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304 results for “eucalyptus”
Fig. 2. Key 1H–1H in Acylphloroglucinol-monoterpene meroterpenoids from Eucalyptus tereticornis and their inhibitory activity against ATP citrate lyase
Fig. 2. Key 1H–1H COSY and HMBC correlations of 1–5.
Susceptibility of Eucalyptus hybrid clones to Botryosphaeria canker in Uganda
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Variation in susceptibility of Eucalyptus grandis and selected hybrid clones to two termite species Macrotermes bellicosus and M. subhyalinus in Uganda
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Data for: Testing an invasion mechanism for Eucalyptus globulus: is there evidence of allelopathy?
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Genomic divergence in sympatry indicates strong reproductive barriers and cryptic species within Eucalyptus salubris
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Water availability drives fine root dynamics in a Eucalyptus woodland under elevated atmospheric CO2 concentration
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LBA-ECO ND-08 Biomass, Nutrients, and Decomposition in Eucalyptus and Primary Forests
This data set reports the concentrations of the nutrients nitrogen (N), phosphorus (P), magnesium (Mg), calcium (Ca), and potassium (K) in roots, litterfall, leaves, and twigs, biomass of fine roots and litterfall, and the decomposition of leaves and twigs in samples that were collected on the property of Jari Celulose, Monte Dourado, Para, Brazil, from 1999-2001.Samples were collected from two study sites, a eucalyptus plantation and an adjacent primary forest, during both rainy and dry seasons. Roots were sampled from three depths (0-15 cm, 35-50 cm, and 85-100 cm).There are five comma-delimited data files with this data set.DATA QUALITY STATEMENT: The Data Center has determined that there are questions about the quality of the data reported in this data set. The data set has missing or incomplete data, metadata, or other documentation that diminishes the usability of the products.KNOWN PROBLEMS: The data files do not identify the year in which samples were collected. The methods for nutrient, decomposition, and biomass sampling and analyses were not provided. The data file descriptions indicate that samples were collected from two soil types (sandy and clay) but there is no documentation of which data field provides that information. Also, there is no documentation for the Location or Block fields in the data files.
Gene expression analyses of four Pisolithus microcarpu strains: Si9, MW3, R4 and R10. Gene expression in Eucalyptus grandis mycorrhizal root tip was compared to gene expression in free-living mycelium
GEO Series GSE155420. Eucalyptus grandis; Pisolithus microcarpus. 23 samples. Type: Expression profiling by high throughput sequencing.
RNA-Seq using two populations reveals genes and alleles controlling wood traits and growth in Eucalyptus nitens
GEO Series GSE56592. Eucalyptus nitens. 12 samples. Type: Expression profiling by high throughput sequencing.
Transcriptome sequencing of Eucalyptus camaldulensis seedlings subjected to water stress reveals functional single nucleotide polymorphisms and genes under selection.
GEO Series GSE39369. Eucalyptus camaldulensis. 12 samples. Type: Expression profiling by high throughput sequencing.
Gene expression in xylem tissue on an Eucalyptus pseudo-testcross population: genotyping subset of discovery array probes
GEO Series GSE24195. Eucalyptus grandis x Eucalyptus urophylla; Eucalyptus. 136 samples. Type: Expression profiling by array; Other.
Microarray analysis of juvenile and mature cuttings of Eucalyptus grandis revealed developmental regulation of nitrate reductase which potentially influences nitric oxide production and adventitious r
GEO Series GSE36317. Eucalyptus grandis. 4 samples. Type: Expression profiling by array.
Genolyptus microarray studies of Eucalyptus grandis and Eucalyptus globulus leaf and xylem tissues
GEO Series GSE31696. Eucalyptus globulus; Eucalyptus grandis; Eucalyptus spp. mixed library. 10 samples. Type: Expression profiling by array.
Elevated carbon dioxide alters the interaction between Eucalyptus grandis and Pisolithus microcarpus through a complex shift in the root transcriptome
GEO Series GSE62227. Eucalyptus grandis; Pisolithus microcarpus. 23 samples. Type: Expression profiling by high throughput sequencing.
Effects of Smoldering Eucalyptus Wood Smoke Extract on Primary Human Brain Microvascular Endothelial Cells (HBMEC) and Immortalized Human Cerebral Microvascular Endothelial Cell Line (hCMEC/D3)
GEO Series GSE271935. Homo sapiens. 48 samples. Type: Expression profiling by high throughput sequencing.
Gene expression in xylem tissue on an Eucalyptus pseudo-testcross population: discovery array probes
GEO Series GSE24130. Eucalyptus; Eucalyptus grandis x Eucalyptus urophylla. 56 samples. Type: Expression profiling by array; Other.
Gene expression and single feature polymorphisms in xylem tissue on an Eucalyptus pseudo-testcross population
GEO Series GSE24196. Eucalyptus; Eucalyptus grandis x Eucalyptus urophylla. 192 samples. Type: Expression profiling by array; Other.
Profiling microRNAs in Eucalyptus grandis reveals no mutual relationship between alterations in miR156 and miR172 expression and adventitious root induction during development
GEO Series GSE58367. Eucalyptus grandis. 1 samples. Type: Non-coding RNA profiling by high throughput sequencing.
Figure 2 from: Pinzón-Florián O (2020) First report on the gall wasp Ophelimus near migdanorum (Hymenoptera, Eulophidae) and its parasitoid Closterocerus chamaeleon (Hymenoptera, Eulophidae) in Eucalyptus globulus in Bogotá, Colombia. ZooKeys 902: 151-156. https://doi.org/10.3897/zookeys.902.39213
Figure 2 Ophelimus sp. Body in lateral view. Scale bar: 1 mm.
Data from: Estimations of evapotranspiration in an age sequence of Eucalyptus plantations in subtropical China
Eucalyptus species are widely planted for reforestation in subtropical China. However, the effects of Eucalyptus plantations on the regional water use remain poorly understood. In an age sequence of 2-, 4- and 6-year-old Eucalyptus plantations, the tree water use and soil evaporation were examined by linking model estimations and field observations. Results showed that annual evapotranspiration of each age sequence Eucalyptus plantations was 876.7, 944.1 and 1000.7 mm, respectively, accounting for 49.81%, 53.64% and 56.86% of the annual rainfall. In addition, annual soil evaporations of 2-, 4- and 6-year-old were 318.6, 336.1, and 248.7 mm of the respective Eucalyptus plantations. Our results demonstrated that Eucalyptus plantations would potentially reduce water availability due to high evapotranspiration in subtropical regions. Sustainable management strategies should be implemented to reduce water consumption in Eucalyptus plantations in the context of future climate change scenarios such as drought and warming.
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OpenNeuro
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