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41.
Microbial communities at soil-stream interfaces may be particularly important in regulating amounts and forms of nutrients
that leave upland soils and enter stream ecosystems. While microbial communities are thought to be responsible for key nutrient
transformations within near-stream sediments, there is relatively little mechanistic information on factors that control microbial
activities in these areas. In this study, we examine the roles of dissolved organic carbon (DOC) vs. particulate organic carbon
(POC) as potential controls on rates of bacterial productivity (measured as incorporation of [3H]thymidine into bacterial
DNA) and amounts of bacterial biomass (measured as fatty acid yield) in sediments along a transect perpendicular to a soil–stream
interface. We hypothesized that spatial patterns in bacterial productivity would vary in response to strong and persistent
patterns in pore-water concentrations of DOC that were observed along a soil-stream transect throughout a 2-year period. Our
results did not support the existence of such a link between pore-water DOC and bacterial productivity. In contrast, we found
bacterial productivity and biomass were related to small-scale spatial variations in sediment POC on 3 of 4 sample dates.
While our results indicate that total bacterial productivity in near-stream sediments is not consistently linked to spatial
variations in pore-water DOC, it is likely that DOC and POC are not mutually exclusive and the relative contribution of DOC
and POC to sedimentary microbes varies temporally and spatially in different riparian habitats.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
42.
Erik J. Szkokan‐Emilson Brian W. Kielstra Shelley E. Arnott Shaun A. Watmough John M. Gunn Andrew J. Tanentzap 《Global Change Biology》2017,23(1):117-126
Aquatic ecosystems depend on terrestrial organic matter (tOM) to regulate many functions, such as food web production and water quality, but an increasing frequency and intensity of drought across northern ecosystems is threatening to disrupt this important connection. Dry conditions reduce tOM export and can also oxidize wetland soils and release stored contaminants into stream flow after rainfall. Here, we test whether these disruptions to terrestrial–aquatic linkages occur during mild summer drought and whether this affects biota across 43 littoral zone sites in 11 lakes. We use copper (Cu) and nickel (Ni) as representative contaminants, and measure abundances of Hyalella azteca, a widespread indicator of ecosystem condition and food web production. We found that tOM concentrations were reduced but correlations with organic soils (wetlands and riparian forests) persisted during mild drought and were sufficient to suppress labile Cu concentrations. Wetlands, however, also became a source of labile Ni to littoral zones, which was linked to reduced abundances of the amphipod H. azteca, on average by up to 70 times across the range of observed Ni concentrations. This reveals a duality in the functional linkage of organic soils to aquatic ecosystems whereby they can help buffer the effects of hydrologic disconnection between catchments and lakes but at the cost of biogeochemical changes that release stored contaminants. As evidence of the toxicity of trace contaminant concentrations and their global dispersion grows, sustaining links among forests, organic soils and aquatic ecosystems in a changing climate will become increasingly important. 相似文献
43.
Differential effects of changes in spectral irradiance on photoacclimation,primary productivity and growth in Rhodomonas salina (Cryptophyceae) and Skeletonema costatum (Bacillariophyceae) in simulated blackwater environments 下载免费PDF全文
The underwater light field in blackwater environments is strongly skewed toward the red end of the electromagnetic spectrum due to blue light absorption by colored dissolved organic matter (CDOM). Exposure of phytoplankton to full spectrum irradiance occurs only when cells are mixed up to the surface. We studied the potential effects of mixing‐induced changes in spectral irradiance on photoacclimation, primary productivity and growth in cultures of the cryptophyte Rhodomonas salina and the diatom Skeletonema costatum. We found that these taxa have very different photoacclimation strategies. While S. costatum showed classical complementary chromatic adaption, R. salina showed inverse chromatic adaptation, a strategy previously unknown in the cryptophytes. Transfer of R. salina to periodic full spectrum light (PFSL) significantly enhanced growth rate (μ) by 1.8 times and primary productivity from 0.88 to 1.35 mg C · (mg Chl?1) · h?1. Overall, R. salina was less dependent on PFSL than was S. costatum, showing higher μ and net primary productivity rates. In the high‐CDOM simulation, carbon metabolism of the diatom was impaired, leading to suppression of growth rate, short‐term 14C uptake and net primary production. Upon transfer to PFSL, μ of the diatom increased by up to 3‐fold and carbon fixation from 2.4 to 6.0 mg C · (mg Chl?1) · h?1. Thus, a lack of PFSL differentially impairs primarily CO2‐fixation and/or carbon metabolism, which, in turn, may determine which phytoplankton dominate the community in blackwater habitats and may therefore influence the structure and function of these ecosystems. 相似文献
44.
