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221.
氮是除水分之外影响干旱区生态系统生物活性的关键因子。生物土壤结皮是干旱半干旱荒漠地表景观的重要组成部分, 也是荒漠生态系统氮素的主要贡献者。通过野外调查采样, 利用开顶式生长室, 模拟不同降水梯度, 采用乙炔还原法连续测定了沙坡头地区典型生物土壤结皮(藻类结皮、地衣结皮和藓类结皮)在其主要固氮活跃期(6-10月, 湿润期)的固氮活性, 及其对水热因子的响应特征。结果表明, 试验期三类生物土壤结皮的固氮活性介于2.5 × 103-6.2 × 104 nmol C2H4·m-2·h-1之间, 其中藻类结皮的最高(平均达2.8 × 104 nmol C2H4·m-2·h-1), 地衣结皮的次之(2.4 × 104 nmol C2H4 ·m-2·h-1), 藓类结皮的最低(1.4 × 104 nmol C2H4·m-2·h-1), 差异显著(p < 0.001)。在模拟降水3 mm时, 三类结皮均可达到最大固氮速率, 当发生> 3 mm的降水事件时, 它们的固氮速率无显著增加; 不同结皮的固氮活性与温度均呈显著的负相关关系(r藻类结皮 = -0.711, r地衣结皮 = -0.732, r藓类结皮 = -0.755, p < 0.001), 藻类和藓类结皮的固氮活性的最适温度区间为25-30 ℃, 地衣结皮为20-30 ℃。三类结皮之间的这种固氮差异主要归因于结皮组成生物体即隐花植物的差异, 藻类结皮主要成分为大量的蓝细菌和一些绿藻, 地衣结皮也由大量的固氮藻和真菌共生形成, 而藓类结皮的主要组成部分苔藓植物并不具有固氮作用, 其微弱的固氮量是结皮中混生的少量蓝细菌或地衣所致。  相似文献   
222.
腾格里沙漠东南缘生物土壤结皮的固氮潜力   总被引:2,自引:0,他引:2  
以腾格里沙漠东南缘广泛分布的3类典型生物土壤结皮(藻类结皮、地衣结皮和藓类结皮)为研究对象,在野外环境下连续一年(2010年6月至2011年5月)测定了不同类型结皮的固氮潜力、季节变化,及其对环境因子的响应特征.结果表明:整个试验期间,藻类、地衣和藓类结皮的固氮活性分别为14~133、20~101和4~28 mol·m-2·h-1,差异显著,这种差异主要是由结皮种类组成的差异所致.3类结皮固氮活性对环境因子的响应特征基本一致.3类结皮固氮活性与降水量关系不显著,但与试验前3天小于3 mm的降水量均呈显著的正相关关系,说明该地区3类结皮在3 mm降水条件下即可达到最大固氮速率.3类结皮固氮活性与试验期温度均呈显著的二次函数关系,随气温升高均呈先上升后下降的趋势,藻类和地衣结皮的固氮活性在超过30 ℃后即迅速下降,而藓类结皮的固氮活性在超过25 ℃后即开始下降,说明不同类型结皮具有不同的固氮适宜温度区间.3类结皮固氮活性的季节变化均表现为秋季>春季>夏季>冬季,夏季高温和冬季低温抑制了结皮固氮酶活性,而春末秋初适宜的水热条件促进了其固氮活性的提高,结皮固氮活性的季节变化主要受水热因子的共同调控.温带荒漠区生物土壤结皮在湿润条件下全年均具有固氮能力,环境因子对其氮固定的控制作用层次分明,水分是影响其固氮速率和持续时间的关键因子,在水分和碳源充足的条件下,温度则是制约其固氮能力的主要因子.  相似文献   
223.
Abstract. We studied the floristic composition of lignicolous cryptogams (i.e. bryophytes and lichens inhabiting decaying wood) in the old-growth coniferous forests of southern coastal British Columbia. The composition of the cryptogams was related to forest communities (described by vegetation units using forest floor cryptogams and vascular plants) and regional climates (described by biogeoclimatic zones). The study is based on a total of 247 sample plots, each of 0.04 ha in size. The plots were located in three different biogeoclimatic zones and were classified into 12 alliances and four orders in a previous study. We used indicator species analysis to determine cryptogam indicator species for each vegetation unit and biogeoclimatic zone, and used similarity analysis and multi-variate analyses (discriminant analysis and detrended correspondence analysis) to detect differences in the floristic composition of the cryptogams among sample plots, vegetation units, and biogeoclimatic zones. Most of the cryptogams in this study had a narrow distribution, and only < 5% of the species were present across all the vegetation units and biogeoclimatic zones. The overall means of Jaccard coefficients between two sample plots from the same vegetation unit (alliance or order) or biogeoclimatic zone were significantly higher (P < 0.05) than those from different vegetation units or biogeoclimatic zones. The difference in the mean Jaccard coefficients within- and between-units was highest for zones. The results of detrended correspondence analysis and discriminant analysis suggest that the composition of lignicolous cryptogams changes with the change in the floristic composition of forest floor vegetation. When the first axes of detrended correspondence analysis were compared, the Pearson's correlation coefficients between the first axes of lignicolous cryptogams and forest floor vascular plants and between the first axes of lignicolous cryptogams and forest floor cryptogams were 0.78 and 0.87, respectively. The degree of correspondence in the composition of lignicolous cryptogams and forest floor vegetation increased from alliance to order to biogeoclimatic zone. This trend suggests that the floristic composition of lignicolous cryptogams is influenced at the community level mainly by edaphic conditions and at the regional level by climatic conditions.  相似文献   
224.
