of Vegetable Crops 
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520 |a Vegetable crops provide valuable minerals and vitamins that are indispensible for human health. Scientists have been working on the genetics of vegetable crops, deciphering the molecular bases of agronomically important traits. These genetic bases and variations in vegetable traits will greatly facilitate vegetable genetic improvement. Therefore, the genes of and genetic research on vegetable crops are of great importance. This Special Issue is a collection of 13 important research papers addressing the genes, genetics, and breeding of major vegetable crops. In the present book, the authors described the genes and QTLs responsible for stress tolerance, disease resistance, vegetable yield, and quality. The 13 research papers cover germplasm enhancement and evaluation, QTL mapping, gene isolation, marker development, and gene expression as well as gene editing in a wide range of vegetable species, including broccoli, pepper, eggplant, onion, and Cucurbita species. Readers from all over the globe are expected to greatly benefit from this Special Issue collection regarding their own work and the goal of improving breeding efficiency with molecular breeding to generate environment-adaptive, high-yield, and high-quality vegetable crops with which to feed the global population of 9.7 billion in an extreme climate by 2050. 
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653 |a Phytophthora capsici 
653 |a high-density genetic map 
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653 |a Capcicum annuum L. 
653 |a RNA-Seq 
653 |a nitrogen-use efficiency 
653 |a low-nitrogen tolerance 
653 |a CaHSP18.1a 
653 |a gene silencing 
653 |a transgenic Arabidopsis 
653 |a heat stress 
653 |a gene expression 
653 |a pumpkin 
653 |a simple sequence repeat (SSR) 
653 |a syntenic relationship 
653 |a cross-species markers 
653 |a population structure 
653 |a eggplant 
653 |a heat shock factor (Hsf) 
653 |a heat shock protein (Hsp) 
653 |a thermotolerance 
653 |a C. frutescens 
653 |a SSR 
653 |a germplasm 
653 |a genetic diversity 
653 |a CRISPR/Cas 
653 |a gene knockout 
653 |a genome editing 
653 |a germplasm resource 
653 |a precision editing 
653 |a regulatory framework 
653 |a trait improvement 
653 |a Brassica oleracea 
653 |a broccoli 
653 |a candidate gene 
653 |a anthocyanin 
653 |a allelochemicals 
653 |a VOCs properties 
653 |a VOCs action 
653 |a VOCs detection 
653 |a green agriculture 
653 |a progress 
653 |a genetic researches 
653 |a molecular breeding 
653 |a transcriptomics 
653 |a transcription factor 
653 |a heritability 
653 |a genetic advance 
653 |a multi-trait selection 
653 |a principal component analysis 
653 |a HRM 
653 |a molecular marker 
653 |a phylogenetic analysis 
653 |a RNA sequencing 
653 |a SCAR 
653 |a SNP 
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