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22,710
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22,710 results for “Plants for planting”
Alliaria petiolata (Brassicaceae) - whole plant - in flower - general view
Image of Alliaria petiolata (Brassicaceae) - whole plant - in flower - general view
Arisaema triphyllum (Araceae) - whole plant - in flower - general view
Image of Arisaema triphyllum (Araceae) - whole plant - in flower - general view
Stellaria media (Caryophyllaceae) - whole plant - in flower - general view
Image of Stellaria media (Caryophyllaceae) - whole plant - in flower - general view
Trillium cuneatum (Liliaceae) - whole plant - in flower - general view
Image of Trillium cuneatum (Liliaceae) - whole plant - in flower - general view
Glechoma hederacea (Lamiaceae) - whole plant - in flower - general view
Image of Glechoma hederacea (Lamiaceae) - whole plant - in flower - general view
Liriodendron tulipifera (Magnoliaceae) - fruit - as borne on the plant
Image of Liriodendron tulipifera (Magnoliaceae) - fruit - as borne on the plant
Nemophila aphylla (Hydrophyllaceae) - whole plant - in flower - general view
Image of Nemophila aphylla (Hydrophyllaceae) - whole plant - in flower - general view
Lamium amplexicaule (Lamiaceae) - whole plant - in flower - general view
Image of Lamium amplexicaule (Lamiaceae) - whole plant - in flower - general view
Corydalis flavula (Fumariaceae) - whole plant - in flower - general view
Image of Corydalis flavula (Fumariaceae) - whole plant - in flower - general view
Claytonia virginica (Portulacaceae) - whole plant - in flower - general view
Image of Claytonia virginica (Portulacaceae) - whole plant - in flower - general view
Mertensia virginica (Boraginaceae) - whole plant - in flower - general view
Image of Mertensia virginica (Boraginaceae) - whole plant - in flower - general view
Podophyllum peltatum (Berberidaceae) - whole plant - juvenile
Image of Podophyllum peltatum (Berberidaceae) - whole plant - juvenile
Haplotype-Resolved and Gap-Free Genome of a Floating Aquatic Plant from the Oryzeae Tribe, Hygroryza aristata
<p><em><span>Hygroryza aristata</span></em><span> (Retz.) Nees ex Wight & Arn.</span><span> </span><span>is a floating aquatic plant. <span>Genomic DNA and RNA samples of </span><em><span>H. aristata</span></em><span> were extracted from plants clonally propagated from a single individual. Long-read sequencing of PacBio HiFi and ultra-long (UL) ONT (read lengths > 100 kb), and short-read sequencing of Hi-C, WGS, and RNA-seq, were performed. </span></span></p> <p><span>For genome assembly, 31.91 Gb of PacBio HiFi and 22.36 Gb of UL-ONT sequencing data sets were utilized. Assembly was conducted using HiFiAsm (v0.20.0-r639) under HiFi + UL-ONT mode with the following parameters: -l 3 -r 5 -a 6 -n 10 --ctg-n 10 -w 63 -k 63. Chromosome IDs and strand directions were determined by aligning the assemblies to the rice (</span><em><span>O. sativa</span></em><span>) genome. The resulting assemblies of unphased two haplotypes, designated as hap1 and hap2, were obtained. </span></p> <p><span><span>Both hap1 and hap2 are complete genomes,<span> </span>each comprising 12 chromosomes with genome sizes of 349.74 Mb and 347.98 Mb, respectively. Notably, both haplotypes are gap-free. Telomere detection using Seqtk telo (v1.4-r122) revealed that each haplotype contains 23 telomeres. In conclusion, this study presents a haplotype-resolved and gap-free genome assembly. </span></span></p>
(U)SAXS data (ID02 beamline, ESRF): Effects of pH on the fibrous structure formation of plant proteins during high-moisture extrusion
<p>Due to health and environmental factors, the food industry is looking for ways to introduce meat replacers made from plant-based proteins to consumer markets. The presence of structural anisotropy in the form of fibre is a prerequisite for meat analogues. Structure formation ability depends on the protein ingredients used, which leads to plant protein products with varying texture hardness and extent of fibre alignment. In the current study, we will test if it is possible to tune these properties based on the hypothesis that plant proteins have different structure formation abilities under varying pH conditions.</p>
Figure 12 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)
Figure 12 – Pupa of Colotis euippe omphale. This pupa was reared from a larva collected on 19 December 2021 on Cadaba aphylla shrub C aphy 14, north of the Dedeben Research Centre, Tswalu Kalahari, South Africa. The CRG reference number for this pupa is RFT21H79. Photo: R.F. Terblanche.
Figure 14 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)
Figure 14 – Cadaba aphylla (CAPPARACEAE), C aphy 14, photographed on 26 September 2022, north of the Dedeben Research Centre, Tswalu Kalahari, South Africa. When conditions are favourable, many shoots with small leaves can be produced by some individuals of the species, as depicted here. No flowers were present on this plant when the photograph was taken. Photo: R.F. Terblanche.
Figure 11 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)
Figure 11 – Pupa of Colotis lais. This pupa was reared from a larva collected on 19 September 2022 on a Cadaba aphylla shrub C aphy 13, north of the Dedeben Research Centre, Tswalu Kalahari, South Africa. The CRG reference number for this pupa is RFT22H43. Photo: R.F. Terblanche.
Figure 10 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)
Figure 10 – Final instar larva of Colotis euippe omphale collected on 3 January 2022 on Cadaba aphylla shrub C aphy 11, near the Dedeben Research Centre in Tswalu Kalahari, South Africa. The CRG reference number for this larva is RFT22H2. Photo: R.F. Terblanche.
Figure 9 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)
Figure 9 – Final instar larva of Colotis lais. The larva was collected on 19 December 2021 on Cadaba aphylla shrub C aphy 13, north of the Dedeben Research Centre, Tswalu Kalahari, South Africa. The larva had been successfully reared on new shoots (young stems with small leaves) of Cadaba aphylla. The CRG reference number for this larva is RFT21H78. Photo: R.F. Terblanche.
Figure 15 in Colotis lais (Butler, 1876) and Colotis euippe omphale (Godart, [1819]) use Cadaba aphylla (Thunb.) Wild LC as a host-plant at Tswalu Kalahari, Northern Cape Province, South Africa)
Figure 15 – Cadaba aphylla (CAPPARACEAE) photographed on 21 January 2019 at Tswalu Kalahari, South Africa. A commonly used English name for Cadaba aphylla is "leafless wormbush," because leaves are often not present or obscured by many leafless stems. Photo: R.F. Terblanche.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.