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Infection of potato tubers by the soft-rotting fungi Phytophthoraerythroseptica and Pythium debaryanum resulted in multiplicationof endogenous tuber bacteria. This effect was not evident afterinfection by dryrotting fungi. Some of the bacteria isolatedproduced pectolytic and hemicellulolytic enzymes in vitro andwere themselves capable under certain conditions of degradingtuber tissue.  相似文献   
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ABSTRACT In an effort to reduce goose depredation at a traditional spring migratory stopover site, private landowners implemented a coordinated hazing plan to scare Aleutian cackling geese (Branta hutchinsii leucopareia) from private lands to adjacent public pastures that were cultivated and set aside specifically for geese. Coincidentally, some Aleutian geese began using a new stopover site 150 km farther south in their spring migratory range; numbers at the new site continue to increase. We tested the idea that when their ability to acquire resources deteriorates geese are likely to seek improved foraging conditions, especially during spring migration when individuals strive to maximize nutrient stores and minimize energy expenditure. We quantified measures of goose foraging performance in traditional and new spring staging sites by calculating foraging opportunity, foraging effort, body condition, and daily energy expenditure. Geese staging at the site with higher levels of human disturbance had less foraging opportunity and, despite increased foraging effort and more nutritious food-plants at the site, birds there experienced an elevated energy expenditure and poorer body condition than birds at the new stopover site. Reduced foraging time and increased energy expenditure at the traditional spring staging site may have triggered the colonization process. Suitability assessment of habitat for migratory geese should include measures of foraging opportunity, disturbance risks, and daily energy expenditure in addition to quantity and quality of foods.  相似文献   
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Comparative studies encompassing a wide range of aquatic animals have shown that rowing is exclusively used at low Reynolds numbers ( Re  < 1), whereas flapping is predominantly used at Re  > 100, although few studies have been undertaken to document the transition in individual species that traverse the intermediate Re regime using a single set of appendages. Thus, it is not generally known whether a gradual increase in Re within a system results in a gradual or sudden shift between rowing and flapping. In the present study, we document ventilatory kinematics of a nymphal mayfly Centroptilum triangulifer that develops using a serial array of seven pairs of abdominal gill plates and operates at Reynolds numbers in the range 2–22 during ontogeny. We found that some kinematic variables (stroke frequency and metachronal phase lag) did not change during ontogeny but that others changed substantially. Specifically, gill kinematics in small instars used strokes with large pitch and stroke-plane deviations, whereas larger instars used strokes with minimal pitch and minimal stroke-plane deviation. Gills in larger instars also acquired an intrinsic hinge that allowed passive asymmetric movement between half strokes. Net flow in small animals was directed ventrally and essentially parallel to the stroke plane (i.e. rowing), whereas net flow in large animals was directed dorsally and essentially transverse to the stroke plane (i.e. flapping). The change in whole-gill kinematics from rowing to flapping occurred across a narrow Re range (3–8), which suggests a possible hydrodynamic demarcation between rowing and flapping.  © 2009 The Linnean Society of London, Biological Journal of the Linnean Society , 2009, 98 , 540–555.  相似文献   
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Direct comparison of genetic patterns between museum specimens and contemporary collections can be a powerful approach for detecting recent demographic changes. Using microsatellite markers, we examined historical and contemporary genetic variation from an apparently declining bumble bee species, Bombus pensylvanicus , and from a stable species, Bombus impatiens , in central Illinois. For each species, we genotyped specimens from the Illinois Natural History Survey collected from three populations between 1969–1972 and from a resurvey of the same areas conducted in 2008. Population structure in B . pensylvanicus increased markedly over the last four decades (from θST = 0.001 to 0.027) while no structure was detected in B . impatiens for either time period (θST = –0.006 to –0.003). Changes in genetic diversity were not significant for either species, although small reductions were observed for B . pensylvanicus in all three populations. Coalescent simulations incorporating both contemporary and historical samples suggest that this small change is not surprising for recent population declines, as large reductions in genetic diversity were only apparent under the most severe bottleneck scenarios. These results demonstrate how comparisons of genetic patterns between temporal periods and species can help elucidate potential threats to population health and suggest several strategies that might be useful in the conservation of B . pensylvanicus in the Midwestern USA.  相似文献   
116.
