180 resultados para Soil Water Extraction


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为了探讨土壤种子库对植被恢复的影响,该文在野外调查和室内试验的基础上,采用典范变量分析,研究了黄土丘陵沟壑区退耕地土壤种子库密度、土壤水分和养分、地形因子以及退耕年限对植物群落变化的影响,量化了土壤种子库对植被恢复的贡献。结果表明:影响植物群落变化的因子有土壤水分、速效磷、土壤种子库和坡向;仅用土壤种子库只可解释植物群落变化的32.1%;由于退耕地土壤种子库的优势种主要为猪毛蒿,其植被恢复潜力与速度比较小。黄土丘陵沟壑区退耕地植被恢复需要适度的人为干预,有必要适当引进一些演替后期物种,如白羊草、铁杆蒿、长芒草等物种,以缩短演替时间,加速退耕地植被恢复进程,促进黄土丘陵沟壑区水土流失的防治。

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研究了黄土丘陵区植被次生演替草灌过渡灌木初期的土壤物理性质特征。结果表明:当植被次生演替进展到草灌过渡灌木初期,除土壤含水量外,土壤容重、孔隙度、稳定入渗和水稳性团聚体都好于对照白羊草地,表明灌木树种定居的土壤物理条件一般要高于草本群落。植被演替的过程是植被与土壤相互作用复杂变化的过程,它们的相互反馈也是生态恢复的重要标志。随着植物群落的变化土壤也发生着不同程度变化。其中,土壤物理性质各个因子之间的变化是相互影响和相互联系的。土壤稳定入渗速率与土壤容重、土壤总孔隙度、土壤毛管孔隙度和土壤团聚体之间有显著的相关关系;土壤毛管孔隙度与土壤非毛管孔隙度线性显著负相关;土壤容重与土壤总孔隙度极显著负相关。

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对黄土高原沟壑区不同种植年限果园土壤深层水分变化进行了研究。结果表明,受降水影响0~2m土层水分变化较大,且0~40 cm4、0~80 cm、80~200 cm三个土层土壤含水量之间的差异达到极显著水平;2 m以下由于没有水分的补给,土壤水分含量趋于稳定,出现了干燥现象。随着种植年限的增加,深层土壤的干燥化现象有增加趋势。

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对大田不同水分处理条件下玉米杂交种及其亲本在经济产量形成期的根系活力及其衰退的杂种优势进行了研究,并分析了根系活力与叶片光合特性之间的关系。结果表明,水分亏缺显著降低了玉米的根系活力;充分供水和水分亏缺条件下,玉米杂交种根系活力都具有显著的杂种优势;杂交玉米种根系活力衰退速率具有显著的负优势,抽雄后灌水能够显著降低玉米根系活力衰退速率。杂交玉米种在抽雄期各水分处理下的光合速率显著大于亲本;玉米根系活力与光合速率之间具有显著的正相关关系,随着根系活力的增高,玉米光合速率、气孔导度和蒸腾速率均增高。因此,杂交种较高的抗旱性是根冠共同作用的结果。在玉米育种和栽培中,要充分地考虑到根系对地上部生理活性的影响。

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在离心机模拟不同水吸力条件下,研究了聚丙烯酸钠(sodium polyacrylate记作SP)5种使用浓度(占干土质量0,0.01%,0.08%,0.2%与1%)对3种土壤(砂土、壤土、黏土)持水能力的影响;采用大田试验研究了地表撒施2 g/m2SP对冬小麦与下季玉米产量及WUE影响。结果表明:3种土壤在0.01 MPa至1.5 MPa水吸力下的持水能力随着SP用量的增加而增加,砂土的作用效果较壤土、黏土更显著;3种土壤适宜浓度为0.08%~0.2%,最佳用量为0.2%,此用量条件下砂土、壤土、黏土的最大毛管持水量分别较对照增加了138.61%,7.22%,62.70%;不灌水条件下,SP处理较不施用SP冬小麦增产4%,WUE增加5.7%,灌浆期灌水28.5 mm条件下SP处理较不施用SP增产1%,WUE降低1%;SP处理的玉米产量较对照降低0.5%,WUE提高3%,效果明显低于对冬小麦效果。

