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11.
不同根系分泌物对土壤N2O排放及同位素特征值的影响   总被引:1,自引:0,他引:1  
【目的】探究植物根系分泌的主要组分(有机酸、氨基酸、糖类)对土壤N2O排放及其微生物过程的影响,为选择适宜的植物进而控制土壤N2O排放提供支撑。【方法】通过室内试验分别添加草酸、丝氨酸、葡萄糖于土壤中模拟根系的3种主要分泌物,每种分泌物设置两个浓度水平:低浓度(150 μg C·d -1)和高浓度(300 μg C·d -1),另设置添加蒸馏水的对照组,共7个处理。将土壤置于120 mL玻璃瓶中进行培养,24 h内采集气体样品7次,每次培养2 h,获取N2O排放速率、日累积排放量和同位素特征值(δ 15N bulk、δ 18O和SP(site preference,SP=δ 15N α-δ 15N β))。【结果】添加3种根系分泌物组分后,土壤N2O排放速率均逐渐升高,且均高于对照。高浓度处理组N2O累积排放量为:葡萄糖((3.2±1.3)mg·kg -1·d -1)处理>丝氨酸((2.6±0.5)mg·kg -1·d -1)处理>草酸((1.4±0.2)mg·kg -1·d -1)处理,低浓度处理组为:草酸((2.7±1.3)mg·kg -1·d -1)处理>丝氨酸((1.8±0.4)mg·kg -1·d -1)处理>葡萄糖((1.6±0.8)mg·kg -1·d -1)处理;添加根系分泌物的不同处理间土壤N2O的δ 18O值无明显差异,并稳定在24.1‰—25.6‰,且均显著高于对照((20.1±1.5)‰);土壤N2O的δ 15N bulk值与添加根系分泌物的种类有关,其中草酸处理组为(-20.06±2.22)‰、丝氨酸处理组为(-22.33±1.10)‰、葡萄糖处理组为(-13.86±1.11)‰、对照组为(-23.14±3.72)‰。各处理土壤N2O的SP值的变化范围为13.13‰—15.03‰,根系分泌物浓度越高,SP值越低。综合分析不同处理4个指标(N2O排放速率、N2O的δ 15N bulk、δ 18O和SP值)的不同时刻的检测值与日均值的校正系数,添加根系分泌物后第16小时各处理4个指标的校正系数最接近于1。【结论】在NH+ 4-300 mg N·kg -1的土壤环境下根系分泌物促进N2O的排放,且在培养期间(24 h)土壤N2O排放速率逐渐升高。高浓度处理组葡萄糖对土壤N2O排放速率促进效果最强,低浓度处理组草酸对土壤N2O排放速率促进效果最强。与对照组相比,根系分泌物的添加使N2O的δ 18O值显著升高;与对照组相比,葡萄糖的添加使δ 15N bulk值显著升高。根系分泌物浓度越高,反硝化作用对N2O的贡献越大。  相似文献   
12.
Nitrogen losses from intensive vegetal production systems are commonly associated with contamination of water bodies. Sustainable and optimal economic N management requires correct and timely on-farm assessment of crop N status to detect N deficiency or excess. Optical sensors are promising tools for the assessment of crop N status throughout a crop or at critical times. We evaluated optical sensor measurement of canopy reflectance and of leaf flavonols and chlorophyll contents to assess crop N status weekly throughout a muskmelon crop. The Crop Circle ACS 470 was used for reflectance measurement, the SPAD 502 for leaf chlorophyll, and the DUALEX 4 Scientific for leaf chlorophyll and flavonols. Four indices of canopy reflectance (NDVI, GNDVI, RVI, GVI), leaf flavonols and chlorophyll contents and the nitrogen balance index (NBI), the ratio of chlorophyll to flavonols contents, were linearly related to crop N content and to crop Nitrogen Nutrition Index (NNI) throughout most of the crop. NBI most accurately predicted crop N status; in five consecutive weekly measurements, R2 values were 0.80–0.95. For NDVI during the same period, R2 values were 0.76–0.87 in the first three measurements but R2 values in the last two measurements were 0.39–0.45. Similar relationships were found with the three other reflectance indices. Generally, the relationships with NNI were equal to or slightly better than those with crop N content. These optical sensor measurements provided (i) estimation of crop N content in the range 1.5–4.5%, and (ii) an assessment of whether crop N content was sufficient or excessive for optimal crop growth for NNI ranges of 0.8–2.0. Composite equations that integrated the relationships between successive measurements with the optical sensors and crop N content or NNI for periods of ≥2 weeks (often 2–3 weeks) were derived for most indices/parameters. Overall, these results demonstrated the potential for the use of these optical sensor measurements for on-farm monitoring of crop N status in muskmelon.  相似文献   
13.
