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171.
The effects of fire on soil‐surface carbon dioxide (CO2) efflux, FS, and microbial biomass carbon, Cmic, were studied in a wildland setting by examining 13‐year‐old postfire stands of lodgepole pine differing in tree density (< 500 to > 500 000 trees ha?1) in Yellowstone National Park (YNP). In addition, young stands were compared to mature lodgepole pine stands (~110‐year‐old) in order to estimate ecosystem recovery 13 years after a stand replacing fire. Growing season FS increased with tree density in young stands (1.0 µmol CO2 m?2 s?1 in low‐density stands, 1.8 µmol CO2 m?2 s?1 in moderate‐density stands and 2.1 µmol CO2 m?2 s?1 in high‐density stands) and with stand age (2.7 µmol CO2 m?2 s?1 in mature stands). Microbial biomass carbon in young stands did not differ with tree density and ranged from 0.2 to 0.5 mg C g?1 dry soil over the growing season; Cmic was significantly greater in mature stands (0.5–0.8 mg C g?1 dry soil). Soil‐surface CO2 efflux in young stands was correlated with biotic variables (above‐ground, below‐ground and microbial biomass), but not with abiotic variables (litter and mineral soil C and N content, bulk density and soil texture). Microbial biomass carbon was correlated with below‐ground plant biomass and not with soil carbon and nitrogen, indicating that plant activity controls not only root respiration, but Cmic pools and overall FS rates as well. These findings support recent studies that have demonstrated the prevailing importance of plants in controlling rates of FS and suggest that decomposition of older, recalcitrant soil C pools in this ecosystem is relatively unimportant 13 years after a stand replacing fire. Our results also indicate that realistic predictions and modeling of terrestrial C cycling must account for the variability in tree density and stand age that exists across the landscape as a result of natural disturbances.  相似文献   
172.
Analyses of spatial patterns and population processes of clonal plants   总被引:1,自引:0,他引:1  
The nonrandom spatial structure of terrestrial plants is formed by ecological interactions and reproduction with a limited dispersal range, and in turn this may strongly affect population dynamics and population genetics. The traditional method of modelling in population ecology is either to neglect spatial pattern (e.g. in transition matrix models) or to do straightforward computer simulation. We review here three analytical mothods to deal with plant populations in a lattice-structured habitat, which propagate both by seeds that scatter over the whole habitat and by vegetative reproduction (producing runners, rhizomes, etc.) to neighboring vacant sites. [1]Dynamics of global and local densities: Dynamical equations of population density considering nearest-neighbor correlation (spatial clumping) are developed as the joint dynamics of global average density and local density (comparable to mean crowding) based onpair approximation. If there is a linear trade-off between seed production and vegetative reproduction, the equilibrium abundance of the population may be maximized by engaging both means of reproduction. This result is accurately predicted by the pair approximation method, but not by mean-field approximation (neglect of spatial structure). [2]Cluster size distributions: Using global and local densities obtained by pair approximation, we predicted cluster size distribution, i.e. the number of clusters of occupied sites of various sizes. [3]Clonal identity probability decreasing with distance: Multi-locus measurement of allozymes or other neutral molecular markers tells us whether or not a given pair of individuals belong to the same clone. From the pattern of clonal identity probability decreasing with the distance between ramets, we can estimate the relative importance of two modes of reproduction: vegetative propagation and sexual seed production.  相似文献   
173.
The Drosophila larval neuromuscular junction has recently emerged as a powerful model system to characterize the cellular and molecular events involved in the formation and flexibility of synapses. The combination of molecular, genetic, electrophysiological and anatomical approaches has revealed, for example, the functional significance of the discs-large gene product (a novel synapse-organizing protein) in the nervous system. This protein is involved in the clustering of at least one ion channel and in the structural modification of glutamatergic synapses during target muscle growth. The manipulation of the genes encoding ion channels, components of second-messenger cascades, and cell adhesion molecules is beginning to tease apart the mechanisms underlying structural synaptic plasticity.  相似文献   
174.
硒对培养人胚肝细胞Ⅲ型前胶原,羟脯氨酸合成的影响   总被引:7,自引:0,他引:7  
原代培养人胚肝细胞经1.156×10 ̄(-7)mol/L硒预处理4h,加入20mmol/L四氟化碳作用20h,观察硒对其Ⅲ型前胶原(PCⅢ)和羟脯氨酸(Hyp)生成的影响。结果培养液中PCⅢ水平、细胞内Hyp含量及细胞内外丙二醛(MDA)水平均降低,与未加硒对照组比较差别有显著性(P<0.01)。而硒谷腕甘肽过氧化物酶(Se-GSH-PX)活性则较对照组显著增高(P<0.001),且PCⅢ水平与Se-GSH-P_X/MDA比值呈负相关(r=-0.9156,P<0.01)。提示硒可提高Se-GSH-P_X/MDA比值,抑制脂质过氧化激发的肝细胞胶原合成。  相似文献   
175.
研究了水平沟耕作条件下密度、施肥对谷子产量的影响,寻找最佳施肥和密度以获得最高产量和纯收入,并对株高、叶面积、叶面积系数、蒸腾强度、耗水量等指标作了研究,认为水平沟耕作有良好的经济和生态效益。  相似文献   
176.
研究表明,无视异绒螨种群密度与棉田连作年限之间呈正相关,与棉田海拔高度和水位之间呈负相关.露地棉田螨量明显高于地膜覆盖棉田.若螨在静水中的浮水时间可持续5.2h.成螨产卵的最适土壤含水量为12.5%.不同杀虫剂对幼螨杀伤力为溴氰菊酯喷雾>氧化乐果喷雾>三氯杀螨醇喷雾>氧化乐果缓释剂涂茎.因此,发展灌溉棉田、棉花适当连作、棉花生长期采取药剂涂茎治蚜对壮大无视异绒螨种群密度有重要作用.  相似文献   
177.
