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1.
Dry Matter Production, CO2 Exchange, Carbohydrate and Nitrogen Content of Winter Wheat at Elevated CO2 Concentration and Drought Stress
Methods of mathematical modelling and simulation are being used to an increasing degree in estimating the effects of rising atmospheric CO2 concentration and changing climatic conditions on agricultural ecosystems. In this context, detailed knowledge is required about the possible effects on crop growth and physiological processes. To this aim, the influence of an elevated CO2 concentration and of drought stress on dry matter production, CO2 exchange, and on carbohydrate and nitrogen content was studied in two winter wheat varieties from shooting to milk ripeness. Elevated CO2 concentration leads to a compensation of drought stress and at optimal water supply to an increase of vegetative dry matter and of yield to the fourfold value. This effects were caused by enhanced growth of secondary tillers which were reduced in plants cultivated at atmospheric CO2 concentration. Analogous effects in the development of ear organs were influenced additionally by competitive interactions between the developing organs. The content and the mass of ethanol soluble carbohydrates in leaves and stems were increased after the CO2 treatment and exhausted more completely during the grain filling period after drought stress. Plants cultivated from shooting to milk ripeness at elevated CO2 concentration showed a reduced response of net photosynthesis rate to increasing CO2 concentration by comparison with untreated plants. The rate of dark respiration was increased in this plants.  相似文献   
2.
The temperature dependence of chemical reaction rates and microbial metabolism mean that temperature is a key factor regulating soil trace gas emissions and hydrochemistry. Here we evaluated a novel approach for studying the thermal response of soils, by examining the effects of temperature on gas emissions and hydrochemistry in (a) peat and (b) soil from a Sitka spruce plantation. A thermal gradient was applied along an aluminium bar, allowing soil to be incubated contemporaneously from 2 to 18 °C. The approach demonstrated clear differences in the biogeochemical responses of the two soil types to warming. The peat showed no significant emission of CH4 at temperatures below 6 °C, while above 6 °C, a marked increase in the rate of release was apparent up to 15 °C (Q10 = 2.5) with emissions being similar between 15 and 18 °C. Conversely, CH4 emissions from the forest soil did not respond to warming. Nitrate availability in the peat decreased by 90% between 2 and 18 °C (P < 0.01), whereas concentrations in the forest soil did not respond. Sulphate availability in the peat decreased significantly with warming (60%, P < 0.01), while the forest soil showed the opposite response (a 30% increase, P < 0.01). Conventionally, thermal responses are studied by incubating individual soil samples at different temperatures, involving lengthy preparation and facilities to incubate samples at different temperatures simultaneously. Data collected on a given thermal response is usually limited and thus interpolated or extrapolated. The thermal gradient method overcomes these problems, is simple and flexible, and can be adapted for a wide range of sample types (not confined to soil). Such apparatus may prove useful in the optimization of management practices to mitigate the effects of climate change, as thermal responses will differ depending on land use and soil type.  相似文献   
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土壤水热参数是研究土壤水热传输的基本物理参数。当前热脉冲探针法(HPP)可同步测定土壤水热参数,但该方法仅限于在点尺度下测定。与其具有相同理论基础的加热光纤法(SPHP-DTS),可将测定尺度增大至田间千米尺度,但其测定精度尚未得到有效验证。为了探知SPHP-DTS法的误差,本研究进行了SPHP-DTS法与HPP法测定土壤水热参数的对比试验。结果表明,以HPP为标准,加热光纤法测定热导率的精度RMSE为0.13 W?m-1?℃-1。SPHP-DTS法测定的热导率显著高于HPP法,主要原因在于加热光纤时产生的温度效应。通过热导率法测定土壤含水率时,在热导率测定误差的影响下,SPHP-DTS法的测定精度明显低于HPP法。SPHP-DTS法测定土壤水热参数的其他误差来源包括光纤与土壤之间多个界面的接触热阻、光纤的温度敏感性、噪音干扰以及温度梯度驱动下的水分迁移。本研究可为SPHP-DTS法提升土壤水热参数测定精度提供理论参考。  相似文献   
5.
