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1.
紫花苜蓿Medicago sativa是一种优质的多年生豆科牧草,素有"牧草之王"的美称。根腐病是紫花苜蓿生产中的主要限制因素,可抑制植物生长,严重时导致植物死亡,造成巨大的经济损失。丛枝菌根真菌(Arbuscular mycorrhizal fungi,AM)广泛存在于农业系统中,可与植物根系形成内生菌根,提高宿主植物对营养元素和水分的吸收,增加植物产量和抗逆性。本研究以紫花苜蓿为试验材料,探究接种AM真菌摩西球囊霉Glomus mosseae对紫花苜蓿根腐病烟色织孢霉Microdochium tabacinum的影响。结果表明,摩西球囊霉可抑制烟色织孢霉的侵染,植株发病率降低了20.78%;病原菌的侵染显著抑制紫花苜蓿根系生长和养分吸收,植物地下生物量降低12.87%,根长降低20.52%,根系P含量降低了18.29%,丙二醛(MDA)含量提高了12.78%;AM真菌可以缓解病原菌的危害,促进紫花苜蓿生长,与不接种AM真菌的处理相比,地上生物量、地下生物量、根长分别提高了47.77%,38.67%和20.67%;防御酶超氧化物歧化酶(SOD)、过氧化物酶(POD)和过氧化氢酶(CAT)活性分别提高了42.25%、26.05%和33.62%;地上部分和地下部分P含量分别提高了58.63%和75.38%。  相似文献   

2.
Vegetation roots contribute to soil fixation and reinforcement, thus improving soil resistance against erosion. Generally, the amount of soil fixation presented by roots mainly depends on root density and tensile strength. In the present study, we conducted the research in order to further understand the biotechnical properties of Haloxylon persicum and also to quantify its role in increasing soil cohesion in arid lands of Iran. Ten H. persicum shrubs were randomly selected for root distribution and strength investigations, in which five samples were set on flat terrain and other five samples on a moderate slope terrain. The profile trench method was used to assess the root area ratio(RAR) as the index of root density and distribution. Two profiles were dug around each sample, up and downslope for sloped treatment and north and south sides for flat treatment. The results showed that RAR increased with increasing soil depth and significantly decreased in 40–50 cm layers of downhill(0.320%) and 50–60 cm for uphill(0.210%). The minimum values for the northward and southward profiles were 0.003% and 0.003%, respectively, while the maximum values were 0.260% and 0.040%, respectively. The relationship between the diameter of root samples and root tensile strength followed a negative power function, but tensile force increased with increasing root diameter following a positive power function. The pattern of increased cohesion changes in soil profile was relatively similar to RAR curves. The maximum increased cohesion due to the presence of roots in uphill and downhill sides were 0.470 and 1.400 kPa, respectively. In the flat treatment, the maximum increased cohesions were 0.570 and 0.610 kPa in northward and southward profiles, respectively. The analysis of variance showed that wind and slope induced stresses did not have any significant effect on the amount of increased cohesion of H. persicum. The findings served to develop knowledge about biotechnical properties of H. persicum root system that can assist in assessing the efficiency of afforestation and restoration measures for erosion control in arid lands.  相似文献   

3.
极端干旱区胡杨根系分布对土壤水分的响应   总被引:3,自引:1,他引:2  
依据2006和2007年6月至7月在极端干旱区额济纳的实测资料,利用分形和统计的方法对胡杨根系分布与根区土壤水分的关系进行了分析研究,建立了土壤含水率与根系分维值之间的函数关系。根系土壤水分的变化对胡杨根系分布有直接影响,当平均土壤含水率小于0.11 cm3/cm3时,根系分布的分形维数随土壤含水率的增加而增大;当土壤含水率期望值大于0.11 cm3/cm3时,根系分布的分形维数随土壤含水率的增加而减小。平均土壤含水率在0.06-0.3 cm3/cm3之间,是适宜胡杨根系生长的范围。  相似文献   

