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71.
SYBIL G. GOTSCH HEIDI ASBJORNSEN FRISO HOLWERDA GREGORY R. GOLDSMITH ALEXIS E. WEINTRAUB TODD E. DAWSON 《Plant, cell & environment》2014,37(1):261-272
The ecophysiology of tropical montane cloud forest (TMCF) trees is influenced by crown‐level microclimate factors including regular mist/fog water inputs, and large variations in evaporative demand, which in turn can significantly impact water balance. We investigated the effect of such microclimatic factors on canopy ecophysiology and branch‐level water balance in the dry season of a seasonal TMCF in Veracruz, Mexico, by quantifying both water inputs (via foliar uptake, FU) and outputs (day‐ and night‐time transpiration, NT). Measurements of sap flow, stomatal conductance, leaf water potential and pressure–volume relations were obtained in Quercus lanceifolia, a canopy‐dominant tree species. Our results indicate that FU occurred 34% of the time and led to the recovery of 9% (24 ± 9.1 L) of all the dry‐season water transpired from individual branches. Capacity for FU was independently verified for seven additional common tree species. NT accounted for approximately 17% (46 L) of dry‐season water loss. There was a strong correlation between FU and the duration of leaf wetness events (fog and/or rain), as well as between NT and the night‐time vapour pressure deficit. Our results show the clear importance of fog and NT for the canopy water relations of Q. lanceifolia. 相似文献
72.
MADELINE R. CARINS MURPHY GREGORY J. JORDAN TIMOTHY J. BRODRIBB 《Plant, cell & environment》2014,37(1):124-131
The coordination of veins and stomata during leaf acclimation to sun and shade can be facilitated by differential epidermal cell expansion so large leaves with low vein and stomatal densities grow in shade, effectively balancing liquid‐ and vapour‐phase conductances. As the difference in vapour pressure between leaf and atmosphere (VPD) determines transpiration at any given stomatal density, we predict that plants grown under high VPD will modify the balance between veins and stomata to accommodate greater maximum transpiration. Thus, we examined the developmental responses of these traits to contrasting VPD in a woody angiosperm (Toona ciliata M. Roem.) and tested whether the relationship between them was altered. High VPD leaves were one‐third the size of low VPD leaves with only marginally greater vein and stomatal density. Transpirational homeostasis was thus maintained by reducing stomatal conductance. VPD acclimation changed leaf size by modifying cell number. Hence, plasticity in vein and stomatal density appears to be generated by plasticity in cell size rather than cell number. Thus, VPD affects cell number and leaf size without changing the relationship between liquid‐ and vapour‐phase conductances. This results in inefficient acclimation to VPD as stomata remain partially closed under high VPD. 相似文献
73.
IVELINA S. METCHEVA TIMOTHY T. STEDMAN GREGORY A. BUCK 《The Journal of eukaryotic microbiology》1996,43(3):171-176
We have constructed an arrayed, large insert, multiple coverage genomic library of Pneumocystis carinii DNA using the bacteriophage P1 cloning system. The library consists of ∽4800 independent clones with an average insert size of ∽55 kbp individually arrayed in 50 microtiter plates, and is readily screened on ten or fewer microtiter plate-sized filters using a high density colony replicating device. Screening of the library for unique P. carinii sequences detected an average of 4–5 positive clones for each, consistent with a several-fold coverage of the ∽10-mbp P. carinii genome. Restriction and hybridization analyses demonstrated that the P1 clones in this library are quite stable and contain few, if any, chimeric inserts. Thus, this arrayed, large insert library off. carinii genomic DNA will be a valuable tool in the future genetic dissection of this important pathogen. 相似文献
74.
75.
BOUTHYETTE PIERRE-Y.; SPITSBERG VITALY; GREGORY PETER 《Journal of experimental botany》1985,36(3):511-528
Treatment of mitochondria isolated from Texas male sterile cytoplasmcorn (T mitochondria) with high concentrations of dicyclohexylcarbodiimide(DCCD) (140 nmol DCCD mg1 mitochondrial protein) completelyand immediately inhibited T mitochondrial swelling by Helminthosporiummaydis Race T toxin (HmT toxin). In order to obtain a specificinteraction between DCCD and the ATPase complex T mitochondriawere incubated with lower DCCD concentrations (15 nmolDCCD mg1 mitochondrial protein) for up to 8 h at 4 °C.After 8 h incubation in the presence of 3.75 nmol DCCD mg1mitochondrial protein, toxin-induced swelling was decreasedby 69%. Specificity of DCCD action upon the ATPase complex wasconfirmed by (1) SDS gel electrophoresis and fluorographic analysesof proteins from [14C]-DCCD-treated T mitochondria and immunoprecipitatesand (2) physiological experiments showing that DCCD exertednone of its other documented effects. These data suggest thatHmT toxin interacts with the ATPase complex of T mitochondriaeither at or near the DCCD-binding protein within the membranesector of the complex. Key words: Zea mays L., Helminthosporium maydis, Mitochondria 相似文献
76.
