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21.
22.
Invasive species interacting with fires pose a relatively unknown, but potentially serious, threat to the tropical forests of Hawaii. Fires may create conditions that facilitate species invasions, but the degree to which this occurs in different tropical plant communities has not been quantified. We documented the survival and establishment of plant species for 2 yr following 2003 wildfires in tropical moist and wet forest life zones in Hawaii Volcanoes National Park, Hawaii. Fires were ignited by lava flows and burned across a steep environmental gradient encompassing two previously burned shrub-dominated communities and three Metrosideros polymorpha forest communities. Fires in all community types were stand replacing, where >95 percent of overstory trees were top killed. Over half (>57%) of the trees survived via basal sprouting, but sprout growth differed among forest communities. Sprout growth (>250,000 cm3) was greatest in the forest community where postfire understory cover was lowest presumably due to thick native Dicranopteris linearis fern litter that remained postfire. In contrast, M. polymorpha sprout growth was much slower (<100,000 cm3) in the two forest communities where there was rapid understory recovery of nonnative ferns Nephrolepis multiflora and invasive grasses Paspalum conjugatum. These results suggest that the rapid establishment of an invasive-dominated understory limited recovery of the overstory dominant M. polymorpha. In contrast to the three forest communities, there were few changes in vegetation composition in the shrubland communities. Nonnative species invasions coupled with repeated fires selectively eliminated fire-sensitive species thereby maintaining these communities in dominance of primarily nonnative, fire-resilient, species. 相似文献
23.
Gregory P. Asner Roberta E. Martin Kimberly M. Carlson Uwe Rascher Peter M. Vitousek 《Ecosystems》2006,9(7):1106-1117
We compiled a time series of Earth Observing-1 Hyperion satellite observations with field measurements to compare the structural,
biochemical, and physiological characteristics of an invasive nitrogen-fixing tree Myrica faya and native Metrosideros polymorpha in montane rainforests in Hawai’i. Satellite-based canopy water measurements closely tracked variations in leaf area index,
and the remotely sensed photochemical and carotenoid reflectance indices (PRI, CRI) indicated variations in upper-canopy leaf
chlorophyll and carotenoid content during a climatological transition. The PRI and CRI were related to differences in light-use
efficiency of each species, as indicated by field measurements of leaf electron transport rate. The suite of hyperspectral
metrics indicated maximum differences in the structure, biochemistry, and physiology of Myrica and Metrosideros when canopy vapor pressure deficit was high during hotter and drier periods. These satellite data, combined with the Carnegue-Ames-Stanford
Approach (CASA) carbon cycle model, suggested that Myrica growth rates were 16–44% higher than Metrosideros, with relative differences between species closely linked to climate conditions. The satellite hyperspectral data identified
the basic biological mechanisms favoring the spread of an introduced tree, and provided a more detailed understanding of how
vegetation–climate interactions affect the time course of plant growth with respect to the invasion process. 相似文献
24.
Changes in carbon isotope composition(13C) and leaf morphology associated withvegetative phase change were monitored in Metrosiderosexcelsa Sol. ex Gaertn. (family Myrtaceae). Plants of threeontogenetic states were used: juvenile seedlings, micropropagated plants in arejuvenated state, and reproductively mature plants bearing leaves with adultcharacteristics. The effects of temperature regime (32/24 °C,24/16 °C, and 16/8 °C day/night) and plantarchitecture (branched and single-stemmed plants) were studied in two separateexperiments. Although both juvenile and rejuvenated plants exhibited juvenileleaf morphology at the start of the experiments, there was no differencebetweenleaf 13C in these plants and that in adultplantsat this time (mean ca. –27%). Vegetative phase change occurred injuvenileand rejuvenated plants grown at 24/16 °C, and there was acorresponding increase in leaf 13C (from ca.–27% to –23%) in these two groups of plants. Leaf13C in adult plants remained relatively constant(ca. –26%) at 24/16 °C. There was little change in leaf13C in all plant states maintained at 32/24°C or 16/8 °C, and vegetative phase change didnot occur in juvenile and rejuvenated plants grown under these two temperatureregimes. Rejuvenated plants grown in a greenhouse also exhibited a progressivedevelopment of adult leaf morphology, accompanied by an increase in leaf13C, an effect that was more pronounced insingle-stemmed (from –26.4% to ca. –24%) than in branched plants. Itis suggested that increasing 13C in juvenile andrejuvenated plants undergoing phase change is a result of reduced sink strengthin single-stemmed plants, and to a lesser extent within each branch of branchedplants, causing reduced stomatal conductance and photosynthesis. 相似文献
25.
Foliar and Litter Nutrients, Nutrient Resorption, and Decomposition in Hawaiian Me
t
rosideros polymorpha 总被引:1,自引:0,他引:1
Peter M. Vitousek 《Ecosystems》1998,1(4):401-407
The native tree Metrosideros polymorpha dominates Hawaiian forests across a very wide range of soil fertility, including both sites where forest production is limited
by nitrogen (N) and others where it is limited by phosphorus (P). Five long-term fertilization experiments have further broadened
the range of nutrient availabilities experienced by Metrosideros. Adding P to P-limited sites increased foliar P concentrations threefold and litter P concentrations up to 10-fold; lignin
concentrations decreased, and the decomposability of leaf litter increased from 32%–35% to 36%–46% mass loss in the first
year. Adding N to N-limited sites increased leaf and litter N concentrations by only 15%–20%, with little or no effect on
the decomposability of tissue.
