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Links from GEO DataSets

Items: 12

1.

Transcriptome analysis of the phytobacterium Xylella fastidiosa growing under xylem-based chemical conditions

(Submitter supplied) Xyllela fastidiosa (Xf) is a xylem-limited bacterium responsible for important plant diseases, such as citrus variegated chlorosis (CVC) in Brazil and grapevines Pierce´s disease in the USA. One intriguing aspect of this microorganism is its capacity to grow in an extremely harsh environment such as the xylem, mainly composed of water, minerals and few organic salts. In vitro growth of Xf cells in chemically-defined media that mimic xylem fluid has been recently achieved, allowing more detailed studies of metabolic processes used by xylem-dwelling bacteria to thrive in such a nutrient-poor environment. more...
Organism:
Xylella fastidiosa; Xylella fastidiosa 9a5c
Type:
Expression profiling by array
Platform:
GPL4683
8 Samples
Download data
Series
Accession:
GSE6619
ID:
200006619
2.

Global gene expression analysis of the phytopathogen Xylella fastidiosa at low iron availability

(Submitter supplied) Xylella fastidiosa is the etiologic agent of a wide range of plant diseases including citrus variegated chlorosis (CVC), a major threat to the Brazilian citrus industry. Genome sequences of several strains of this phytopathogen are accessible, enabling large-scale functional studies. Transcript levels in different iron availabilities were assessed with DNA microarrays representing 2608 (91.6%) coding sequences (CDS) of X. more...
Organism:
Xylella fastidiosa
Type:
Expression profiling by array
Platform:
GPL2708
22 Samples
Download data
Series
Accession:
GSE5888
ID:
200005888
3.

Global gene expression analysis of the phytopathogen Xylella fastidiosa at high iron availability

(Submitter supplied) Xylella fastidiosa is the etiologic agent of a wide range of plant diseases including citrus variegated chlorosis (CVC), a major threat to the Brazilian citrus industry. Genome sequences of several strains of this phytopathogen are accessible, enabling large-scale functional studies. Transcript levels in different iron availabilities were assessed with DNA microarrays representing 2608 (91.6%) coding sequences (CDS) of X. more...
Organism:
Xylella fastidiosa
Type:
Expression profiling by array
Platform:
GPL2708
22 Samples
Download data
Series
Accession:
GSE5886
ID:
200005886
4.

Xylella fastidiosa causes transcriptional shifts that precede tylose formation and starch depletion in xylem

(Submitter supplied) Pierce's disease (PD) in grapevine (Vitis vinifera) is caused by the bacterial pathogen Xylella fastidiosa. X. fastidiosa is limited to the xylem tissue and following infection induces extensive plant‐derived xylem blockages, primarily in the form of tyloses. Tylose‐mediated vessel occlusions are a hallmark of PD, particularly in susceptible V. vinifera. We temporally monitored tylose development over the course of the disease to link symptom severity to the level of tylose occlusion and the presence/absence of the bacterial pathogen at fine‐scale resolution. more...
Organism:
Vitis vinifera
Type:
Expression profiling by high throughput sequencing
Platform:
GPL25542
12 Samples
Download data: TXT
Series
Accession:
GSE152164
ID:
200152164
5.

Using next generation sequencing to compare gene expression of wild type and Δcsp1 mutant of bacterial plant pathogen Xylella fastidiosa strain Stag's Leap

(Submitter supplied) To investigate the role(s) of a cold shock protein homolog (Csp1) in plant pathogenic bacteria Xylella fastidiosa, we compared transcriptome profiles between wild type and a csp1 deletion mutant (Δcsp1) using long read Nanopore RNA sequencing.
Organism:
Xylella fastidiosa subsp. fastidiosa
Type:
Expression profiling by high throughput sequencing
Platform:
GPL30664
11 Samples
Download data: TXT
Series
Accession:
GSE184594
ID:
200184594
6.

Xylella USP microarray v1 (Koide et al. 2004 J.Bact.)

