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1.
杨勇  许鑫  徐玥  倪健 《地球与环境》2020,48(4):413-423
以黔北槽谷型喀斯特地区三种优势植物化香(Platycarya strobilacea)、马尾松(Pinus massoniana)和烟管荚蒾(Viburnum utile)为研究对象,测定其叶片、枝条和根系的功能性状与C、N、P、Ca、Mg元素含量,分析植物不同器官间功能性状和生态化学计量学的特征与关联,探讨优势物种对槽谷喀斯特环境的适应策略。结果表明:(1)叶片干物质含量在物种间无显著差异,比叶面积、枝干物质含量、枝密度、粗根密度和中根密度在种间差异显著,比叶面积种间变异最大(32. 13%),而叶干物质含量种间变异最小(12. 76%)。(2)比叶面积与叶干物质含量、粗根和中根密度呈显著负相关,叶干物质含量、枝干物质含量、枝密度、粗根密度和中根密度两两正相关。(3)植物C含量在叶片、枝条和根系中的分配较为均匀,N、P、Mg含量均表现为叶片枝条根系,C/N、C/P表现为根系枝条叶片;叶片N/P范围为10. 89~27. 39,平均值为17. 75。(4)在相应器官内,N与P元素和N/P显著正相关,C与Ca、Mg元素显著负相关,Ca与Mg显著正相关,叶片Ca与叶片P显著负相关。(5)比叶面积与叶片N、P、Mg含量显著正相关,与叶片C含量显著负相关;粗根和中根组织密度与根Ca含量极显著正相关。这说明黔北槽谷喀斯特地区的优势植物在功能性状上产生分化,减少生态位重叠,以降低资源竞争。为适应干旱贫瘠环境,植物一方面形成低比叶面积、高干物质含量和高组织密度的功能性状组合,另一方面改变器官间的元素分配,增加枝条和根系的投资。  相似文献   

2.
The influence of management intensity on the richness, abundance and composition of land snail species was examined in 21 calcareous, nutrient-poor cattle pastures in the northwestern Jura mountains, Switzerland. Grazing intensity was positively correlated with the extent of fertilization of the pastures. Pastures without fertilizer application and with low grazing intensity harboured more snail species and more threatened snails than pastures with annual addition of manure or pastures with manure and nitrogen fertilizer and higher grazing intensity. Fewer snail individuals, open-land species and open-land individuals were found on pastures with high than on pastures with low management intensity. To preserve the threatened snail species in dry, nutrient-poor grasslands, a network of pastures should be managed without fertilization and grazing intensity should not exceed 180 LU ha−1 d (product of livestock units per hectare and grazing days).  相似文献   

3.
研究不同退化背景下优势木本植物功能性状的适应机制,有助于从功能生态学的角度来解释喀斯特山区的群落演替过程。本研究以贵州普定不同退化背景样地优势木本为研究对象,测定LT、LA、SLA、LDMC、LTD、Chlc6个叶片功能性状指标,分析土壤特性对区域内植被叶片功能性状的作用及影响,揭示喀斯特山区植物对不同环境的适应策略及其演替过程。结果表明:①喀斯特区退化环境下植被叶片向增大化趋势发展,以退耕地经济林最显著;火烧、火烧砍伐、退耕下植被性状差异显著,以LA、LTD、SLA变化范围最大,在相应样地可分别高达121.9%、118.08%、86.00%。②退化样地内叶片性状在乔木、灌木和藤本物种间差异显著,总体上灌木与藤本物种种间变异高于乔木物种,群落处于演替前中期阶段。③不同退化背景下土壤特性差异较大,与植被叶功能性状间具有显著相关性,其中土层深度、土壤养分与土壤含水率是植被叶功能性状的关键土壤特性因子。④退化区域植被叶性状表现出LA大、LT较小、SLA和LTD低、LDMC高、Chlc较低,趋向于发展贫瘠干旱性状组合。揭示了黔中退化喀斯特次生林内在差异性的演替规律,为喀斯特次生林的管理和生物多样性保护提供科学依据。  相似文献   

