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1.
A pot experiment was conducted to study the allelopathic effects of initial decomposing leaf litter of Cinnamomum camphora on growth and physiology of Impatiens balsamina. Three leaf litter treatments included 20, 40 and 80 g of C. camphora leaf litter mixed with 8 kg of soil, namely T1, T2, and T3, respectively. In order to test the effect of leaf litter addition on the permeability and ventilation of soil simultaneously, a parallel trial with steamed leaf litter was conducted with the three treatments of the leaf litter. The leaf litter was steamed for 2 d to remove the secondary metabolites as much as possible, dried, and then mixed with 8 kg of soil, namely Z1, Z2, and Z3, respectively. No leaf litter was added in control (CK). The growth parameters of I. balsamina were determined at the 20 d, 60 d, 100 d and 120 d after sowing and the main physiology indicators were determined at the 60 d. The results indicated that: (1) The ground surface diameter and height of I. balsamina were inhibited significantly at 60 d (P < 0.05). Photosynthetic pigments and gas exchange parameters of I. balsamina were inhibited significantly at 60 d, and the inhibition effect was stronger with increased amount of leaf litter addition. The chlorophyll content, Pn and Ls decreased significantly with increased amount of leaf litter (P < 0.05). The activity of superoxide dismutase (SOD) and peroxidase (POD) in leaves of I. balsamina decreased with the increase of leaf litter addition. The content of MDA in treatments T1, T2 and T3 were all higher than that in CK, which indicated that I. balsamina suffered oxidative damage in a certain degree. The content of free proline (Pro) and soluble sugar (SS) in leaves of I. balsamina decreased significantly with the increase of the leaf litter (P < 0.05), while the content of soluble protein (SP) increased. (2) In the parallel trial, 60 d after sowing, no obvious difference was observed between CK and any steamed leaf litter treatment in terms of the morphological and physiological features stated above (P > 0.05). It indicated that the soil physical properties were not greatly influenced by leaf litter addition in the dose interval designed, or that the release of secondary metabolites from decomposing leaf litter was probably a better reason to explain the inhibition of leaf litter treatment to I. balsamina growth. (3)The compound effect (CE) of leaf litter decomposition on I. balsamina was enhanced with increase of the leaf litter, to 0.169, 0.354, and 0.497, respectively, in treatments of T1, T2 and T3. The study indicated that initial decomposition of C. camphora leaf litter in soil reduces the content of photosynthetic pigments, inhibits photosynthetic capacity and resistance physiology of I. balsamina, weakens its adaptability to the environment, and restrains growth of the plant. © 2015, Science Press. All rights reserved.  相似文献   
2.
为研究长沙地区林地土壤水分运动规律,基于2017年3月-2018年2月长沙地区樟树林土壤水分及0~130 cm土壤水、地下水和降水中稳定同位素监测数据,分析了土壤水中稳定同位素特征及其与降水中稳定同位素的关系.结果表明:①土壤水分季节变化表现为丰水期(3-6月,土壤蓄水量大而稳定)、耗水期(7-10月,土壤水分以消耗为主)、补水期(11月-翌年2月,土壤水分以补给为主)3个阶段,土壤含水量由表层至深层呈增加趋势,稳定性增强,土壤含水量的垂向差异依次为耗水期 > 补水期 > 丰水期.②受到冠层截留和地表枯枝落叶吸持的影响,林地的有效降水为降水量(P)>3.3 mm,并且LMWLP > 3.3 mm(降水量>3.3 mm时的当地大气水线)较LMWL的斜率和截距显著增加,与各深度SWL(土壤水线)更接近.③由表层至深层,土壤水稳定同位素受降水入渗、新旧水混合和蒸发的影响减小,0~40 cm土壤水中δ18O均表现为丰水期 > 补水期 > 耗水期,而40~130 cm土壤水中δ18O的季节变化不显著.④观测期间不同水体中lc-excess(δD与LMWL的差值)的平均值依次为降水(0) > 地下水(-2.80‰) > 土壤水(-5.00‰),土壤水中lc-excess随深度的增加而增大.研究显示:土壤水下渗时新旧水混合是一个持续累积的过程,旧的土壤水逐渐被降水替代;受土壤结构、质地等性质的差异及不同降水事件的影响,土壤水分的补给在剖面上存在时滞.   相似文献   
3.