气囊(gas vesicles,GVs)是一种存在于蓝藻及古菌等微生物中调节浮力的类细胞器纳米结构,由蛋白质外壳包裹气体组成。近年来的研究表明,气囊具有作为超声分子影像探针的潜力。然而,气囊的充放气机制并不明确,限制了生物合成超声分子影像探针的保存和气体更换。本研究发现环境pH值是调节气囊充放气的一个重要因素。其不仅可以调节藻细胞内的气囊充放气进而使微囊藻呈现不同的漂浮状态,还可对提纯的气囊充放气进行体外调节,且该调节过程可逆。该机制的阐明为生物合成超声分子影像探针的大规模生产和保存,特别对气囊中的气体进行更换以满足不同的诊疗需求提供了技术支持,助力生物合成超声造影剂在疾病诊疗中的应用。 相似文献
45.
Emily C. Funk Catriona Breen Bhargav D. Sanketi Natasza Kurpios Amy McCune 《Evolution & development》2020,22(5):384-402
The key to understanding the evolutionary origin and modification of phenotypic traits is revealing the responsible underlying developmental genetic mechanisms. An important organismal trait of ray‐finned fishes is the gas bladder, an air‐filled organ that, in most fishes, functions for buoyancy control, and is homologous to the lungs of lobe‐finned fishes. The critical morphological difference between lungs and gas bladders, which otherwise share many characteristics, is the general direction of budding during development. Lungs bud ventrally and the gas bladder buds dorsally from the anterior foregut. We investigated the genetic underpinnings of this ventral‐to‐dorsal shift in budding direction by studying the expression patterns of known lung genes (Nkx2.1, Sox2, and Bmp4) during the development of lungs or gas bladder in three fishes: bichir, bowfin, and zebrafish. Nkx2.1 and Sox2 show reciprocal dorsoventral expression patterns during tetrapod lung development and are important regulators of lung budding; their expression during bichir lung development is conserved. Surprisingly, we find during gas bladder development, Nkx2.1 and Sox2 expression are inconsistent with the hypothesis that they regulate the direction of gas bladder budding. Bmp4 is expressed ventrally during lung development in bichir, akin to the pattern during mouse lung development. During gas bladder development, Bmp4 is not expressed. However, Bmp16, a paralogue of Bmp4, is expressed dorsally in the developing gas bladder of bowfin. Bmp16 is present in the known genomes of Actinopteri (ray‐finned fishes excluding bichir) but absent from mammalian genomes. We hypothesize that Bmp16 was recruited to regulate gas bladder development in the Actinopteri in place of Bmp4. 相似文献
46.
S. LUYSSAERT P. CIAIS S. L. PIAO E.‐D. SCHULZE M. JUNG S. ZAEHLE M. J. SCHELHAAS M. REICHSTEIN G. CHURKINA D. PAPALE G. ABRIL C. BEER J. GRACE D. LOUSTAU G. MATTEUCCI F. MAGNANI G. J. NABUURS H. VERBEECK M. SULKAVA G. R.
Van Der WERF I. A. JANSSENS members of the CARBOEUROPE‐IP SYNTHESIS TEAM 《Global Change Biology》2010,16(5):1429-1450
We present a new synthesis, based on a suite of complementary approaches, of the primary production and carbon sink in forests of the 25 member states of the European Union (EU‐25) during 1990–2005. Upscaled terrestrial observations and model‐based approaches agree within 25% on the mean net primary production (NPP) of forests, i.e. 520±75 g C m?2 yr?1 over a forest area of 1.32 × 106 km2 to 1.55 × 106 km2 (EU‐25). New estimates of the mean long‐term carbon forest sink (net biome production, NBP) of EU‐25 forests amounts 75±20 g C m?2 yr?1. The ratio of NBP to NPP is 0.15±0.05. Estimates of the fate of the carbon inputs via NPP in wood harvests, forest fires, losses to lakes and rivers and heterotrophic respiration remain uncertain, which explains the considerable uncertainty of NBP. Inventory‐based assessments and assumptions suggest that 29±15% of the NBP (i.e., 22 g C m?2 yr?1) is sequestered in the forest soil, but large uncertainty remains concerning the drivers and future of the soil organic carbon. The remaining 71±15% of the NBP (i.e., 53 g C m?2 yr?1) is realized as woody biomass increments. In the EU‐25, the relatively large forest NBP is thought to be the result of a sustained difference between NPP, which increased during the past decades, and carbon losses primarily by harvest and heterotrophic respiration, which increased less over the same period. 相似文献
47.
