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Items: 1 to 20 of 267

1.

A systems genomics and genetics approach to identify the genetic regulatory network for lignin content in Brassica napus seeds

(Submitter supplied) Seed quality traits of oilseed rape, Brassica napus (B. napus), exhibit quantitative inheritance determined by its genetic makeup and the environment via the mediation of a complex genetic architecture of hundreds to thousands of genes. Thus, instead of single gene analysis, network-based systems genomics and genetics approaches that combine genotype, phenotype, and molecular phenotypes offer a promising alternative to uncover this complex genetic architecture. more...
Organism:
Brassica napus
Type:
Expression profiling by array
Platform:
GPL15739
200 Samples
Download data: GPR
Series
Accession:
GSE268725
ID:
200268725
2.

Brassica napus high oleic acid vs. low oleic acid

(Submitter supplied) Compared to ordinary rapeseed, high-oleic acid rapeseed has higher levels of monounsaturated fatty acids and lower levels of saturated fatty acid and polyunsaturated fatty acids, and thus is of high nutritional and health value. In addition, high-oleic acid rapeseed oil imparts cardiovascular protective effects. Based on these properties, high-oleic acid oil crops have been extensively investigated and cultivated. more...
Organism:
Brassica napus
Type:
Expression profiling by array
Platform:
GPL15739
4 Samples
Download data: TXT
Series
Accession:
GSE120223
ID:
200120223
3.

Genome-wide survey prior to head formation reveals new insights into the molecular basis of high temperature stress in tolerant and sensitive broccoli genotypes

(Submitter supplied) Warmer temperature is predicted to have negative effects on transition from vegetative to reproductive development in plants. The production of floral head in broccoli (Brassica oleracea var. italica) is dramatically reduced because of the high temperature stress. The broccoli inbred lines that are capable of producing head at high temperature in summer are unique varieties in Taiwan. However, knowledge of signalling pathway during the broccoli head formation under heat stress is limited. more...
Organism:
Brassica oleracea var. italica; Brassica napus
Type:
Expression profiling by array
Platform:
GPL15739
18 Samples
Download data: TXT
Series
Accession:
GSE97528
ID:
200097528
4.

Whole genome expression profiling of Brassica juncea BnCRY2aOE transgenics vis-à-vis wild-type

(Submitter supplied) The BnCRY2aOE transgenics over-expressing a blue light photoreceptor (BnCRY2a) flowered earlier than wild-type plants by more than two weeks. To identify the downstream candidate genes involved in regulating the early flowering phenotype in the transgenics, a genome-wide microarray analysis of the transgenic plant vs. wild type was performed. The microarray data analysis revealed the differential up-regulation of many genes involved in flower development, cell growth and differentiation and hormone biosynthesis/signalling in comparison to wild-type.
Organism:
Brassica juncea; Brassica napus
Type:
Expression profiling by array
Platform:
GPL15739
4 Samples
Download data: TXT
Series
Accession:
GSE81459
ID:
200081459
5.

Comparative transcriptome analysis of Brassica napus L. male sterility induced by the Chemical Hybridization Agent Monosulfuron Ester Sodium

(Submitter supplied) Chemical hybridization agent (CHA)-induced male sterility is becoming one of the most useful tools for the crop heterosis in seed production. We had previously discovered monosulfuron ester sodium (Mes), an acetolactate synthase (ALS) inhibitor of the herbicide sulfonylurea family, could induce rapeseed (Brassica napus L.) male sterility. To investigate the mechanism of Mes inducing male sterility, a cytological analysis and comparative transcriptome analysis were performed between Mes-treated plants leaves and different developmental stage anthers and those of the Mock-treated plants. more...
Organism:
Brassica napus
Type:
Expression profiling by array
Platform:
GPL15739
24 Samples
Download data: TXT
Series
Accession:
GSE53468
ID:
200053468
6.

Molecular mechanisms underpinning physiological tolerances to salinity and alkaline salinity in Brassica juncea

(Submitter supplied) In low rainfall regions soils are naturally conditioned with frequent co-occurrence of salinity and alkalinity. Plant salinity responses both at physiological and molecular level have been extensively researched. However, effects of the combined treatment of alkaline salinity that could greatly reduce plant growth and the mechanisms responsible for tolerance remain indeterminate. In Brassica juncea, large reductions in biomass and increased leaf Na+ concentration under alkaline salinity indicates that the combined treatment had greater negative effect than salinity on both growth and the physiological responses of the plant. more...
Organism:
Brassica juncea; Brassica napus
Type:
Expression profiling by array
Platform:
GPL15739
9 Samples
Download data: TXT
Series
Accession:
GSE38905
ID:
200038905
7.

Agilent-022520 Brassica napus 4x44K (Probe Name version)

(Submitter supplied) The ID column includes the Agilent Probe Names. A different version of this platform with the Agilent Feature Extraction feature numbers in the ID column is assigned accession number GPL14582. Protocol: www.chem.agilent.com
Organism:
Brassica napus
6 Series
1 Related Platform
259 Samples
Download data
Platform
Accession:
GPL15739
ID:
100015739
8.

Agilent-022520 Brassica napus 4x44K

(Submitter supplied) www.chem.agilent.com
Organism:
Brassica napus
3 Series
2 Related Platforms
20 Samples
Download data
Platform
Accession:
GPL14582
ID:
100014582
9.

SG-24-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297768
ID:
308297768
10.

SG-233-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297767
ID:
308297767
11.

SG-317-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297766
ID:
308297766
12.

SG-309-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297765
ID:
308297765
13.

SG-209-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297764
ID:
308297764
14.

SG-115-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297763
ID:
308297763
15.

SG-333-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297762
ID:
308297762
16.

SG-33-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297761
ID:
308297761
17.

SG-300-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297760
ID:
308297760
18.

SG-137-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297759
ID:
308297759
19.

SG-351-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297758
ID:
308297758
20.

SG-5-Rep2

Organism:
Brassica napus
Source name:
Seeds at 21 DAF (channel 1) Seeds at 21 DAF (channel 2)
Platform:
GPL15739
Series:
GSE268725
Download data
Sample
Accession:
GSM8297757
ID:
308297757
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db=gds|term=GPL15739[Accession]|query=23|qty=4|blobid=MCID_67365d5526808c4a204d3e41|ismultiple=true|min_list=5|max_list=20|def_tree=20|def_list=|def_view=|url=/Taxonomy/backend/subset.cgi?|trace_url=/stat?
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