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1.
不同放牧强度对滩羊生产性能影响的研究   总被引:4,自引:2,他引:2  
为寻找适宜宁夏盐池县草地的放牧强度,于2003年5-11月在该县四墩子试点设5个处理(0.45、0.60、1.75、1.05和1.50只/hm2)进行轮牧,轮牧周期为42 d,共放牧154 d。结果表明:1)滩羊采食量随放牧强度的加重而降低。同一放牧强度下,随放牧时间推移,采食量先逐渐增大而后下降。2)在试验期内,不同放牧强度下,滩羊体重随时间推移总体上都呈增加趋势。在10月2日之后体重开始出现分化。与放牧强度重的处理相比,放牧强度轻的处理日增重峰值较高,持续时间较长。3)滩羊个体增重与放牧强度之间存在着强的负相关;单位草地面积(1 hm2)增重与放牧强度之间呈强的正相关,初步可以确定在该类草地上放牧强度应在0.75只/hm2左右。4)随着放牧强度的加重,饲料报酬先增大后减小。在同一放牧强度下,饲料报酬随时间的推移先升高后降低。5)当放牧强度超过0.75只/hm2以后,滩羊出现了空怀、产羔率降低和推迟怀孕的现象。6)综合考虑各研究指标,该类草地放牧强度以不应超过0.75只/hm2为宜。  相似文献   
2.
黄土丘陵区草本群落生物量空间分布格局及其影响因素   总被引:1,自引:0,他引:1  
草地是干旱半干旱地区黄土高原植被组成的主体,而草本植物作为草地生态系统的优势群落,在黄土高原恢复植被和水土保持建设方面存在着不可替代的优势。因此本试验选取黄土丘陵区不同纬度下的草本群落为研究对象,分析草本群落地上、地下生物量的空间分布特征及其影响因素,同时并验证等速生长关系,以期为黄土丘陵区恢复植被、改善生态建设方面提供理论指导。结果表明:(1)在纬度梯度35.95°~38.36° N变化范围内,黄土丘陵区不同植被带草本群落地上生物量变化范围为54.60~204.32 g·m-2,平均值156.968 g·m-2,变异系数为27.83%;地下生物量变化范围为78.88~829.64 g·m-2,平均值469.21 g·m-2,变异系数为48.87%;草本群落地下/地上生物量变化范围为 0.93~4.49,平均值2.89,变异系数为39.18%。草本群落生物量(地下、地上)大小顺序均为:森林-草原带>草原带>森林带>草原-荒漠带,且地上、地下生物量随纬度梯度变化规律均呈现出“先增加后减少”的单峰型变化趋势。(2)草本群落地下与地上生物量呈极显著正相关(P<0.01),决定系数达到0.59,且符合等速生长关系。(3)草本群落地下生物量与年均降水、年均温、土壤有机碳、全氮、全磷含量之间均呈显著相关。气候因子和土壤理化性质对地下生物量都具有重要影响作用,其影响机理还需进一步结合植物生物学和生理生态方面的综合研究才能做出准确结论。  相似文献   
3.
华北落叶松针叶碳、氮、磷含量及化学计量比的季节变化   总被引:3,自引:3,他引:0  
【目的】碳(C)、氮(N)和磷(P)在林木的生长发育中有着重要作用,三者的含量变化和元素比值控制着林木的营养和生长状况。本研究主要分析了秦岭山区同一树种不同林龄叶片的C、N、P含量及化学计量比随季节变化的规律,为林木施肥管理提供依据。【方法】在林木生长季的不同月份(2012年5月到10月每月中旬),对秦岭5年生(5a)、10年生(10 a)、20年生(20 a)3种林龄的华北落叶松针叶进行定期采集,并测定不同月份各林龄针叶的C、N、P含量和化学计量比值,对不同林龄不同生长季华北落叶松针叶的C、N、P及C∶N、C∶P、N∶P的动态变化进行分析,并对其C∶N与氮含量、C∶P与磷含量进行相关性分析。【结果】1)3种林龄针叶的碳含量从生长初期(5 6月)到生长旺盛期(7 8月)逐渐增加,生长末期(8 9月)逐渐降低,但到落叶期(10月)又小幅回升。2)3种林龄华北落叶松针叶的氮含量在整个生长季内(5 10月)均呈现先降低后升高再降低的趋势,各林龄针叶氮含量升高和降低的时间存在差异,5 a和20 a林龄的针叶N含量从6月到生长旺盛期(7月、8月)基本上保持上升趋势,而10 a林龄针叶的氮含量6 7月份先逐渐降低,7 9月份急剧升高,落叶前期到落叶(9 10月)这段时间3种林龄针叶的N含量均急剧下降为最低值。3)3种林龄针叶磷含量在整个生长季节内的变化趋势基本一致,均先降低后升高再降低最终维持稳定。4)5 a、10 a和20 a林龄的华北落叶松在生长季节内针叶的C∶N变化范围分别为21.83 56.42、18.4358.49和22.54 87.83,变异系数分别达到了37.74%、42.05%和68.42%,随着树龄的增长其变异系数逐渐增大。5)5 a、10 a、20 a林龄的华北落叶松在生长季节内针叶C∶P的变化范围分别为169.17 402.85、180.54 395.01和213.02 398.75,变异系数依次为31.35%、31.43%和22.88%。6)针叶的N∶P,5 a、10 a、20 a在生长季节内的变化范围分别为6.77 15.42、6.38 20.13和4.44 14.45,变异系数分别为39.65%、50.86%和33.03%。7)各林龄针叶的C、N、P平均含量以及各比值之间的差异均不显著(P0.05)。【结论】3种林龄的华北落叶松针叶的C∶N、C∶P均与相应的N、P含量呈显著负相关(P0.05),随着N、P含量的变化以对数方程的形式减小。同时发现,氮是秦岭地区幼、中林龄华北落叶松生长的主要限制性因子,土壤中的氮养分不足会制约林木的生长,因此对本研究区的土壤应及时补充氮肥以满足华北落叶松正常生长的营养需求。  相似文献   
4.
Excessive application of N fertilizer in pursuit of higher yields is common due to poor soil fertility and low crop productivity. However, this practice causes serious soil depletion and N loss in the traditional wheat cropping system in the Loess Plateau of China. Growing summer legumes as the green manure (GM) crop is a viable solution because of its unique ability to fix atmospheric N2. Actually, little is known about the contribution of GM N to grain and N utilization in the subsequent crop. Therefore, we conducted a four-year field experiment with four winter wheat-based rotations (summer fallow-wheat, Huai bean–wheat, soybean–wheat, and mung bean–wheat) and four nitrogen fertilizer rates applied to wheat (0, 108, 135, and 162 kg