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1.
于2012年11月中旬-2013年3月中旬,分3个关键雪被时期(雪被形成期、稳定期和融化期)采集川西亚高山冷杉林内不同厚度雪被处理(浅雪被、中度厚度雪被和厚雪被)的土样,测定土壤活性氮库、土壤硝化和氮矿化潜力以期了解高寒森林土壤氮素生态过程.结果表明:冬季土壤温度在一定程度上随着雪被厚度的增加而升高;冬季土壤活性氮库(铵态氮、硝态氮、微生物生物量氮和可溶性有机氮)存在明显的动态变化,各形态土壤氮库都以雪被融化期最高,而土壤氮硝化潜力(7.36-8.44 mg kg-1 d-1)和矿化潜力(7.22-8.23 mg kg-1 d-1)则以雪被融化期最小;硝态氮是冬季土壤无机氮库的主体,占无机氮总量的95%左右;雪被厚度对各土壤氮组分总体影响不大.亚高山森林土壤活性氮库及氮矿化随雪被进程发生显著变化,可见雪被覆盖可能改变亚高山森林冬季土壤活性氮库及土壤氮转化时间动态格局.  相似文献   

2.
选取了海北高寒草甸、那曲高寒草原和当雄高寒湿地3种典型高寒草地生态系统类型为研究对象,采集了表层0~10 cm土壤,在实验室内进行可控温度下的碳矿化培养实验。结果表明,青藏高原土壤碳矿化在不同高寒草地类型间存在显著差异(P≤0.05)。在较低的温度下,高寒湿地土壤的碳矿化速率显著低于高寒草甸土壤,而温度在15℃左右时,高寒湿地土的碳矿化速率略高于高寒草甸土壤,当温度处于较高的水平时(〉20℃),高寒湿地土壤碳矿化速率远高于高寒草甸土壤,高寒湿地土壤碳矿化的Q10显著大于高寒草甸。无论是低温还是较高的温度,高寒草原土壤碳矿化速率最低,数值范围也最窄。高寒草甸和高寒湿地土壤碳矿化均受温度的显著影响(P≤0.05),其速率均跟温度呈现一级指数函数方程关系,而高寒草原土壤碳矿化速率与温度间未呈现明显的函数关系,但不同温度间的土壤碳矿化速率存在显著差异。氮素输入对高寒草甸和高寒湿地土壤碳矿化的影响不明显,但显著促进了高寒草原土壤碳矿化作用。  相似文献   

3.
在高山地区和高海拔地区,氮素是植物生命活动的主要限制因素之一。冬季,这类地区的土壤通常被雪被长时间覆盖。以往的研究证实,雪下土壤氮素动态在维持年际氮循环中起着重要作用。气候变化将改变生物地球化学循环,导致雪被覆盖状况发生改变,从而对冬季土壤氮素动态产生重要影响。然而,迄今为止,对气候变化极其敏感的青藏高原东缘雪下土壤物质转化过程的研究却很少。为了了解不同雪况下土壤矿质氮库水平和净氮矿化变化动态,2010年11~2011年4月在青藏高原东缘用PVC管原位培养土壤,通过人工控制雪被厚度和雪被持续时间的方法,设置不同积雪厚度和积雪周期的9个处理,分别测定其无机氮(NH4+-N和NO3--N)含量,并计算净氮矿化率。结果表明,雪被持续时间可对土壤温度的变化产生明显的影响;随着土壤覆雪厚度和雪被覆盖时间的增加,土壤含水量呈现增长的趋势。土壤无机氮以NH4+-N为主,占总无机氮的69%~86%,而NO3--N含量只占土壤总无机氮的14%~31%。深雪(100 cm和50 cm的积雪覆盖)降低了铵态氮含量,而净氮矿化率无明显变化。不同的积雪覆盖时间(60 d,90 d,150 d)并没有引起土壤氮库的显著变化,说明较早的降雪虽然使土壤有较高的温度和较少的冻融循环,但并不会改变土壤氮库的积累和释放。  相似文献   