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在黄土高原水蚀风蚀交错地区,碎石的存在影响着土壤的水力学特性,因此研究土石混合介质的渗流运动对该地区的植被恢复建设具有重要的指导意义。虽然用有限元法分析地下水渗流的工作很多,但对土石混合介质而言,由于有限元法的解题规模迅速增加,其研究甚少。本模型采用子域法矩形单元,假定土石体中石块含量增加不影响土的孔隙率且石块不透水分析了土石混合介质中的渗流过程。结果表明,影响土石混合介质饱和导水率的主要因素是土石介质的含石率;石块的大小基本不影响混合介质饱和导水率;石块分布方式增加水流路径时,会影响混合介质饱和导水率。这一数值分析结论与土石体渗流问题的部分理论结果和试验结果吻合良好。本模型子域法计算效率高,结果较准确,可用于较大规模的土石混合介质渗流分析,还可推广用于土石混合介质的三维分析和多级子域法有限元技术以获得更大规模的解题效果。

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水分是沙漠化地区植被恢复和沙地治理的主要制约因素,也是沙漠化地区生态环境的重要影响因子,深入研究辽西北沙地土壤水分动态变化规律,掌握沙地水分动态变化趋势,建立适宜的土壤水分预测模型,对沙地有限水资源的合理调控和高效利用以及沙地生态系统的恢复与重建具有重要意义。 本文以辽西北沙地流动沙丘、固定沙丘和丘间洼地为对象,研究了不同沙地类型的土壤水分的时空动态变化,提出了不同沙地类型的主要治理与利用措施,分析了沙地水分的主要影响因素,建立了辽西北沙地流动沙丘0-60cm的土壤水分BP神经网络预测模型,针对BP网络模型实际应用中存在收敛速度慢、易陷入局部极小值等不足,将遗传算法优化BP网络引进土壤水分预测领域,提高了预测精度。研究结果表明,辽西北沙地土壤水分的年内分布与降雨分布同型,可分为春季失水阶段、夏季补给阶段和秋季弱失水阶段;在深度上,可分为干沙层(一般为0~20cm)、水分变化活跃层(20~60cm)和水分稳定层(60cm以下)。分析结果表明,流动沙丘的含水量高于固定沙丘和丘间洼地,表明随着固沙植被的建立和演变,沙地土壤水分呈现下降趋势,土壤水分不足成了植被生长的主要阻碍。因此,要通过采取配置耗水性弱、耐旱性强的植物群落等治理措施,努力维持沙地生态系统的水分平衡。同时,在分析流动沙丘土壤水分动态变化特征及主要影响因素的基础上,建立了流动沙丘0-60cm土壤水分预测BP模型和遗传BP模型,其绝对误差分别为0.35和0.18,相对误差分别为11.53%和5.65%,两模型用于土壤水分预测是可行的,而且遗传BP模型精度明显高于BP模型。

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依据土壤水分动力学理论和地下滴灌土壤水分运动特征,在测定地下滴灌滴头出流特性、土壤水分运动参数、地表蒸发强度的基础上,引入作物根系吸水模型,建立了地下滴灌土壤水分运动数值模型,用有限单元法中的Galerkin法对模型进行数值求解,田间验证结果表明模型具有较高的精度。 研究发现,地下滴灌滴头流速随供水压力的增大而增加,呈幂函数关系;不同埋深对滴头流速基本无影响;而土壤初始含水量只在灌水开始时对滴头流速有一定影响,最终滴头流速趋于相同且稳定;地下滴灌滴头流速主要受供水压力和滴头孔径的影响。 运用matlab数值分析软件对土壤持水曲线的van Genuchten模型进行求参,所求VG模型计算的不同水势下土壤含水量计算值与田间实测值之间偏差较小,曲线回归模型相关指数高达0.95,能很好地表征土壤水分特征曲线。 建立了地下滴灌土壤水分运动数值模型,确定地下滴灌条件下具体模型应用的边界和初始条件,利用HYDRUS-2D软件进行有限元求解。运行结果表明所建立的数学模型和所采用的数值方法能够较好地模拟地下滴灌条件下土壤水分运动过程。 采用量纲分析法推导了日光温室地下滴灌条件下的土壤湿润模式模型,建立了湿润宽度和湿润深度的经验公式,与实际监测结果对比,土壤湿润宽度和湿润深度模型估计值与实测之间偏差较小,能准确的模拟地下滴灌条件下土壤湿润体的宽度和深度。