4.
Differences in functional traits between invasive and native plant species are believed to determine the invasion success of the former. Increasing amounts of anthropogenic nitrogen (N) are continually deposited into natural ecosystems, which may change the relative occurrence of the different N deposition forms (such as NH4–N, NO3–N, and CO(NH2)2–N) naturally deposited. Under high N deposition scenarios, some invasive species may grow faster, gaining advantage over native species. In a greenhouse experiment, we grew invasive and native Amaranthus species from seed both alone and in competition under simulated N enriched environments with different forms of N over 3 months. Then, we measured different leaf traits (i.e., plant height, leaf length, leaf width, leaf shape index, specific leaf area (SLA), and leaf chlorophyll and N concentrations). Results showed that the competition intensity between A. retroflexus and A. tricolor decreased under N deposition. This may be due to the large functional divergence between A. retroflexus and A. tricolor under simulated N deposition. Phenotypic plasticity of SLA and leaf chlorophyll concentration of A. retroflexus were significantly lower than in A. tricolor. The lower range of phenotypic plasticity of SLA and leaf chlorophyll concentration of A. retroflexus may indicate a fitness cost for plastic functional traits under adverse environments. The restricted phenotypic plasticity of SLA and leaf chlorophyll concentration of A. retroflexus may also stabilize leaf construction costs and the growth rate. Meanwhile, the two Amaranthus species possessed greater plasticity in leaf N concentration under NO3–N fertilization, which enhanced their competitiveness.  相似文献   

5.
Relationships between functional leaf traits across large sets of plant species emphasized the existence of a major axis describing a trade-off between rapid acquisition and conservation of resources forming the so-called “leaf economics spectrum”. It is uncertain which environmental factors determine the economics spectrum and whether traits associated with reproduction co-vary with the economics spectrum. To determine these trait-environment relationships for agricultural ecosystems, this study was conducted at field, pasture, and heathland sites forming a strong land use gradient in Northwest Germany. The abundance of 49 species was recorded in 85 plots together with their traits (canopy height, specific leaf area, leaf N, leaf N:P, leaf and stem dry matter content, life cycle, reproductive investment (RI) in seed mass and seed number), as well as parameters describing soil resources and land use disturbances. RLQ multivariate analysis of the data set related an environmental table to a species trait table using a species abundance table to extract the joint structure between them. Thereafter, we clustered the species on the RLQ axis to extract functional groups. Traits associated with the leaf economics spectrum were strongly related to soil resources that co-varied with disturbance intensity. A division of the whole land use gradient into agricultural and heathland sites showed that RI was not decoupled from trait-environment relationships although the direction of the RI-environment relationship was opposite in the two subsets. Species were clumped rather than linearly arranged in the trait-environment space and the functional groups broadly corresponded to weed communities, pastures with differing intensities, and heathlands. The trade-off in plant economics responding to soil resources supports predictions of previous theoretical and empirical work. Different RI-environment relationships in agricultural sites and heathlands emphasize the relevance of local scales in trait-environment studies. In general, the results point to some of the biological mechanisms controlling functions and services of agricultural ecosystems.  相似文献   