H. Llaneza Coalla J.M. Blanco FernándezM.A. Morís Morán M.R. López Bobo 《Bioresource technology》2009,100(17):3843-3847
In view of the pressing problem that appears in our region (Asturias, north of Spain) with the residues from the cider production, it was decided to test this kind of material as a co-substrate joint with slaughterhouse waste in a laboratory unit. 相似文献
48.
49.
Chloramphenicol acetyl transferase (CAT) gene was used as a reporter gene to assess the conditions for polyethylene glycol (PEG)-mediated transfection of kiwifruit protoplasts. The effect of plasmid concentration and the presence of carrier DNA were each assessed by analysing CAT activity in transfected protoplasts using thin-layer chromatography (TLC) autoradiographic detection of acetylated chloramphenicol. A gas chromatography (GC) and gas chromatography-mass spectrometry (GC-MS) non-radioactive method was developed for monitoring CAT gene activity. This method provides a high speed of analysis (30 min) and precise means of detecting acetylated products at the nanomolar level, enabling quantification at very low transfection rates. Using this method we optimized plasmid and PEG concentration and also assessed the effect of heat shock on transfection. The best CAT activity was obtained using 30% polyethylene glycol 4000 and by submitting protoplasts to heat shock (45 °C, 5 min) prior to transfection. 相似文献
50.
沙枣(Elaeagnus angustifolia)和孩儿拳头(Grewia.biloba G.Don var.parviflora)幼苗气体交换特征与保护酶对干旱胁迫的响应 总被引:4,自引:0,他引:4
以沙枣和孩儿拳头2年生盆栽苗为材料,采用称重控水的方法设置4个土壤含水量梯度(CK、T1、T2、T3),研究不同干旱胁迫对沙枣和孩儿拳头气体交换特征与保护酶的影响.结果显示:(1)干旱胁迫不仅引起两物种净光合速率、蒸腾速率、气孔导度、胞间 CO2 浓度的下降,而且使其日变化曲线在一定程度上发生改变;在轻度(T1)和中度胁迫(T2)下,两物种净光合速率下降主要是由气孔因素引起的,重度胁迫(T3)下,净光合速率下降主要是非气孔因素引起的.(2)随着干旱胁迫增加,沙枣瞬时水分利用效率呈现增加下降再增加趋势,孩儿拳头呈现下降趋势;两物种表观光能利用效率显著下降,重度胁迫下(T3),下降率达50%左右,孩儿拳头表观光能利用效率对干旱胁迫比较敏感;两物种表观CO2利用效率总体呈现下降趋势,沙枣表观CO2利用效率日进程经历了单峰(T1)、双峰(T2)、单峰(T3)的变化,孩儿拳头各处理的表观CO2利用效率日变化均呈现单峰曲线.(3)随着干旱胁迫加剧,两物种叶片的超氧化物歧化酶(SOD)、过氧化物酶(POD)、过氧化氢酶(CAT)活性先升高后降低,土壤含水量高于12.8%时,两物种SOD酶活性均高于CK,随着土壤含水量的降低,SOD酶活性低于CK;重度胁迫下(T3),沙枣POD酶活性虽然有所下降,但仍高于CK,而孩儿拳头则和CK无显著差异;两物种CAT酶活性在重度胁迫下(T3)显著低于CK;随着干旱胁迫程度的增加,两物种叶片中的丙二醛(MDA)含量均呈现升高趋势,孩儿拳头脂质过氧化程度受干旱胁迫的影响较大. 相似文献