Effect of microbiotic soil surface crusts on emergence of vascular plants   总被引:12,自引:0,他引:12  
Prasse  Rüdiger  Bornkamm  Reinhard 《Plant Ecology》2000,150(1-2):65-75
Microbiotic crusts are a common and widespread feature of arid and semi-arid landscapes. Their effect on vascular plant success has been discussed controversially. However, only very few field studies have yet tried to experimentally investigate the effect of microbiotic crusts on vascular plant establishment.In this study we investigate the influence of cyanobacteria dominated microbiotic soil surface crust on vascular plants in a desert sand dune area by using a series of manipulative experiments. Crusts were disturbed and removed and density response to these treatments was monitored during the two following years.Emergence densities of vascular plants were considerably higher when crusts were removed and destroyed. This effect was particularly pronounced when the disturbances were applied before the main seed dispersal period. By experimentally preventing seed dispersal into disturbed areas we could show that undisturbed crusts reduce the probability for seeds to come to rest. This indicates that soil surface roughness is a major determinant for the establishment of vascular plants in the study area. We conclude that small-scale and well-timed disturbances of microbiotic crusts in arid lands may increase vascular plant establishment probabilities. A potential feedback process of long-term vegetation dynamics is suggested: disturbance of microbiotic crusts results in higher numbers of emerging plants, which in turn represent a rough seed-trapping element leading to a further increase in densities in consecutive years.  相似文献   
225.
《Journal of bryology》2013,35(3):180-184
Abstract

Despite the genus Distichophyllum having been revised recently for the Moss Flora of China, upon examination of a wide range of both Chinese and non-Chinese material a distinct new species was found among existing specimens collected from China. The new species, Distichophyllum chenii, is described based on specimens previously misidentified and reported as Distichophyllum cirratum var. cirratum. Published illustrations of D. cirratum var. cirratum based on a misidentified collection of D. collenchymatosum are highlighted to avoid further future taxonomic confusion.  相似文献   
226.
We have used both steady electric fields, and gradients of the divalent ionophore, A23187, to control the point at which rhizoids emerge from spores of the common moss Funaria hygrometrica. The spores were grown in a medium containing calcium nitrate as the only major salt. Spores tend to form rhizoids towards the positive electrode, with a half maximal response to a difference of 4–8 mV across each cell. They also tend to form rhizoids towards the end of higher ionophore concentration in response to A23187 gradients. Both of these responses are the same at pH 5.5 and 8.0. Our tentative explanation is that Funaria spores tend to form rhizoids where most calcium enters. However, the point of chloronema emergence is scarcely affected by steady fields of up to 45 mV/cell. Moreover, when steady fields are applied across already developed rhizoids or chloronemata, their subsequent growth is directed towards the negative electrode in both cases, with rhizoids giving a 50% response at only 3—5 mV/cell, and chloronemata being less responsive.From Tsung-Hsien Chen's Ph.D. thesis, Purdue University  相似文献   
227.
Biological soil crusts (biocrusts) are crucial components of dryland ecosystems, but they are slow to recover following disturbance. Herein, we evaluated several methods for restoring lichen‐moss biocrusts that included factorial applications of moss fragments in a water‐slurry (1) with and without lichen fragments (to restore biocrust taxonomic structure), (2) with and without clay (to facilitate establishment), and (3) with and without jute ground cloth (to facilitate establishment). Three and four years after inoculation, moss and lichen cover was up to five and eight times higher on jute ground cloth than on bare ground, respectively. Lichen cover was six times higher in plots where lichen fragments were added. Clay amendments did not increase moss or lichen establishment. To understand the effects of biocrust recovery on soil properties, we measured soil inorganic nitrogen, microbial biomass carbon, and soil water availability in restoration and control plots. Restored biocrusts decreased inorganic NH4‐N availability by 67% when compared to controls 3 years after inoculation, but did not influence the availability of inorganic NO3‐N, soil water, or microbial biomass carbon. Our results demonstrate that adding a biocrust inoculant to jute ground cloth can expedite recovery of lichen‐moss biocrust and reestablish its influence on soil properties within a few years.  相似文献   
228.
