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1.
阔叶和杉木人工林对土壤碳氮库的影响比较   总被引:2,自引:0,他引:2  
通过比较我国亚热带地区19年生阔叶人工林和杉木人工林土壤碳氮储量,探讨树种对土壤碳氮库的影响.结果表明:阔叶人工林0~40 cm土层碳储量平均为99.41 Mg·hm-2,比杉木人工林增加33.1%;土壤氮储量为6.18 Mg·hm-2,比杉木人工林增加22.6%.阔叶人工林林地枯枝落叶层现存量、碳和氮储量分别是杉木人工林的1.60、1.49和1.52倍,两个树种的枯落叶生物量、碳和氮储量均有显著差异.枯枝落叶层碳氮比值与土壤碳、氮储量之间呈显著负相关.阔叶人工林细根生物量(0~80 cm)是杉木林的1.28倍,其中0~10 cm土壤层细根生物量占48.2%;阔叶人工林细根碳、氮储量均高于杉木人工林.在0~10 cm土层,细根碳储量与土壤碳储量具有显著正相关关系.阔叶树种比杉木的土壤有机碳储存能力更大.  相似文献   

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Chinese fir (Cunninghamia lanceolata (Lamb.) Hook.) is the most important conifer species for timber production with huge distribution area in southern China. Accurate estimation of biomass is required for accounting and monitoring Chinese forest carbon stocking. In the study, allometric equation was used to analyze tree biomass of Chinese fir. The common methods for estimating allometric model have taken the classical approach based on the frequency interpretation of probability. However, many different biotic and abiotic factors introduce variability in Chinese fir biomass model, suggesting that parameters of biomass model are better represented by probability distributions rather than fixed values as classical method. To deal with the problem, Bayesian method was used for estimating Chinese fir biomass model. In the Bayesian framework, two priors were introduced: non-informative priors and informative priors. For informative priors, 32 biomass equations of Chinese fir were collected from published literature in the paper. The parameter distributions from published literature were regarded as prior distributions in Bayesian model for estimating Chinese fir biomass. Therefore, the Bayesian method with informative priors was better than non-informative priors and classical method, which provides a reasonable method for estimating Chinese fir biomass.  相似文献   

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杉木人工林种子雨组成和季节动态   总被引:1,自引:0,他引:1  
杉木人工林已成为亚热带森林的重要组成部分,它具有可持续的自然更新能力,是决定杉木林群落演替方向和维持杉木林大面积存在的基础.本文以杉阔混交林和杉木纯林为研究对象,分析其种子雨的物种组成、数量大小和季节动态,以及林分优势物种种子雨数量特征和季节变化,揭示种源条件是否是制约杉木人工林天然更新的主要因素.结果表明:杉阔混交林和杉木纯林分别收集到13科18属21种和12科16属19种的种子.混交林和纯林的所有物种种子雨强度分别为3797和3300粒·m-2.乔木物种种子数量在种子雨中占绝对优势,混交林占89.1%,纯林占86.2%,其中杉木种子数量最多,其完整种子雨强度分别为825和345粒·m-2.两林分种子雨各类型种子所占比例均为完整种子>干瘪或腐烂种子>被取食种子.两林分种子雨均具有明显的季节动态,均在秋季到达高峰,且在落种高峰期种子雨以完整种子为主.无论是杉阔混交林还是杉木纯林都有充足的种源,种源(种子雨)条件不是制约杉木林天然更新的主要因素.  相似文献   

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Ren Hua Zheng  Shun De Su  Hui Xiao 《Grana》2013,52(5):363-370
Microsporongium development in Chinese fir (Cunninghamia lanceolata) was investigated using cytochemical methods with a special attention to the fluctuations (in amount and distribution) of polysaccharide and lipid reserves along the development of the microsporangium. Semi-thin sections of microsporangia at different developmental stages were stained with periodic acid–Schiff (PAS) reagent and Sudan Black B to detect insoluble polysaccharides and neutral lipids, respectively. In young microsporangia, microspore mother cells began to accumulate starch grains and lipids, which disappeared during microspore development. Following microspore division, the starch grains present in bicellular pollen disappeared and abundant lipid deposits were accumulated. In mature pollen, only abundant lipids accumulated as storage material. The pollen wall of C. lanceolata is predominantly composed of polysaccharidic intine, and the sporopollenin-containing exine is weakly developed and only forms a thin layer covering the intine.  相似文献   