14.
Present crop production in Poland depends on climatic, hydrologic, pedologic, social and economic conditions. Drip irrigation systems will play a significant role in the future by fulfilling the requirements of intensive, energy-saving agricultural production. The total area under micro-irrigation in Poland is estimated to be approximately 3000 ha. Drip irrigation is currently applied mainly in orchards, vegetable farms and greenhouses. The investigations of drip irrigation have shown a high influence of the operating conditions on the reliability and productivity effects of the irrigation system. This paper contains the results of the investigations on the reliability of drip irrigation systems under different operation conditions such as system components, crops, water quality, fertigation and irrigation technology.  相似文献   
15.
《Field Crops Research》2004,86(1):53-65
Deceleration in rice (Oryza sativa L.) yield over time under fixed management conditions is a concern for countries like Bangladesh, where rice is the primary source of calories for the human population. Field experiments were conducted from 1990 to 1999 on a Chhiata clay loam soil (Hyperthermic Vertic Endoaquept) in Bangladesh, to determine the effect of different doses of chemical fertilizers alone or in combination with cow dung (CD) and rice husk ash (ash) on yield of lowland rice. Two rice crops—dry season rice (December–May) and wet season rice (July–November) were grown in each year. Six treatments—absolute control (T1), one-third of recommended fertilizer doses (T2), two-thirds of recommended fertilizer doses (T3), full doses of recommended fertilizers (T4), T2+5 t CD and 2.5 t ash ha−1 (T5) and T3+5 t CD and 2.5 t ash ha−1 (T6) were compared. The CD and ash were applied on dry season rice only. The 10-year mean grain yield of rice with T1 was 5.33 t ha−1 per year, while the yield with T2 was 6.86 t ha−1 per year. Increased fertilizer doses with T3 increased the grain yield to 8.07 t ha−1 per year, while the application of recommended chemical fertilizer doses (T4) gave 8.87 t ha−1 per year. The application of CD and ash (T5 and T6) increased rice yield by about 1 t ha−1 per year over that obtained with chemical fertilizer alone (T2 and T3, respectively). Over 10 years, the grain yield trend with the control plots was negative, but not significantly, both in the dry and wet seasons. Under T3 through T6, the yield trend was significantly positive in the dry season, but no significant trend was observed in the wet season. The treatments, which showed positive yield trend, also showed positive total P uptake trend. Positive yield trends were attributed to the increasing P supplying power of the soil.  相似文献   
16.
禁牧休牧对藏北高寒草甸物种多样性和生物量的影响   总被引:1,自引:0,他引:1  
通过对藏北高寒草甸禁牧3a(JM3)、禁牧5a(JM5)、禁牧7a(JM7)、休牧5a(XM5)和自由放牧(FM)等不同管理措施样地的植物群落物种多样性、群落高度、群落盖度、地上生物量和地下生物量的实地调查与分析,探讨了禁牧和休牧对藏北高寒草甸物种多样性和生物量的影响。结果表明,禁牧样地的群落丰富度指数、多样性指数均显著高于休牧和自由放牧样地,而禁牧3a和5a显著高于禁牧7a;禁牧3a的均匀度指数显著低于禁牧5a和7a,其禾草和莎草的重要值则高于其他样地;禁牧5a样地地上生物量最高,为84.2 g/m2,并且其地下生物量与地上生物量的比值最小。在藏北地区,禁牧5a不仅可维持较高的高寒草甸物种多样性,而且还能够明显提高高寒草甸可利用生物量,但是禁牧5a以上将不利于维持较高的物种多样性和草地可利用生物量。  相似文献   
17.