6.
Oligotrophic mountain meadows are threatened biodiversity hotspots throughout Europe. The traditional summer hay-making followed by autumn grazing is no longer economic and question is whether alternative managements can maintain both plant species and functional diversity typical of these habitats. In the Bohemian Forest Mts., we applied three treatments (mowing once a year - i.e., cutting and removing the biomass, mulching once a year - cutting and leaving the crushed biomass to decompose in situ, fallowing - no cutting) in order to assess temporal changes in meadow vegetation, plant trait composition and biomass production in a 13-year experiment. We recorded for each species twenty-five traits as to be most informative of plant strategies related to growth, resource acquisition and carbon-water economy. We compared different components of trait composition (community averages that mostly reflect traits of dominant species vs. the Rao index of functional diversity that reflects trait dissimilarity among species) and their impact on biomass production. We show that mulching promotes species and functional diversity by facilitating heliophilous forbs and legumes with more acquisitive strategies in resource use and release, e.g., higher foliar N and P content. This occurs at the expense of tall grasses (with resource-retentive strategies, e.g., high leaf dry matter content) which dominate the mown and fallow plots. The divergence in most quantitative traits indicates that niche complementarity is the dominant assembly process in mulched plots, which can prevent competitive exclusion and enable species coexistence. The divergent development was detected only after 5-6 years. This slow floristic and functional response is caused by acidity of soil and severe mountain climate that preclude rapid responses of vegetation to land-use changes. We conclude that mulching represents a good compromise maintaining both plant species and functional diversity as well as a relatively high biomass production. Mowing without grazing leads to gradual nutrient loss and thus reduces the productivity and diversity in these oligotrophic ecosystems. Fallowing causes gradual loss in diversity by increased grass competition and litter accumulation.  相似文献   

7.
为了探求菊科入侵植物的入侵机制,了解菊科入侵植物与非入侵植物光合特性的差异,以云南省包括薇甘菊(Mikania micrantha)、紫茎泽兰(Ageratina adenophora)、飞机草(Chromolaena odorata)、三叶鬼针草(Bidens pilosa)在内的4种菊科入侵物种为研究对象,并以与其共生的菊科外来非入侵物种熊耳草(Ageratum houstonianum)为对照,研究外来入侵物种与非入侵物种叶片特性及气体交换参数等方面的区别. 结果表明:薇甘菊、紫茎泽兰、飞机草和三叶鬼针草的Pnmax(maximum net photosynthetic rate, 最大净光合速率)分别为15.92、18.69、17.15和22.78 μmol/(m2·s),分别比其共生非入侵物种熊耳草的高出21.63%、42.77%、31.02%和73.99%;4种入侵物种的LSP(light saturation point, 光饱和点)和LCP(light compensation point, 光补偿点)也显著高于熊耳草,但其AQY(apparent quantum yield, 表观量子效率)却显著低于该共生种. 4种入侵物种叶片的Nmass(leaf N content per unit mass, 单位质量N含量)和CCmass(leaf construction cost per unit mass, 单位质量建成成本)均显著高于熊耳草,除飞机草外,其他3种入侵物种的PEUE(photosynthetic energy use efficiency, 光合能量利用效率)和PNUE(photosynthetic nitrogen use efficiency, 光合氮利用效率)均显著高于熊耳草,而飞机草和熊耳草之间差异并不显著. 5种植物叶片Nmass分别与叶片SLA(specific leaf area,比叶面积)、CCmass呈极显著正相关,与植物Pnmax、叶片Pmass(leaf N content per unit mass, 单位质量P含量)和PEUE呈显著正相关,植物Pnmax与PNUE、PEUE呈极显著正相关,与叶片SLA呈显著正相关. 研究显示,与菊科共生外来非入侵植物相比,较高的光合特性参数、叶片特性指标和能量利用效率指标可能是外来菊科入侵物种成功入侵的原因之一.   相似文献   

8.
Tenerife pastures in the Teno plateau are under a goat grazing management system, and the number of goats has increased by 70% in the past 10 years. This plant community was sampled during 4 years (1992, 1993, 1994 and 1999) over a 10-year period, using ten 0.25 m2 plots to reveal changes in species composition, soil nutrient content, and biomass nutrient content over time and relate these variables to changes in management and understand aspects of the dynamics of these pastures.The results revealed no changes in biomass nutrient composition over the sampling period; however, biomass protein content was related to changes in species composition. Soil phosphorus content increased in the last sampling year and was related to an average species richness decrease in the plots. Results suggest that the increase in soil phosphorus and the decrease in species richness are related to the increase in goat grazing intensity. At the end of the studied period, species with a higher protein content increased in importance in the species composition. The restoration of pastures degraded by agriculture or overgrazing is required to provide a larger area for grazing and to ensure sustainable management of these protected areas.  相似文献   