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香草醛对杉木幼苗生长的影响   总被引:44,自引:5,他引:44  
为了解杉木连栽土壤中有毒化感物质对杉木幼苗毒害作用 ,采用水培杉木幼苗方法 ,通过投加不同浓度香草醛 ,发现 1mg·kg- 1 香草醛显著抑制杉木种子胚根的伸长 (P<0 .0 5) ,只为对照的 70 % ;香草醛浓度达 1 0mg·kg- 1 时 ,叶绿素总量明显下降到对照的80 % ;超过 2 0mg·kg- 1 对杉木幼苗地径与高度生长产生明显抑制作用 ;50mg·kg- 1 以上将明显影响地上部分枝叶的正常生长发育 ,及至植株冠层的生长 ;超过 1 0 0mg·kg- 1 ,整个植株的生长受到显著抑制 .香草醛是连栽土壤中毒性较大的一种有毒化感物质 ,是杉木存活率低的重要原因之一 .  相似文献   

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《农业工程》2014,34(1):66-71
Burned and unburned mineral soils (0–10 cm) from a 40-year-old Chinese fir (Cunninghamia lanceolata) forest in Nanping, Fujian, China were incubated for 90 days at different temperatures (25 °C and 35 °C) and humidity [25%, 50%, and 75% of water holding capacity (WHC)] conditions. Carbon (C) mineralization of all soils was determined using CO2 respiration method. The results showed that CO2 evolution rates of the burned and control soils exhibited similar temporal patterns, and similar responses to temperature and moisture. CO2 evolution rates for all soil samples decreased with incubation time. At different humidity conditions, average rate of C mineralization and cumulative mineralized C from burned and control soils were significantly higher at 35 °C than at 25 °C. This implied that C mineralization was less sensitive to soil moisture than to temperature. In both soils at 25 °C or 35 °C, the amount of soil evolved CO2 over the 90 days incubation increased with increasing moisture content from 25% to 75% WHC. A temperature coefficient (Q10) varied with soil moisture contents. The maximum values recorded for Q10 were 1.7 in control soil and 1.6 in burned soil both at 25% WHC. However, there were no significant differences in Q10 values between the control and burned soils over all moisture ranges (P > 0.05). The data of cumulative C–CO2 released from control and burned soils were fitted to two different kinetic models. The two simultaneous reactions model described mineralization better than the first-order exponential model, which reflected the heterogeneity of substrate quality. Based on these results, it is possible to conclude that temperature and moisture are important in the controls of C mineralization, and the combined effects of these variables need to be considered to understand and predict the response of CO2 release in subtropical ecosystems to climate change.  相似文献   

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米槠和杉木人工林土壤呼吸及其组分分析   总被引:4,自引:0,他引:4       下载免费PDF全文
区分森林土壤呼吸组分是了解生态系统碳循环的重要环节。该文以福建省三明市格氏栲自然保护区米槠(Castanopsis carlesii)人工林和邻近的杉木(Cunninghamia lanceolata)人工林为研究对象, 于2012年8月至2013年7月, 采用LI-8100开路式土壤碳通量系统, 通过挖壕沟方法, 测定了土壤呼吸及异养呼吸的速率, 同时测定了5 cm深处的土壤温度和0-12 cm深处的土壤含水量。利用指数模型和双因素模型, 分析土壤呼吸及其组分与土壤温度和土壤含水量的关系, 同时计算了土壤呼吸各组分在土壤呼吸中所占的比例, 并分析了不同森林类型对土壤呼吸及其组分的影响。结果表明: 米槠人工林和杉木人工林土壤呼吸及其组分的季节变化显著, 均呈单峰型曲线, 与5 cm深处的土壤温度呈极显著正相关关系。土壤温度可以分别解释米槠人工林土壤呼吸、自养呼吸和异养呼吸变化的70.3%、73.4%和58.2%, 可以解释杉木人工林土壤呼吸、自养呼吸和异养呼吸变化的77.9%、65.7%和79.2%。土壤呼吸及其组分与土壤含水量没有相关关系。米槠和杉木人工林自养呼吸的年通量分别为4.00和2.18 t C·hm-2·a-1, 占土壤呼吸年通量的32.5%和24.1%; 异养呼吸年通量分别为8.32和6.88 t C·hm-2·a-1, 分别占土壤呼吸年通量的67.5%和75.9%, 米槠人工林土壤呼吸及其组分的年通量都大于杉木人工林。  相似文献   