重金属元素在樟树人工林中的累积与迁移   总被引:4,自引:0,他引:4  
结合樟树人工林生态系统生物产量研究,采用Hp3510原子吸收分光光度法测定樟树人工林生态系统不同组分中Cu、Zn、Mn、Pd、Ni、Cd的含量,探讨了重金属元素Cu、Zn、Mn、Pb、Ni、Cd在湖南株洲市樟树人工林中的累积与迁移.结果表明,樟树人工林地土壤层(0~100 cm)中,6种重金属元素的平均含量以Pb为最高,为67.929 mg/kg,Cd最低,仅为0.699 mg/kg,排序为Pb>Zn>Mn>Ni>Cu>Cd,总储量为2 737 174 kg/hm2.在樟树不同器官中,Cu、Zn、Mn、Pd、Ni、Cd的含量范围分别为6.849~13.178 mg/kg,3.776~37.443 mg/kg,32.214~659.130 mg/kg,1.626~15.544 mg/kg,0.218~3.719 mg/kg,1.033~9.506 mg/kg.樟树对土壤中6种重金属元素富集能力排序为Cd>Mn>Zn>Cu>Pb>Ni.在樟树林中,6种重金属元素的总积累量为11.124 kg/hm2,且排序为Mn(8.097 kg/hm2)>Zn(1.429 kg/hm2)>Cu(0.763 kg/hm2)>Pb(0.491 kg/hm2)> Cd(0.272 kg/hm2)>Ni(0.072 kg/hm2),重金属元素积累量空间分布为叶(3.447 kg/hm2)>枝(2.863 kg/hm2)>皮(1.685 kg/hm2)>干(1.635 kg/hm2)>根(1.307 kg/hm2).樟树林与环境之间,Mn的交换能力最强,其次是Cd、Zn、Cu,再次为Ni、Pb.  相似文献   
4.
园林绿化树种香樟叶片的含硫量动态分析   总被引:1,自引:0,他引:1  
植物对一定浓度范围内的大气污染物,具有一定程度的抵抗及吸收净化作用。为了解南京市主要园林绿化树种香樟(Cinnamomum camphora)叶片吸收净化SO2的能力,选择在5个不同污染靶区,以3个不同胸径级的香樟叶片为研究对象,采用硫酸钡比浊法测定了不同季节香樟叶片的含硫量。结果表明:香樟叶片对SO2具有一定的吸收净化能力,其叶片含硫量平均为0.2160%,且其含量随分布区、生长季节及个体胸径不同差异显著;并与异域大气中SO2污染指数成一定的正相关;与个体胸径大小成显著负相关;季节间呈现出"先降后升再降"的动态趋势,于春秋季较高,而夏冬季较低。  相似文献   
5.
长江防护林——樟树林对降雨再分配的影响   总被引:1,自引:0,他引:1  
林冠对降雨的再分配,是森林生态学和森林水文学研究的一个重要方面,其影响降雨从林冠到土壤的转移以及水土流失的变化,具有突出的生态水文意义。通过对樟树林下穿透雨和树干流的定位监测,旨在揭示林冠水文效应的变化规律,结果表明:林冠对降雨的再分配功能受到降雨量的影响,穿透雨、树干流和截留量与降雨量呈显著的正相关(〖WTBX〗P〖WTBZ〗<005);穿透雨率随着降雨量增加而增加,而截留率随降雨量增加而减小,并且两者在高的雨量下逐渐趋于稳定,但是树干流率随着降雨量增加先升高后降低。同时,降雨强度也影响林冠的水文效应,随着降雨强度的增加,穿透雨率升高,截留率下降。在整个测定期间,樟树林穿透雨率为685%,截留率为292%,而树干流率为23%。在不同雨量和雨强级间,樟树林冠对降雨再分配存在着差异,而且林内雨的组成比例(〖WTBX〗SF/TF〖WTBZ〗)也受到降雨量和降雨强度的影响。樟树林下水分输入存在明显的空间异质性,穿透雨率在不同位置间具有显著性的差异,而且穿透雨的空间变化率,即穿透雨率的变异系数(CV)随着降雨量或降雨强度的增加而减少。  相似文献   
6.
同时测定了从贵阳市区到农村3个方向采集的樟树叶、马尾松叶、根际土以及苔藓共计296个样品的氮、硫含量,结合苔藓氮、硫含量估算了相应区域大气氮沉降量和SO_2浓度.结果表明樟树叶氮含量(1.01%~2.37%)和马尾松叶氮含量(0.99%~2.42%)在市区最高,往外明显降低,而在较远农村区域(24 km)又出现回升,反映了农村地区大气输入的氮有所增加;叶硫含量变化范围分别为0.16%~0.43%和0.18%~0.32%,均呈现在市区最高,向外逐渐降低的趋势,在距市区最远处(30~36 km)达到最低值,表明市区的生产生活向大气输入了较高的硫.各区域土壤氮、硫含量均无显著差异,将樟树、松树叶氮、硫含量分别与大气氮沉降量和SO_2浓度(由苔藓氮、硫值计算)进行线性回归分析,发现樟树、松树叶氮含量与大气氮沉降量以及樟树、松树叶硫含量与大气SO_2浓度均呈显著正相关(P0.05).研究表明维管束植物樟树与马尾松叶组织氮、硫含量的变化特征能同时很好地指示贵阳区域大气氮、硫沉降的空间变化.  相似文献   
7.
