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141.
用GC-MS对湖北清江岩溶地区和尚洞洞顶植物叶片与该洞上覆土壤层中的类脂物进行了分析和对比。在植物叶片中检测出了一系列直链烷烃、脂肪酸、以及丙三醇、植醇和甾醇等类脂物,其中直链烷烃的碳数分布范围大体在C21~C36之间,以C29或C31为主峰且具有奇偶优势;脂肪酸的分布主要集中在中、短链脂肪酸内(C数<23),以C16为主峰呈单峰型分布且具有偶奇优势;醇的分布很不规则,仅检测出丙三醇,植醇和三种甾醇,没有检测到脂肪酮类化合物。与之相比,洞顶上覆土壤层中检测出更加丰富的类脂物。类脂物具有如下特征:正构烷烃以C31为主峰,还存在低碳数正构烷烃和异构烷烃,如2-甲基、3-甲基、4-甲基、5-甲基、6-甲基、7-甲基、8-甲基等一系列的单甲基支链烷烃,这些支链烷烃显示了微生物的贡献;脂肪酸分布也以低碳数的C16为主峰,且低碳数脂肪酸的含量较植物叶片中明显的增加,同时一些异构和反异构脂肪酸(C14∶0,C15∶0和C17∶0)以及一些单不饱和脂肪酸(C16∶1,C17∶1,C18∶1和C20∶1)也被检测到,也表明土壤中的脂肪酸不仅存在高等植物的贡献,还存在微生物的来源;没有植醇,但出现姥鲛烷和植烷并检测到了一系列脂肪醇化合物,碳数分布在C21~C36之间;检测到一系列的酮,具有奇偶优势,碳数分布范围在C23~C30和C33。高等植物叶片和土壤的差异反映了微生物对高等植物类脂物输入到土壤过程的重要贡献。本研究工作不仅提供了该岩溶地区植物叶片的类脂物信息,还为研究土壤有机质的来源和植物叶片中类脂物在地质过程中的转变提供信息,更为研究岩溶地区滴水和石笋中类脂物的来源提供一定的参考。  相似文献   
142.
Field measurements on leaf removal by populations of sesarmid crabs at different locations in the Bangrong mangrove forest, Phuket, Thailand, indicated that crabs on average can remove 87% of the daily leaf litter fall by ingestion or burial. The removal rate is correlated positively with the number of crab burrows and negatively with tidal inundation time. The results from the field were supplemented with observations on the behavior of Neoepisesarma versicolor in laboratory microcosms and a mangrove mesocosm. N. versicolor feeds primarily at night and total time spent feeding was up to an order of magnitude higher in the artificial microcosms than under simulated in situ conditions in the mesocosm. Most of the time during both day and night was spent resting near the entrance or inside burrows. N. versicolor mainly feeds on mangrove leaves and scraps of food material from the sediment surface. This is supported by examinations of stomach content, which showed that 62% is composed of higher plant material and 38% of detritus and mineral particles from the sediment. The nutritive value of leaves and detritus is insufficient to maintain crab growth. Sesarmid crabs may instead obtain the needed nutrients by occasional consumption of nitrogen-rich animal tissues, such as carcasses of fish and crustaceans, as indicated by the presence of animal remains in the stomach and the willingness of crabs to consume fish meat. Laboratory experiments on leaf consumption and leaf preferences of N. versicolor indicate that they preferentially feed on brown leaves, if available, followed by green and yellow leaves. If all species of sesarmid crabs in the Bangrong mangrove forest consume leaves at the same rate as N. versicolor, they could potentially ingest 52% of the total litter fall.  相似文献   
143.
大亚湾红树林与海岸植物叶片气孔特征及其发育   总被引:5,自引:0,他引:5  
缪绅裕  王厚麟 《台湾海峡》2001,20(2):251-258
光镜下观察了大亚湾地区红树林及海岸20种植物叶片气孔的结构特征及部分植物气孔器的发育过程。结果表明:大部分植物仅下表皮具气孔;气孔类型有无规则、平列、环绕、横列和四轮列型;气孔指数和气孔密度不同植物间变化较大;保卫细胞以卤蕨最大,阔苞菊最小;气孔开张度以桐花树最大,阔苞菊最小。高盐度对秋茄、木榄幼苗叶片气孔器的发生发育有一定抑制作用。海芒果、海漆的气孔器发育为周源型,而木榄、秋茄为中源型。多数真红树植物气孔在表皮下陷,发生于保卫细胞形成之后,气孔特征及其发育表现出生活于相同海岸带的不同植物既有相似性又有多样性。  相似文献   
144.
