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1.
J. Müller 《Journal of Agronomy and Crop Science》1993,171(4):217-235
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
Methods of mathematical modelling and simulation are being used to an increasing degree in estimating the effects of rising atmospheric CO
2.
A field experiment was conducted to find out the critical physiological stages of irrigation schedules inducing better growth, physiological efficiency and seed yield potential of berseem ( Trifolium alexandrinum L., Var. S-99-1). For this purpose eight irrigation treatments were made comprised of four treatments of three irrigation (W1 , W2 , W3 and W4 ), three treatments of four irrigation (W5 , W7 and W8 ) and one treatment of five irrigation (W6 ) at various physiological stages i. e. regeneration, flower initiation, full bloom, seed initiation and advance seed development stage.
Thus based on the experimental results the physiological role of watering in berseem seed production could be discussed as:
With-holding of irrigation either at regeneration or at full bloom stage developed potential water stress in plants as indicated by high proline content of irrigation treatments — W4 , W1 and W7 ; and further brought out disturbance on the formation of carotene, synthesis of water soluble sugar and translocation of sugar towards reproductive organs during grain development stage. These stresses adversely affected the plant growth and flowering behaviour. The irrigation at seed initiation stage increased the seed yield. Continuous irrigation did not appear to be useful. Thus it can be concluded that irrigation at three critical physiological stages i. e. regeneration, full bloom and seed initiation was found to be essential for obtaining potential seed yield of berseem. 相似文献
Thus based on the experimental results the physiological role of watering in berseem seed production could be discussed as:
With-holding of irrigation either at regeneration or at full bloom stage developed potential water stress in plants as indicated by high proline content of irrigation treatments — W
3.
In this study, the effects of nitrogen (N) rate (60, 120, 180 and 240 kg N ha?1 applied in three equal dressings at seeding and after the first and second cuttings) and stubble height (7, 14 and 21 cm) on the dry matter (DM) yield, crude protein (CP) content, and CP yield of a sorghum–sudangrass hybrid [Sorghum bicolor (L.) Moench × Sorghum sudanense (Piper) Stapf., cv. Pioneer 988] in the three‐cut system was investigated. The N rate had no significant effect in the first and third cuttings, but in the second cutting DM yields increased significantly with increase in N rate. The highest yield of 9.1 t ha?1 was obtained with 80 kg N ha?1 for the average of 2 years at the second cutting, but no significant difference was found among the 40, 60 and 80 kg N ha?1 rates. CP content and yield were not significantly affected by N rate at the first and third cuttings, but CP content and yield were significantly affected by application of N at the second cutting. Stubble height had a significant effect on CP content at the third cutting. However, it had no significant effect on CP content at the first and second cuttings. Stubble height had a significant effect on the CP yield at the first cutting, but no significant effect on CP yield at the second and third cuttings. 相似文献
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5.
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
6.
为明确土壤调理剂对重金属污染土壤上生姜的营养品质和安全性的影响及作用机制,采用生姜土壤盆栽试验,比较研究了3种土壤调理剂(硅酸钾、麦饭石、贝壳粉)对土壤硒镉有效性以及生姜硒镉积累、生长发育和营养品质的影响。试验结果表明:3种土壤调理剂均能显著提高生姜硒含量,同时显著降低镉含量。与对照(不添加土壤调理剂)相比,施用0.2%硅酸钾调理剂效果最佳,分别使生姜地上部位和姜块硒含量提高了165.01%和111.36%,镉含量降低了71.96%和65.15%;另外,施用3种土壤调理剂可显著提高姜块产量、品质及养分吸收。与对照相比,产量提高了23.93%~67.67%,可溶性糖、可溶性蛋白和姜黄素含量分别提高了2.34%~6.00%、154.72%~602.83%和11.05%~33.43%,氮、磷、钾养分含量分别提高了10.28%~14.42%、24.62%~34.87%、28.81%~29.01%;施用3种土壤调理剂还可提高姜块过氧化物酶(POD)和过氧化氢酶(CAT)活性,降低丙二醛(MDA)含量;与对照相比,3种土壤调理剂增加土壤pH 0.35~0.53个单位,土壤有效态镉含量降低了16.92%~22.76%,有效态硒含量增加了3.60%~10.99%。研究表明,施用土壤调理剂能够降低土壤有效态镉含量、活化土壤有效态硒,从而降低生姜镉含量并提高硒含量和姜块营养品质,可实现镉污染土壤安全利用,保障生姜优质安全生产。 相似文献
7.