(Submitter supplied) A 4608-spot DNA microarray was printed containing unique internal fragments of 2572 CDS representing 90.3% of all of the 2848 CDS annotated by Simpson et al. (2000, Nature) (http://aeg.lbi.ic.unicamp.br/xf). PCR primers were designed to amplify unique internal fragments of 200-1000 bp of each predicted CDS described in the annotated genome sequence of X. fastidiosa strain 9a5c (http://aeg.lbi.ic.unicamp.br/xf). more...
Organism:
Xylella fastidiosa
1 Series
8 Samples
Download data
Platform
Accession:
GPL3409
ID:
100003409
7.

Xylella USP microarray v2 (Koide et al. 2004 J.Bact.)

(Submitter supplied) A 4608-spot DNA microarray was printed containing unique internal fragments of 2692 CDS representing 94.5% of all of the 2848 CDS annotated by Simpson et al. (2000, Nature) (http://aeg.lbi.ic.unicamp.br/xf). PCR primers were designed to amplify unique internal fragments of 200-1000 bp of each predicted CDS described in the annotated genome sequence of X. fastidiosa strain 9a5c (http://aeg.lbi.ic.unicamp.br/xf). more...
Organism:
Xylella fastidiosa
8 Series
178 Samples
Download data
Platform
Accession:
GPL2708
ID:
100002708
8.

Global gene expression under nitrogen starvation in Xylella fastidiosa: contribution of the σ54 regulon

(Submitter supplied) Background: Xylella fastidiosa, a Gram-negative fastidious bacterium, grows exclusively in the xylem of several plants, causing diseases such as citrus variegated chlorosis. As the xylem sap contains low concentrations of amino acids and other compounds, X. fastidiosa needs to cope with nitrogen limitation in its natural habitat. Results: In this work, we performed a whole-genome microarray analysis of the X. more...
Organism:
Xylella fastidiosa
Type:
Expression profiling by array
Platform:
GPL2708
24 Samples
Download data
Series
Accession:
GSE21647
ID:
200021647
9.

Xylella fastidiosa 9a5c: gomesin-treated cells vs. control

(Submitter supplied) In the xylem vessels of susceptible hosts, such as citrus trees or grapevines, Xylella fastidiosa forms biofilm like-colonies that can block water transport, which appears to correlate to disease symptoms. Besides helping host colonization, bacterial biofilms play an important role in resistance against antimicrobial agents, for instance antimicrobial peptides (AMP). Here we show that gomesin, a potent AMP from a Brazilian tarantula spider, modulates X. more...
Organism:
Xylella fastidiosa
Type:
Expression profiling by array
Platform:
GPL9024
20 Samples
Download data: TXT
Series
Accession:
GSE17605
ID:
200017605
10.

Comparative Genomic Analyses among Coffee-Associated strains of Xylella fastidiosa

(Submitter supplied) With the aid of a biochip, carrying representative sequences from approximately 2200 sequences from the genome of isolate 9a5c from X. fastidiosa (Xf), microarray-based comparisons have been performed with 8 different Xf isolates obtained from coffee plants.
Organism:
Xylella fastidiosa
Type:
Genome variation profiling by array
Platform:
GPL4683
32 Samples
Download data
Series
Accession:
GSE41163
ID:
200041163
11.

New insights on resistance mechanisms to antimicrobial compounds in a plant pathogen biofilm

(Submitter supplied) Investigation of whole genome gene expression level changes in Xylella fastidiosa 9a5c biofilm, submitted to treatments with sub inhibitory and inhibitory concentrations of copper and tetracycline.
Organism:
Xylella fastidiosa 9a5c
Type:
Expression profiling by array
Platform:
GPL10380
15 Samples
Download data: PAIR
Series
Accession:
GSE21645
ID:
200021645
12.

Expression analysis of Xylella fastidiosa PD Temecula strain grown in different media

(Submitter supplied) Investigation of whole genome gene expression level changes in Xylella fastidiosa grown in minimal media XFM and XFM supplied with pectin or glucan (Host polysaccharides) , compared to cell grown in the complex media PWG. The cells grown in the minimal medium XFM supplied with host polysaccharides specially pectin are transmissible by the insect vector when delivered to the vector through artificial diet system. more...
Organism:
Xylella fastidiosa; Xylella fastidiosa Temecula1
Type:
Expression profiling by array
Platform:
GPL9337
16 Samples
Download data: CALLS, PAIR
Series
Accession:
GSE18369
ID:
200018369
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