4.
吴建国  苌伟  艾丽  常学向 《生态环境》2007,16(3):1000-1006
水热因素对土壤氮矿化的影响直接关系到陆地生态系统功能对气候变化的响应趋势。祁连山是青藏高原北沿的典型山地,对气候变化影响十分敏感和脆弱,为了定量确定祁连山土壤氮分解对水热因素变化的响应趋势,在人工气候箱内以正交试验设计方法培养土壤,分析了祁连山高寒草甸、山地森林、荒漠草原和干草原土壤氮矿化及其与温度、湿度和土层的关系。结果显示:以土壤氮矿化量极差计,海拔高度影响最大,其次是温度和湿度;以土壤氮矿化比例极差计,温度和海拔高度影响较大。海拔高度对土壤氮矿化量的影响显著(p<0.05)。除湿度外,其它因素对土壤氮矿化比例影响也达到显著程度(p<0.10)。35℃下土壤氮矿化比例显著比5℃下高,而不同湿度下土壤氮矿化及其矿化比例差异不显著(p<0.05)。海拔高度3000m和3300m处土壤氮矿化量比2800m和2200m处高,2800m处比2200m处高,3000m处土壤氮矿化比例显著比2200m和3300m处高(p<0.05)。森林和干旱草原土壤中氮矿化比例较高,荒漠草原和高寒草甸中较低。以土壤氮矿化速率计,5℃升高到15℃下和15℃升到25℃,Q10较低;以土壤氮矿化比例计,5℃升高到15℃下,Q10较高,15℃到25℃较低。研究结果说明高寒草甸和山地森林土壤氮矿化量较高,干旱草原和荒漠草原土壤氮矿化量较低;森林和干旱草原中土壤氮矿化比例较高,荒漠草原和高寒草甸中较低。  相似文献   

5.
土壤纤毛虫是土壤微型生物系统的重要组成部分,在生态系统的物质循环和能量流动中发挥着重要作用。研究青藏高原高寒草甸土壤纤毛虫群落的季节变化特征,有助于认识区域及全球变化对土壤动物群落结构及其多样性的影响,可为退化生态系统的恢复评价提供科学依据。于2015年4月、7月、9月和12月在甘南合作市附近的高寒草甸选取典型样地,采用"非淹没培养皿法"、"活体观察法"等测定土壤纤毛虫物种数和密度,同时测定了土壤含水量、土壤温度、光照度、pH值及土壤养分等相关环境因子。结果表明,春夏秋冬土壤环境因子变化有显著差异,4个季节分别检出纤毛虫97、141、105、78种,其中,旋毛纲(Spirotrichea)和裂口纲(Litostomatea)为优势类群。Shannon-Wiener指数、Simpson指数以及Pieluo指数均为春季相对较高,Margalef指数、物种数和丰度均为夏季最高,纤毛虫的垂直分布具有表聚性。土壤纤毛虫群落结构和环境因子的冗余分析表明,土壤温度、全磷含量、光照度和含水量等均影响了甘南高寒草甸土壤纤毛虫群落的分布,其中土壤温度是关键限制因子。该研究结果有助于深入理解和准确预测高寒草甸牧区的土壤纤毛虫在生态系统养分循环中生态功能的变化特征。  相似文献   

6.
川西亚高山3种典型森林土壤氮矿化特征   总被引:2,自引:0,他引:2  
采用室内培养法对川西亚高山3个典型森林群落(天然林、云杉人工林和桦木次生林)有机层和矿质层土壤铵态氮(NH_4~+-N)、硝态氮(NO_3~--N)积累量及净氮矿化速率进行测定.结果表明:培养4周后,天然林、云杉人工林和桦木次生林土壤有机层铵态氮含量分别增加356.85%、258.33%和176.81%,硝态氮含量分别增加872.92%、326.25%和120.32%,净氨化速率、净硝化速率和净氮矿化速率总体表现为天然林桦木次生林云杉人工林.方差分析表明,森林类型和土壤层次及其交互作用对土壤无机氮积累量和矿化速率均有显著影响.土壤净氮矿化速率和土壤初始化学性质之间存在显著相关关系.综上所述,森林转化显著影响川西亚高山森林土壤氮矿化潜力,主要体现在土壤有机层;川西亚高山土壤净氮矿化速率在很大程度上受控于底物数量和质量.  相似文献   

