1.An Exome-seq Based Tool for Mapping and Selection of Candidate Genes in Maize Deletion Mutants.
Shangang JIA ; Kyla MORTON ; Chi ZHANG ; David HOLDING
Genomics, Proteomics & Bioinformatics 2018;16(6):439-450
Despite the large number of genomic and transcriptomic resources in maize, there is still much to learn about the function of genes in developmental and biochemical processes. Some maize mutants that were generated by gamma-irradiation showed clear segregation for the kernel phenotypes in B73 × Mo17 F2 ears. To better understand the functional genomics of kernel development, we developed a mapping and gene identification pipeline, bulked segregant exome sequencing (BSEx-seq), to map mutants with kernel phenotypes including opaque endosperm and reduced kernel size. BSEx-seq generates and compares the sequence of the exon fraction from mutant and normal plant F2 DNA pools. The comparison can derive mapping peaks, identify deletions within the mapping peak, and suggest candidate genes within the deleted regions. We then used the public kernel-specific expression data to narrow down the list of candidate genes/mutations and identified deletions ranging from several kb to more than 1 Mb. A full deletion allele of the Opaque-2 gene was identified in mutant 531, which occurs within a ∼200-kb deletion. Opaque mutant 1486 has a 6248-bp deletion in the mapping interval containing two candidate genes encoding RNA-directed DNA methylation 4 (RdDM4) and AMP-binding protein, respectively. This study demonstrates the efficiency and cost-effectiveness of BSEx-seq for causal mutation mapping and candidate gene selection, providing a new option in mapping-by-sequencing for maize functional genomics studies.
Chromosome Mapping
;
methods
;
DNA, Plant
;
genetics
;
DNA-Binding Proteins
;
genetics
;
Endosperm
;
Exome
;
genetics
;
Exons
;
genetics
;
Gene Deletion
;
Genomics
;
Phenotype
;
Plant Proteins
;
genetics
;
Sequence Analysis, DNA
;
methods
;
Transcription Factors
;
genetics
;
Zea mays
;
genetics
2.PlaD: A Transcriptomics Database for Plant Defense Responses to Pathogens, Providing New Insights into Plant Immune System.
Huan QI ; Zhenhong JIANG ; Kang ZHANG ; Shiping YANG ; Fei HE ; Ziding ZHANG
Genomics, Proteomics & Bioinformatics 2018;16(4):283-293
High-throughput transcriptomics technologies have been widely used to study plant transcriptional reprogramming during the process of plant defense responses, and a large quantity of gene expression data have been accumulated in public repositories. However, utilization of these data is often hampered by the lack of standard metadata annotation. In this study, we curated 2444 public pathogenesis-related gene expression samples from the model plant Arabidopsis and three major crops (maize, rice, and wheat). We organized the data into a user-friendly database termed as PlaD. Currently, PlaD contains three key features. First, it provides large-scale curated data related to plant defense responses, including gene expression and gene functional annotation data. Second, it provides the visualization of condition-specific expression profiles. Third, it allows users to search co-regulated genes under the infections of various pathogens. Using PlaD, we conducted a large-scale transcriptome analysis to explore the global landscape of gene expression in the curated data. We found that only a small fraction of genes were differentially expressed under multiple conditions, which might be explained by their tendency of having more network connections and shorter network distances in gene networks. Collectively, we hope that PlaD can serve as an important and comprehensive knowledgebase to the community of plant sciences, providing insightful clues to better understand the molecular mechanisms underlying plant immune responses. PlaD is freely available at http://systbio.cau.edu.cn/plad/index.php or http://zzdlab.com/plad/index.php.
Arabidopsis
;
genetics
;
Databases, Genetic
;
Gene Expression Profiling
;
Gene Expression Regulation, Plant
;
Gene Regulatory Networks
;
Genes, Plant
;
Host-Pathogen Interactions
;
genetics
;
Oryza
;
genetics
;
Plant Immunity
;
genetics
;
Plants
;
genetics
;
microbiology
;
Transcriptome
;
genetics
;
Triticum
;
genetics
;
User-Computer Interface
;
Zea mays
;
genetics
3.Molecular characterization and efficacy evaluation of a transgenic corn event for insect resistance and glyphosate tolerance.