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人工合成麝香作为一种新型污染物,其生态行为及生态效应已经越来越受到关注。城市土-水界面污染流是除农业面源污染以外第二大面源污染,其成分复杂,采用常规的理化监测方法很难对其生态安全性加以评价。本研究在水生生态毒理实验基础之上,利用城市标识污染物-重金属镉(Cd)、铅(Pb)、佳乐麝香(HHCB)和城市土壤模拟城市土-水界面污染流,并以斑马鱼、草鱼为对象,以超氧化物岐化酶(SOD),过氧化物酶(POD),过氧化氢酶(CAT),丙二醛(MDA),可溶性蛋白(SP)为生物标志物,对其急性和亚急性生态毒理过程进行模拟研究,并通过对联合毒性实验的开展,系统研究了Cd、Pb和HHCB的单一与联合毒性效应、机理和过程。主要结论如下: HHCB和Cd均为中等毒性污染物,Cd和HHCB对斑马鱼的96h-LC50值分别为30.33和4.45 mg/L;在HHCB和Cd的等毒性复合急性实验中,联合作用类型随暴露时间的延长从联合变为拮抗,HHCB是复合污染中的主要污染物。 对水体中总浓度0.95-15.16 mg/L 的Cd和0.14-2.22mg/L的HHCB7天急性毒性机理实验显示,暴露于单一Cd污染斑马鱼体内抗氧化酶活性升高,暴露4天后,其体内MDA含量升高;而在HHCB胁迫2-4天后抗氧化酶活性和MDA含量均降低;联合作用中Cd在暴露的前1-4天对抗氧化酶的变化起主要作用,而之后HHCB开始起主导作用;斑马鱼急性胁迫下,抗氧化系统的诱导是斑马鱼对Cd胁迫的最初反应之一,而对于受HHCB胁迫的斑马鱼,蛋白含量的降低相对于抗氧化系统来说是斑马鱼受到损害的更重要原因。 对水体中总浓度0.005-0.05mg/L的Cd、0.5-4mg/L的Pb和0.01-0.2mg/L的HHCB对草鱼不同器官的14天亚急性毒性机理研究显示:肝脏受污染物的毒性作用最为显著,体内生物标志物也最为敏感;在Cd和Pb胁迫下,肝脏和肾脏内抗氧化酶随浓度的升高被显著抑制,而HHCB对各器官SOD和CAT活性产生诱导作用; MDA在重金属胁迫下其含量变化均不明显,SP含量轻微降低,而在HHCB胁迫下却分别呈现显著的升高和降低的趋势,所以MDA和SP含量可以作为检测HHCB的生物标志物;复合作用下HHCB的加入能使草鱼各器官中抗氧化酶的活性有所升高, MDA含量显著大幅度升高,SP含量显著大幅度降低,HHCB和Cd表现出很强的协同作用,而且HHCB在复合污染中起主导作用。