7.
胡霞  吴宁  王乾  吴彦 《生态环境学报》2012,(11):1789-1794
高山和高纬度地区,氮素是植物生命活动的主要限制元素之一。这类区域冬季往往被长时间的季节性雪被覆盖着。研究证实,寒冷而漫长的冬季雪被下土壤氮素在维持年际土壤氮循环中起着重要的作用,然而目前对气候变化极其敏感的青藏高原东缘雪下土壤物质转化过程的研究却很少。为了探索青藏高原东缘季节性雪被覆盖地区,冬季凋落物输入对土壤氮素转化过程的影响,2010年1—5月在青藏高原东缘(松潘卡卡沟地区)采用PVC原位培养管培养土壤,并对培养土壤进行不同的雪厚度(0、30、100 cm)处理和不同水平的凋落物添加(0、5、20 g鲜卑花叶片)处理,从实验开始后,每隔1个月采集各个处理的土壤,测定其无机氮(NH4+-N和NO3--N)含量,并计算净氮矿化率,以探讨冬季季节性雪被覆盖下不同碳供应水平对高山土壤氮转化过程的动态影响。研究发现,雪被覆盖能有效地绝缘大气和土壤,减少冻融交替的幅度和频次,并加速了土壤的净氮矿化。说明对于雪被覆盖的高山土壤而言冷季是氮素循环的关键时期。冬季一定厚度的积雪覆盖可通过调节整个土壤氮素的矿化水平,从而为来年春季高山植物的生长提供一个巨大的潜在氮库。添加大量凋落物显著增加了NO3--N含量,降低了NH4+-N含量,加速了土壤净氮矿化。暗示在具有高有机质含量的青藏高原东部地区,土壤微生物的生长和活性极有可能仍然受到低水平可利用碳的限制。  相似文献   

8.
凋落物质量和分解对中亚热带栲木荷林土壤氮矿化的影响   总被引:11,自引:2,他引:11  
用控温、控水室内培养方法,研究了中亚热带栲木荷常绿阔叶林和邻近柳杉人工针叶林凋落物的分解及其对栲木荷林土壤氮矿化的影响.结果表明:栲木荷阔叶林的凋落物失重率大于针阔混合凋落物的失重率,大于柳杉针叶纯林凋落物的失重率.所有凋落物失重率都与其初始氮含量呈显著负相关,和初始碳含量呈显著正相关,而与凋落物C/N比的相关性不强.不同凋落物处理下的土壤NO3--N含量差异显著(P<0.05,N=18),NH4 -N含量差异不显著(P>0.05,N=18),混合凋落物处理下的土壤NO3--N和NH4 -N含量最高,分别是224.21 mg kg-1和56.77 mg kg-1,其氮转化速率也最高,硝化、氨化、氮矿化速率分别为1.74 mg kg-1 d-1、0.36 mg kg-1 d-1和1.90mg kg-1 d-1.各凋落物处理下的土壤氮含量随时间变化的规律不一致.土壤氨化速率与土壤全氮呈显著正相关(r=0.843,P<0.05,N=21),与栲木荷林凋落物的失重率呈显著负相关(r=-0.997,P<0.05,N=21).图3表4参29  相似文献   