侧柏、香樟枝叶挥发物对人体生理的影响   总被引:3,自引:0,他引:3  
利用多导电生理技术手段,采用与情绪有较大关系的最常见的生理指标为因变量,从嗅觉的角度研究侧柏和香樟两种常见绿化树种的挥发物对人体的影响,结果表明:嗅闻侧柏(Platycladus orientalis(L)Franco)挥发物后人体手指温度极显著升高,人体血氧含量略有增加,平均心率、心电RR间期值显著降低;嗅闻香樟(Cinnamomum camphora(L)Presl)气味后人体手指温度、血氧含量显著降低,平均心率略有变化,心电RR间期值极显著升高。说明人处在侧柏环境中情绪趋于放松状态,感觉清新、舒爽、愉悦;而在香樟气味环境中人表现出紧张、不快,甚至长时间在这样的环境中会产生厌恶情绪。研究结果有助于从植物保健功能指导人居、游憩环境中绿化树种的科学配置。  相似文献   
8.
以香樟(Cinnamomum cam phora)为试验材料,通过模拟氮沉降的方法,研究了不同氮沉降条件下香樟叶片的光合、叶绿素荧光生理的表现,揭示了相应的生理生态机制.结果表明,适当浓度的氮沉降对香樟的生长具有促进作用,而过量的氮沉降会降低其净光合速率,从而对其生长产生抑制作用;不同处理组香樟的光补偿点(LCP)、光...  相似文献   
9.
In plant configuration of landscaping, herbaceous plant is often inter-planted with ornamental tree species. But unreasonable plant collocation may reduce the effectiveness of afforestation for the inhibition effect of tree on the growth of understory, and further more affect the greening effect. Camphor (Cinnamomum camphora) is widely planted in landscaping accompanying herbaceous plants including morning glory (Pharbitis nil). But camphor was reported to have allelopathic effect on its adjacent plant, therefore correct selection and collocation of plants has important significance to obtain good greening effect. This research aimed to study by a pot experiment the effects of decomposing leaf litter of Cinnamomum camphora on the growth, phenological traits of Pharbitis nil, as well as modification of these effects by nitrogen application. Three application rates of C. camphora leaf litter including 25, 50 and 100 g/pot (denoted by L25, L50 and L100, respectively) and a control (CK) were implemented. Nitrogen application began on the 34th d of decomposition, with 0.39 g urea being divided into three equal portions and added continuously to each pot. The results showed that (1) The height, basal diameter, leaf area and biomass production of Pharbitis nil were all inhibited sharply by exposure to the leaf litter, being decreased by 32.85%-83.78%, 5.23%-23.00%, 30.31%-58.47%, and 40.34%-84.54%, respectively, with the inhibition effect increasing both in intensity and stability with the increase of leaf litter. Such inhibition effect was obviously alleviated by exogenous nitrogen application. (2) The flowering dynamics of Pharbitis nil was greatly impacted by the leaf litter, with the flower initiation 2.5-10.0 d later and the flowering duration 6.3-11.4 d longer compared to the control. Although the leaf litter-treated plants exhibited more (0.5-3.3) flowers than the control, their quality decreased, and the hundred-grain weight of the seed decreased with the increase of leaf litter. However, the differences among treatments in the reproductive parameters mentioned above reduced after nitrogen fertilization. The results indicated that leaf litter of C. Camphora has a great allelopathic effect on morphological and reproductive growth of Pharbitis nil, which may be attributed to the release of phototoxic substances during the decomposition process.  相似文献   
10.
RAPD分子标记在鉴定香樟优选株和普通株中的应用   总被引:6,自引:0,他引:6  
从85个随机引物中选10个随机引物对8个香樟样品的DNA进行了扩增,应用RAPD技术区别6个优选株和2个普通株,共获得78个DNA片断,把这些DNA片断作为遗传位点用UPCMA法计算出各材料间的遗传相似性系数,并作了聚类分析.在D=0.738处8个样品分为两大类,而且普通株同优选株的亲缘关系很近.图2表2参9  相似文献   
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