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382 results for “Citrus”
Fig. 2 in The effectiveness of fruit bagging and culling for risk mitigation of fruit flies affecting citrus in China: a preliminary report
Fig. 2. Culling at local purchase station.
Fig. 3 in The effectiveness of fruit bagging and culling for risk mitigation of fruit flies affecting citrus in China: a preliminary report
Fig. 3. Final packinghouse culling.
Dataset for Label-free and Sensitive Detection of Citrus Bark Cracking Viroid in Hop Using Ti3C2Tx MXene-modified Genosensor
<p>This is a dataset for a paper "Label-free and Sensitive Detection of Citrus Bark Cracking Viroid in Hop Using Ti3C2Tx MXene-modified Genosensor". All details about the data are included in the readme file.</p>
Differential transcriptomic regulation in sweet orange fruit (Citrus sinensis L. Osbeck) following dehydration and rehydration conditions leading to peel damage
<p>Water stress is the most important environmental agent causing crop productivity and quality losses globally. In citrus, water stress is a main driver of fruit peel disorders that impact quality and marketability. An increasingly present postharvest peel disorder is non-chilling peel pitting (NCPP). NCPP is manifested as collapsed areas of flavedo randomly scattered on the fruit and its incidence increases due to abrupt increases in environmental relative humidity (RH) during postharvest fruit manipulation. In this work we have used a custom-made cDNA microarray containing 44k unigenes from <em>Citrus sinensis</em> (L. Osbeck) covering for the first time the whole genome from this species, to study transcriptomic responses of mature citrus fruit to water stress. We have compared global gene expression profiles of flavedo from Navelate oranges subjected to severe water stress with those of fruit subjected to rehydration stress provoked by changes in RH during postharvest, which enhances the development of NCPP. Our results show that NCPP is a complex physiological process that shares molecular responses with those from prolonged dehydration in fruit, but the damage associated to NCPP may be explained by unique features of rehydration stress at the molecular level, including membrane disorganization, cell wall modification, and proteolysis.</p>
FIGURE 2 in Interactions between the citrus bud mite Aceria sheldoni (Acari: Eriophyidae) and the lemon host tree in a Mediterranean area
FIGURE 2: Relation between number of CBMs and the rate of deformed fruits in two lemon orchards in Reggio Calabria Province (a. Catona; b.Salice), Italy, from January 2004 to November 2005.
FIGURE 1 in Interactions between the citrus bud mite Aceria sheldoni (Acari: Eriophyidae) and the lemon host tree in a Mediterranean area
FIGURE 1: Number of CBMs per bud at two lemon orchards in Reggio Calabria Province, Italy, from January 2004 to November 2005.
FIGURE 9 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 9: Mean densities of phytoseiid dominant species per trap (± SE) attached to citrus twigs in the orchard studied in Latakia province, Syria, from the beginning of November 2013 to the beginning of May 2014.
FIGURE 8 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 8: Mean densities of Phytoseiidae per trap (± SE) attached to citrus twigs in the orchard studied in Latakia province, Syria, from the beginning of November 2013 to the beginning of May 2014.
FIGURE 7 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 7: Relative abundance of phytoseiid mite species in Phyto traps attached to citrus twigs in the orchard studied in Latakia province, Syria, from November 2013 to May 2014.
FIGURE 6 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 6: Percentage of Phyto traps attached to citrus twigs occupied by different number of phytoseiid individuals from November 2013 to May 2014.
FIGURE 3 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 3: Relative abundance of phytoseiid mite species on citrus leaves in the orchard studied in Latakia province, Syria, from mid- August 2013 to the beginning of June 2014.
FIGURE 5 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 5: Mean densities of phytoseiid dominant species per citrus leaf (± SE) in the orchard studied in Latakia province, Syria, from mid-August 2013 to the beginning of June 2014.
FIGURE 1 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 1: A Phyto trap attached to a twig of citrus tree in the orchard studied in Latakia province, Syria, on October 2013.
FIGURE 4 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 4: Relationships between mean densities of Phytoseiidae (all species), E. stipulatus and A. andersoni and mean photophase (a, b, d, respectively); mean densities of A. andersoni and temperature (c).
FIGURE 2 in Occurrence, Population Dynamics And Winter Phenology Of Spider Mites And Their Phytoseiid Predators In A Citrus Orchard In Syria
FIGURE 2: Mean densities of Phytoseiidae and P. citri per citrus leaf (± SE) in the orchard studied in Latakia province, Syria, from
Figure 4 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 4 Euseius ennsin. sp., male. A – Ventrianal shield; B – Spermatodactyl.
Figure 3 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 3 Euseius ennsin. sp., male. Dorsal view.
Figure 2 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 2 Euseius ennsin. sp., female. A – Ventral shields; B – Spermatheca; C – Leg IV.
Figure 1 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 1 Euseius ennsin. sp., female. Dorsal view.
Clinical and Biological Effects of Citrus-phytochemicals in Subjective Cognitive Decline.
ClinicalTrials.gov study NCT04744922. IPD Sharing: YES. Countries: 1. Publications: 15.
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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)
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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.