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杉木采伐迹地造林树种转变对土壤可溶性有机质的影响   总被引:3,自引:0,他引:3  
以二代杉木林采伐迹地上营造的19年生米老排与杉木人工林为对象,采用冷水、热水和2 mol·L-1 KCl溶液提取0~5、5~10和10~20 cm层土壤中的可溶性有机碳(DOC)和有机氮(DON),研究造林树种转变对土壤可溶性有机质的影响.结果表明: 造林树种转变对林地土壤DOC和DON库有显著影响.米老排人工林土壤中用冷水、热水和KCl溶液浸提的DOC含量均显著高于杉木人工林,0~5和5~10 cm层土壤中用冷水和热水浸提的DON含量显著高于杉木林.不同方法浸提的DOC和DON含量大小顺序均为KCl>热水>冷水.在0~5 cm土层,米老排人工林土壤微生物生物量碳(MBC)含量比杉木林高76.3%.相关分析结果显示,热水浸提的DOC和DON与土壤MBC之间均呈显著正相关.不同树种人工林间土壤可溶性有机质的差异主要与凋落物输入的数量和质量有关.在杉木采伐迹地上营造米老排,能够明显改善土壤肥力.  相似文献   

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杉木连栽土壤微生物及生化特性的研究   总被引:38,自引:0,他引:38  
通过对杂木林、一代、二代及三代杉木人工林的土壤微生物、土壤酶活性及生化作用强度研究表明:随着杉木林取代杂木林及杉木连续栽植代数的增加,土壤微生物总数下降、各主要生理类群数量均呈下降趋势,土壤酶活性减弱,土壤生化作用强度降低。土壤微生物学活性降低是杉木连栽后土壤肥力衰退重要原因之一。  相似文献   

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杉木、马尾松及其混交林根际土壤磷素特征   总被引:3,自引:2,他引:3  
Zhang DH  Lin KM  Li BF 《应用生态学报》2011,22(11):2815-2821
2007-2010年,在福建省南平市延平区太平试验林场比较分析了杉木、马尾松纯林及其混交林根际土壤的磷素特征.结果表明:在杉木、马尾松纯林中,根际土壤的有效磷含量均大于非根际土壤.与非根际土壤相比,杉木、马尾松纯林及其混交林的根际土壤pH值均出现下降趋势;根际土O-P的数量低于非根际土,而Al-P和Fe-P则高于非根际土;3种林型中,根际土壤对磷的吸附量小于非根际土壤;而根际土壤磷解吸量和解吸率均高于非根际土壤.杉木、马尾松纯林中,马尾松根际土壤的有效磷、Fe-P、Al-P、解吸量和解吸率均高于杉木,而O-P、磷吸附量则低于杉木.杉木与马尾松混交后,二者根际土壤磷的活化作用进一步加强,且杉木的增幅更大.杉木与马尾松混交有利于杉木根系磷素营养的改善.  相似文献   

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To study the impact of nitrogen deposition on 1-year-old Chinese fir (Cunninghamia lanceolata) seedlings in pots, the dissolved NH4NO3 was sprayed on the seedlings every 3 days for 1 year. The simulated elevated N depositions were equivalent to N0(0), N1(6 gN/(m2 a)), N2(12 gN/(m2 a)), N3(24 gN/(m2 a)) and N4(48 gN/(m2 a)). The results indicated that medium N treatments (N2, N3) enhanced growth significantly. The height, stem base diameter and per-seedling biomass of Chinese fir seedlings increased with N loads and decreased in the high N treatments. Compared to N0, the height and per-seedling biomass were highest in N2 treatment and increased by 10.77% and 12.35%, respectively. The stem base diameter was highest in N3 treatment and increased by 8.81% compared to N0. The net photosynthetic rate (Pn) in treatments N1, N2, N3, N4 increased by 1.20%, 9.28%, 24.23% and 4.30%, and the highest photosynthetic rate by 67.09%, 125.32%, 148.10% and 51.90%, respectively. The N1–N3 treatments, especially N2, stimulated light compensation point (LCP) of the seedlings significantly, but N4 exhibited inhibitive effect. Compared with LCP, light saturation point (LSP) showed weaker response to N loads, positive to N2, but negative to all other N treatments. Low-to-medium N treatments (N1, N2) enhanced Chl (a + b) by 2.19% and 37.15%, while medium-to-high N treatments (N3, N4) reduced Chl (a + b) by 7.95% and 15.56%, respectively. Water use efficiency (WUE) and stomatal conductance (C) decreased slightly with N loads.  相似文献   