中国玉米生育期变化及其影响因子研究   总被引:18,自引:1,他引:17  
翟治芬  胡玮  严昌荣  刘勤  刘爽 《中国农业科学》2012,45(22):4587-4603
【目的】在全球气候变化背景下,分析中国玉米播种期和成熟期的变动情况以及气候资源变化特征。【方法】在收集整理全国2 414个县的玉米生育期数据的基础上,绘制了1970s和2000s中国玉米的播种期与收获期分布图;在整理全国618个气象站点1971-2010年气象资料的基础上,绘制了1970s时段和2000s时段中国年均温度、降雨和太阳辐射量空间分布图。以农业种植一级区为基本单位,建立不同区域农业气候资源变化与玉米生育期变化的回归方程,并将PRECIS模型中B2情景数据代入方程组预测2030s中国玉米的生育期。【结果】与1970s时段相比,2000s时段东北大豆春麦甜菜区的玉米播种期基本保持不变;其它各农业种植一级区的玉米播种期均提前约1-15 d;除东北大豆春麦甜菜区和北部高原小杂粮甜菜区春玉米的成熟期平均推迟了11 d和3 d,2000s时段其它玉米种植区域的成熟期平均提前3-12 d。2000s时段云贵高原稻玉米烟草区的玉米生育期缩短约5 d,黄淮海棉麦油烟果区、华南双季稻热带作物甘蔗区和西北绿洲麦棉甜菜葡萄区的玉米生育期基本保持不变;其它各区域玉米生育期均有所延长。与2000s时段相比,B2情景下,2030s东北大豆春麦甜菜区的春玉米播种期将推迟2-5 d,其它各农业种植一级区的玉米播种期将提前2-19 d;东北大豆春麦甜菜区、北部高原小杂粮甜菜区和华南双季稻热带作物甘蔗区的玉米成熟期将推迟4-15 d,黄淮海棉麦油烟果区、长江中下游稻棉油桑茶区、川陕盆地稻玉米薯类柑橘桑区和云贵高原稻玉米烟草区的玉米成熟期将提前2-12 d,南方丘陵双季稻茶柑橘区和西北绿洲麦棉甜菜葡萄区的玉米成熟期则基本保持不变。2030s时段黄淮海棉麦油烟果区和云贵高原稻玉米烟草区的玉米生育期则将缩短3-6 d,其它区域的玉米生育期将延长2-15 d。【结论】中国气候正朝着增温、变干和低辐射的方向发展。受温度、降雨和太阳辐射量变化的影响,中国不同农业种植区域内玉米生育期变动明显,其中除东北大豆春麦甜菜区外玉米播种期以提前为主,玉米成熟期的变动则较为复杂,玉米的生育期则以延长为主。  相似文献   
18.
针对农业生产中氮肥施用不合理导致氮肥利用率低、N_2O排放增加及经济效益下降等问题,采用田间试验法研究了不同氮肥与氮转化调控剂配施模式的夏玉米-冬小麦一年两作农田N_2O排放特征及经济效益。结果表明:与农民施氮肥处理(FN)相比,各推荐施氮处理在夏玉米季和冬小麦季的N_2O平均排放通量分别降低29.2%~65.4%(P0.05)和26.9%~74.9%(P0.05),N_2O排放总量分别降低1.05~2.72(P0.05)和1.10~2.47(P0.05)kg/hm~2;整个轮作季纯收益增加967.5~3 887.0元/hm~2。同等施氮量条件下,与推荐施氮处理(RN)相比,夏玉米季推荐施氮配施双氰胺处理(RN+DCD)和推荐施氮配施吡啶处理(RN+CP)分别使N_2O平均排放通量降低41.5%(P0.05)和31.2%(P0.05);而在冬小麦季则分别下降63.0%(P0.05)和65.7%(P0.05);整个轮作季RN+DCD和RN+CP处理N_2O排放总量分别降低了52.5%(P0.05)和49.0%(P0.05),纯收益分别增加312.6和708.9元/hm~2。夏玉米季,土壤N_2O阶段排放峰值出现在三叶期-拔节期和大喇叭口期-抽雄期;而冬小麦季土壤N_2O阶段排放峰值出现在播种-冬前苗期和返青-拔节期。考虑作物产量、N_2O排放以及经济效益,RN+DCD和RN+CP处理经济效益较高,N_2O排放总量较少,是兼顾作物产量、农民收入及大气环境的推荐氮肥管理措施。  相似文献   
19.