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土壤水动力学参数的推导和土壤水分运动的数值模拟是研究土壤水分运动规律的两个重要部分,是农田节水灌溉自动化控制工程设计的理论依据。本文以曰光温室草甸棕壤的三种质地为研究对象,应用土壤转换函数理论和有限元法,通过RETC软件由土壤机械组成和容重两个基本物理性质指标推导其土壤水动力学参数;运用HYDRUS-2D软件对同一渗灌管埋深〔30cm)、3种管径、10种供水压力、6种初始土壤水势条件下的土壤水分运动进行了数值模拟;并对土壤水动力学参数推导和土壤水分运动数值模拟结果进行了实测验证。结果表明:(1)RETC和HYDRUS-2D是进行土壤水动力学参数推导和土壤水分运动数值模拟的有力工具。(2)土壤水动力学性质对渗灌条件下土壤水分运动速度具有显著的作用,最适宜渗灌的土壤是壤土,偏砂、偏虱质地次之。(3)渗灌的供水压力对三种质地土壤水分运动具有显著的影响。壤砂土、壤土和戮土三种质地土壤的适宜供水压力应分别不小于500cmH2O、700cmH2O、400cmH2O。(4)就内径为10mm、15mm和20mm渗灌管而言,渗灌管管径越大越有利于渗灌水向渗灌管四周土壤入渗,三种质地土壤渗灌均宜采用20mm管径渗管。(5)在壤砂质土和在较干燥的(土壤水势值<-1000cmH2O)壤质土和赫质土中,土壤初始水势值对渗灌土壤水分运动数值模拟结果的影响较小,而在较湿润的(土壤水势值>-1000cmH2O)壤质土和载土中,随着土壤初始水势值的降低,渗灌土壤水分运动速度(模拟)加快。

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土-水界面污染流污染物成分复杂,采用常规的理化监测方法,很难对其生态安全性加以评价。本研究在水生生态毒理实验基础之上,利用重金属Cd、Zn和有机农药甲胺磷(MAP)模拟流经受重金属和农药污染土壤的土-水界面污染流,并以草鱼(Ctenopharyngodon idellus)为刘"象,以SOD,PoD为生物标志物,对其生态毒理过程进行模拟研究,并应用广义联合效应理论,系统研究了Cd、Zn、MAP的单一与联合毒性效应、机理以及土一水界面污染流对Cd、Zn、MAP的单一与联合毒性效应的影响。主要结论如下:1.Cd、Zn、MAP联合作用与污染暴露的时间有关;2.在含cd、zn、MAP土一水界面污染流中,Cd、Zn、MAP三者之间在毒理过程中的交互作用关系具有方向性,可以用广义联合效应来解释;3.土一水界面污染流增大了毒理过程中对草鱼的胁迫强度;4.土一水界面污染流能改变Cd、Zn、MAP在毒理过程中联合作用的类型;5.土一水界面污染流的毒理过程中,总的联合效应更多的依赖各因子的浓度水平组合。