Received 22 January 1998; accepted 4 May 1998. 相似文献
26.
Geological age, ecosystem development, and local resource constraints on arthropod community structure in the Hawaiian Islands 总被引:1,自引:0,他引:1
DANIEL S. GRUNER 《Biological journal of the Linnean Society. Linnean Society of London》2007,90(3):551-570
An ongoing debate in evolutionary ecology concerns the relative role of contemporary vs. historical processes in determining local species richness and community structure. At sites along a 4 Mya geological chronosequence on Hawai'i, Moloka'i and Kaua'i, numerous extrinsic factors can be held constant, but ecosystem fertility and nutrient availability are low, both very young and very old sites, peaking at intermediate geological age across islands. Thus, contemporary resource traits are similar among sites with different biogeographical legacies, and these opposing gradients allowed a test of their relative importance for arboreal arthropod community structure. Pyrethrum knockdown was used to sample arboreal arthropods from Metrosideros polymorpha (Myrtaceae), the dominant tree throughout the Hawaiian Islands. Arthropod abundances and sample-based species richness peaked at more productive, intermediate-aged sites, but did not correlate with geological age. The proportions of individuals and biomass in trophic groups and in different taxonomic orders differed widely across sites, but proportions of species in trophic groups were more regular than the chance expectation. Species richness in local communities did not accumulate or pack more tightly with increasing geological age to the oldest island. Intermediate-aged islands may be contemporary peaks of richness, mediated by ecosystem development and senescence. Although historical and evolutionary processes generate diversity at broad scales, local communities converged in trophic structure and composition, and ecosystem resource availability constrained arthropod numbers and richness at local scales. © 2007 The Linnean Society of London, Biological Journal of the Linnean Society , 2007, 90 , 551–570. 相似文献
27.
在野生猪苓(Grifola umbellata (Pers.) Pilát)菌核生长穴中首次分离到猪苓菌丝形成菌核所必需的伴生菌(Grifola sp.).实验证明:纯培养的猪苓菌丝不能形成菌核,但其与伴生菌共培养,无论在实验室培养基上或用树棒栽培,猪苓菌核形成很快且发育正常;伴生菌是猪苓菌丝形成菌核的关键生物因子.另外,伴生菌菌丝和猪苓菌菌丝二者形态差别较大,前者多为细长的薄壁菌丝,后者多为细胞直径较大的薄壁和厚壁菌丝. 相似文献
28.
1. All plants form symbioses with microfungi, known as endophytes, which live within plant tissues. Numerous studies have documented endophyte–herbivore antagonism in grass systems, but plant–endophyte–insect interactions are highly variable for forbs and woody plants. 2. The net effect of endophytes on insect herbivory may be modified by their interactions with higher trophic levels, such as predators. Including these multitrophic dynamics may explain some of the variability among endophyte studies of non‐grass plants, which are currently based exclusively on bitrophic studies. 3. The abundance of natural foliar endophytes in a Neotropical vine was manipulated and beetles were fed high or low endophyte diets. Experimental assays assessed whether dietary endophyte load affected beetle growth, leaf consumption, and susceptibility to ant predation. 4. Beetles feeding on high‐ versus low‐endophyte plants had almost identical growth and leaf consumption rates. 5. In a field bioassay, however, it was discovered that feeding on an endophyte‐rich diet increased a beetle's odds of capture by predatory ants nine‐fold. 6. Endophytes could thus provide an indirect, enemy‐mediated form of plant defence that operates even against specialist herbivores. We argue that a multitrophic approach is necessary to untangle the potentially diverse types of endophyte defence among plants. 相似文献
29.
Paula Novaes Maristela Imatomi Rosa M. Varela José M. G. Molinillo Rodney Lacret Sonia C. J. Gualtieri Francisco A. Macías 《化学与生物多样性》2013,10(8):1539-1548
The stressful conditions associated with the Brazilian savanna (Cerrado) environment were supposed to favor higher levels of allelochemicals in Rapanea umbellata from this ecosystem. The allelopathic potential of R. umbellata leaf extracts was studied using the etiolated wheat coleoptile and standard phytotoxicity bioassays. The most active extract was selected to perform a bioassay‐guided isolation, which allowed identifying lutein ( 1 ) and (?)‐catechin ( 2 ) as potential allelochemicals. Finally, the general bioactivity of the two compounds was studied, which indicated that the presence of 1 might be part of the defense mechanisms of this plant. 相似文献
30.
山西牛奶子群落优势种种间关联性研究 总被引:1,自引:0,他引:1
基于2×2联列表,应用方差比率法、χ2检验、Pearson相关系数及Spearman秩相关系数检验等数量分析方法对山西牛奶子群落的25个优势种,共300个种对间的关联性进行分析研究。结果表明,25个优势种群的总体种间关联性呈不显著关联,种的分布相对独立。χ2检验结果有121个种对呈正相关,155个种对呈负相关,正负关联比为0.78;Pearson相关系数检验有111个种对呈正相关,189个种对呈负相关,正负关联比为0.59;Spearman秩相关系数检验有128个种对呈正相关,172个种对呈负相关,正负关联比为0.74;Spearman秩相关系数比Pearson相关系数的检验方法灵敏度更高。山西牛奶子群落总体上呈不显著负关联,表明其处于演替过程的初期。 相似文献