9.
狼毒对西藏高原高寒草甸退化的指示作用   总被引:1,自引:0,他引:1  
局部草甸退化是西藏高原面临的主要生态问题,狼毒在高寒退化草甸中的入侵、扩散也日益严重,已经成为退化草甸中主要的毒杂草之一.为了解狼毒对高寒草甸退化程度的指示作用,在西藏当雄县草原站选择3处不同退化程度的高寒草甸群落,调查植物群落组成,并测定各群落表层土壤的理化指标.结果显示:随着狼毒分布增加,草甸呈逐步退化的态势,一方面,草甸群落的优势物种组成从以牧草为主转变为以毒杂草为主,狼毒盖度、地上生物量及重要值逐渐增加,而禾本科、莎草科等优良牧草的盖度、地上生物量以及重要值逐渐降低;另一方面,草甸表层土壤表现出贫瘠化的趋势,土壤有机质、全氮含量、土壤含水量均显著降低,无机氮(硝态氮、氨态氮)也呈降低的趋势,而pH值、土壤容重则呈增加趋势.狼毒盖度及地上生物量与牧草地上生物量、土壤全氮、有机碳及土壤含水量呈显著的负相关(P0.05),而与土壤容重和pH值呈极显著正相关(P0.01).因此,较易测定的狼毒盖度及地上生物量能较好地指示当雄草原化草甸的退化程度,可作为判定草甸退化程度的指标.  相似文献   

10.
土壤微生物在陆地生物地球化学循环过程中起着非常重要的作用。为了探索青藏高原高寒草地类型地上植被特性和地下土壤环境与土壤微生物功能基因之间关系,以三江源国家公园高寒草原、高寒沼泽化草甸及高寒草甸3种典型草地类型为研究对象,利用基因芯片(GeoChip 5.0)技术测定其微生物功能基因丰度,并分析它们之间的差异及影响因素。结果表明:(1)3种草地类型地上群落结构和地下土壤环境存在差异性,其中高寒草原物种多样性指数、pH值较高,沼泽化草甸中土壤含水量、微生物量碳、地上生物量、土壤速效氮含量较高,高寒草甸中则是土壤微生物量氮含量较高;(2)3种高寒草地类型的碳循环、氮循环、磷循环、有机修复的土壤微生物功能基因丰度存在显著差异,其中这些功能基因的丰度在高寒沼泽化草甸最高,高寒草甸、高寒草原次之;(3)地上植物物种多样性虽对功能基因丰度变化的解释率(r2)在57.1%-61.2%之间,但统计学上不显著(P>0.05),而微生物基因丰度随地上生物量的增加而增加,且解释率(r2)为77.5%-80.0%(P<0.05)。在pH、土壤含水量、土壤微生物量等地下土壤环境因子中,pH对功能基因丰度存在显著影响(P<0.01)解释率在83.4%-87.5%间,且土壤微生物功能基因丰度随土壤pH的增加而降低;土壤含水量、土壤微生物量对土壤微生物功能基因丰度的解释率分别为81.9%-83.1%(P<0.05)和76.8%-86.2%(P<0.05),微生物功能基因丰度随这两者含量的增加呈上升趋势。进一步运用RDA分析发现,pH、土壤微生物量、地上生物量是影响微生物功能基因丰度的主要因子,其中土壤微生物量是土壤有机质的重要组成部分,土壤有机质又是通过地上植被凋落物沉积所得到的。因此,地上植被特性的自上而下控制因子影响了土壤环境中自下而上的控制因子,间接的影响了微生物功能基因丰度。由此得出,地上植被特性和地下土壤环境因子共同作用控制了微生物功能基因丰度使其出现差异性。  相似文献   

11.
In regions where snowfall historically has been a defining seasonal characteristic of the landscape, warming winters have reduced the depth, duration, and extent of snowpack. However, most management and conservation has focused on how aboveground wildlife will be affected by altered snow conditions, even though the majority of species that persist through the winter do so under the snowpack in a thermally stable refugium: the subnivium. Shortened winters, forest management practices, and winter recreation can alter subnivium conditions by increasing snow compaction and compromising thermal stability at the soil–snow interface. To help slow the loss of the subnivium in the face of rapidly changing winter conditions, we suggest managers adopt regional conservation plans for identifying threatened snow‐covered environments; measure and predict the effects land cover and habitat management has on local subnivium conditions; and control the timing and distribution of activities that disturb and compact snow cover (e.g., silvicultural practices, snow recreation, and road and trail maintenance). As a case study, we developed a spatially explicit model of subnivium presence in a working landscape of the Chequamegon National Forest, Wisconsin. We identified landscapes where winter recreation and management practices could threaten potentially important areas for subnivium persistence. Similar modeling approaches could inform management decisions related to subnivium conservation. Current climate projections predict that snow seasons will change rapidly in many regions, and as result, we advocate for the immediate recognition, conservation, and management of the subnivium and its dependent species.  相似文献   