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土壤线虫是土壤动物的主要功能类群之一,在土壤养分分解和循环中起到重要的作用。本研究通过施用两种形态氮肥,硝态氮(NO-3–N)和铵态氮(NH+4–N),对黄瓜整个生长期内根际土壤线虫的群落组成、结构及其多样性等的影响进行了比较研究。为增进土壤健康,提高土壤质量以及合理施用氮肥提供科学的理论依据。研究结果如下: 1. 氮肥处理后,不同浓度NO-3–N处理提高了根际土壤线虫数量,而NH+4–N处理(202.5 kg N/ hm2)抑制了线虫数量的增加。线虫群落结构相对较稳定,营养类群变化不大。且少量优势科/属会对土壤线虫群落特征起着至关重要的作用。 2. 在整个生长季节内,非寄生线虫的群体动态变化与寄生线虫的群体的动态变化具有相反的变化趋势。其中,NO-3–N处理和NH+4–N处理后植物寄生线虫出现频率的变化趋势相近,都是由高到低;非植物寄生线虫出现频率的变化趋势则都是由低到高。这说明非植物寄生线虫数量增长和空间占位对植物寄生线虫群体有一定的抑制作用。另外,也反映了适量氮肥在一定程度上能够减轻植物寄生线虫对黄瓜的危害。 3. 由多样性指数变化可知,NO-3–N和NH+4–N在低肥(67.5 kg N/hm2)和高肥(202.5 kg N/hm2)处理较中肥(135.0 kg N/hm2)处理,更不利于提高土壤线虫多样性地提高和线虫群落的稳定性。中肥不同形态氮肥处理与对照相比,H´指数在初花期和结果期显著增加了土壤线虫的H´指数,说明施入两种形态的氮肥能够提高线虫生物多样性程度。NH+4–N处理在初花期和结果期显著降低了土壤线虫种类的丰富性。土壤线虫生物多样性变化中,H´和SR指数在一定程度上能够反映施用无机氮肥对土壤线虫的多样性的影响,而J指数和λ指数效果不明显。NO-3–N和NH+4–N处理相比较,NO-3–N处理对黄瓜土壤线虫的多样性指数影响更大,促进了土壤线虫群体的多样化和种类的丰富度,更有利于提高土壤线虫的多样性,增加其稳定性。这些结果表明适量无机氮肥特别是NO-3–N的施用对黄瓜土壤线虫的生物多样性有一定的维护和提高作用。 4. 线虫数量与土壤质量指标的相关分析表明:线虫数量与有关土壤理化生指标,如土壤NO-3–N、NH+4–N、有机质含量等的正相关程度高,与总酚含量等显著负相关;与根际土壤微生物,细菌、真菌、放线菌数量等呈显著正相关。另外,线虫数量与土壤含水量未表现出显著相关关系。 Nematodes play a major role in decomposition and nutrient cycling in soil. Nematode community analyses are useful in assessing soil ecosystem status and function. The effects of two forms of mineral nitrogenous fertilizers (NO-3–N and NH+4–N) on nematode community composition, structure and diversity in rhizosphere of cucumber were investigated during different growing seasons of cucumber. Systematically research of effects of nitrogenous fertilizers could help to obtain better undstanding of a healthy soil and using nitrogenous fertilizers in reason. The main results are as follows: 1. The total numbers of nematode were more abundant in NH+4–N treatments than other teatments. However, NH+4–N teatment(202.5 kg N/hm2)dramatically inhibited it. All the tropic groups in the soil nematode communities were stable, and the dominant family or genus had an important function in the nematode community structure. 2. There was similar trend of the frequency of plant parasitic nematodes between NO-3–N and NH+4–N treatment, the similar trend of the frequency of non-plant parasitic nematodes was also found. But the frequency of plant parasitic nematodes exhibited a contrary trend to that of plant parasitic nematodes after different nitrogenous fertilizer treatments. The results showed that the increasing trend of the frequency and the niche of non-plant parasitic nematodes inhibited the plant parasitic nematodes, and indicated that right chemical fertilizers dosage could abate plant parasitic nematodes harm to cucumber. 3. The changes of the biodiversity index showed that the nitrogen treatment(135.0 kg N/hm2)promoted the stabilization of soil nematode diversity than other nitrogen treatments(67.5 kg N/hm2 and 202.5 kg N/hm2). In the treatment(135.0 kg N/hm2),The changes in nematode diversity between the control plots and treated plots were compared by the biodiversity index (H´, J, SR, λ). Among these tested index, H´ and SR were effective in reflecting the effects of different nitrogenous fertilizers on the diversity of soil nematodes. In comparison with the NH+4–N treatment, the NO-3–N treatment promoted the stabilization of soil nematode diversity. 4. Correlation coefficients between nematode abundance and soil quality indices indicated that the total numbers of nematode were affected positively by NO-3–N, NH+4–N and the organic matter, and negatively by total phenolic acids; the total num- bers of nematode had positive correlation with bacteria, fungi and actinomycetes nu- mbers. Soil water contents had only a weak negative influence on it.