奶牛中草药抗热应激添加剂剂量的对比试验   总被引:6,自引:0,他引:6  
40头荷斯坦泌乳牛随机分成4组,采用单因子试验设计,分别饲喂由基础日粮与不同剂量的中草药添加剂(每头·日0g为A组即对照组、25g为B组、75g为C组、125g为D组)组成的日粮。结果表明:干物质摄入量C、D组分别比对照组多摄入1.6kg、1.6kg。校正体重和乳脂的产乳量,C组、D组分别较对照组提高46.3%(P<0.01)和34.4%(P<0.01),且C组、D组乳脂率较对照组分别提高8.8%(P<0.05)、20%(P<0.05)。C组、D组红细胞数较对照组分别提高35.8%(P<0.01)、33.9%(P<0.01),而呼吸率则分别降低43.3次/分、47.2次/分、肛温分别降低1.2℃、1.1℃。对照组中暑死亡两头,其余组没有死亡。经济效益,C组、D组分别比对照组提高83.7%.、51.2%。  相似文献   
6.
Kaolin treatment to reduce pomegranate sunburn   总被引:1,自引:0,他引:1  
The aim of this study was to reduce pomegranate losses due to sunburn in south-western Spain. Summer temperatures may rise above 45 °C, resulting in sunburn damage to the fruits, which may inflict losses of up to 40% of the total yield. Data were obtained in two consecutive years. Surround® WP, a product comprising processed, refined kaolin, was sprayed over the whole canopy and fruits four times at 2–3-week intervals from mid-June to early August, the first application at 5% and the other three at 2.5%. The resulting white coating significantly reduced fruit and leaf surface temperatures relative to the control by averages of 4.9 and 2.5 °C, respectively. Sunburn damage of fruits was reduced from 21.9% in untreated control to 9.4% in the Surround WP-treated fruits.  相似文献   
7.
A perspective on the measurement of time in plant disease epidemiology   总被引:2,自引:1,他引:2  
The growth and development of plant pathogens and their hosts generally respond strongly to the temperature of their environment. However, most studies of plant pathology record pathogen/host measurements against physical time (e.g. hours or days) rather than thermal time (e.g. degree-days or degree-hours). This confounds the comparison of epidemiological measurements across experiments and limits the value of the scientific literature.  相似文献   
8.
铅胁迫对金丝草生长及生理生化的影响   总被引:2,自引:0,他引:2  
采用土培方法,探究不同梯度铅胁迫(0、1000、2000和3000 mg·kg-1)对金丝草生长形态、体内抗氧化系统和渗透调节物质的影响。结果表明:低浓度(1000 mg·kg-1)处理会诱导金丝草叶片过氧化物酶(POD)活性、可溶性蛋白(SP)含量和根系抗超氧阴离子自由基活力(ASAFR)、可溶性糖(SS)及脯氨酸(Pro)含量增加,使得金丝草植株总抗氧化能力(T-AOC)处于较高水平,促进了金丝草株高、叶长和生物量的增加。随胁迫浓度增加,高浓度(2000~3000 mg·kg-1)处理下,金丝草叶片和根系丙二醛(MDA)含量迅速增加,株高、叶长、叶面积和生物量下降,生长受到抑制。但金丝草通过增强叶片和根系POD、过氧化氢酶(CAT)活性来抵御过氧化作用,提高可溶性蛋白和可溶性糖含量维持细胞正常运作,增加根系生物量占比来加强根系发育,一定程度适应了高浓度铅胁迫。综上表明,金丝草主要通过叶片和根系不同抗氧化酶差异化响应、提高渗透调节物质含量,提升金丝草植株总抗氧化能力等途径来提高Pb耐性,对Pb污染矿区植物修复有较大潜力。  相似文献   
9.
应用热扩散技术对油松栓皮栎比导率的研究   总被引:1,自引:0,他引:1  
2001年4-10月,应用热扩散技术研究北京西山地区31年生油松栓皮栎混交林标准木的比导率并对13个环境因子的变化规律进行同步观测.结果表明,在野外自然条件下,油松和栓皮栎的比导率在标准日内均呈明显的凸形变化规律,栓皮栎的比导率始终高于油松.影响树木比导率的因素基本上可以分为2类,即生物学结构的遗传特性和环境因素.在林分生长期内的不同时段,环境因子对2个树种比导率的作用各不相同,即使是同一树种,在各个时段内对其比导率产生显著影响的环境因子也不是一成不变的,但一般可用少数几个环境影响因子来比较准确地模拟出比导率的变化.  相似文献   
10.
论述了对大体积混凝土的原材料,通过优化配合比设计、提高混凝土设计等级、选用适当外加剂、增设导流管等技术措施和先进的施工工艺,并结合测温加强养护,可以解决大体积混凝土施工中的温度裂缝问题。  相似文献   
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