A study was conducted for 22 weeks to determine the effects of concentrate supplementations at three crude protein (CP) levels, i.e. low protein diet—LPD 12.42% CP (124.93 g day?1); medium protein diet—MPD 14.18% CP (145.87 g day?1) and high protein diet—HPD 16.35% CP (168.19 g day?1) on some pregnancy variables, reproductive performance, birth types and weight of kids kidded by pregnant Kalahari Red goats grazed on Chloris gayana. Thirty-three matured Kalahari Red goats of first parity within age range of 2 to 21/2 years with an average body weight of 38.10 ± 1.13 kg were randomly allotted to the diets with 11 goats per treatment. Data obtained were subjected to analysis of variance in a completely randomised design. It was observed that goats fed HPD had the highest (p < 0.05) values for products of pregnancy (10.35 kg) taken within 24hour before kidding and foetal growth rate (88.37 g day?1) during pregnancy. Goats fed MPD had the lowest values (p < 0.05) of 9.28 kg and 80.07 g day?1 for each of the respective parameters. Afterbirth weight was also the highest and lowest (p < 0.05) for goats supplemented with HPD (3.38 kg) and MPD (3.04 kg), respectively. On the other hand, MPD-supplemented goats had the highest values (p < 0.05) for litter size (2.14) and litter weight (6.80 kg) at birth, the value which was the least for HPD supplementation. From the results obtained from this study, it could be concluded that concentrate diet supplementation with 14.18% CP improved litter size and weight at birth with resultant reduction in weights of pregnancy variables of pregnant Kalahari Red goats grazed on Rhodes grass.  相似文献   
20.
放牧条件下白牦牛采食的季节性微调整及其效应   总被引:1,自引:0,他引:1  
为研究牦牛采食模式季节性微调整对摄入的干物质及胃肠道甲烷排放的效应,于2014年9月至2015年9月进行了天祝白牦牛采食试验。结果表明:卷食模式的7?8月,蛋白质摄入最高(10.70%±0.38%)、粗纤维(18.68%±5.31%)和木质素摄入(1.89%±0.49%)最低、反刍间隔最短(1.1±0.3h)。啃食和卷食相结合的4月份半纤维素(15.68%±5.17%)和粗脂肪(1.08%±0.09%)摄入最低;5月份采食速度最快(1.15±0.16口/s);6月份粗灰分摄入最高(18.29%±2.39%)、胎儿出生质量最大;9月份单口采食(1.97±0.27 g)、脂肪摄入量(3.77%±0.08%)、日增质量(97.43±5.18 g/d)、瘤胃甲烷气体排放最高(315.70±21.24 g/d);10月份日采食总量(9749.40±2783.66g/d)、反刍速度最高(1.24±0.15团/min);11月份半纤维素摄入最高(19.46%±2.58%);12月反刍间隔最长(2.9±0.2h)。啃食模式的2月份单口采食量(0.95±0.14g)、采食速度(0.73±0.24口/s)、蛋白质(2.72%±0.49%)、粗灰分摄入(7.14%±3.25%)最低;3月份纤维素(39.25%±7.15%)、木质素(12.57%±0.46%)摄入量为最高,日采食量(4417.29±1114.56 g/d)、反刍速度(0.76±0.16团/min)、日增质量(?48.87±3.56 g/d)、瘤胃甲烷量排放(237.57±22.39 g/d)最低;该研究以解释牦牛生产过程中季节性甲烷排放节律。  相似文献   
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