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在人类活动导致全球变暖的前提下,由于全球气温的升高,地表水分加速向空中蒸发。从20世纪70年代至今,地球上严重干旱地区的面积几乎扩大了一倍。这一增长的一半可归因于气温升高而不是降雨量下降,因为实际上同期全球平均降水量还略有增长。干旱对陆地植物和农林生态系统产生深远影响,并已成为全球变化研究的一个重要方面。位于青藏高原东部的川西亚高山针叶林是研究气候变暖对陆地生态系统影响的重要森林类型。森林采伐迹地、人工林下和林窗环境作为目前该区人工造林和森林更新的重要生境,其截然不同的光环境对亚高山针叶林更新和森林动态有非常重要的影响。凋落物产生的化感物质可通过影响种子萌发和早期幼苗的定居而影响种群的建立和更新,而人工林和自然林物种以及更新速度的差异性也都受凋落物的影响。 云杉是川西亚高山针叶林群落的重要树种之一,在维持亚高山森林的景观格局和区域生态安全方面具有十分重要的作用,其自然更新能力及其影响机制一直是研究的热点问题。本试验以云杉种子和2年生幼苗为研究对象,从萌发、根尖形态、幼苗生长、光合作用、渗透调节和抗氧化能力等方面研究了不同光环境下水分亏缺和凋落物水浸液对云杉种子和幼苗生长的影响。旨在从更新的角度探讨亚高山针叶林自然更新的过程,其研究成果可在一定程度上为川西亚高山针叶林更新提供科学依据,同时也可为林业生产管理提供科学指导。主要研究结论如下: 水分亏缺在生长形态、光合作用、抗氧化能力、活性氧化对云杉幼苗都有显著影响。总体表现为,水分亏缺导致了云杉幼苗的高度、地径、单株总生物量降低,增加了地下部分的生长;水分亏缺显著降低了云杉叶片中相对含水量、光合色素、叶氮含量,净光合速率和最大量子产量(Fv/Fm),提高了幼苗叶片中膜脂过氧化产物(MDA)的含量;水分亏缺提高了幼苗叶片中过氧化氢(H2O2)含量,超氧荫离子(O2-)生成速率以及脯氨酸和抗氧化系统的活性(ASA, SOD, CAT, POD, APX和GR)。从这些结果可知,植物在遭受水分亏缺导致的伤害时,其自身会形成防御策略,并通过改变形态和生理方面的特性以减轻害。但是,这种自我保护机制依然不能抵抗严重水分亏缺对植物的伤害。 模拟林下低光照条件显著增加单株植物的地上部分生长,尤其是其叶片的比叶面积(叶面积/叶干重),同时其光合色素含量和叶片相对含水量也显著增加,这些改变直接导致植株光合速率和生物量的增加。同时,与高光照水平相比,低光照幼苗的膜脂过氧化产物(MDA)和活性氧物质均较低,显示出低光照比高光照水平对植物的更低的氧化伤害。尽管低光照也导致大部分抗氧化酶活性降低,但这正显示出植物遭受低的氧化伤害,更印证了前面的结论。 凋落物水浸液影响了云杉种子的萌发和根系的生长,更在形态、光合作用、抗氧化能力、活性氧物质以及叶氮水平上显著影响了云杉幼苗,其中,以人工纯林凋落物的影响更有强烈。具体表现在,种子萌发速率和萌发种子幼根的长度表现为对照>自然林处理>人工纯林;凋落物水浸液抑制种子分生区和伸长区的生长,人工林处理更降低了根毛区的生长,使根吸水分和养分困难。对2年生幼苗的影响主要表现在叶绿素含量、光合速率以及叶氮含量的降低;膜脂过氧化产物、活性氧物质和抗氧化酶系统的显著增加。同样的,人工纯林处理对云杉幼苗的影响显著于自然林处理。 在自然生态系统中,由于全球变暖气温升高导致的水分亏缺和森林凋落物都存在森林的砍伐迹地,林窗和林下环境中。我们的研究表明,与迹地或林窗强光照比较,林下的低光照环境由于为植物的生长营造了较为湿润的微环境,因此水分亏缺在林下对云杉幼苗造成的影响微弱。这可以从植物的形态、光合速率以及生物量积累,过氧化伤害和抗氧化酶系统表现出来。另一方面,凋落物水浸液在模拟林下低光照环境对植物的伤害也微弱于强光照环境,这与强光照环境高的水分散失导致环境水分亏缺有关;而人工纯林处理对云杉幼苗的伤害比对照和自然林处理显示出强烈的抑制作用。 Under the pre-condition of global warming resulted from intensive human activities, water in the earth’s surface rapidly evaporates due to the increase of global air temperature. From 1970s up to now, the area of serious drought in the world is almost twice as ever. This increase might be due to the increasing air temperature and not decreasing rainfall because global average rainfall in the corresponding period slightly is incremental. Drought will have profound impacts on terrestrial and agriculture-forest system and has also become the important issue of global change research. The subalpine coniferous forests in the eastern Qinghai-Tibet Plateau provide a natural laboratory for the studying the effects of global warming on terrestrial ecosystems. The light environment significantly differs among cutting blanks, forest gap and understory, which is particularly important for plant regeneration and forest dynamics in the subalpine coniferous forests. Picea asperata is one of the keystone species of subalpine coniferouis forests in western China, and it is very important in preserving landscape structure and regional ecological security of subalpine forests. The natural regeneration capacities and influence mechanism of Picea asperata are always the hot topics. In the present study, the short-term effects of two light levels (100% of full sunlight and 15% of full sunlight), two watering regimes (100% of field capacity and 30% of field capacity), two litter aqueous extracts (primitive forest and plantation aqueous extracts) on the seed germination, early growth and physiological traits of Picea asperata were determined in the laboratory and natural greenhouse. The present study was undertaken so as to give a better understanding of the regeneration progress affected by water deficit, low light and litter aqueous extracts. Our results could provide insights into the effects of climate warming on community composition and regeneration behavior for the subalpine coniferous forest ecosystem processes, and provide scientific direction for the forest production and management. Water deficit had significant effects on growth, morphological, physiological