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1.
  1. Freshwater communities are threatened by the conversion of natural landscapes for urban and agricultural purposes. Changes to land use may disrupt stream nutrient and geomorphological processes and reduce water quality, increase sedimentation, and decrease habitat heterogeneity eventually leading to species loss and decreases in ecosystem productivity. Endemic species are frequently at greater risk of habitat-mediated fragmentation and extirpation due to their constrained distributions.
  2. The Kanawha darter (Etheostoma kanawhae) is an understudied fish endemic to the New River Drainage in North Carolina and Virginia, USA. To investigate the potential effect(s) of land-use change on Kanawha darters, naïve occupancy was modelled using instream habitat characteristics and upstream forest cover.
  3. Generalized linear models revealed that instream habitat and forest cover are reliable predictors of Kanawha darter site occupancy. Specifically, models demonstrated that occupancy increased in reaches with reduced stream width, velocity, and bedrock substrate but higher concentrations of coarse woody material. Kanawha darter occupancy was also positively associated with the extent of forest cover in upstream catchments.
  4. Although Kanawha darters are not currently considered imperilled, most populations occurred in isolated reaches separated by large sections of unoccupied habitat. Continuing ex-urban development in riparian zones is likely to be the primary threat to Kanawha darters and other endemic species in this catchment. Resource managers and stakeholders should preserve forest cover in headwaters and occupied tributaries and protect or restore riparian zones along the main-stem South and North Forks of the New River to preserve high-quality habitat and enhance connectivity among isolated Kanawha darter populations.
  5. As human populations in montane regions continue to grow, there is a need to understand how land-use change affects endemic freshwater species. This study further supports the importance of retaining forest cover as an effective strategy for protecting and restoring populations of endemic fishes in high-gradient streams.
  相似文献   
2.
任军  石遥  刘方  田蓉  刘兴 《草业学报》2021,30(8):86-97
为明确锰矿废渣堆场重金属污染及优势草本植物重金属吸收特征,对贵州省典型锰矿废渣堆场的重金属污染风险进行了评价,并调查研究了锰矿废渣堆场草本植物的类群及重金属吸收特征。共采集优势草本植物18种,隶属11科18属,菊科和禾本科为优势科。对18种草本植物体地上部、地下部及其生长基质中Cr、Ni、Cu、Zn、Cd、Pb和Mn 7种重金属元素进行了测定,结果显示,锰矿废渣堆场重金属污染空间变异较大,Mn污染最严重,其次是Cd,属于Mn、Cd复合型污染。计算了草本植物对7种重金属元素的富集系数、转运系数,并对18种草本植物进行了聚类分析,综合分析了草本植物重金属吸收特征,结果显示,看麦娘对Cd富集系数达22.49,对Cd有较强的富集能力;五节芒、商陆对Cr、Ni具有较强的富集能力和转运能力;风毛菊和夏枯草对锰矿废渣区多种重金属均表现出较强的富集能力和转运能力。研究结果表明,锰矿废渣堆场主要为Mn和Cd污染,矿区本土自然生长的优势草本植物可作为生态修复的首选植物。  相似文献   
3.
针对我国长江中下游地区因梅雨季节阴雨时间长、降水量大而集中常常引发涝灾和造成棉花渍害的现象,总结提出了一系列棉花防涝防渍及灾后田间管理技术措施与要求,以期为长江中下游地区棉农提供技术指导,促进当地棉花产业的发展和植棉效益的提高。  相似文献   
4.
为了改良天津地区养殖黄颡鱼种质,提高经济和生态效益,本研究于2019年引进杂交黄颡鱼新品种‘黄优1号’,采用性状比较的方法,系统研究了试验鱼的生长、抗病和产氮、磷情况。结果表明:杂交黄颡鱼幼鱼生长速度、增重率显著高于普通黄颡鱼(P<0.05),饵料系数低于普通黄颡鱼,但差异不明显(P>0.05);杂交黄颡鱼的主要死亡病因为体表溃烂和烂鳃,体表溃烂发病情况与普通黄颡鱼无明显差别(P>0.05),烂鳃发病情况明显重于普通黄颡鱼(P<0.05),而其他疾病发病情况明显小于普通黄颡鱼(P<0.05),试验总成活率显著高于普通黄颡鱼;实验鱼体重增加1 kg,杂交黄颡鱼实验组尾水中氨氮、亚硝酸盐、总磷的增量均显著低于普通黄颡鱼(P<0.05),总氮的增量虽然也小于普通黄颡鱼实验组,但比较结果差异不显著(P>0.05)。因此,本研究认为杂交黄颡鱼‘黄优1号’的生长、抗病和单位增重产氮、磷量等性能较普通黄颡鱼优良,适合在天津地区推广养殖。  相似文献   
5.
宁夏具备葡萄酒产业发展所需的风土条件、优良产品品质和产业支持政策等优势,但同时也面临着一系列的问题与挑战,如产业发展成本较高、产区龙头企业数量偏少、产区和产品品牌的知名度亟待提升等.今后的发展需从切实降低产业发展成本,抓促产区龙头企业长足发展,破解葡萄酒企业投融资困境,构建规范高效的葡萄酒产业人才培养体系,系统实施宁夏葡萄酒产区品牌塑造工程等方面进一步推动宁夏葡萄酒产业高质量发展.  相似文献   
6.