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研究了湖南会同红黄壤区杉木人工林和常绿阔叶林土壤微生物量和养分状况.结果表明,该区杉木人工林取代地带性常绿阔叶林和杉木连栽后,土壤微生物碳、氮和土壤养分含量下降,土壤严重退化.在0~10 cm土层内,常绿阔叶林土壤微生物碳和氮含量为800.5和84.5 mg·kg-1,分别是第1代杉木林的1.90和1.03倍、第2代杉木林的2.16和1.27倍;在10~20 cm土层内,常绿阔叶林土壤微生物碳和氮含量为475.4和63.3 mg·kg-1,分别是第1代杉木纯林的1.86、1.60倍和第2代杉木林的2.11和1.76倍.在0~10 cm 和10~20cm土层内,杉木人工林取代常绿阔叶林和杉木栽植代数增加后,土壤全氮、全钾、铵态氮和速效钾含量均明显降低,但差异并不显著.人工杉木林林分组成单一,其凋落物分解慢、归还养分数量少;炼山等造成的表土流失是杉木人工林土壤微生物量和养分库退化的重要原因.土壤微生物碳与土壤全氮、铵态氮、全钾和速效钾含量呈极显著的正相关,土壤微生物氮与土壤养分含量也达到极显著水平.  相似文献   

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杉木人工林土壤活性有机质变化特征   总被引:24,自引:6,他引:24  
在中国科学院会同森林生态实验站对第一代、第二代杉木林和地带性阔叶林土壤活性有机质主要组分进行了研究.结果表明,土壤活性有机质各组分含量均为杉木林低于阔叶林,而第二代杉木林又低于第一代杉木.第一代杉木林活性有机质总量、微生物生物量碳、水溶性有机碳和碳水化合物含量分别为18.79 g·kg-1、421.7 mg·kg-1、22.2 mg·kg-1和136.3 mg·kg-1,上述活性有机质组分在第二代杉木林中的含量分别是第一代杉木林的73.6%、87.9%、66.3%和3.2%,地带性阔叶林则分别为22.31 g·kg-1、800. mg·kg-1、361.1 mg·kg-1和220.1 mg·kg-1.相关性分析结果表明,土壤活性有机质各组分之间具有不同程度的相关性,其中土壤微生物生物量碳与其它活性有机质组分的相关性相对较高.  相似文献   

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樊后保    刘文飞    徐雷  李燕燕  廖迎春  王启其  张子文 《生态学报》2008,28(6):2546-2546~2553
在12年生的杉木(Cunninghamia lanceolata)人工林中开展模拟氮沉降试验,分N0(对照)、N1、N2、N3等4种处理,N沉降量依次为0、60、120、240 kg N hm-2 a-1,每处理重复3次.通过2 a的监测和分析发现,经N0、N1、N2、N3处理后,凋落物分解过程中C平均含量分别为46.47%、46.35%、46.79%、46.6%,各处理之间无显著差异,但均随着分解时间的增加呈下降趋势.氮沉降明显增加了凋落物中的N含量,且随着沉降水平的增加而增加.各处理凋落物C的分解系数依次为0.739、0.744、0.936、0.708,周转期为4.26 a、4.26 a、3.46 a、4.41 a;而N的分解系数分别为0.458、0.543、0.776、0.565,周转期为6.26 a、5.44 a、3.91 a、5.20 a.N1处理表现出促进N释放的作用,但对C释放影响不明显;N2处理促进了凋落物C、N元素的释放,而N3处理则表现出一定的抑制作用.氮沉降处理也明显降低了凋落物的C/N比,N1、N2、N3处理使C/N比分别比N0下降8.59%、14.20%和17.54%.  相似文献   