12.
Seasonal snow is among the most important factors governing the ecology of many terrestrial ecosystems, but rising global temperatures are changing snow regimes and driving widespread declines in the depth and duration of snow cover. Loss of the insulating snow layer will fundamentally change the environment. Understanding how individuals, populations, and communities respond to different snow conditions is thus essential for predicting and managing future ecosystem change. We synthesized 365 studies that examined ecological responses to variation in winter snow conditions. This research encompasses a broad range of methods (experimental manipulations, measurement of natural snow gradients, and long-term monitoring), locations (35 countries), study organisms (plants, mammals, arthropods, birds, fish, lichen, and fungi), and response measures. Earlier snowmelt was consistently associated with advanced spring phenology in plants, mammals, and arthropods. Reduced snow depth often increased mortality or physical injury in plants, although there were few clear effects on animals. Neither snow depth nor snowmelt timing had clear or consistent directional effects on body size of animals or biomass of plants. However, because 96% of studies were from the northern hemisphere, the generality of these trends across ecosystems and localities is also unclear. We identified substantial research gaps for several taxonomic groups and response types; research on wintertime responses was notably scarce. Future research should prioritize examination of the mechanisms underlying responses to changing snow conditions and the consequences of those responses for seasonally snow-covered ecosystems.  相似文献   

13.
盐碱地施用脱硫石膏对土壤养分及油葵光合特性的影响   总被引:5,自引:0,他引:5  
通过分析宁夏平罗西大滩不同改良年份盐碱地土壤养分含量,测定油葵(Helianthus annuus)光合日变化曲线、光响应曲线和油葵产量,研究了施用脱硫石膏对盐碱地土壤改良及油葵光合特性的影响.结果表明,在盐碱土壤上施用燃煤电厂脱硫石膏后,土壤电导率、pH值随土壤改良年限增加而逐年下降,土壤有机质含量、碱解氮、有效磷和速效钾则逐年上升.随着土壤改良年限增加,油葵叶片净光合速率、蒸腾速率、气孔导度、胞间二氧化碳浓度均明显下降,气孔限制值和水分利用效率也明显下降(P<0.01).同时,随着改良年限增加,油葵叶片暗呼吸速率、光饱和点和最大净光合速率增加,而光补偿点降低.施用脱硫石膏后油葵盘径、百粒重和产量随土壤改良年限增加也显著提高(P<0.05).因此,施用燃煤电厂脱硫石膏能够显著地改良盐碱地土壤、提高油葵叶片光合能力,从而促进作物生长、提高作物产量.图2表3参29  相似文献   

14.
Every winter, government agencies feed approximately 6000 metric tons (6 x 10(6) kg) of hay to elk in the southern Greater Yellowstone Ecosystem (GYE) to limit transmission of Brucella abortus, the causative agent of brucellosis, from elk to cattle. Supplemental feeding, however, is likely to increase the transmission of brucellosis in elk, and may be affected by climatic factors, such as snowpack. We assessed these possibilities using snowpack and feeding data from 1952 to 2006 and disease testing data from 1993 to 2006. Brucellosis seroprevalence was strongly correlated with the timing of the feeding season. Longer feeding seasons were associated with higher seroprevalence, but elk population size and density had only minor effects. In other words, the duration of host aggregation and whether it coincided with peak transmission periods was more important than just the host population size. Accurate modeling of disease transmission depends upon incorporating information on how host contact rates fluctuate over time relative to peak transmission periods. We also found that supplemental feeding seasons lasted longer during years with deeper snowpack. Therefore, milder winters and/or management strategies that reduce the length of the feeding season may reduce the seroprevalence of brucellosis in the elk populations of the southern GYE.  相似文献   