Miao-Miao LIU ; Xiao-Jing ZHANG ; Yan GAO ; Zhi-Cheng SHEN ; Chao-Yang LIN
Journal of Zhejiang University. Science. B 2018;19(8):610-619
A transgenic maize event ZD12-6 expressing a Bacillus thuringiensis (Bt) fusion protein Cry1Ab/Cry2Aj and a modified 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) protein G10 was characterized and evaluated. Southern blot analysis indicated that ZD12-6 is a single copy integration event. The insert site was determined to be at chromosome 1 by border sequence analysis. Expression analyses of Bt fusion protein Cry1Ab/Cry2Aj and the EPSPS protein G10 suggested that they are both expressed stably in different generations. Insect bioassays demonstrated that the transgenic plants are highly resistant to Asian corn borer (Ostrinia furnacalis), cotton boll worm (Helicoverpa armigera), and armyworm (Mythimna separata). This study suggested that ZD12-6 has the potential to be developed into a commercial transgenic line.
3-Phosphoshikimate 1-Carboxyvinyltransferase/metabolism*
;
Animals
;
Bacillus thuringiensis Toxins
;
Bacterial Proteins/metabolism*
;
China
;
Disease Resistance/genetics*
;
Drug Resistance/genetics*
;
Endotoxins/metabolism*
;
Gene Expression Profiling
;
Glycine/chemistry*
;
Hemolysin Proteins/metabolism*
;
Insecta
;
Plant Diseases/prevention & control*
;
Plants, Genetically Modified/genetics*
;
Zea mays/genetics*
;
Glyphosate
4.Review of transgenic crop breeding in China.
Chinese Journal of Biotechnology 2015;31(6):892-900
The development history and fundamental experience of transgenic crops (Genetically modified crops) breeding in China for near 30 years were reviewed. It was illustrated that a scientific research, development and industrialization system of transgenic crops including gene discovery, transformation, variety breeding, commercialization, application and biosafety assessment has been initially established which was few in number in the world. The research innovative capacity of transgenic cotton, rice and corn has been lifted. The research features as well as relative advantages have been initially formed. The problems and challenges of transgenic crop development were discussed. In addition, three suggestions of promoting commercialization, speeding up implementation of the Major National Project of GM Crops, and enhancing science communication were made.
China
;
Crops, Agricultural
;
genetics
;
History, 20th Century
;
History, 21st Century
;
Oryza
;
Plant Breeding
;
history
;
Plants, Genetically Modified
;
Zea mays
5.Development of transgenic maize with anti-rough dwarf virus artificial miRNA vector and their disease resistance.
Ning XUAN ; Chuanzhi ZHAO ; Zhenying PENG ; Gao CHEN ; Fei BIAN ; Mingzheng LIAN ; Guoxia LIU ; Xingjun WANG ; Yuping BI
Chinese Journal of Biotechnology 2015;31(9):1375-1386
Maize is one of the most important food crops. Rice black-streaked dwarf virus is a maize rough dwarf disease pathogen. The occurrence and transmission of maize rough dwarf disease brings great damage to maize production. The technology of using artificial miRNA to build antiviral plant has been proven effective in a variety of plants. However, such trials in maize have not been reported. We designed primers based on the sequence of maize zea-miR159a precursor and sequence of function protein genes and silencing RBSDV coding genes in RBSDV genome. We constructed amiRNA (artificial miRNA) gene for silencing RBSDV coding gene and gene silencing suppressor. We constructed pCAMBIA3301-121-amiRNA plant expression vector for transforming maize inbred lines Z31 by using agrobacterium mediated method. After molecular analysis of transgenic maize, homozygous lines with high miRNA expression were selected by molecular detection for a subsequent natural infection experiment. We studied the severity of maize rough dwarf disease according to a grading standard (grade 0 to 4). The experiment results showed that the disease resistance of transgenic homozygous maize with the anti-rough dwarf virus amiRNA vector was better than that of wild type. Among the transgenic maize, S6-miR159 transgenic maize had high disease resistance. It is feasible to create new maize variety by the use of artificial miRNA.
Disease Resistance
;
genetics
;
Gene Silencing
;
Genetic Vectors
;
MicroRNAs
;
genetics
;
Plant Diseases
;
genetics
;
virology
;
Plants, Genetically Modified
;
genetics
;
Reoviridae
;
pathogenicity
;
Zea mays
;
genetics
6.Progress and application prospects of glutamine synthase in plants.