4.
科尔沁差巴嘎蒿根系分布规律与土壤水分关系的研究   总被引:3,自引:0,他引:3  
以生长在科尔沁大青沟两侧台面上的差巴嘎蒿为研究对象,采用整株挖掘的方法,研究差巴嘎蒿根系分布的规律。结果表明:差巴嘎蒿根系垂直分布深度为0~90㎝,其中0~30㎝的土层中根系分布最多,占根系总长度的85.74%,水平方向上表现为近密远疏的趋势;整体上根系呈主根型分布,形态上呈"伞"型分布。差巴嘎蒿根系分布与土壤水分密切相关。随着深度的增加,土壤含水量逐渐增大,但根系长度、生物量及密度均逐渐降低,两者呈负相关关系,其中根长平均变化率-12.61%、根生物量平均变化率-29.07%,均大于土壤含水量平均变化率7.92%,但比根长却与土壤含水量呈正相关关系,且比根长平均变化率7.58%与土壤含水量平均变化率7.92%相差不大。  相似文献   

5.
覆盖处理苹果细根分布与土壤物理性状响应关系研究   总被引:5,自引:0,他引:5  
以12年生红富士苹果树为试材,研究黄土高原旱塬区不同覆盖措施(覆膜、覆草、覆沙)对苹果细根(直径≤2 mm)及土壤性状的影响。结果表明:地表覆盖可有效降低土壤容重,增大土壤含水量及孔隙度,增加细根数量,增大根系吸收水肥效率。覆膜处理细根水平分布范围与清耕(CK)相似,在距干0~90 cm范围内,垂直密集分布最大深度由CK的60 cm提升至40 cm,36.05%的细根分布在0~20 cm土壤表层。与CK相比,覆草、覆沙处理的细根水平分布范围由90 cm扩展至120 cm,垂直均匀分布整个土壤剖面,利于树体对深层土壤水肥的吸收利用。土壤物理性状与细根根长、表面积、根长密度呈极显著相关,覆膜处理中根径与比根长也与土壤物理性状表现出相关性。综合分析根系分布与土壤物理性状,覆草处理是陇东旱塬区苹果园较为适宜的地表覆盖模式。  相似文献   

6.
LIU Yabin 《干旱区科学》2022,14(7):811-823
Roots exert pullout resistance under pullout force, allowing plants to resist uprooting. However, the pullout resistance characteristics of taproot-type shrub species of different ages remain unclear. In this study, in order to improve our knowledge of pullout resistance characteristics of taproot systems of shrub species, we selected the shrub species Caragana korshinskii Kom. in different growth periods as the research plant and conducted in situ root pullout test. The relationships among the maximum pullout resistance, peak root displacement, shrub growth period, and aboveground growth indices (plant height and plant crown breadth) were analyzed, as well as the mechanical process of uprooting. Pullout resistance of 4-15 year-old C. korshinskii ranged from 2.49 (±0.25) to 14.71 (±4.96) kN, and the peak displacement ranged from 11.77 (±8.61) to 26.50 (±16.09) cm. The maximum pullout resistance and the peak displacement of roots increased as a power function (R2=0.9038) and a linear function (R2=0.8242) with increasing age, respectively. The maximum pullout resistance and the peak displacement increased with increasing plant height; however, this relationship was not significant. The maximum pullout resistance increased exponentially (R2=0.5522) as the crown breadth increased. There was no significant relationship between the peak displacement and crown breadth. The pullout resistance and displacement curve were divided into three stages: the initial nonlinear growth, linear growth, and nonlinear stages. Two modes of failure of a single root occurred when the roots were subjected to vertical loading forces: the synchronous breakage mode and the periderm preferential breakage mode. These findings provide a foundation for further investigation of the soil reinforcement and slope protection mechanisms of this shrub species in the loess area of northeastern Qinghai-Tibet Plateau, China.  相似文献   

7.
刺槐和油松根系密度分布特征研究   总被引:9,自引:3,他引:9  
通过分层挖掘法,对20龄刺槐、油松林根系密度的空间分布进行了研究.结果表明:油松主根和副主根粗壮发达,水平根系形成构架根;刺槐水平根极为发达,无明显主根.刺槐和油松根系重量、长度和体积密度的垂直分布趋势基本相同,随土层深度增加而降低.0~60 cm土层的根长和根重密度占总根量密度的70%以上,粗根(直径>3 mm)在上层所占比例比下层略大,细根(直径<1 mm)和较细根(直径1~3 mm)在各土层分布较为接近,总根量中粗根占较大比重.刺槐和油松林下土壤干密度随深度加深而增大,油松林下土壤含水量高于刺槐林,土壤干密度低于刺槐林.与刺槐林地相比,油松林地的土壤物理性质得到了明显改善,增强了土壤的抗旱、保墒能力.  相似文献   