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对不同林龄杉木人工林(5、8、21、27和40年生)土壤硝化与反硝化过程及功能微生物丰度进行研究。结果表明: 土壤净硝化速率随林龄的增加波动变化,8、27年生杉木人工林土壤净硝化速率显著低于5、21和40年生。27年生杉木人工林土壤氨氧化古菌(AOA) amoA基因丰度显著低于40年生,其他林龄AOA amoA基因丰度之间无显著差异。不同林龄杉木人工林的氨氧化细菌(AOB) amoA基因丰度、反硝化功能基因丰度以及反硝化潜势均无显著差异。逐步回归分析表明,土壤氨氧化微生物AOA amoA基因丰度受土壤理化性质的影响不显著,土壤总碳和土壤pH是影响AOB丰度的重要因子。反硝化功能基因narGnirKnosZ随土壤pH的增加而增加,编码亚硝酸盐还原酶(NIR)的功能基因(nirKnirS)受土壤总碳的影响。林龄可通过影响AOA amoA基因丰度影响土壤净硝化速率。林龄直接作用于反硝化潜势,或间接影响土壤微生物生物量碳、土壤pH及反硝化功能基因丰度(narGnirK),进而影响反硝化潜势。相较于反硝化过程,土壤硝化作用及AOA amoA基因丰度对杉木林分发育更加敏感,可适当延长轮伐期以降低土壤硝化作用造成的氮流失风险。  相似文献   

19.
不同发育阶段杉木人工林对土壤微生物群落结构的影响   总被引:7,自引:1,他引:7  
采用变性梯度凝胶电泳技术(DGGE),分析土壤细菌16S rDNA和土壤真菌28SrDNA特异性片段多态性,研究了不同发育阶段杉木人工林对土壤微生物群落结构的影响.结果表明:土壤微生物群落结构随着杉木人工林的发育年龄而改变,杉木人工林土壤微生物群落多样性和丰富度随杉木生长发育显著增加(P<0.05),但均显著低于次生阔叶林(P<0.05);聚类分析表明,不同发育阶段杉木人工林土壤真菌群落相似性均<60%,而土壤细菌群落相似性最高可达65%,由此可推测不同发育阶段杉木人工林土壤真菌群落结构变化较土壤细菌群落结构变化剧烈;相关性分析表明,不同发育阶段杉木人工林土壤速效氮、碳氮比与土壤微生物群落多样性显著相关(P<0.05).本研究表明,长期种植单一杉木人工林能够通过改变土壤理化性质来影响土壤微生物群落组成,进而影响森林生态系统养分循环,导致人工林林分生产力下降.  相似文献   

20.
杉木宿存叶片的分解及稳定性碳氮同位素和化学组成   总被引:2,自引:0,他引:2  
杉木枯死枝叶由于长期宿存于树冠,不易脱落,且生物量大,其分解和养分释放对杉木人工林营养循环具有重要意义。用比叶质量法估算了我国亚热带地区福建南平17年生杉木树冠层不同高度宿存叶片的分解程度,测定了碳氮含量、碳氮稳定性同位素及有机碳化学组成。结果表明:杉木宿存叶片的比叶质量呈现出由上向下逐渐减小的趋势,树冠8~10 m处宿存叶片的比叶质量(26.02 mg·cm-2)显著大于刚死杉木叶片的比叶质量(23.12 mg·cm-2)和6~8 m处宿存叶片的比叶质量(15.39 mg·cm-2),而0~2、2~4和4~6 m这3层宿存叶片的比叶质量无显著差异。刚死杉木叶的碳含量(50.67%)和氮含量(0.75%)显著低于不同高度宿存叶片的碳氮含量,而不同高度宿存叶片的碳氮含量和碳氮比均无显著差异。刚死杉木叶片的碳氮比(67.58)显著高于不同高度宿存叶片的碳氮比。当杉木宿存叶片的C/N为45.91±0.45时开始净氮释放。刚死杉木叶片和8~10 m高度处宿存叶片δ15N值显著高于其他高度宿存叶片,而其他高度宿存叶片的δ15N含量无显著差异。不同高度杉木宿存叶片的δ13C无显著差异。杉木宿存叶片中多糖碳和乙缩醛碳首先被分解,而烷基碳、芳碳、酚碳和羧基碳的分解速度比多糖碳和乙缩醛碳的慢。  相似文献   

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