H. FREDERIK NIJHOUT GREGORY A. WRAY † LAWRENCE E. GILBERT 《Biological journal of the Linnean Society. Linnean Society of London》1990,40(4):357-372
The colour patterns of Heliconius butterflies are built up from an array of serially homologous pattern elements known as the nymphalid groundplan. An analysis of the phenotypic effects of ten genetic loci from H. melpomene and H. cydno reveals that each alters the expression either of a single element of the groundplan or of an entire row of serially homologous elements. Five of the ten loci affect the size (or presence/absence) of specific pattern elements, two affect the colour in which a pattern element is expressed, two affect pattern-inducing activity of the wing veins, and one appears to affect an overall threshold for pattern determination. Three of the ten loci have identical effects on homologues of the fore- and hindwing. We show that most of the apparently large and qualitative phenotypic effects of these genes can be readily explained by relatively small and quantitative changes in the dimensions or positions of specific pattern elements. 相似文献
77.
Patterns of Root Respiration Associated with the Induction of Aluminium Tolerance in Phaseolus vulgaris L. 总被引:1,自引:0,他引:1
CUMMING JONATHAN R.; CUMMING ANNE BUCKELEW; TAYLOR GREGORY J. 《Journal of experimental botany》1992,43(8):1075-1081
Aluminium (Al) tolerance in an Al-tolerant cultivar of Phaseolusvulgaris L. (Dade) was found to be an inducibletrait. Upon exposure to 10 µM Al, the rate of root elongationwas inhibited in comparison to controls. During the following72 h, the rate of elongation returned to levels comparable tocontrols. In contrast, root elongation of an Al-sensitive cultivar(Romano) did not recover after exposure to Al.In Dade, the resumption of root elongation following exposureto Al was accompanied by increased rates of root respiration,whereas respiration rates slowly declined over the 72 h treatmentperiod in Romano. When partitioned into growth and maintenanceexpenditures, a larger proportion of root respiration of Dadeexposed to Al was allocated to maintenance processes, potentiallyreflecting diversion of energy to metabolic pathways that offsetthe adverse effects of Al toxicity. Romano did not show sucha pattern and respiration associated with both growth and maintenancewas reduced after exposure to Al. Root and shoot growth of bothcultivars were also measured to determine the effects of long-term(21 d) exposure to 10 µM Al. Dade plants exposed to Alexhibited enhanced growth in comparison to controls, whereasRomano plants were characterized by reduced shoot and root growth.Modelling the time-course of root respiration and measuringthe long-term growth responses to Al is a valuable method ofelucidating respiratory costs of stress tolerance. Key words: Aluminium, differential tolerance, maintenance respiration, Phaseolus vulgaris, root respiration 相似文献
78.
GREGORY D. D. HURST ROSIE G. SHARPE ANGELA H. BROOMFIELD LINDA E. WALKER TAMSIN M. O. MAJERUS ILIA A. ZAKHAROV MICHAEL E. N. MAJERUS 《Ecological Entomology》1995,20(3):230-236
Abstract.
- 1 Sexually transmitted diseases (STDs) have rarely been reported in insects and other invertebrates. The majority of those reported involve organisms where sexual transmission is augmented by either vertical (i.e. inherited) transmission, or horizontal transmission, independent of host sexual activity.
- 2 We here demonstrate the existence of an STD in the coccinellid beetle Adalia bipunctata. This species bears a parasitic mite of the genus Coccipolipus. We show that, like many other podapolipid mites, this mite is transmitted between host individuals at a high rate during copulation. It also appears to be transmitted at a low rate between non-copulating individuals.
- 3 We show that infected female A.bipunctata produced eggs at a reduced rate, and that the eggs produced by infected females have highly decreased viability. However, no effect of infection upon host longevity was observed.
- 4 The results are discussed in relation to the incidences of sexually transmitted disease in invertebrates in general, the causes of disease symptoms, and the importance of this disease in the evolution of A.bipunctata.
79.
Growth response of subalpine fir (Abies lasiocarpa) to climate was studied across its local geographical and elevation range in the Olympic Mountains, Washington. A dendroecological analysis of subalpine fir across a range of elevations (1350-1850 m) and annual precipitation (125-350 cm y?1), was used to compare environmental factors affecting growth. Climate-growth relationships were explored using Pearson product-moment correlation coefficients; partial correlation analysis was used to assess relationships among site chronologies and climatic variables. Radial growth is negatively correlated with winter precipitation at high elevation and wet sites, but not at low and middle elevation dry sites. Growth is positively correlated with current growing season temperature at all sites; however, growth is negatively correlated with previous year August temperature, indicating that climate affects growth in subsequent years. Positive correlations between growth and summer precipitation during the growing season at low and middle elevation dry sites suggest that soil moisture is partially limiting to growth on these sites. If the climate of the Pacific Northwest becomes warmer and drier, then subalpine fir growth may increase at high elevation and wet sites, but may decrease at lower elevation dry sites in the Olympic Mountains. However, the growth response of subalpine fir to potentially rapid climate change will not be uniform because subalpine fir grows over a wide range of topographic features, habitats, and local climates at different geographical scales. A comparison of growth response to current growing season temperature suggests that the temperature-related growth response of subalpine fir is not adequately described by the parabolic curve used in JABOWA-based models. 相似文献
80.