This work aimed to define the molecular and chemical signature of a S. palustre clone developed in the framework of the EU-FP7 Mossclone project to improve the standardization and reliability of the moss-bag technique. The molecular characterization was performed by a set of DNA molecular markers (RAPD, ISJ, PCR-RFLP, sequencing and microsatellites) to tag the clone produced within the project. Molecular characterization also provided new DNA markers that can be applied in systematic analyses of Sphagnum, and gave new insights to implement well established techniques. The elemental composition of the clone was measured by ICP-MS analysis of 54 major and trace elements, with and without commonly applied pre-exposure treatments (oven devitalization and EDTA washing). Concentrations of almost all analyzed elements were significantly lower (from 10 to 100 times) in the clone than in conspecific field moss, apart from some elements (K, Mo, P and Na) deriving from the culture medium or EDTA treatment. Oven devitalization and EDTA washing did not significantly affect the clone composition. A comparison between the elemental composition of the clone with that of naturally growing Sphagnum species proved the particularly low elemental content of the clone. Therefore, in view of a rigorously standardized moss-bag protocol for the monitoring of persistent atmospheric pollutants, the use of the S. palustre clone, a biomaterial with very low and constant element composition, and homogenous morphological characteristics is strongly recommended.  相似文献   
229.
程才  李玉杰  张远东  高敏  李晓娜 《生态学报》2020,40(24):9234-9244
苔藓结皮是石漠化生态系统的重要地表覆被物,但其在土壤养分累积和元素循环过程中的作用尚不明确。以我国贵州典型喀斯特高原峡谷石漠化区-花江大峡谷两岸不同等级石漠化生境下的苔藓结皮及其覆被土壤为研究对象,研究了苔藓结皮覆被对土壤养分及生态化学计量特征的影响。结果表明:(1)苔藓结皮层养分含量显著高于下层土壤,结皮覆被土壤有机碳(SOC)、全氮(TN)、全磷(TP)、全钾(TK)、碱解氮(AN)、速效磷(AP)、速效钾(AK)平均含量分别为25.95、3.05、1.00、5.10 g/kg和189.61、1.59、275.10 mg/kg,较无结皮覆被的裸土分别增加46.08%、26.50%、53.62%、20.25%、25.24%、110.47%和83.76%。(2)苔藓结皮覆被土壤C/N、C/K、P/K显著高于裸土,且随土层加深而递减;N/P显著低于裸土,且随土层加深而升高。(3)苔藓结皮覆被土壤养分恢复指数为33.16%-72.48%,呈现随石漠化等级升高而增加的趋势,中度和强度石漠化阶段较无石漠化阶段分别增加83.26%和118.58。本研究表明苔藓结皮能有效促进土壤养分累积,加速石漠化土壤养分恢复进程,可作为补充手段联合其它生态恢复措施共同推动石漠化地区的生态恢复与重建。  相似文献   
230.
高寒沙区生物土壤结皮覆盖土壤碳释放动态   总被引:3,自引:3,他引:0  
生物土壤结皮广泛分布于荒漠生态系统,能够通过自身的呼吸作用影响土壤碳释放以及区域碳循环过程。本研究在具有典型高寒沙区气候特征的青藏高原东北部(青海共和盆地),以广泛分布于人工植被恢复区的藻类和藓类结皮为研究对象,裸地为对照,观测了裸地与两种类型生物土壤结皮去除和覆盖土壤碳释放速率的日动态和生长季动态规律,探讨生物土壤结皮对土壤碳释放量的影响。结果表明:生物土壤结皮去除和覆盖土壤碳释放速率日动态和生长季动态特征与裸地一致,均呈“单峰”曲线。生物土壤结皮覆盖土壤的日最大碳释放速率出现于13:00左右,裸地与去除结皮土壤的日峰值均出现于15:00左右,生物土壤结皮的存在使土壤碳释放速率的日峰值出现时间提前2h左右,各观测类型生长季内碳释放速率最大值均出现在8月。在相对干旱年份(2017),藻类和苔藓结皮覆盖导致土壤碳释放量分别增加了22.07%和85.61%,其中,藻类和苔藓结皮层碳释放量占增加量的67.60%和25.76%;而在相对湿润年份(2018),藻类和苔藓结皮覆盖导致土壤碳释放量分别增加了139.37%和290.53%,二者结皮层碳释放量分别占增加量的69.09%和45.59%,生物土壤结皮发育促进了土壤的碳释放。温度对土壤碳释放变化的贡献率为48.89%,是高寒沙区土壤碳释放日动态变化的关键驱动因子。因此,在核算荒漠生态系统碳交换过程中,应充分考虑各区域不同类型生物土壤结皮对土壤碳释放产生的影响。  相似文献   
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