and biochemical traits of Picea asperata seedlings. Water deficit resulted in the decrease in height, basal diameter, total biomass and increase in under-ground development; water deficit significantly reduced the needle relative water content, photosynthetic pigments, needle nitrogen concentration, net photosynthetic rate and the maximum potential quantum yield of photosynthesis (Fv/Fm), and increased the degree of lipid peroxidation (MDA) in Picea asperata seedlings; water deficit also increased the rate of superoxide radical (O2-) production, hydrogen peroxide (H2O2) content, free proline content and the activities of antioxidant systems (ASA, SOD, POD, CAT, APX and GR) in Picea asperata seedlings. These results indicated that some protective mechanism was formed when plants suffered from drought stress, but the protection could not counteract the harm resulting from the serious drought stress on them. Low light in the understory significantly increased seedling above-ground development, especially the species leaf area (SLA), and photosynthetic pigments and relative needle content. These changes resulted in the increase in net photosynthetic rate and total biomass. Moreover, the lower MDA content and active oxygen species (AOS) (H2O2 and O2-) in low light seedlings suggested that low light had weaker oxidative damage as compared to high light. Lower antioxidant enzymes activities in low light seedlings indicated the weaker oxidative damage on Picea asperata seedlings than high light seedlings, which was correlative with the changes in MDA and AOS. Litter aqueous extracts affected seed germination and root system of Picea asperata seedlings. Significant changes in growth, photosynthesis, antioxidant activities, active oxygen species and leaf nitrogen concentration were also found in Picea asperata seedlings, and plantation treatment showed the stronger effects on these traits than those in control and primitive forest treatment. The present results indicated that seed germination and radicle length parameters in control were superior to those in primitive forest treatment, and those of primitive forest treatment were superior to plantation treatment; litter aqueous extracts inhibited the meristematic and elongation zone, and plantation treatment caused a decrease in root hairs so as to be difficult in absorbing water and nutrient in root system. On the other hand, litter aqueous extracts significantly decreased chlorophyll content, net photosynthetic rate and leaf nitrogen concentration of Picea asperata seedlings; MDA, AOS and antioxidant system activities were significantly increased in Picea asperata seedlings. Similarly, plantation treatment had more significant effect on Picea asperata seedlings as compared to primitive forest treatment. In the nature ecosystem, water deficit resulted from elevating air temperature and litter aqueous extract may probably coexist in the cutting blank, forest gap and understory. Our present study showed that water deficit had weaker effects on low light seedlings in the understory as compared to high light seedlings in the cutting blank and forest gap. The fact was confirmed from seedlings growth, gas exchange and biomass accumulation, peroxidation and antioxidant systems. This might be due to that low light-reduced leaf and air temperatures, vapour-pressure deficit, and the oxidative stresses can aggravate the impact of drought under higher light. On the other hand, litter aqueous extracts in the low light had weaker effects on the Picea asperata seedlings than those at high light level, which might be correlative to the water evapotranspiration under high light. Moreover, plantation litter aqueous extracts showed stronger inhibition for seed germination and seedling growth than control and primitive forest treatments.