N/ha) to investigate the fate of GM nitrogen via decomposition, utilization by wheat, and contribution to grain production and nitrogen economy through GM legumes. Here we showed that GM legumes accumulated 53–76 kg N/ha per year. After decomposing for approximately one year, more than 32 kg N/ha was released from GM legumes. The amount of nitrogen released via GM decomposition that was subsequently utilized by wheat was 7–27 kg N/ha. Incorporation of GM legumes effectively replaced 13–48% (average 31%) of the applied mineral nitrogen fertilizer. Additionally, the GM approach during the fallow period reduced the risk of nitrate-N leaching to depths of 0–100 cm and 100–200 cm by 4.8 and 19.6 kg N/ha, respectively. The soil nitrogen pool was effectively improved by incorporation of GM legumes at the times of wheat sowing. Cultivation of leguminous GM during summer is a better option than bare fallow to maintain the soil nitrogen pool, and decrease the rates required for N fertilization not only in the Loess Plateau of China but also in other similar dryland regions worldwide.  相似文献   
5.
The objective of this study was to compare the performance of two different remotely sensed techniques in detecting the effects of terminal heat stress and N fertilization on final maize aerial biomass (AB) and grain yield (GY). The study was conducted under field conditions for two consecutive growing seasons. Six N treatments combining three doses [0, 100, 200 Kg N ha−1] and two timings [at V4 and at 15 days before silking] were applied. Within each N treatment three heat treatments were applied (pre-flowering, post-flowering and the control treatment at ambient air temperature). Remote sensing measurements were taken with a multispectral band camera to measure the normalized difference vegetation index (NDVI) and a digital Red/Green/Blue (RGB) camera to measure the normalized green red difference index (NGRDI). Both indices failed to predict the GY of pre-flowering heat-treated plants due to grain set establishment problems that could not be detected by vegetation indices which are designed to capture differences in green canopy area. In contrast, both the NGRDI and the NDVI correlated positively with GY and AB in the control heat treatment and to a lesser extent in the post-flowering heat treatment. Under the control heat treatment, the NGRDI exhibited higher correlations with AB and GY than the NDVI across the N fertilization treatments. Since the NGRDI is formulated based only on the reflectance in the visible regions (VIS) of the spectrum (Green and Red) without dependence on the near infrared regions (NIR), it performs better than the NDVI. This is because it overcame the reported saturation patterns at high leaf area index and was more efficient at capturing even small differences in leaf colour (chlorophyll content) due to the different applied N treatments. Also, the NGRDI seemed to be a more seasonally independent parameter than the NDVI, which is more affected by temporal variability within the field, and thus the NGRDI predicted AB and GY better than the NDVI when combining the data of the two growing seasons.  相似文献   
6.
