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31.
Vincent J. Tepedino Diane Gail Alston Brosi A. Bradley Trent R. Toler Terry L. Griswold 《Biodiversity and Conservation》2007,16(11):3083-3094
Capitol Reef National Park in central Utah, USA surrounds 22 managed fruit orchards started over a century ago by Mormon pioneers.
Honey bees are imported for pollination, although the area in which the Park is embedded has over 700 species of native bees,
many of which are potential orchard pollinators. We studied the visitation of native bees to apple, pear, apricot, and sweet
cherry over 2 years. Thirty species of bees visited the flowers but, except for pear flowers, most were uncommon compared
to honey bees. Evidence that honey bees prevented native bees from foraging on orchard crop flowers was equivocal: generally,
honey bee and native bee visitation rates to the flowers were not negatively correlated, nor were native bee visitation rates
positively correlated with distance of orchards from honey bee hives. Conversely, competition was tentatively suggested by
much larger numbers of honey bees than natives on the flowers of apples, apricots and cherry; and by the large increase of
native bees on pears, where honey bee numbers were low. At least one-third of the native bee species visiting the flowers
are potential pollinators, including cavity-nesting species such as Osmia lignaria propinqua, currently managed for small orchard pollination in the US, plus several fossorial species, including one rosaceous flower
specialist (Andrena milwaukiensis). We suggest that gradual withdrawal of honey bees from the Park would help conserve native bee populations without decreasing
orchard crop productivity, and would serve as a demonstration of the commercial value of native pollinators. 相似文献
32.
Jaime Carrasco Carlos García-Delgado Rebeca Lavega María L. Tello María De Toro Víctor Barba-Vicente María S. Rodríguez-Cruz María J. Sánchez-Martín Margarita Pérez Gail M. Preston 《Microbial biotechnology》2020,13(6):1933-1947
Microorganisms strongly influence and are required to generate the selective substrate that provides nutrients and support for fungal growth, and ultimately to induce mushroom fructification under controlled environmental conditions. In this work, the fungal and bacterial microbiota living in the different substrates employed in a commercial crop (compost phase I, II and III, flush 1 and 2, and casing material on day 1, 6 and 8 after compost casing and during flush 1 and 2) have been characterized along the different stages of cultivation by metataxonomic analysis (16S rRNA and ITS2), analysis of phospholipid fatty acid content (PLFAs) and RT-qPCR. Additionally, laccase activity and the content of lignin and complex carbohydrates in compost and casing have been quantified. The bacterial diversity in compost and casing increased throughout the crop cycle boosted by the connection of both substrates. As reflected by the PLFAs, the total living bacterial biomass appears to be negatively correlated with the mycelium of the crop. Agaricus bisporus was the dominant fungal species in colonized substrates, displacing the pre-eminent Ascomycota, accompanied by a sustained increase in laccase activity, which is considered to be a major product of protein synthesis during the mycelial growth of champignon. From phase II onwards, the metabolic machinery of the fungal crop degrades lignin and carbohydrates in compost, while these components are hardly degraded in casing, which reflects the minor role of the casing for nourishing the crop. The techniques employed in this study provide a holistic and detailed characterization of the changing microbial composition in commercial champignon substrates. The knowledge generated will contribute to improve compost formulations (selection of base materials) and accelerate compost production, for instance, through biotechnological interventions in the form of tailored biostimulants and to design environmentally sustainable bio-based casing materials. 相似文献
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35.
Somatic embryogenesis and plant regeneration from immature embryos of western larch 总被引:11,自引:0,他引:11
Somatic embryogenesis was initiated from immature embryos of western larch (Larix occidentalis Nutt.) on media containing 2,4-dichlorophenoxyacetic acid and N6- benzyladenine. The effects of explant type and ammonium nitrate and glutamine concentrations on initiation were tested. Although 21–93% of explants rendered cultures in various experiments, only 3% yielded sustainable embryogenic lines. Excised embryos at the early cotyledonary stage were optimal for initiation. Maturation of somatic embryos was promoted by abscisic acid. Response to abscisic acid concentrations and duration of exposure to abscisic acid varied with genotype. Maximal results were obtained with 0.025 M abscisic acid for 1 to 2 weeks followed by individual culture on medium without growth regulators. Mature somatic embryos developed into shoots with roots. Plantlets have been established in peat.Abbreviations 2,4-D
2,4-dichlorophenoxyacetic acid
- BA
N6-benzyladenine
- IBA
indole-3-butyric acid
- ABA
abscisic acid 相似文献
36.