15.
城市土壤压实对树木叶片叶绿素及光合生理特性的影响   总被引:3,自引:0,他引:3  
由于机械碾压、人为践踏等原因,城市土壤压实严重。由于压实,土壤物理性状发生改变:土壤容重增大、孔隙度降低及结构性变差等。这些改变影响土壤性质的同时影响树木的生长。以乐昌含笑Michelia chapensis、深山含笑Michelia maudiae和大叶冬青Ilexlatifola为实验材料,参照南京市土壤压实现状模拟不同程度的土壤压实环境,研究了土壤压实下乐昌含笑、深山含笑和大叶冬青3种幼树叶片叶绿素含量、光合生理特性等的变化情况。采用乙醇萃取法测定树木叶片叶绿素含量,用美国Li-COR公司生产的Li-6400光合仪测定树木叶片光合生理特性,测定参数包括净光合速率(Pn)、气孔导度(Gs)、蒸腾速率(Tr)、胞间CO2摩尔分数(Ci)等。并分析树木叶绿素含量在不同土壤压实环境下变化差异性,及各光合生理参数之间相关性。结果表明,随着压实强度的增强,3种树种叶绿素含量逐渐降低;与对照相比,不同压实处理下,叶片叶绿素含量均不同程度下降,且在重度压实下各树种叶片叶绿素含量降低幅度均最大,分别达到41.87%、29.36%及27.66%;方差分析表明,各土壤压实处理下叶绿素含量与对照之间存在显著性差异;在压实环境下,光合生理特性参数值净光合速率(Pn)、气孔导度(Gs)和蒸腾速率(Tr)与对照下各参数数值相比也呈下降趋势。皮尔森相关性分析发现,各光合生理特性参数之间相关性显著。但不同压实处理下,各树木胞间CO2浓度(Ci)变化趋势不一致。  相似文献   

16.
Fresh snow and streamwater samples were collected on a daily basis throughout the winter and spring periods of 1984 and 1985 at a remote, upland catchment located within the Cairngorm Mountains, Scotland. Laboratory based partial-melt experiments undertaken on the snow samples demonstrated that both fractionation and preferential elution of trace-elements occur during melting, with the concentrations being 1.3 to 5.4 times greater than in the first 10 percent meltwater fractions than in the bulk snow (Abrahamset al., in press). At the onset of snowpack melting, the ions may be mobilised and redistributed within the snow profile, concentrating at depths from where they may be quickly removed during the early spring run-offf. The raised major- (Ca, Mg, Na, Cl, NO3 and SO4) and trace-element (Al, Cd, Cu, Fe, Mn and Pb) concentrations recorded in the streamwaters during the acid-flush episodes at the time of the first major periods of snow-melt, reflect both the meltwater composition and the influence of the catchment soils (Abrahamset al., submitted for publication). Differences in streamwater chemistry during the two periods of snow-melt which were studies can probably be related to the fact that snow-melt occurs under a variety of circumstances with significant variations in the sequence of precipitation, melt-events, temperature and snowcover occurring from year to year, even in the same catchment. The high concentrations of Al (up to 330 g L–1) in the sireamwaters at the time of snow-melt, probably reflect leaching of this element from the soil. These elevated concentrations, in combination with other streamwater parameters, may prove toxic to aquatic life-forms at this time of year.  相似文献   