褐飞虱、白背飞虱种间、种内密度制约效应研究   总被引:2,自引:1,他引:1  
以高感品种TN1为材料.研究了褐飞虱、白背飞虱成、若虫密度对种群的制约效应。实验表明,单虫种一龄善虫密度15头/株和30头/株相比.褐飞虱成虫的羽化率、短翘率、体长和若虫历期均无明显差异,但成虫雌性比率前高;白背飞虱成虫羽化率前比后高21.22%.短翘率高15.25%。在两种飞虱一龄若虫密度30、45、60头/株等虫量混合组配下,褐飞虱成虫羽化率60头/株比30头/株下降28%,白背飞虱若虫历期以30头/株最长。在总虫量为30头/株时,种内(30头/株)和种间(15:15头/株)比.白背飞虱种内处理成虫羽化率高36.83%.昔虫历期短;褐飞虱以种内处理成虫短翘率高。从产卵位点来看.褐飞虱喜产在稻株叶鞘中下部厚肉组织上,白背飞虱以叶脉基部产卵为主.成虫密度2、4、8对/株3处理,其叶鞘、叶脉上的平均卵块变小;10天内的平均卵量亦减步。同密度下,种间组合比种内组合的产卵量多。从各指标对密度反应来看,褐飞虱比白背飞虱更耐拥挤。  相似文献   
178.
When monoclonal gammopathies arise in persons without evidence of plasma cell malignancy or lymphoproliferative disease, the term monoclonal gammopathy of unknown significance (MGUS) can be used. MGUS is believed to be the preneoplastic phase of lymphoproliferative diseases because many of these patients eventually develop malignant disease, mainly multiple myeloma. We have previously identified human papillomavirus (HPV) in a chronic benign plasma cell tumor of the cervix and in the bone marrow of multiple-myeloma patients. In the following study, we expanded upon our initial observation by analyzing 14 patients with MGUS. Bone marrow biopsies of the patients were analyzed for HPV sequences using polymerase chain reaction (PCR) and in situ hybridization. Normal controls included 26 bone marrow specimens, 24 analyzed by PCR and two by in situ hybridization. A significant association was found to exist between HPV and MGUS (p=0.001). Among 14 patients iwth MGUS, HPV sequences have been identified in 10 of the bone marrow biopsies. These results suggest that HPV can reside in the bone marrow of a premalignant lymphoproliferative disease.  相似文献   
179.
The marine alga Heterosigma carterae Hulburt (Raphidophyta) was grown in N-limiting batch cultures using either nitrate or ammonium as the N source, at photon flux densities (PFDs) of 50, 200, and 350 μmol·m-2·s-1 in a 12:12 h LD cycle. Carbon content could be estimated from biovolume (μg C = 0.278 × nL; R = 0.98) but not reliably from pigment content. During exponential growth, ammonium-grown cells (in comparison with nitrate-grown cells at the same PFD) attained higher growth rates by at least 20%, contained more N, and had a lower C:N ratio, higher concentrations of intracellular free amino acids, and higher ratios of glutamine: glutamate (Gln: Glu) and asparagine: aspartate (Asn:Asp). Growth was nearly light-saturated on ammonium at 200 μmol·m-2·s-1 (cell-specific growth rate of 1.2 d-1) but probably not saturated in nitrate-grown cells at 350 μmol·m-2·s-1. PFD did not affect Gln: Glu or Asn: Asp for a given N source. These results indicate that the nitrate-growing cells were more N-stressed than those using ammonium (which in contrast were relatively C-stressed) and that this organism would show an enhanced competitive advantage against other species when supplied with a transient supply of ammonium rather than nitrate .  相似文献   
180.
Nutrient uptake relationship to root characteristics of rice   总被引:1,自引:0,他引:1  
Data on root parameters and distribution are important for an improved understanding of the factors influencing nutrient uptake by a crop. Therefore, a study was conducted on a Crowley silt loam at the Rice Research and Extension Center near Stuttgart, Arkansas to measure root growth and N, P and K uptake by three rice (Oryza sativa L.) cultivars at active tillering (36 days after emergence (DAE)), maximum tillering (41 DAE), 1.25 cm internode elongation (55 DAE), booting (77 DAE) and heading (88 DAE). Soil-root core samples were taken to a depth of 40 cm after plant samples were removed, sectioned into 5 cm intervals, roots were washed from soil and root lengths, dry weights and radii were measured. Root parameters were significantly affected by the soil depth × growth stage interaction. In addition, only root radius was affected by cultivar. At the 0- to 5-cm soil depth, root length density ranged from 38 to 93 cm cm-3 throughout the growing season and decreased with depth to about 2 cm cm-3 in the 35- to 40-cm depth increment. The increase in root length measured with each succeeding growth stage in each soil horizon also resulted in increased root surface area, hence providing more exposed area for nutrient uptake. About 90% of the total root length was found in the 0- to 20-cm soil depth throughout the season. Average root radius measured in the 0- to 5-cm and 35- to 40-cm depth increments ranged from 0.012 to 0.013 cm and 0.004 to 0.005 cm, respectively throughout the season. Total nutrient uptake by rice differed among cultivars only during vegetative growth. Differences in total nutrient uptake among the cultivars in the field appear to be related to absorption kinetics of the cultivars measured in a growth chamber study. Published with permission of the Arkansas Agricultural Experiment Station.  相似文献   
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