Wanjun FENG ; Guofang XING ; Xulong NIU ; Chen DOU ; Yuanhuai HAN
Chinese Journal of Biotechnology 2015;31(9):1301-1312
Nitrogen is one of the most important nutrient elements for plants and a major limiting factor in plant growth and crop productivity. Glutamine synthase (GS) is a key enzyme involved in the nitrogen assimilation and recycling in plants. So far, members of the glutamine synthase gene family have been characterized in many plants such as Arabidopsis, rice, wheat, and maize. Reports show that GS are involved in the growth and development of plants, in particular its role in seed production. However, the outcome has generally been inconsistent, which are probably derived from the transcriptional and post-translational regulation of GS genes. In this review, we outlined studies on GS gene classification, QTL mapping, the relationship between GS genes and plant growth with nitrogen and the distribution characters, the biological functions of GS genes, as well as expression control at different regulation levels. In addition, we summarized the application prospects of glutamine synthetase genes in enhancing plant growth and yield by improving the nitrogen use efficiency. The prospects were presented on the improvement of nitrogen utility efficiency in crops and plant nitrogen status diagnosis on the basis of glutamine synthase gene regulation.
Arabidopsis
;
Genes, Plant
;
Glutamate-Ammonia Ligase
;
genetics
;
Nitrogen
;
metabolism
;
Oryza
;
Plants
;
enzymology
;
genetics
;
Triticum
;
Zea mays
7.Antioxidant and antigenotoxic activity of bioactive extracts from corn tassel.
Li-chun WANG ; Ya-qin YU ; Min FANG ; Cai-gui ZHAN ; Hong-yan PAN ; Yong-ning WU ; Zhi-yong GONG
Journal of Huazhong University of Science and Technology (Medical Sciences) 2014;34(1):131-136
This study is designed to evaluate antioxidant and antigenotoxic activities of corn tassel extracts (CTTs). The major bioactive components of CTTs include flavonoid, saponin and polysaccharide. The antioxidant properties of the three bioactive components of CTTs were investigated by Ferric Reducing Antioxidant Property (FRAP) and 1, 1-diphenyl-2-picrylhydrazyl (DPPH) assays. The activities of the extracts were determined by assessing the inhibition of mutagenicity of the direct-acting mutagen fenaminosulf, sodium azide, and indirect-acting mutagen 2-aminofluorene using the Ames test (strains TA98 and TA100). The results showed that the extraction rates of flavonoid, saponin, and polysaccharide from the dried corn tassels were 1.67%, 2.41% and 4.76% respectively. DPPH and FRAP assay strongly demonstrated that CTTs had antioxidant properties. CTTs at doses of 625, 1250 and 2500 μg per plate reduced 2-aminofluorene mutagenicity by 12.52%, 28.76% and 36.49% in Salmonella typhimurium TA98 strain assay respectively and by 10.98%, 25.27% and 37.83%, at the same doses in Salmonella typhimurium TA100 assay system, respectively. 3-[4, 5-dimethylthiazol-2-yl]-2, 5-diphenyltetrazolium bromide (MTT) assay showed that the different concentrations of CTTs inhibited the proliferation of MGC80-3 cells in a dose-dependent manner (P<0.01). It is concluded that these integrated approaches to antioxidant and antigenotoxicity assessment may be useful to study corn tassel as a natural herbal material.
Antimutagenic Agents
;
pharmacology
;
Antioxidants
;
pharmacology
;
Biphenyl Compounds
;
antagonists & inhibitors
;
metabolism
;
Cell Line, Tumor
;
Cell Survival
;
drug effects
;
Flavonoids
;
pharmacology
;
Fluorenes
;
pharmacology
;
Free Radical Scavengers
;
pharmacology
;
Humans
;
Inflorescence
;
chemistry
;
Mutagens
;
pharmacology
;
Picrates
;
antagonists & inhibitors
;
metabolism
;
Plant Extracts
;
pharmacology
;
Polysaccharides
;
pharmacology
;
Salmonella typhimurium
;
drug effects
;
genetics
;
Saponins
;
pharmacology
;
Zea mays
;
chemistry
8.Optimized condition for protoplast isolation from maize, wheat and rice leaves.