The temporal dynamics of two seagrass species, Zostera marina and Z. japonica, were monitored monthly in Dadae Bay, Geoje Island, on the southern coast of Korea. Plant morphological characteristics, shoot density, biomass, leaf production, reproductive effort, and environmental characteristics were monitored from July 2001 to July 2002. Zostera japonica occurred in the intertidal zone and Z. marina occurred in the subtidal zone from 0.5 to 2.5 m below the mean low water level. Shoots and rhizomes were significantly larger in Z. marina than in Z. japonica, whereas the shoot density was greater in Z. japonica than in Z. marina. Despite differences in morphology and shoot density, biomass did not differ significantly between the species. Reproduction occurred from April to June in Z. marina and from May to July in Z. japonica. The proportion of reproductive shoots was approximately three times higher in Z. marina than in Z. japonica. Seasonal variation in the biomass of Z. japonica was caused by changes in both shoot size and density, whereas that of Z. marina was mainly caused by changes in shoot length. Leaf production in Z. marina and Z. japonica showed clear seasonal variation, and leaf production in Z. marina (2.6 ± 0.2 g DW·m−2·day−1) was higher than that in Z. japonica (1.7 ± 0.2 g DW·m−2·day−1). The mean plastochrone interval was not significantly different between the two species, whereas the leaf lifetime of Z. marina was longer (69 ± 7.8 days) than that of Z. japonica (59 ± 8.3 days). Our results indicated that seasonal leaf growth patterns in Z. japonica are correlated with irradiance and temperature, whereas those in Z. marina respond most to irradiance. Seasonal changes in irradiance appeared to control the temporal variation in above‐ground biomass in both species.  相似文献   
145.
Evapotranspiration (ET) and canopy wetness were measured over a 2‐year intensive field campaign at the Chi‐Lan Mountain cloud forest site in Taiwan. Eddy covariance and sap flow methods were applied to measure ET and tree sap flow of the endemic yellow cypress (Chamaecyparis obtusa var. formosana). ET was 553 mm yr?1 over the study period with an annual rainfall and fog deposition of 4893 and 288 mm yr–1, respectively. The duration of canopy wetness exceeded actual fog or rain events (mostly in the afternoon), and the intercepted water was evaporated later in the following dry morning. The cumulative wet duration accounted for 52% of time over the study period, which was longer than the duration of rainfall and fog altogether (41%). As it adapted to the extremely moist environment, the yellow cypress behaved in a wet‐enhanced/dry‐reduced water use strategy and was sensitive to short periods of dry atmosphere with high evaporation potential. During dry days, the sap flow rate rose quickly after dawn and led to conservative water use through midday and the afternoon. During periodically wet days, the canopy was mostly wetted in the morning, and the interception evaporation contributed largely to the morning ET. The initiation of morning sap flow was postponed 1–3 h, and the sap flow rate tended to peak later at midday. The midday canopy conductance was higher in the periodically wet days (10.6 mm s–1) as compared with 7.6 mm s?1 in the dry days. Consequently, the dry‐reduced water use strategy led to much lower annual ET with respect to the available energy (~46%) and high precipitation input (~11%). The moist‐adapted ecohydrology we report reveals the vulnerability of montane cloud forests to prolonged fog‐free periods. More research is urgently needed to better understand the resilience of these ecosystems and formulate adaptive management plans. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   
146.
联合HJ-1/CCD和Landsat8/OLI数据反演黑河中游叶面积指数   总被引:1,自引:0,他引:1  
目前制约30 m分辨率地表参数遥感提取的主要因素是有限的观测个数,而联合多传感器观测是提高单位时间观测频次的一个有效途径。本文以黑河中游为研究区,利用HJ-1/CCD和Landsat 8/OLI传感器构建多传感器观测数据集。对多传感器观测数据集在观测周期内的有效观测个数、观测角度和双向反射分布函数BRDF分布特征、以及经过预处理后的多传感器数据一致性等问题进行分析。不同传感器观测数据质量差异是多传感器联合反演的主要问题,因此本文首先制定了多传感器数据质量控制方案,然后利用统一模型查找表反演单传感器叶面积指数LAI结果,对10天观测周期内经过质量筛选的单传感器反演结果采用平均方法合成LAI产品。结果表明,LAI有效反演像元占总反演像元比例由单传感器的6.4%—49.7%提高到多传感器的75.9%。利用地面测量数据进行验证分析,LAI反演结果与地面实测数据的均方根误差RMSE均值为0.71。利用30 m分辨率的HJ-1/CCD和Landsat 8/OLI传感器数据可以生产精度可信、时间分辨率连续的LAI产品。  相似文献   
147.