9.
Legume-based pastures in Australasia are predominantly perennial ryegrass (Lolium perenne L.) and white clover (Trifolium repens L.). These pastures have disadvantages such as limitations in the production and persistence of white clover and ryegrass in drought prone regions. With the increasing interest in organic agriculture, more complex pasture mixtures are seen as an alternative to the standard ryegrass-white clover (RWC) pasture. Although anecdotal evidence exists to support the benefits of alternative pastures, there is insufficient scientific evidence to support or refute these claims. The present study was conducted to compare three different alternative multi-species (mixed herb leys) (MSP) pastures with the standard RWC pasture with and without irrigation, in terms of biomass and biological nitrogen fixation (BNF) over a period of 1 year under field conditions in Canterbury, New Zealand. Isotopic dilution technique involving field 15N-microplots were used to measure BNF. Irrigation doubled dry matter yields (DMY) of all pastures compared with those under dryland. There was no significant difference between DMY of all pastures under dryland. However, under irrigation, MSP pastures out-yield RWC pasture in total and legume DMY. Red clover MSP produced significantly lower DMY than the comprehensive or lucerne MSP treatment, probably due to the ability of lucerne in extracting water from deeper soil depth. Seasonal changes in plant composition varied according to the species sown, soil moisture status and temperature. Total and seasonal amounts of N2 fixed followed the same trend as the DMY and were related to the DMY of legumes. On average, about 26–34 kg N was fixed per tonne of legume DMY, showing a uniformity across all pastures. Overall, based on the present results of 1-year study, the MSP pastures tend to result in higher DMY, BNF and legume growth compared with that of the RWC pasture, provided irrigation is available. With increased BNF, these irrigated MSP pastures may provide high quality feed to grazing animals.  相似文献   

10.
Due to relatively strong human activities in the hilly area of Loess Plateau,the natural vegetation has been destroyed,and landscape pattern based on agricultural land matrix was land use mosaic composing of shrub land,grassland,woolland and orchard.This pattern has an important effect on soil moisture and soil nutrients.The Danangou catchment,a typical small catchment,was selected to study the effects of land use and its patterns on soil moisture and nutrients in this paper.The results are as follows:The comparisons of soil moisture among seven land uses for wet year and dry year were performed:(1)the average of soil moisture content for whole catchment was 12.11% in wet year,while it was 9.37% in dry year;(2)soil moisture among seven land uses was significantly different in dry year,but not in wet year;(3) form wet year to dry year,the profile type of soil moisture changed from decreasing type to fluctuation-type and from fluctuant type to increasing type;(4)the increasing trend in soil moisture from the top to foot of hillslope occurred in simple land use along slope,while complicated distribution of soil moisture was observed in multiple land uses along slope.The relationships between soil nutrients and land uses and landscape positions were analysed:(1)five nutrient contents of soil organic matter(SOM),total N(TN),available N(AN),total P(TP) and available P(AP) in hilly area were lower than that in other areas.SOM content was less than 1%,TN content less than 0.07%,and TP fallow land and cropland,and higher level in soil fertility was found in crop-fruit intercropping land among croplands;(3)soil nutrient distribution and responses to landscape positions were variable depending on slope and the location of land use types.  相似文献   