Wheat–cotton rotations largely increase crop yield and improve resources use efficiency, such as the radiation use efficiency. However, little information is available on the nitrogen (N) utilization and requirement of cotton under wheat–cotton rotations. This study was to determine the N uptake and use efficiency by evaluating the cotton (Gossypium hirsutum L.) N use and the soil N balances, which will help to improve N resource management in wheat–cotton rotations. Field experiments were conducted during 2011/2012 and 2012/2013 growing seasons in the Yangtze River region in China. Two cotton cultivars (Siza 3, mid-late maturity with 130 days growth duration; CCRI 50, early maturity with 110 days growth duration) were planted under four cropping systems including monoculture cotton (MC), wheat/intercropped cotton (W/IC), wheat/transplanted cotton (W/TC) and wheat/direct-seeded cotton (W/DC). The N uptake and use efficiency of cotton were quantified under different cropping systems. The results showed that wheat–cotton rotations decreased the cotton N uptake through reducing the N accumulation rate and shortening the duration of fast N accumulation phase as compared to the monoculture cotton. Compared with MC, the N uptake of IC, TC and DC were decreased by 12.0%, 20.5% and 23.4% for Siza 3, respectively, and 7.3%, 10.7% and 17.6% for CCRI 50, respectively. Wheat–cotton rotations had a lower N harvest index as a consequence of the weaker sink capacity in the cotton plant caused by the delayed fruiting and boll formation. Wheat–cotton rotations used N inefficiently relative to the monoculture cotton, showing consistently lower level of the N agronomic use efficiency (NAE), N apparent recovery efficiency (NRE), N physiological efficiency (NPE) and N partial factor productivity (NPFP), particularly for DC. Relative to the mid–late maturity cultivar of Siza 3, the early maturity cultivar of CCRI 50 had higher N use efficiency in wheat–cotton rotations. An analysis of the crop N balance suggested that the high N excess in preceding wheat (Triticum aestivum L.) in wheat–cotton rotations led to significantly higher N surpluses than the monoculture cotton. The N management for the cotton in wheat–cotton rotations should be improved by means of reducing the base fertilizer input and increasing the bloom application.  相似文献   
7.
Estimating spatial mean soil water contents from point-scale measurements is important to improve soil water management in sloping land of semiarid areas. Temporal stability analysis, as a statistical technique to estimate soil water content, is an effective tool in terms of facilitating the upscaling estimation of mean values. The objective of this study was to examine temporal stability of soil water profiles (0–20, 20–40, 40–60 and 0–60 cm) in sloping jujube (Zizyphus jujuba) orchards and to estimate field mean root-zone soil water based on temporal stability analysis in the Yuanzegou catchment of the Chinese Loess Plateau, using soil water observations under both dry and wet soil conditions. The results showed that different time-stable locations were identified for different depths and the temporal stability of soil water content in 20–40 cm was significantly (P < 0.05) weaker than that in other depths. Moreover, these time-stable locations had relatively high clay contents, relatively mild slopes and relatively planar surfaces compared to the corresponding field means. Statistical analysis revealed that the temporal stability of root zone soil water (0–60 cm) was higher in either dry or wet season than that including both, and soil water exhibited very low temporal stability during the transition period from dry to wet. Based on the temporal stability analysis, field mean soil water contents were estimated reasonably (R2 from 0.9560 to 0.9873) from the point measurements of these time-stable locations. Since the terrains in this study are typical in the hilly regions of the Loess Plateau, the results presented here should improve soil water management in sloping orchards in the Loess Plateau.  相似文献   
8.