17.
为探究光周期对番杏[Tetragonia tetragonoides(Pall.)Kuntze]生长及品质的影响,利用植物工厂中光源高度可控的优势对番杏进行不同光照时间(8、10、12、14、16 h)处理,测定分析番杏的生长、光合特性及营养品质.结果表明:(1)番杏各农艺性状随光照时间延长而增长,在光照时间14 h与16 h处理之间未呈显著性差异(P<0.05);(2)适宜光周期有利于光合色素积累,在16 h处理下叶绿素a、总叶绿素和类胡萝卜素含量最大,叶绿素b含量则在14 h光照时最大;净光合速率(P_(n))、蒸腾速率(T_(r))和气孔导度(G_(s))随光照时间延长上升,其中净光合速率在14 h与16 h光照之间变化不显著,胞间CO_(2)(C_(i))则呈先降后升的趋势;光周期变化对最大光化学效率F_(v)/F_(m)与光化学淬灭系数q_(P)未造成显著影响,非光化学淬灭系数NPQ随光照时间延长呈先降后升的趋势,14-16 h光照处理之间变化不显著,电子传递效率ETR则随光周期延长而降低;(3)不同光周期对番杏各营养成分含量的影响有所差异,可溶性蛋白变化差异较小,硝酸盐随光照时间延长而降低,14 h光照下可溶性糖含量最大.本研究表明14-16 h光照处理有利于番杏生长和营养物质积累.(图5表2参37)  相似文献   

18.
The effects of various organic wastes on nitrogen mineralisation in soil were investigated. For this purpose, poultry (pl), cattle (ct), sheep (sh) manures and sewage sludge were used as organic wastes. This study was conducted as a laboratory incubation experiment with a calcareous soil. Organic wastes (3%) were added to pots of soil and incubated at 28°C for 16 weeks under non-leaching conditions. The cumulative mineralised N was then fitted to a single exponential model. Maximum nitrogen mineralisation was determined in the second week of incubation in soil treated with poultry manure. Overall, the results showed that the amount of mineral nitrogen in soil treated with different organic wastes was controlled by the type of manure. The results indicated that among the organic wastes, sewage sludge induced the highest quantities of net N mineralisation. Generally, organic wastes increased the amount of N mineralisation in the studied soil and the values of N0 and k in treated soil varied depending on the type of organic waste. The highest N0 and k values were found in poultry-treated soil.  相似文献   

19.
采用室内盆栽方式,以两年生落羽杉属杂交树种"中山杉406"(Taxodium‘Zhongshanshan 406’)为试验材料,设置对照、渍水和淹水3种处理,研究了水分条件对中山杉406叶片的叶绿体色素、净光合速率(Pn)、蒸腾速率(Tr)、气孔导度(Gs)和胞间CO2摩尔分数(Ci)等光合特性的影响。结果表明,中山杉406的叶绿素a、叶绿素a+b和类胡萝卜素质量分数随土壤水分增加而逐渐降低,但处理间均无显著差异。同样,不同处理间的Tr、Gs和Ci等光合参数无明显规律。光合-光强响应曲线表现出明显的光饱和限制。不同光强下,对照与淹水处理的中山杉406叶片净光合速率高于渍水处理,但处理间没有显著差异。而光饱和在对照处理显著(P〈0.05)高于渍水和淹水处理。在渍水和淹水下,中山杉406的光合特性没有发生明显变化,表明其具有良好的耐湿耐水特性,在湿地的恢复与构建方面有广阔的应用前景。  相似文献   

20.
土壤水分变化对外来入侵植物飞机草生长的影响   总被引:7,自引:1,他引:7  
以外来入侵植物飞机草为研究对象,设计3个水分梯度(15mm,10mm,5.83mm),研究飞机草的叶绿素含量、生物量、光合生理特征等指标对土壤含水量变化的响应。结果表明,随着土壤水分含量的降低,飞机草的单位叶面积干质量、叶绿素含量、净光合速率、气孔导度、蒸腾速率、胞间CO2摩尔分数、光饱和点等都呈下降趋势。同时,根冠比和水分利用率随着水分胁迫的加重而有所提高,表明飞机草对土壤水分胁迫有一定的适应能力,但总体而言,土壤水分胁迫不利于飞机草的生长,限制了其向降雨量较少的地区入侵。  相似文献   

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