Zuev D Mattson RJ Huang H Mattson GK Zueva L Nielsen JM Kozlowski ES Huang XS Wu D Gao Q Lodge NJ Bronson JJ Macor JE 《Bioorganic & medicinal chemistry letters》2011,21(8):2484-2488
A series of N-fluoroalkyl-8-(6-methoxy-2-methylpyridin-3-yl)-2,7-dimethyl-N-alkylpyrazolo[1,5-a][1,3,5]triazin-4-amines were prepared and evaluated as potential CRF1R PET imaging agents. Optimization of their CRF1R binding potencies and octanol-phosphate buffer phase distribution coefficients resulted in discovery of analog 7e (IC50 = 6.5 nM, log D = 3.5). 相似文献
37.
Deskus JA Epperson JR Sloan CP Cipollina JA Dextraze P Qian-Cutrone J Gao Q Ma B Beno BR Mattson GK Molski TF Krause RG Taber MT Lodge NJ Mattson RJ 《Bioorganic & medicinal chemistry letters》2007,17(11):3099-3104
A series of indole tetrahydropyridine and indole cyclohexenylamines was prepared, and their binding affinities at the human serotonin transporter (SERT) were determined. In particular, a nitrile substituent at the C5 position of the indole ring gave potent SERT activity. The stereochemistry of the N,N-dimethylamine substituent was determined for the most potent indole cyclohexenylamine, 6a. The enantiomers of 6a were energy minimized and compared to other conformationally restricted SSRIs. Compound 6a was found to give a dose-response similar to the SSRI fluoxetine in microdialysis studies in rats. 相似文献
38.
Richardson RT Alekseev OM Grossman G Widgren EE Thresher R Wagner EJ Sullivan KD Marzluff WF O'Rand MG 《The Journal of biological chemistry》2006,281(30):21526-21534
A multichaperone nucleosome-remodeling complex that contains the H1 linker histone chaperone nuclear autoantigenic sperm protein (NASP) has recently been described. Linker histones (H1) are required for the proper completion of normal development, and NASP transports H1 histones into nuclei and exchanges H1 histones with DNA. Consequently, we investigated whether NASP is required for normal cell cycle progression and development. We now report that without sufficient NASP, HeLa cells and U2OS cells are unable to replicate their DNA and progress through the cell cycle and that the NASP(-/-) null mutation causes embryonic lethality. Although the null mutation NASP(-/-) caused embryonic lethality, null embryos survive until the blastocyst stage, which may be explained by the presence of stored NASP protein in the cytoplasm of oocytes. We conclude from this study that NASP and therefore the linker histones are key players in the assembly of chromatin after DNA replication. 相似文献
39.
Anthony R. Ashton Stephen J. Trevanion Paul D. Carr Denis Verger David L. Ollis 《Physiologia plantarum》2000,110(3):314-321
The activity of chloroplast NADP-malate dehydrogenase (NADP-MDH; EC 1.1.1.82) in both C3 and C4 plants is regulated by light intensity. In darkness, the activity of the enzyme can be less than 1% of the maximal activity found at high light intensities. The extent of activation in the light is dynamic, responding rapidly to changes in light intensity and adapting to changes in photosynthetic rate. Enzyme activation is caused by thioredoxin-catalyzed reduction of two regulatory disulfide bonds, while inactivation is accomplished by thioredoxin-catalyzed re-oxidation. In the case of NADP-MDH, the coenzyme substrates NADP+ and NADPH modify the rate of this interconversion and seem to be important to the extent of activation in vivo. The recent determination of the X-ray structure of the oxidized, dark form of NADP-MDH from the C4 plants Flaveria bidentis and Sorghum shows how oxidation of a disulfide bond can inactivate the enzyme. This review discusses the various structural features of NADP-MDH that seem to be responsible for the regulatory properties of the enzyme and emphasizes that large changes of activity can be accomplished by multiple, small, reinforcing changes rather than a single large change in a signal molecule concentration. 相似文献
40.