11.
As natural woodlands decline in both extent and quality worldwide, there is an increasing recognition of the biodiversity conservation value of production landscapes. In low-input, low-productivity grazing systems in Australia, the modification of natural woodlands through overstorey tree and woody regrowth removal are vegetation management options used by landholders to increase native grass production for livestock grazing; however, there is little empirical evidence to indicate at what tree densities biodiversity attributes are compromised. We examined the effects of overstorey tree density and understorey regowth on the floristic composition, stand structure and species richness of eucalypt woodlands in a grazing landscape in the Traprock region of southern Queensland, Australia. We sampled 47 sites stratified according to vegetation type (Eucalyptus crebra/Eucalyptus dealbata woodland; Eucalyptus melliodora/Eucalyptus microcarpa grassy woodland), density of mature trees (<6 trees/ha; 6–20 trees/ha; >20 trees/ha), and presence/absence of regrowth. Distinct patterns in composition were detected using indicator species analysis and non-metric multidimensional scaling, with low density areas compositionally indistinguishable, although distinct from other land management units. Within vegetation type, medium tree density woodlands were compositionally similar to high density and reference woodlands. Species richness ranged from 18 to 67 species per 500 m2 across all sites. No differences in total or native species richness were detected across management units; however, some differences in exotic species richness were detected. Differences in grass cover existed between low and high density management units, yet no difference in grass cover was evident between low and medium density management units. Our results suggest that medium tree densities may provide biodiversity benefits concordant with more natural areas, yet not adversely impact on pasture production. Retaining trees in grazing landscapes provides significant landscape heterogeneity and important refuges for species that may be largely excluded from open grassland habitats. Maintaining a medium density of overstorey trees in grazed paddocks can provide both production and biodiversity benefits.  相似文献   

12.
Plant functional traits weighted by cover-abundance have been used to measure change across a wide range of temperature, moisture and grazing gradients. We use this approach along a chronosequence of disease infestation (Phytophthora cinnamomi) in the species-diverse Banksia woodlands of the Southwest Australian Floristic Region (SWAFR). We compare the use of absolute (community-weighted totals-CWT) and relative cover data (community-weighted means-CWM) to demonstrate the importance of total cover change in reference to the Mass Ratio Hypothesis.Plant species cover-abundance was recorded along a space-for-time disease chronosequence, and functional trait data collected for the 48 dominant species from healthy vegetation. Six traits with deduced links to key ecosystem functions were measured for each species and values for two indices (CWT and CWM) compared along the disease chronosequence. Trait data was collected on plant height, growth form, specific leaf area, leaf dry matter content, root pattern and carbohydrate storage.Despite substantial shifts in individual species cover and a reduction in total species cover, the majority of CWM values did not change significantly following disease infestation. The use of relative cover-abundance data disregards important changes in total species cover, apparent from our comparative analysis. In contrast to CWMs, all CWT values were reduced following disease infestation, suggesting a potential reduction in productivity, reduced capacity as a carbon sink and altered site water balance. Verification of these potential changes in ecosystem functions is required using fine-scale quantitative techniques. The CWT index is complementary to traditional CWMs and useful when analysing changes in plant trait data where total species cover changes have been detected. In relation to P. cinnamomi infestation, shifts in CWT trait values indicate the ability of an introduced plant pathogen to have substantial indirect impacts beyond substantial floristic change.  相似文献   

13.
In species with widespread distribution, populations found in markedly different environments can show differences in developmental traits. This, in time, can have an effect on reproductive success. Sources of variation in developmental traits can be genetic or environmentally induced. I examined the relationship between environmental and genetic influences on juvenile development in populations of the colonial spider, Parawixia bistriata, located at sites with different moisture regimes and associated environmental variables (e.g., prey availability). It was expected that individuals from different populations would show differences in developmental traits and that those differences will be associated with lower reproductive success at dry sites. I recorded the phenology and developmental traits of native and transplanted individuals in the field and estimated reproductive success based on clutch size. Colonies from wet versus dry sites showed different phenologies, with individuals at dry sites maturing later. Transplant results suggest plasticity in instar duration caused by environmental effects. Despite differences in resources and spider phenology, clutch sizes of native dry and wet populations were similar. Transplanted individuals, however, were differentially affected. Transplants from wet to dry sites (WD) showed lower growth rates and smaller clutches, whereas transplants from dry to wet sites had larger clutch sizes than in native habitat. Delayed maturation and failure to reproduce in WD individuals is associated with a lower tendency to capture prey in groups and less aggressive interactions during prey capture. Thus, despite negative environmental effects on development, dry native individuals have evolved non-developmental traits that allow successful reproduction.  相似文献   