8.
Hai ZHU 《干旱区科学》2019,11(5):685-700
Soil moisture is critical for vegetation growth in deserts. However, detailed dataregarding the soil moisture distribution in space and time in the Gurbantunggut Desert have not yet been reported. In this study, we conducted a series ofinsitu observation experiments in a fixed sand dune at the southern edge of the GurbantunggutDesert from February 2014 to October 2016, to explore the spatio-temporal variation of soil moisture content, investigate the impact of Haloxylonammodendron (C. A. Mey.) Bungeon soil moisture content in its root zone, and examine the factors influencing the soil moisture spatial pattern. One-way analysis of variance,least significant difference testsand correlation analysis were used to analyze the data. The results revealed that the soil moisture content exhibited annual periodicity and the temporal variation of soil moisture content throughout a year could be divided into three periods, namely, a moisture-gaining period, a moisture-losing period and a moisture-stable period.According to the temporal and spatial variability, the 0-400 cm soil profile could be divided into two layers: an active layer with moderate variability and a stable layer with weak variability.The temporal variability was larger than the spatial variability in the active layer,and the mean profile soil moisture content at different slope positions displayed the trend of decreasing with increasing relative heightand mainly followed the order of interdunearea>westand east slopes>slope top.The mean profile soil moisture content in the root zone of dead H. ammodendronindividuals was significantly higher than that in the root zones of adult and young individuals, while the soil moisture content in the root zone of adult individuals was slightly higher than that in the root zone of young individuals with no significant difference.The spatial pattern of soil moisture was attributable to the combined effects of snowfall, vegetation and soil texture, whereas the effects of rainfall and evaporation were not significant. The findings may offer a foundation for the management of sandy soil moisture and vegetation restoration in arid areas.  相似文献   

9.
Alhagi sparsifolia Shap. (Fabaceae) is a spiny, perennial herb. The species grows in the salinized, arid regions in North China. This study investigated the response characteristics of the root growth and the distribution of one-year-old A. sparsifolia seedlings to different groundwater depths in controlled plots. The ecological adaptability of the root systems of A. sparsifolia seedlings was examined using the artificial digging method. Results showed that: (1) A. sparsifolia seedlings adapted to an increase in groundwater depth mainly through increasing the penetration depth and growth rate of vertical roots. The vertical roots grew rapidly when soil moisture content reached 3%-9%, but slowly when soil moisture content was 13%-20%. The vertical roots stopped growing when soil moisture content reached 30% (the critical soil moisture point). (2) The morphological plasticity of roots is an important strategy used by A. sparsifolia seedlings to obtain water and adapt to dry soil conditions. When the groundwater table was shallow, horizontal roots quickly expanded and tillering increased in order to compete for light resources, whereas when the groundwater table was deeper, vertical roots developed quickly to exploit space in the deeper soil layers. (3) The decrease in groundwater depth was probably responsible for the root distribution in the shallow soil layers. Root biomass and surface area both decreased with soil depth. One strategy of A. sparsifolia seedlings in dealing with the increase in groundwater depth is to increase root biomass in the deep soil layers. The relationship between the root growth/distribution of A. sparsifolia and the depth of groundwater table can be used as guidance for harvesting A. sparsifolia biomass and managing water resources for forage grasses. It is also of ecological significance as it reveals how desert plants adapt to arid environments.  相似文献   

10.
Medicago ruthenica (L.) Trautv., a wild grass species, is commonly grown as a forage crop in arid and semi-arid areas of China. Herein, we explored mulch patterns and planting methods for optimizing M. ruthenica seed production in the loess plateau of the Gansu Province, China from 2017 to 2019. The experiments comprised of six treatments including (1) flat ground without mulch (F0, control); (2) flat ground with a transparent white 0.008 mm thick plastic film mulch (FP); (3) flat ground with 4500 kg/hm2 straw mulch (FS); (4) furrow with 10 cm ridges (R0); (5) furrow with plastic film mulch (RP); and (6) furrow with straw mulch (RS). Results showed that the harvested seed yield of M. ruthenica was the highest under RP treatment, followed by FP and FS treatments. Soil moisture content from mid-May to mid-August in 2017 was the highest under RP and FP treatments, followed by RS and FS treatments. In 2018, soil moisture content was the highest under RS and FS treatments. In 2017 and 2018, soil temperature was the highest under FP and RP treatments, followed by F0 and R0 treatments. Total and available nitrogen, phosphorus, and potassium contents were the highest under RS and FS treatments, followed by RP and FP treatments. Comprehensive analysis result showed that surface mulch improved soil microenvironment and increased seed yield of M. ruthenica. Straw mulch also effectively recycled excess crop straw, thereby encouraging the sustainable development of agriculture in this area. In conclusion, FS treatment was considered the best mode for M. ruthenica seed production in this area.  相似文献   

