| Literature DB >> 28900619 |
Shiqi Hu1,2, Gaojie Li1,2, Jingjing Yang1,2, Hongwei Hou1,2.
Abstract
Genomics is a discipline in genetics that studies the genome composition of organisms and the precise structure of genes and their expression and regulation. Genomics research has resolved many problems where other biological methods have failed. Here, we summarize advances in aquatic plant genomics with a focus on molecular markers, the genes related to photosynthesis and stress tolerance, comparative study of genomes and genome/transcriptome sequencing technology.Entities:
Year: 2017 PMID: 28900619 PMCID: PMC5576420 DOI: 10.1155/2017/6347874
Source DB: PubMed Journal: Int J Genomics ISSN: 2314-436X Impact factor: 2.326
Summary of the genomics studies and technologies correlated to aquatic plant species discussed in the review.
| Genomics studies | Species | Applications |
|---|---|---|
|
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| SSR |
| Genetic diversity analysis |
|
| Phylogenetic analysis | |
| AFLP |
| Genetic diversity analysis |
|
| Phylogenetic analysis | |
|
| Germplasm identification | |
| ISSR |
| Genetic structure |
| EST-SSR |
| Genetic diversity and structure |
| RAPD |
| Genetic diversity |
| Nuclear, chloroplast, and mitochondrial markers | Hydrocharitaceae(family) [ | Phylogenetic analysis |
|
| Germplasm identification | |
| Plastid markers |
| Phylogenetic and taxonomic analysis |
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|
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| Interspecies comparative genomics |
| Gene family classification and functional gene prediction |
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| PCR approach |
| Identify elements necessary for C4 system |
|
| Identify | |
|
| Identify the role of | |
|
| Elucidate the molecular responses stimulated by excess copper exposure | |
| Specific probes from 3′-UTR |
| Analyze the expression of the six |
| RACE |
| Analyze two |
| Gene mining method |
| Isolate genes involving low-sulfur tolerance to understand the mechanism of high efficiency nutrient acquisition and utilization |
|
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| Chloroplast genome |
| Important source of genetic markers for phylogenetic analysis |
| Mitochondrial genome |
| Study the evolution of monocot mitochondrial genomes |
| Whole genome |
| Stimulate new insights into environmental adaptation, ecology, evolution, and plant development |
|
| Study the evolutionary history of the genome and genes involved in relevant processes governing the unique features | |
|
| Understand the biological and molecular mechanisms in | |
| Transcriptome |
| Identify gene losses and duplications during the course of evolution |
|
| Study the molecular adaptive mechanism from terrestrial to aquatic habitats | |
|
| Annotate function genes | |
| MicroRNA |
| Identify conserved microRNAs and their target genes |