14.
不同土地利用方式对赤红壤理化性质的综合影响   总被引:2,自引:0,他引:2  
通过比较不同土地利用方式下赤红壤pH值、粘粒、容重、孔隙度、有机碳、氮磷钾全量及其速效养分含量的差异,并运用主成分分析方法分析各变量的相互关系、土壤综合理化特征及其关键改良因子。研究结果表明:新垦旱地容重最高,粘粒含量和孔隙度最低;有机碳、全量氮磷钾养分和速效氮磷养分含量均处于较低水平(P<0.05)。果园土容重显著低于其他土地利用方式土壤,且全氮、碱解氮和速效磷钾水平均处于较高水平(P<0.05)。桉树林的全钾和速效钾含量显著高于灌木林,而粘粒含量和速效磷含量相对较低(P<0.05)。主成分分析结果显示:新垦旱地、果园和桉树林、灌木林土壤理化综合质量差异显著(P<0.05),其中新垦旱地当前质量相对较差。有机碳、全氮和速效氮养分缺乏是当前新垦旱地土壤理化质量较差的主要原因。较少的速效磷钾养分含量是当前桉树林地、灌木林土壤质量的限制因素。主成分分析不仅能够区分不同土地利用方式下赤红壤理化质量差异,而且也是探查改良土壤质量因子的有效方法。  相似文献   

15.
为了解三峡库区小流域不同土地利用方式下土壤氮、磷流失特征,为农业非点源污染防控提供科学依据;采用田间试验的方法,研究了三峡库区石盘丘小流域水田、旱坡地、林地、柑橘园和菜地这5种土地利用方式下地表径流不同形态氮、磷流失浓度与通量的特征.结果表明:全氮流失通量的顺序为水田[17.73 kg·(hm2·a)-1] > 柑橘园[4.86 kg·(hm2·a)-1] > 旱坡地[4.33 kg·(hm2·a)-1] > 菜地[4.00 kg·(hm2·a)-1] > 林地[2.41 kg·(hm2·a)-1];全磷流失通量的顺序为菜地[4.97 kg·(hm2·a)-1] > 柑橘园[1.87 kg·(hm2·a)-1] > 水田[0.93 kg·(hm2·a)-1] > 林地[0.27 kg·(hm2·a)-1] > 旱坡地[0.19 kg·(hm2·a)-1];5种土地利用方式下氮、磷流失主要集中在降雨频繁的4~5月,占全年氮、磷流失总负荷的53.80%~96.52%和56.03%~87.78%;氮流失主要以硝态氮(16.16%~52.70%)的形态流失,全氮流失通量与径流量呈现出显著正相关关系(R2=0.9826);在菜地中颗粒磷是磷流失的主要形态(83.30%),但在其他土地利用方式中表现不显著.不同土地利用方式下不同形态氮、磷流失存在显著差异,其中菜地应针对强降雨情况下颗粒磷流失的问题采取措施,水田应避免在降雨集中时期施肥;科学施肥和合理地土地利用方式配置是治理小流域农业非点源污染的重要途径.  相似文献   