11.
通过对毛乌素沙地不同水分梯度根系垂直分布的研究表明:不同水分梯度根系分布随土壤深度的增加呈指数形式下降,不同梯度由于土壤水分、植被根系类型的差异,不同水分梯度植被根系的空间分布也有差异,不同梯度根量随土壤垂直深度的模拟方程分别为:y=9.5736e-0.1341x,R2=0.8859(I);y=16.246e-0.2037x,R2=0.9301(II);y=32.001e-0.1904x,R2=0.9544(III);y=28.336e-0.1993x,R2=0.9484(IV)。不同水分梯度土壤含水率变化程度不同,同一水分梯度各层土壤含水率变化幅度亦有差异,0.1m土壤含水率变异系数最大,随着土壤深度增加变异系数减小,根据土壤含水率变异系数分析我们将各层土壤水分垂直变化划分为活跃层(0-0.1m)、次活跃层(0.2-0.6m)、相对稳定层(1m)(I、II、III);而对IV梯度划为活跃层(0-0.1m、1m)、相对稳定层(0.3m)。根系生物量垂直分布与其对应土壤含水率有明显相反的关系,土壤含水率的变化与根系生物量的变化趋于相反,当土壤含水率增大时相应区域根系生物量减小;反之则增加。随水分梯度的增加各梯度最高水分利用层逐渐向表层发展,从第I梯度0.4m的6.84到第IV梯度0.1m的14.33。  相似文献   

12.
疏叶骆驼刺幼苗根系生态学特性对水分处理的响应   总被引:7,自引:2,他引:5  
通过人工壕沟挖掘法,对疏叶骆驼刺幼苗在不同水分条件下的根系生态学特性的季节变化进行研究.结果表明:①在土壤水分较好的环境中,疏叶骆驼刺幼苗大量拓展水平根,并产生分蘖植株竞争光照资源;而在土壤水分相对缺乏时垂直根系发达,向深层土壤拓展资源空间.根系形态的可塑性是疏叶骆驼刺幼苗获取水分适应干旱环境的重要策略之一.②根冠比随土壤水分的减少而增加,且在生长季后期这种趋势更加明显,增加根冠比是疏叶骆驼刺幼苗适应干旱的策略之一.③幼苗根系的扎根深度和垂直生长速度随着土壤水分的减少而增加.④根系生物量、根系表面积随土壤深度的增加而减小,并在垂直剖面上呈倒金字塔状分布.根系生物量形成过程符合Logistic"慢-快-慢"的S型生长曲线,总生物量随着土壤干旱程度的增加而降低.  相似文献   

13.
昆虫病原真菌绿僵菌对地下害虫防治具有良好应用前景,而大量释放绿僵菌可能引起土著微生物群落变化,从而影响其植物保护的综合效果。本文研究了花生播种期施用绿僵菌后,在根际和根围土壤中绿僵菌自身种群及土著细菌、真菌和放线菌种群的消长和群落结构变化。结果表明,绿僵菌种群在30 d内快速下降,之后降速减缓,以低密度持续存活。随花生生长,土壤微生物自身有消长过程,施用绿僵菌对放线菌影响最大、真菌其次、细菌最小,在根际的影响大于在根围的影响。分别地,绿僵菌处理对根际和根围细菌、根围真菌无显著影响;使根际真菌种群初期的下降速度减缓,到达谷底时间由15 d推迟到30 d,但回升速度加快,达峰顶由60 d提前到45 d,峰值降低1/3;绿僵菌明显抑制了根际放线菌种群,使其消长变化周期与对照完全相反,且45 d时回落至低点后不再回升;绿僵菌减缓了根围放线菌种群下降,使达谷底时间由30 d推迟到45 d,且回升幅度减小。土壤微生物群落结构在施菌后15~30 d的幼苗至初花期有明显变化,细菌种群总体占比显著下降,但与对照相比,施菌后的根际细菌占比提高,真菌占比下降,放线菌占比显著地先抑后扬。在根围的变化相对较小。45 d即盛花期后,三类微生物结构逐渐恢复趋近原来状态。  相似文献   