He SUN ; Zhihong LANG ; Li ZHU ; Dafang HUANG
Chinese Journal of Biotechnology 2013;29(2):224-234
Maize (Zea mays L.), wheat (Triticum aestivum L.) and rice (Oryza sativa L.) are three staple crops and accordingly it is very meaningful to optimize the condition of their protoplasts isolation. The concentration of the enzyme, the time of isolation and centrifugal force in protoplast isolation were investigated to find their effects on protoplast yield and viability using leaves of maize (Zong 3), wheat (Chinese Spring) and rice (Nipponbare). The results show that the concentration of the enzyme and the time of isolation affected the protoplast yield significantly. Although the yield of protoplast was increased with high concentration of enzyme and long incubated time, it led to too much cells breakdown. The orthogonal experimental design results show that the best condition of maize protoplast isolation was Cellulase R-10 1.5%, Macerozyme R-10 0.5%, 50 r/min 7 h, 100 x g 2 min and the protoplasts yield was 7x106 cells/g fresh weight (FW); the best condition of wheat protoplast isolation was Cellulase R-10 1.5%, Macerozyme R-10 0.5%, 50 r/min 5 h, 100 x g 2 min and the protoplasts yield was 6 x 10(6) cells/g FW; the best condition of rice protoplast isolation was Cellulase R-10 2.0%, Macerozyme R-10 0.7%, 50 r/min 7 h, 1 000 x g 2 min and the protoplasts yield was 6x10(6) cells/g FW. The vitalities were more than 90% using fluorescein diacetate staining method. 50%-80% transformation efficiency was obtained when protoplasts were transformed by green fluorescent protein using PEG-Ca2+ method.
Cell Culture Techniques
;
methods
;
Oryza
;
chemistry
;
genetics
;
Plant Leaves
;
enzymology
;
Protoplasts
;
cytology
;
Triticum
;
chemistry
;
genetics
;
Zea mays
;
cytology
;
genetics
9.Generation of transgenic corn-derived Actinobacillus pleuropneumoniae ApxIIA fused with the cholera toxin B subunit as a vaccine candidate.
Min Kyoung SHIN ; Myung Hwan JUNG ; Won Jung LEE ; Pil Son CHOI ; Yong Suk JANG ; Han Sang YOO
Journal of Veterinary Science 2011;12(4):401-403
Corn, one of the most important forage crops worldwide, has proven to be a useful expression vehicle due to the availability of established transformation procedures for this well-studied plant. The exotoxin Apx, a major virulence factor, is recognized as a common antigen of Actinobacillus (A.) pleuropneumoniae, the causative agent of porcine pleuropneumonia. In this study, a cholera toxin B (CTB)-ApxIIA#5 fusion protein and full-size ApxIIA expressed in corn seed, as a subunit vaccine candidate, were observed to induce Apx-specific immune responses in mice. These results suggest that transgenic corn-derived ApxIIA and CTB-ApxIIA#5 proteins are potential vaccine candidates against A. pleuropneumoniae infection.
Actinobacillus Infections/microbiology/*prevention & control
;
Actinobacillus pleuropneumoniae
;
Animals
;
Antigens, Bacterial/immunology
;
Bacterial Proteins/*immunology
;
Bacterial Vaccines/*immunology
;
Cholera Toxin/*chemistry
;
Female
;
Hemolysin Proteins/*immunology
;
Immunization, Secondary
;
Mice
;
Mice, Inbred ICR
;
Plants, Genetically Modified
;
Zea mays/*genetics
10.Screening of high lipid production Trichosporon fermentans mutants by transposon tagging mTn-lacZ/leu2 insertion.
Andong SONG ; Yubo LIU ; Hui XIE ; Fengqin WANG ; Xiaoming BAO
Chinese Journal of Biotechnology 2011;27(3):468-474
To improve microbial lipid production, we inserted mTn-lacZ/leu2 into Trichosporon fermentans 2.1368-Leu(-) to obtain high lipid production mutants. By observing the LacZ chromogenic change, the positive reaction between Cerulenin (inhibitor of fatty acid synthase) and phosphate vanillin, a higher lipid-producing mutant 2.1368-Leu(-)-7 grown on corn-stalk hydrolysate was obtained. The lipid content of this mutant reached 38.30% (8.97% higher than that of the control) and the lipid production rate was 8.35% (20.63% higher than that of the control). The rate of sugar utilization was 77%, meaning that 100 g corn-stalk could be converted to 8.32 g lipid. The study provided an effective method for microbial lipid production by using cheap raw materials for biodiesel.
3-Isopropylmalate Dehydrogenase
;
genetics
;
Biofuels
;
DNA Transposable Elements
;
genetics
;
Fermentation
;
Lac Operon
;
genetics
;
Lipids
;
biosynthesis
;
Mutagenesis, Insertional
;
Mutation
;
Plant Stems
;
metabolism
;
Saccharomyces cerevisiae Proteins
;
genetics
;
Trichosporon
;
genetics
;
metabolism
;
Zea mays
;
metabolism

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