16.
根据江西省2013年采集的16582个农田耕层(0~20 cm)土壤样点数据,运用实地调查、经典统计学与地统计学等相结合方法,研究了江西省耕地土壤碳氮磷生态化学计量特征的空间变异性及不同农田利用方式对其的影响.研究结果表明:江西省耕地土壤有机碳(SOC)、全氮(TN)和全磷(TP)平均含量分别为17.90、1.58和0.52 g·kg~(-1),土壤碳氮比(C∶N)、碳磷比(C∶P)和氮磷比(N∶P)平均值分别为11.72、38.29和3.38,土壤C∶N∶P比平均值为34.44∶3.03∶1,说明P是江西省耕地土壤主要的限制因素.此外,由于碳、氮、磷三者之间并不存在显著的两两相关性,表明江西省耕地土壤中不存在稳定的"Redfield ratio";半方差函数表明,江西省土壤碳、氮、磷生态化学计量特征具有中等程度的空间变异性,其空间变异特征主要受到随机性因素的影响;经ANOVA检验显示,不同农田利用方式对土壤碳氮磷生态化学计量特征影响显著(p0.05),土壤SOC和TN平均含量依次表现为:两季水田水旱轮作一季水田一季旱地两季旱地,土壤TP平均含量依次表现为:两季旱地两季水田一季水田一季旱地水旱轮作,土壤C∶N依次表现为:两季水田两季旱地一季水田水旱轮作一季旱地,土壤C∶P平均值依次表现为:水旱轮作两季水田一季水田一季旱地两季旱地,土壤N∶P平均值依次表现为:水旱轮作一季旱地两季水田一季水田两季旱地.总体而言,土壤碳、氮、磷生态化学计量比的变化特征是农田利用方式和环境因子综合作用的结果,土壤C∶N∶P比对土壤碳、氮、磷储量及养分的限制性具有重要的指示作用.  相似文献   

17.
Insects are considered the most important predators of seed cones, the female reproductive structures of conifers, prior to seed dispersal. Slightly more than 100 genera of insects are known to parasitize conifer seed cones. The most diverse (i.e., number of species) of these genera is Megastigmus (Hymenoptera: Torymidae), which comprises many important seed pests of native and exotic conifers. Seed chalcids, Megastigmus spp., lay eggs inside the developing ovules of host conifers and, until recently, oviposition was believed to occur only in fertilized ovules. Ovule development begins just after pollination, but stops if cells are not fertilized. The morphological stage of cone development at the time of oviposition by seed chalcids has been established for many species; however, knowledge of ovule development at that time has been documented for only one species, M. spermotrophus. Megastigmus spermotrophus oviposits in Douglas-fir ovules after pollination but before fertilization. Unlike the unfertilized ovules, those containing a M. spermotrophus larva continue to develop, whether fertilized or not, stressing the need to broaden our understanding of the insect–plant interactions for this entire genus. To achieve this task, we reviewed the scientific literature and assembled information pertaining to the timing of oviposition and to the pollination and fertilization periods of their respective host(s). More specifically, we were searching for circumstantial evidence that other species of Megastigmus associated with conifers could behave (i.e., oviposit before ovule fertilization) and impact on female gametophyte (i.e., prevent abortion) like M. spermotrophus. The evidence from our compilation suggests that seed chalcids infesting Pinaceae may also oviposit before ovule fertilization, just like M. spermotrophus, whereas those infesting Cupressaceae seemingly oviposit after ovule fertilization. Based on this evidence, we hypothesize that all species of Megastigmus associated with Pinaceae can oviposit in unfertilized ovules, whereas those exploiting Cupressaceae cannot, and thus oviposit only in already fully developed fertilized seeds. Furthermore, we predict that the presence of a larva in unfertilized ovules of all Pinaceae will influence the development of the female gametophyte by preventing its abortion. This influence on the Pinaceae can be interpreted as an ability to parasitize any of the potential seeds present in a seed cone, and as such represents a much more efficient oviposition strategy than searching and locating only fertilized seeds. Concomitantly, this ability has likely led to an overestimation of the impact of the species of seed chalcid infesting Pinaceae on seed production.  相似文献   