14.
为了探索大蒜根系分泌物粗提物及其四种成份对烟蚜的影响,分析大蒜在烟田套种生态系统中对烟蚜的控制作用,在室内利用固体琼脂培养法培养、分离了大蒜根系分泌物粗提物,并测定了该分泌物粗提物及其四种成份(邻苯二甲酸二丁酯、2,6-二异丙基苯酚、二烯丙基二硫和2,6-二叔丁基对甲酚)对烟蚜的忌避、触杀等生物活性。大蒜根系分泌物粗提物对烟蚜有显著的忌避、触杀活性。大蒜根系分泌物粗提物为4 g/mL时,对烟蚜的忌避活性较好,忌避率在75.93%~80.56%,且对烟蚜的触杀活性也较好,其死亡率在92.22%~96.67%。大蒜根系分泌物4种成份对烟蚜也有显著的忌避、触杀活性。2,6-二异丙基苯酚对烟蚜的忌避活性较好,其忌避率在93.65%~100.00%;邻苯二甲酸二丁酯和2,6-二异丙基苯酚对烟蚜触杀活性较好,其死亡率在83.33%~92.22%。4种成份对烟蚜的忌避活性由强至弱顺序为2,6-二异丙基苯酚,二烯丙基二硫,邻苯二甲酸二丁酯,2,6-二叔丁基对甲酚;而触杀活性由强至弱顺序为2,6-二异丙基苯酚,邻苯二甲酸二丁酯,2,6-二叔丁基对甲酚,二烯丙基二硫。以上结果表明,大蒜根系分泌物粗提物及其4种成份对烟蚜均具显著的忌避、触杀作用,这为研制含大蒜根系分泌物或其4种成份的植物保护剂和间作套种大蒜等绿色防控措施防控烟蚜提供科学参考。  相似文献   

15.
采用盆栽的方法,以3种不同的光照条件、土壤含水量及苗木含水量,对4 a生油松(Pinus tabulaeformis)移植苗进行处理,测定3种因素交互作用下油松移植苗的根系活力。结果表明:光照强度的降低、苗木含水率的减少及土壤含水量的增加,促使油松移植苗根系活力不断降低;油松移植苗的苗木含水量为63%或土壤含水量为30%时,自然光照下根系活力均显著大于遮光条件下根系活力;在自然光强、63%的苗木含水量及30%土壤含水量其中一种条件影响下,其他两个因素的变化均可引起根系活力的显著变化;在自然光强与53%自然光强条件下,或在土壤含水量为30%和50%条件下,苗木失水均导致根系活力降低。  相似文献   

16.
为寻求半干旱地区垄沟集雨环保沟覆盖材料,探究垄沟集雨种植增产机理,在半干旱黄土高原区通过大田试验,以传统平作为对照,研究不同沟覆盖方式(无覆盖、生物可降解地膜覆盖和秸秆覆盖)对土壤含水量、玉米根干重、根长、根表面积和根体积的影响。结果表明:垄沟集雨种植沟中的土壤含水量、玉米根干重、根长、根表面积和根体积明显大于垄中;与平作相比,无覆盖、生物可降解地膜覆盖和秸秆覆盖耕层沟中作物生育期平均土壤含水量分别增加6.9%、10.6%和9.3%,垄中平均土壤含水量分别降低13.8%、10.9%和5.6%;玉米总根干重(沟中+垄中)分别降低15.9%、6.1%和16.8%,总根长分别增加37.6%、43.7%和34.8%,总根表面积分别增加10.5%、33.6%和15.0%。无覆盖和秸秆覆盖玉米总根体积分别降低34.5%和16.3%,生物可降解地膜覆盖玉米总根体积增加13.2%。与传统平作相比,垄沟集雨种植增加土壤水分、玉米根长和根表面积,降低玉米根干重。在不同沟覆盖方式中,生物可降解地膜覆盖具有较高土壤含水量、根长、根表面积和根体积。  相似文献   