通过对九寨沟水体中两种优势植物落叶的碳氮磷淋溶动态分析发现:初期总溶解碳氮磷释放在48 h内逐渐稳定,表明短期的淋溶过程就可以导致较大比例的元素释放;磷的短期平均可溶出比例为29.61%,表明淋溶是植物磷元素释放的重要途径;估算得出九寨沟植物叶片碳氮磷贡献总量分别可达20 577 t.a-1,2 101 t.a-1,1 402 t.a-1。研究表明九寨沟植物凋落物淋溶是水体碳氮磷的重要来源,也是影响钙华沉积的重要因素。分析凋落物养分溶出特征,可为九寨沟生态系统的健康发展提供数据支撑。  相似文献   
148.
茶园土壤pH值对茶叶从土壤中吸收锰的影响   总被引:14,自引:0,他引:14  
探讨了我国主要产茶区 13个茶园不同叶龄茶叶锰含量的分布规律 ,土壤 0 .0 2mol/LCaCl2 提取的活性锰与土壤 pH的关系及茶叶锰含量与土壤 pH、土壤活性锰的关系。结果表明 :不同叶龄茶叶锰含量的分布规律为老叶 >成叶 >嫩叶 ;茶叶锰含量和土壤活性锰与土壤pH均呈显著负相关关系 ;茶叶锰含量与土壤活性锰呈显著正相关关系 ,茶园土壤 0 .0 2mol/LCaCl2 提取的活性锰可作为茶叶吸收利用的有效态锰  相似文献   
149.
The crown foliage dynamics of Kandelia obovata (S., L.) Yong were investigated, including leaf recruitment, survival and leaf growth. Newly flushed leaves occurred successively throughout the year, with a maximum in July and a minimum in January. The highest leaf death was in August, whereas it was the lowest in January. The relative mortality rate of leaves seemed to depend on the season when new leaves flushed. The growth pattern of leaves varied among seasons. The maximum leaf area was significantly larger in winter than in autumn, but showed no significant difference between the winter and the other seasons. The half-expansion period and the intrinsic rate of increase were respectively longer and lower in winter than in the other seasons. Therefore, leaves flushed in summer grew faster in their initial stage and attained their maximum leaf area sooner than those flushed in winter. This most likely results from the difference in temperature between summer and winter. The crown leaf area was almost stable throughout the year, as if homeostatic control is likely to function. Stipule litterfall decreased significantly with increasing flower and propagule litterfalls, indicating that a high production of flowers and propagules results in low leaf recruitment. This may be because flower production and propagule growth impose a severe burden on K. obovata.  相似文献   
150.
刘良云 《遥感学报》2014,18(6):1158-1168
由于地表空间异质性的普遍存在,遥感反演模型的非线性必然会导致不同分辨率观测的遥感结果不一致,从而产生遥感产品尺度效应。本文研究了遥感产品尺度效应概念、模拟方法和定量计算模型,并利用锡林浩特草原研究区的实测数据,对尺度效应模型和方法进行了定量计算与验证分析。首先,基于不同升尺度方法与多尺度遥感成像机理之间的机理联系,通过“先反演再平均”与“先平均再反演”之间的差异,可计算“高”分辨率与“低”分辨率之间的遥感产品尺度差异。其次,分别以红光、近红外两波段反射率和归一化植被指数(NDVI)为自变量,对叶面积指数(LAI)非线性遥感模型进行泰勒展开,研究了模型非线性、遥感数据空间异质性对LAI遥感产品尺度差异的影响,发现高阶项可忽略,利用二阶导数项和遥感数据方差项可定量计算遥感产品尺度差异,经过二阶导数项纠正后的尺度差异相对偏差从5.6%分别降低到0.78%和1.45%。最后,分析了LAI遥感产品尺度效应的特征规律,得出以下结论:随着植被覆盖的增大,同等遥感空间异质性的LAI遥感产品尺度差异越大,且红光波段比近红外波段的尺度差异敏感性高近2个数量级;对于绝大部分陆地植被区域,存在“低分辨率低估”尺度效应,且遥感产品尺度差异的主导要素为LAI模型非线性,NDVI变量自身非线性对尺度效应贡献占23.5%;对于湿地类植被与水体混合情形,NDVI变量非线性的贡献为主导贡献,出现“低分辨率高估”尺度效应,必须利用红光、近红外两波段的二阶导数项非线性尺度差异,才能解释这一类型的LAI遥感产品尺度效应。本文建立了具有一定普适意义的遥感产品尺度效应定量模拟与尺度纠正方法,对推动定量遥感的尺度问题研究有一定参考价值。  相似文献   
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