18.
大气氮磷沉降是湖库营养盐输入的重要途径,深刻地影响着湖库水体营养盐平衡及生态系统演化进程. 为了解山区大型水库大气氮磷沉降对水体的贡献,于2020年11月—2021年10月在千岛湖街口和淳安县城2个监测站点开展了大气氮磷干湿沉降周年观测,分析千岛湖大气氮磷沉降特征及入库负荷. 结果表明:千岛湖街口监测点大气总氮(TN)、总磷(TP)沉降量分别为1 774.83和34.11 kg/(km2·a),淳安县城监测点大气TN、TP沉降量分别为1 799.73和34.44 kg/(km2·a). 大气TN沉降以湿沉降为主,街口和淳安县城监测点TN湿沉降分别占总沉降的92%和88%;两个监测点大气TP沉降的组成差异较大,其中街口监测点湿沉降占53%,淳安县城监测点干沉降占60%. 气象条件(降雨)叠加人类活动(施肥等农业活动和旅游等城市活动)能够显著增加大气营养盐沉降量,全年85%的TN沉降和71%的TP沉降集中在降雨期. 观测期间,千岛湖大气TN、TP干湿沉降入湖负荷分别估算为1 041.98和20.04 t/a,分别占千岛湖河道TN、TP输入的9.4%和8.3%. 研究显示,千岛湖大气氮磷沉降量显著低于长三角地区其他水体,但农耕、旅游等人类活动仍造成千岛湖大气营养盐沉降量明显升高.   相似文献   

19.
电子废物拆解区典型用地土壤重金属分布特征   总被引:1,自引:0,他引:1  
以广东清远的电子废物拆解区为研究对象,采集了遗留拆解场地,水稻田,蔬菜地,旱地和林地等5种用地类型土壤,分析了土壤基本理化指标和重金属含量.结果表明,各重金属元素含量高低总体呈现出:拆解场地 > 蔬菜地 > 水稻田 > 旱地 > 林地的趋势.其中,拆解场地的As、Cd、Cu、Hg、Pb和Zn均超过《土壤环境质量标准》(GB 15618–1995)二级标准,超标倍数最高的为Cd、Cu、Pb和Zn.蔬菜地和水稻田也出现不同程度的Cd和Cu超标,但林地与旱地的各元素含量均接近于背景值.在垂向分布上,受拆解活动直接影响的拆解场地中,各重金属含量随深度而显著递减,呈现出明显的表聚特征;而电子废物拆解活动影响较小的林地和旱地变化趋势不明显.冗余分析结果表明,研究区域土壤中重金属的迁移主要受土壤pH值、有机质和总磷的共同影响.各重金属元素的潜在生态危害风险程度处于轻微至极强,其中Cd和Cu的危害指数最高;各用地类型土壤的综合生态风险指数介于93(林地)~4750(拆解场地),平均为1187,属于很强的风险水平.本研究的结果可为政府部门科学开展电子废物拆解综合整治和土地管理提供基础信息.  相似文献   

20.
成都平原是我国重要的粮食、蔬菜、水果产地,进行土壤养分综合评价有利于了解区域土壤养分空间分布、丰缺程度,对区内土地的合理利用、养分变化监测具有重要作用。为此,本文基于土壤地球化学数据,通过相关分析、主成分分析、Norm值计算,构建了研究区土壤养分综合评价的最小数据集(MDS),并对比了国内16个MDS土壤养分评价体系。结果表明:研究区土壤pH均值为6.44,有机质、碱解氮、有效磷、速效钾达到丰富的样品占比分别为10.67%、40.19%、47.59%、41.89%。研究区土壤养分综合评价的MDS为有机质、全磷、Zn、Co,能够较好反映全数据集对土壤养分综合评价的信息。通过MDS土壤养分评价,研究区土壤养分综合评价指数得分均值为0.578 3,低于0.3的区域面积占比为2.25%,得分高于0.6的区域面积占比为40.49%,土壤肥力较好。在土壤养分评价体系中,有机质和磷(全磷或有效磷)是MDS的重要指标。  相似文献   

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