水分胁迫和复水对紫花苜蓿幼苗叶绿素荧光特性的影响   总被引:6,自引:2,他引:4  
李文娆  张岁岐  山仑 《草地学报》2007,15(2):129-136
利用PEG-6000模拟水分胁迫(ψs=-0.2MPa,胁迫时间:48 h,复水48 h),研究了紫花苜蓿(Medicago sativa L)品种陇东苜蓿和阿尔冈金叶片叶绿素荧光特性和光合色素含量的变化,旨在探讨紫花苜蓿水分胁迫条件下的光合反应机制.结果表明:光化学淬灭系数(qP)和PSII线性电子传递的有效量子产额(YIELD)以及非光化学淬灭系数(qN)和表观光合电子传递效率(ETR)在胁迫前后随光合有效辐射(PAR)的变化规律分别可用公式:Y=aLn(X) b(Y:qP或YIELD,X:PAR,X≠0)和Y=aX2 bX c(Y:qN或ETR,X:PAR)来表示;在受到干旱胁迫后,PSII最大光能转化效率(Fv/Fm)、PSII潜在活性(Fv/Fo)和光合色素含量均明显低于对照,在任意光强下的qP、YIELD和ETR值也极显著低于对照的相应值,qN值则极显著高于对照的相应值;同时,和对照相比,qN和ETR光响应曲线顶点所对应的光强值在受到胁迫后亦明显下降,表明光抑制初始点的降低和最大光保护能力的减弱,甚至光抑制的提前到来.干旱胁迫使得PSⅡ反应中心结构和功能遭到破坏而部分关闭,光合电子传递受阻,光能利用与光化学转化与能力下降,吸收的光能更多的以热能形式耗散.复水后,虽然有光保护机制的存在,但除陇东苜蓿光合色素含量及阿尔冈金类胡萝卜素外,各参数均未能恢复到对照水平,因此旱后复水不能完全解除干旱对PSII反应中心所带来的伤害.紫花苜蓿幼苗对干旱胁迫较为敏感.供试品种相比,陇东苜蓿耐旱性优于阿尔冈金.  相似文献   
9.
The potato (Solanum tuberosum L.) is widely planted in the Middle Anatolian Region, especially in the Nigde-Nevsehir district where 25% of the total potato growing area is located and produces 44% of the total yield. In recent years, the farmers in the Nigde-Nevsehir district have been applying high amounts of nitrogen (N) fertilizers (sometimes more than 900 kg N ha−1) and frequent irrigation at high rates in order to get a much higher yield. This situation results in increased irrigation and fertilization costs as well as polluted ground water resources and soil. Thus, it is critical to know the water and nitrogen requirements of the crop, as well as how to improve irrigation efficiency. Field experiments were conducted in the Nigde-Nevsehir (arid) region on a Fluvents (Entisols) soil to determine water and nitrogen requirements of potato crops under sprinkler and trickle irrigation methods. Irrigation treatments were based on Class A pan evaporation and nitrogen levels were formed with different nitrogen concentrations.The highest yield, averaging 47,505 kg ha−1, was measured in sprinkler-irrigated plots at the 60 g m−3 nitrogen concentration level in the irrigation treatment with limited irrigation (480 mm). Statistically higher tuber yields were obtained at the 45 and 60 g m−3 nitrogen concentration levels in irrigation treatments with full and limited irrigation. Maximum yields were obtained with about 17% less water in the sprinkler method as compared to the trickle method (not statistically significant). On the loam and sandy loam soils, tuber yields were reduced by deficit irrigation corresponding to 70% and 74% of evapotranspiration in sprinkler and trickle irrigations, respectively. Water use of the potato crop ranged from 490 to 760 mm for sprinkler-irrigated plots and 565–830 mm for trickle-irrigated treatments. The highest water use efficiency (WUE) levels of 7.37 and 4.79 kg m−3 were obtained in sprinkle and trickle irrigated plots, respectively. There were inverse effects of irrigation and nitrogen levels on the WUE of the potato crops. Significant linear relationships were found between tuber yield and water use for both irrigation methods. Yield response factors were calculated at 1.05 for sprinkler methods and 0.68 for trickle methods. There were statistically significant linear and polynomial relationships between tuber yield and nitrogen amounts used in trickle and sprinkler-irrigated treatments, respectively. In sprinkler-irrigated treatments, the maximum tuber yield was obtained with 199 kg N ha−1. The tuber cumulative nitrogen use efficiency (NUEcu) and incremental nitrogen use efficiency (NUEin) were affected quite differently by water, nitrogen levels and years. NUEcu varied from 16 to 472 g kg−1 and NUEin varied from 75 to 1035 g kg−1 depending on the irrigation method. In both years, the NH4-N concentrations were lower than NO3-N, and thus the removed nitrogen and nitrogen losses were found to be 19–87 kg ha−1 for sprinkler methods and 25–89 kg ha−1 for trickle methods. Nitrogen losses in sprinkler methods reached 76%, which were higher than losses in trickle methods.  相似文献   
10.
节水灌溉综合效应评价研究进展   总被引:7,自引:0,他引:7  
综述了20世纪80年代以来节水灌溉综合效应评价领域的研究进展。分析了目前存在的主要问题:缺乏较为完善的基础数据平台、评价方法亟待实用化、亟需建立符合不同层次评价需求的指标体系、规划缺乏科学性,与生产实践脱节等。提出应加强节水灌溉基础理论与节水潜力分析、完善现有节水灌溉技术标准、重视节水灌溉项目综合效应评价方法及评价体系研究和已建节水示范区综合效应的评价等。  相似文献   
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