Abstract: We immobilized elk with either isoflurane to produce general anesthesia (control), 0.01 mg/kg carfentanil plus 0.1 mg/kg xylazine, or 0.25 mg/kg butorphanol plus 0.4 mg/kg azaperone plus 0.15 mg/kg medetomidine (BAM) and measured the bispectral index (BIS). The carfentanil-xylazine BIS (70.4 + 1.4) and the BAM BIS (60.2 + 1.5) were higher than the control BIS (47.2 + 4.1; P ≤ 0.001). These data indicate that opioids produce neuroleptanalgesia and not general anesthesia or sedation, which explains observed elk responses to these drugs.  相似文献   
117.
Genes at the M locus in flax ( Linum usitatissimum ) that confer resistance to flax rust ( Melampsora lini ) occur in complex haplotypes containing up to 15 related genes or gene fragments. We have cloned two additional functional resistance genes at this locus, M1 and M3 , by transposon tagging and candidate gene approaches, and investigated the genetic relationships between four genes ( M , M1 , M3 and M4 ) by recombination analysis. M1 and M3 , like M , are members of the nucleotide binding site, leucine-rich repeat (NBS-LRR) family. Comparisons of the predicted M1 and M3 amino acid sequences with M and L6 reveal that: (i) M1 contains four additional LRRs, probably as a result of an unequal crossover event between duplicated regions; (ii) M1 shares large segments of exact identity with M and M3, indicative of intragenic recombination events; and (iii) a large number of amino acid differences are scattered throughout the M, M1 and M3 proteins. Recombination analysis (here and in previous studies) has revealed that M readily recombines with M1 , M3 and M4 , whereas these three genes fail to recombine despite large family sizes (>5800) in two test-cross families, suggesting that they may occupy allelic positions in the gene cluster. Several restriction fragment length polymorphism markers within or near the M locus were mapped with respect to seven crossover events between M and M1 . The results of this and previous studies provide evidence of structural differences between: (i) homoeologous loci in the different genomes of flax; (ii) different haplotypes at the M locus; (iii) different resistance genes in the M group; and (iv) the flanking regions downstream of M locus resistance genes.  相似文献   
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SYNOPSIS. Accurate phylogenetic reconstruction requires charactersystems that have evolved fast enough to have kept pace withcladogenesis but slowly enough to have conveyed the resultingphylogenetic signal to the present. Because stratigraphic evidencesuggests that basal arthropod lineages arose rapidly duringan ancient (Cambrian) phylogenetic radiation, the discoveryof molecular sequences capable of resolving arthropod phylogenymay be a significant challenge for molecular systematists. Thischallenge is exemplified by our attempt to resolve arthropodphylogeny using the amino acid sequence of elongation factor-1(EF-1). Our fossil-based assessment of evolutionary rates indicatesthat EF-la should be capable of resolving Cambrian-age divergences.However, phylogenetic analysis using EF-1 fails to establishrelationships among most higher-level groups, although it doesrecover more recently derived clades. Here we propose two modelsto explain this incongruity. The Rapid Radiation Model maintainsthat fossil-based estimates of arthropod diversification areessentially accurate and that diversification occurred so rapidlyduring the Cambrian that few phylogenetically significant changesoccurred in the slowly evolving EF-1 sequence. The EnhancedPreservation Model maintains that fossil-based estimates ofCambrian-age divergences reflect enhanced preservation of pre-existinglineages and that arthropod diversification occurred beforethe Cambrian. This model attributes lack of resolution to degradationof phylogenetic signal within EF-1 by subsequent evolution.Current evidence is more consistent with the Enhanced PreservationModel, which implies that fossil-based methods can be very misleadingwhen attempting to gauge the phylogenetic information contentof molecular sequences for Cambrian- and Precambrian-age divergences.  相似文献   
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