竹类植物在黄河三角洲盐碱地生态修复中的应用进展   总被引:1,自引:1,他引:0  
黄河三角洲地区受地势低平、海水易内侵、蒸发量大于降雨量等因素影响,形成了大量盐碱地,对该地区盐碱地进行生态修复具有重要的生态安全意义。文章综述了黄河三角洲盐碱地成因、盐分主要构成、盐胁迫对植物尤其竹类植物的影响,以及竹类植物在滨海盐碱地应用种植情况,认为竹类植物具有很好的观赏性和生态及经济价值,在滨海盐碱地有种植先例和研究报告,种植技术成熟,可以通过筛选、引种、驯化耐盐碱竹类植物,在黄河三角洲盐碱地生态修复中应用。  相似文献   
7.
Reservoirs are mostly managed at local scales as spatially independent units. A basin‐scale perspective may increase awareness at a broader scope and generate insight not evident at local scales. We examined the array of reservoir attributes and fisheries in the Mississippi Basin to identify management opportunities. The basin is the third largest in the world and includes over 1,700 reservoirs >100 ha, the most of any river basin. Our bird's‐eye view shows a piecemeal approach where reservoirs are mostly administered at the local level. Basin‐wide or catchment coordination to holistically address problems that recur across the basin is mostly lacking. A basin‐wide coordination arrangement could facilitate various facets of reservoir management. We reviewed governance arrangements in major river basins across the globe and concluded that the basin‐wide administrative layer we encourage for the Mississippi Basin may already exist in some basins but may not be directly applicable everywhere.  相似文献   
8.
[目的] 对河南省郑州市主城区城市发展与河网演变间的相互作用进行分析,为合理调节城市水资源提供科学依据。[方法] 以郑州市主城区为研究对象,基于1994,2002,2009和2019年遥感影像数据,计算河网特征指数并建立耦合协调模型,定量分析河网演变及其与城市发展间的相互作用关系。[结果] 城市发展与河网演变间的相互影响表现在城市发展对河网的破坏与促进作用和河网对城市发展的支撑与约束作用。城市发展导致河网密度降低,走向单一,结构简化,但河网是城市形态的骨架并提供物质基础,当河网承受能力趋于阈值时会反向约束城市发展,进而引起对河网的修复。郑州市主城区城市发展与河网耦合协调度变化可分为波动、磨合和稳发展3个阶段:初期城市的高强度发展使两者协调度迅速下降;中期开始注重河网的修护,人工水系的建设巩固了河网结构,期间受地形影响,城区主体避开西南丘陵地区向东部平原地区扩展;后期水系的治理与修复成效显著,协调度提升到初级协调等级并有逐步提升趋势。[结论] 人工水利措施的干预可缓解城市发展对河网的影响,但河网的修复成效落后于城市发展进程,仍需加强对河网的修复与保护。  相似文献   
9.
LIU Zhaogang 《干旱区科学》2021,13(11):1089-1102
Drylands refer to regions with an aridity index lower than 0.65, and billions of people depend on services provided by the critically important ecosystems in these areas. How ecosystem carbon exchange in global drylands (CED) occurs and how climate change affects CED are critical to the global carbon cycle. Here, we performed a comprehensive bibliometric study on the fields of annual publications, marked journals, marked institutions, marked countries, popular keywords, and their temporal evolution to understand the temporal trends of CED research over the past 30 a (1991-2020). We found that the annual scientific publications on CED research increased significantly at an average growth rate of 7.93%. Agricultural Water Management ranked first among all journals and had the most citations. The ten most productive institutions were centered on drylands in America, China, and Australia that had the largest number and most citations of publications on CED research. "Climate change" and climate-related (such as "drought", "precipitation", "temperature", and "rainfall") research were found to be the most popular study areas. Keywords were classified into five clusters, indicating the five main research focuses on CED studies: hydrological cycle, effects of climate change, carbon and water balance, productivity, and carbon-nitrogen-phosphorous coupling cycles. The temporal evolution of keywords further showed that the areas of focus on CED studies were transformed from classical pedology and agricultural research to applied ecology and then to global change ecological research over the past 30 a. In future CED studies, basic themes (such as "water", "yield", and "salinity") and motor themes (such as "climate change", "sustainability", and "remote sensing") will be the focus of research on CED. In particular, multiple integrated methods to understand climate change and ecosystem sustainability are potential new research trends and hotspots.  相似文献   
10.
Atlantic salmon Salmo salar L. and brown trout Salmo trutta fario L. are species of high socio-economic and ecological value. Declining populations make them target species of fisheries management. This paper reviews the direct effects of deficient longitudinal connectivity, changes in discharge, high water temperatures, oxygen depletion, changes in water chemistry and increasing loads of fine sediment on the critical life stages of spawning, egg incubation and emergence. It further provides an overview about the basic autecological requirements of Atlantic salmon and brown trout and summarises important thresholds of physico-chemical tolerances. This collection of information provides important baselines for assessing historical, ongoing and new threats relevant for the management of both species in fresh waters. Critical early-life stages of both species are almost identical, creating synergies in conservation and restoration. Seaward-migrating forms are exposed to further stressors, but improving starting conditions can also greatly improve their resilience.  相似文献   
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