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163 results for “Gypsophila”

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zenodo40/100

Gypsophila muralis L. (BR0000010121993)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila muralis L. (BR0000010121696)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila muralis L. (BR0000010122266)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila muralis L. (BR0000010121146)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila muralis L. (BR0000010122181)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila muralis L. (BR0000012455485)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila muralis L. (BR0000010121016)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila elegans M.Bieb. (BR0000015222053V)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Gypsophila cerastioides D.Don (BR0000010120880)

Belgium Herbarium image of <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.

opencc-by-sa-4.0May 2019View details →
zenodo40/100

Linked collectors and determiners for: New species and new synonymy in the genus Gypsophila L. subgenus Pseudosaponaria Williams (Caryophyllaceae).

Natural history specimen data linked to collectors and determiners held within, "New species and new synonymy in the genus Gypsophila L. subgenus Pseudosaponaria Williams (Caryophyllaceae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/e21f2539-887c-4f8a-97bf-41cbfbdd64e4">https://bionomia.net/dataset/e21f2539-887c-4f8a-97bf-41cbfbdd64e4</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/e21f2539-887c-4f8a-97bf-41cbfbdd64e4">https://gbif.org/dataset/e21f2539-887c-4f8a-97bf-41cbfbdd64e4</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
dryad36/100

Transcriptome analysis of invasive Gypsophila paniculata (baby's breath) populations from Michigan and Washington, USA.

<p>Invasive species provide an opportune system to investigate how populations respond to new or changing environments. While the impacts of invasive species increase annually, many gaps in our understanding of how these species invade, adapt, and thrive in the areas they are introduced to remain. Using the perennial forb <i>Gypsophila paniculata</i> as a study system, we aimed to investigate how invasive species respond to different environments. Baby's breath (<i>Gypsophila paniculata</i>) was introduced to North America in the late 1800's and has since spread throughout the northwestern United States and western Canada. We used an RNA-seq approach to explore how molecular processes may be contributing to the success of invasive <i>G. paniculata</i> populations that are thought to share similar genetic backgrounds across distinct habitats.  Transcription profiles were constructed for root, stem, and leaf tissue from seedlings collected from a sand dune ecosystem in Petoskey, MI (PSMI) and a sagebrush ecosystem in Chelan, WA (CHWA). Using these data we assessed differential gene expression between the two populations and identified SNPs within differentially expressed genes. We identified 1,146 transcripts that were differentially expressed across all tissues between the two populations. GO processes enriched by genes displaying higher expression in PSMI were associated with increased nutrient starvation, while enriched processes in CHWA were associated with abiotic stress. Only 7.4% of the differentially expressed genes across all three tissues contained SNPs differing in allele frequencies of at least 0.5 between the populations. In addition, common garden studies found the two populations differed in germination rate and seedling emergence success, but not in above- and below-ground tissue allocation. Our results suggest that the success of invasive <i>G. paniculata</i> across these two environments is likely the result of plasticity in molecular processes responding to different environmental conditions, although some genetic divergence may also be contributing to these differences.</p>

opencc-zeroSep 2020View details →
dryad36/100

Data from: Identification and characterization of Gypsophila paniculata color morphs in Sleeping Bear Dunes National Lakeshore, MI, USA

Open the record for dataset details and reuse information.

publicJun 2019View details →
dryad36/100

Transcriptome analysis of invasive Gypsophila paniculata (baby's breath) populations from Michigan and Washington, USA.

Open the record for dataset details and reuse information.

publicSep 2020View details →
zenodo32/100

FIGURE 5 in Morphological and molecular notes of Gypsophila pilulifera

FIGURE 5. (Continued) The band profiles of ISSR PCR product were visualized on agarose gel electrophoresis by staining ethidium bromide.

opennotspecifiedAug 2022View details →
zenodo32/100

FIGURE 5 in Morphological and molecular notes of Gypsophila pilulifera

FIGURE 5. (Continued) The band profiles of ISSR PCR product were visualized on agarose gel electrophoresis by staining ethidium bromide.

opennotspecifiedAug 2022View details →
zenodo32/100

FIGURE 4 in Morphological and molecular notes of Gypsophila pilulifera

FIGURE 4. General view of the biotopes in the 2nd location with Gypsophila pilulifera distribution a: 1st biotope, b: 2nd biotope, c: 3rd biotope, d: 4th biotope).

opennotspecifiedAug 2022View details →
zenodo32/100

FIGURE 3 in Morphological and molecular notes of Gypsophila pilulifera

FIGURE 3. General view of the biotopes in the 1st location with Gypsophila pilulifera distribution a: 1st biotope, b: 2nd biotope, c: 3rd biotope, d: 4th biotope).

opennotspecifiedAug 2022View details →
zenodo32/100

FIGURE 1 in Morphological and molecular notes of Gypsophila pilulifera

FIGURE 1. Satellite views of the distribution areas of the species Gypsophila pilulifera in Lara, Antalya.

opennotspecifiedAug 2022View details →
zenodo32/100

FIGURE 5 in Morphological and molecular notes of Gypsophila pilulifera

FIGURE 5. The band profiles of ISSR PCR product were visualized on agarose gel electrophoresis by staining ethidium bromide. The PCRs were performed by using template DNA of five individuals collected from two different localities and ISSR 5 (a), ISSR 6 (b) and ISSR 7 (c) primers. M1: 1kb; M2: 100bp DNA ladders.

opennotspecifiedAug 2022View details →
zenodo32/100

FIGURE 6 in Morphological and molecular notes of Gypsophila pilulifera

FIGURE 6. Dendrogram created by using DendroUPGMA online dendrogram program of data obtained from band profiles scored according to gel image analysis of PCR products.

opennotspecifiedAug 2022View details →

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International Brain Laboratory public data

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