17.
Soil erosion on the Loess Plateau of China is effectively controlled due to the implementation of several ecological restoration projects that improve soil properties and reduce soil erodibility. However, few studies have examined the effects of vegetation restoration on soil properties and erodibility of gully head in the gully regions of the Loess Plateau. The objectives of this study were to quantify the effects of vegetation restoration on soil properties and erodibility in this region. Specifically, a control site in a slope cropland and 9 sites in 3 restored land-use types(5 sites in grassland, 3 in woodland and 1 in shrubland) in the Nanxiaohegou watershed of a typical gully region on the Loess Plateau were selected, and soil and root samples were collected to assess soil properties and root characteristics. Soil erodibility factor was calculated by the Erosion Productivity Impact Calculator method. Our results revealed that vegetation restoration increased soil sand content, soil saturated hydraulic conductivity, organic matter content and mean weight diameter of water-stable aggregate but decreased soil silt and clay contents and soil disintegration rate. A significant difference in soil erodibility was observed among different vegetation restoration patterns or land-use types. Compared with cropland, soil erodibility decreased in the restored lands by 3.99% to 21.43%. The restoration patterns of Cleistogenes caespitosa K. and Artemisia sacrorum L. in the grassland showed the lowest soil erodibility and can be considered as the optimal vegetation restoration pattern for improving soil anti-erodibility of the gully heads. Additionally, the negative linear change in soil erodibility for grassland with restoration time was faster than those of woodland and shrubland. Soil erodibility was significantly correlated with soil particle size distribution, soil disintegration rate, soil saturated hydraulic conductivity, water-stable aggregate stability, organic matter content and root characteristics(including root average diameter, root length density, root surface density and root biomass density), but it showed no association with soil bulk density and soil total porosity. These findings indicate that although vegetation destruction is a short-term process, returning the soil erodibility of cropland to the level of grassland, woodland and shrubland is a long-term process(8–50 years).  相似文献   

18.
滴灌条件下根区水分对春小麦根系分布特征及产量的影响   总被引:6,自引:2,他引:4  
通过小区滴灌根区水分控制试验,研究亏缺、丰水、适水不同水分处理对春小麦根系特征的垂直分布、产量构成和水分利用效率等的影响.结果表明,孕穗-扬花是滴灌春小麦根系生长的关键时期,其根系主要分布在0~40 cm土层,根长密度和根干重在土壤剖面上的分布呈y=A×e-Bx的负指数递减趋势.不同根区水分对春小麦根系生长及分布有显著...  相似文献   

19.
水分胁迫对覆膜滴灌棉花根系活力和叶片生理的影响   总被引:15,自引:0,他引:15  
采用田间试验法,分析不同程度水分胁迫条件下棉花花铃期根尖根系活力、叶片叶绿素、脯氨酸和丙二醛含量变化,并对叶片脯氨酸、丙二醛含量和根系活力与土壤含水率进行相关性分析。试验以60 cm土层田间持水量的105%、100%、95%、90%、85%、80%为灌溉上限,共设6个灌水梯度,即5 400、4 950、4 500、3 750、2 850 m3/hm2和2 550 m3/hm2。结果表明:单株叶片干重及叶面积、地上部干生物量、株高、叶绿素含量随灌水量的减少而降低,根冠比随灌水量的减少而增加。脯氨酸及丙二醛含量随灌水量的降低而升高,且与土壤含水率呈负相关关系,相关系数(r)分别为-0.704和-0.667;根系活力随灌水量的降低而降低,与土壤含水率呈正相关关系,其相关系数为0.67。当灌水上限为95%,即灌水量为4 500 m3/hm2时,作物表现出轻微的水分胁迫,随灌溉量的继续降低,胁迫加重。植物体内脯氨酸、丙二醛含量及根系活力与土壤含水率的相关关系在一定程度上可以用来表征棉花受干旱程度,可为棉花的灌溉管理提供参考依据。  相似文献   

20.
不同种植年限苜蓿地土壤环境效应的研究   总被引:2,自引:0,他引:2  
随着苜蓿种植年限的延长,土壤质量发生一系列变化。为了揭示不同种植年限苜蓿地土壤质量的变化,以毗邻种植的1~5年生苜蓿为研究对象,对土壤水分、养分及微生物的变化进行研究,分析比较不同种植年限苜蓿地土壤质量的变化。结果表明:在苜蓿生长季节内,不同种植年限苜蓿的土壤含水量的时空变化均呈先增加后降低的变化趋势;随种植年限的延长,土壤有机质、全氮、碱解氮含量呈递增趋势,速效钾的含量呈先增加后降低的趋势;各种植年限苜蓿草地土壤微生物群落以细菌占优势,且细菌和放线菌的数量随种植年限的延长呈递增趋势,真菌变化规律不明显,此外4年生苜蓿地微生物总数最大,是其它各种植年限的1.04~2.60倍。说明种植年限对苜蓿草地土壤质量有一定程度的影响,且因种植年限的长短,影响程度也各异。  相似文献   

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