【目的】研究毛竹(Phyllostachys edulis)入侵亚热带北缘落叶阔叶林对土壤理化性质和土壤胞外酶活性的影响,为探究毛竹入侵条件下森林生态系统养分循环过程与固碳潜力及森林的毛竹入侵治理提供科学依据。【方法】在毛竹入侵样带上,选择落叶阔叶林(麻栎林Quercus acutissima)、竹阔混交林(混交林)和毛竹林3种林分为研究对象,采集其林下地表0~10 cm土壤,进行土壤理化性质和土壤酶活性的测定,包括土壤pH、含水率和有机碳、全氮、NH+4-N、NO-3-N、全磷、有效磷含量,以及β-葡糖苷酶(BG)、β-N-乙酰氨基葡萄糖苷酶(NAG)、亮氨酸氨基肽酶(LAP)、酸性磷酸酶(AcP)、酚氧化物酶(POX)、过氧化物酶(PER)活性和酶计量(VC/N、VN/P、VC/P),比较不同林分的土壤指标。【结果】①随着毛竹入侵,毛竹林土壤pH值和含水率显著增大,且与混交林、麻栎林差异显著(P<0.05);其土壤有机碳、NO-3-N和全氮含量显著下降(P<0.05),NH+4-N、有效磷和全磷含量与混交林、麻栎林差异不显著。②土壤碳、氮和磷循环相关的水解酶(BG、NAG+LAP、AcP)活性均随毛竹入侵呈下降趋势,氧化酶(POX、PER)活性变化趋势与之相反;酶计量分析表明,毛竹林土壤的VN/P显著低于混交林和麻栎林(P<0.05),而VC/N、VC/P在不同林分间差异不显著。③酶活性的矢量分析表明,毛竹林土壤微生物的磷限制程度高于混交林和麻栎林。④土壤水解酶活性与土壤有机碳、NO-3-N、全氮、有效磷含量或pH有显著相关关系,氧化酶活性与土壤性质相关性总体不显著。【结论】毛竹林取代落叶阔叶林(麻栎林)后,土壤有机碳和养分含量及相关水解酶活性降低,不利于原有落叶阔叶林土壤碳库与养分库的保存。 相似文献
8.
为对大田冬小麦叶片氮素含量(LNC)进行快速、准确及无损监测,通过在江苏省泰州泰兴市、盐城大丰区和南通如皋市布设冬小麦遥感监测大田试验,在获取试验样点冬小麦冠层红光波段反射率(REDref)、近红外波段反射率(NIRref)和计算的十个光谱指数(RVI、NDVI、DVI、SAVI、OSAVI、MSR、RDVI、EVI2、NLI和SVI)基础上,将12个遥感光谱指标与冬小麦LNC进行相关分析,选出与LNC相关性较好的作为模型输入变量,构建基于BP神经网络的冬小麦LNC估测模型, 并利用GF-6/WFV卫星遥感影像对县域冬小麦LNC的空间分布开展监测。结果表明,12个遥感光谱指标与冬小麦LNC之间存在不同程度的相关性,其中NDVI、RVI、MSR、OSAVI和NLI与冬小麦LNC的相关性较好(相关系数不低于0.65)。将优选的5个遥感光谱指标作为模型输入变量,构建基于BP神经网络的冬小麦LNC估测模型(LNC-BPEM),模型的估测精度r2=0.866,RMSE=0.246%,ARE=12.9%。将冬小麦LNC-BPEM估测模型和GF-6/WFV影像结合对县域冬小麦LNC的空间信息监测,获得了如皋县域冬小麦LNC的空间分布特征,该区域冬小麦LNC范围在0.9%~2.0%(长势正常)的种植面积为29 693.3 hm2,占冬小麦总种植面积的74%。这说明利用GF-6/WFV卫星的多个遥感光谱指标与神经网络结合建模可有效估测县域大田冬小麦叶片氮素含量。 相似文献
9.
【目的】利用两种外源硅肥材料开展试验,研究外源硅对土壤重金属Cd有效性以及稻谷Cd含量的影响。【方法】以硅胶(分子式mSiO2.nH2O,含量98%以上)、液体硅肥(SiO2浓度≥23%)作为外源硅肥材料,通过在重金属镉Cd超标稻田土壤施用硅胶,在水稻分蘖期、孕穗期喷施液体硅肥,研究硅钝化稻田土壤重金属Cd有效性及降低稻谷Cd含量。【结果】施用硅胶达到100kg/667m2对降低土壤有效Cd含量有极显著效果,表明稻田施用硅胶可以钝化土壤重金属Cd有效性;施用硅胶达到100kg/667m2对降低稻谷Cd含量有显著效果,施用硅胶再配合喷施液体硅肥时,对降低稻谷Cd含量有极显著效果;施用硅胶、液体硅肥对提高稻谷产量有显著作用。【结论】基施硅胶配合喷施液体硅肥,对钝化土壤重金属Cd有效性,降低稻谷Cd含量,提高稻谷产量具有显著效果。 相似文献
10.
研究测土配方施肥对玉米生长性状、产量、经济效益和养分利用率的影响,进而指导阿克苏市玉米科学合理施肥,提高化肥利用率,减少化肥投入,实现玉米化肥减量增效的目标。以金谷玉6号玉米为试验材料,设置不施肥(CK)、无氮(PK)、无磷(NK)、无钾(NP)和氮磷钾(NPK)5个处理,在收获期对玉米株高、径粗、穗长、穗粒数、百粒重、产量、平均产值、净收入和养分利用率等指标进行测定。实验结果表明:全年施肥量为尿素29.78kg/667m2,重过磷酸钙25kg/667m2,硫酸钾10.4kg/667m2,对玉米的生长、产量和经济效益均有促进作用。玉米氮肥的利用率为36.26%,磷肥的利用率为17.39%,钾肥的利用率为41.99%。 相似文献