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71.
Wheat–cotton rotations largely increase crop yield and improve resources use efficiency, such as the radiation use efficiency. However, little information is available on the nitrogen (N) utilization and requirement of cotton under wheat–cotton rotations. This study was to determine the N uptake and use efficiency by evaluating the cotton (Gossypium hirsutum L.) N use and the soil N balances, which will help to improve N resource management in wheat–cotton rotations. Field experiments were conducted during 2011/2012 and 2012/2013 growing seasons in the Yangtze River region in China. Two cotton cultivars (Siza 3, mid-late maturity with 130 days growth duration; CCRI 50, early maturity with 110 days growth duration) were planted under four cropping systems including monoculture cotton (MC), wheat/intercropped cotton (W/IC), wheat/transplanted cotton (W/TC) and wheat/direct-seeded cotton (W/DC). The N uptake and use efficiency of cotton were quantified under different cropping systems. The results showed that wheat–cotton rotations decreased the cotton N uptake through reducing the N accumulation rate and shortening the duration of fast N accumulation phase as compared to the monoculture cotton. Compared with MC, the N uptake of IC, TC and DC were decreased by 12.0%, 20.5% and 23.4% for Siza 3, respectively, and 7.3%, 10.7% and 17.6% for CCRI 50, respectively. Wheat–cotton rotations had a lower N harvest index as a consequence of the weaker sink capacity in the cotton plant caused by the delayed fruiting and boll formation. Wheat–cotton rotations used N inefficiently relative to the monoculture cotton, showing consistently lower level of the N agronomic use efficiency (NAE), N apparent recovery efficiency (NRE), N physiological efficiency (NPE) and N partial factor productivity (NPFP), particularly for DC. Relative to the mid–late maturity cultivar of Siza 3, the early maturity cultivar of CCRI 50 had higher N use efficiency in wheat–cotton rotations. An analysis of the crop N balance suggested that the high N excess in preceding wheat (Triticum aestivum L.) in wheat–cotton rotations led to significantly higher N surpluses than the monoculture cotton. The N management for the cotton in wheat–cotton rotations should be improved by means of reducing the base fertilizer input and increasing the bloom application.  相似文献   
72.
The Nitrates Directive (91/676/EEC, Anonymous, 1991) was developed in Europe to limit environmental threats from intensive livestock farming and N fertilizer applications to crops. It imposed several rules on farmers and public bodies, one of which was nutrient fertilization plan adoption. Here we use results from the Tetto Frati (Northern Italy) Long-Term Experiment to verify the terms and coefficients in the official Italian guidelines and evaluate the limitations imposed to organic fertilization amounts. For this purpose, we mined long-term experimental data of crop yield, N uptake, N use efficiency, and soil organic matter content from miscellanea cropping systems fertilized with farmyard manure (FYM) and bovine slurry (SLU), typical of a dairy farm in Northern Italy. N fertilization efficiency indicators (Removal to Fertilizer ratio, Apparent Recovery and Nitrogen Fertilizer Replacement Value) indicated that in the long run, FYM behaved similarly to urea, and better than SLU. Even N supply rates as high as 250 kg N ha−1 were justified by high rates of crop removal. In fact, among the terms of the mass-balance equation, SOM mineralization was found to be most relevant, followed by meadow rotation residual effects. We conclude that a revised Nitrates Directives application scheme could be more relaxed in its application limit of manure-N, but should be more ambitious in setting efficiency coefficients for manure fertilization.  相似文献   
73.

Trials were performed with early and semi-early potatoes to test the effects of nitrogen (N) fertilizer level (0-160 kg N ha-1) and timing (all at planting versus half then and half either soon after emergence or 3 weeks later). All seven trials with earlies were irrigated as required, whilst different irrigation regimes (moderate versus intensive) were compared in two trials with semi-earlies. No benefit was derived from splitting the N application. Haulm growth and N uptake increased in all cases almost linearly up to the highest N level, but tuber yield did not respond in the same way. The optimum N level was 80 kg N ha-1 for a yield of 15 Mg ha-1, rising to 120 kg N ha-1 for a yield of 40 Mg ha-1. Tuber quality was lowered by the use of excess N fertilizer, particularly in the case of earlies. The quantity of mineralised N present in the soil after harvest rose sharply with above optimum fertilizer use, and the amount of N present in crop residues also increased. The likely leaching after early potatoes was estimated to be up to 80 kg N ha-1. The proportion of fertilizer N which was not accounted for in either tuber yield, crop residues or mineral N in soil was 26% in earlies and 38% in semi-earlies.  相似文献   
74.
Degradation rates of pyrogenic carbon (PyC) under natural environmental conditions are largely unknown. Here we present results from a field experiment monitoring the change in mass, C- and N concentrations of a variety of charcoal types in a Norwegian boreal forest over a period of 20 months. The charcoal types represent different feedstock tree species, production temperature regimes, and placements in the forest, i.e. above ground, in the humus layer or in contact with the mineral subsoil. The types of charcoal had different initial C concentrations mainly depending on their production temperature. Nevertheless, all types of charcoal at all placements in the forest showed an initial drop in their C concentrations, which subsequently rose back to reach near initial values in part of the charcoal types. In part of the charcoal types, N concentrations decreased throughout the experiment, exhibiting considerable variation among feedstock species, production temperature regime, and placements in the forest. C/N ratios rose especially in charcoal made from wood of Scots pine (Pinus sylvestris L.), and charcoal that had been stored in contact with the mineral subsoil showed the most rapid mass gain. Our results confirm the important influence of production temperature and feedstock type on the degradation of charcoal, but they also show that microbial activity and environmental conditions play significant roles in charcoal degradation and thus for the fate of pyrogenic carbon under natural conditions.  相似文献   
75.
76.
为建立快速、灵敏且特异的检测猪急性腹泻综合征冠状病毒(swine acute diarrhea syndrome coronavirus,SADS-CoV)检测方法,本试验扩增SADS-CoV N基因保守区域将其克隆至pMD18-T载体。所构建的重组质粒pMD18-T-SADS-qN作为阳性质粒标准品,以其为模板建立一种SYBR Green荧光定量PCR检测方法。结果显示,所建立方法在3.31×101~3.31×107拷贝·μL-1模板量时,呈良好的线性关系,相关系数(R2)为0.997,斜率为-3.318。该方法特异性检测SADS-CoV;而猪流行性腹泻病毒(PEDV)、猪传染性胃肠炎病毒(TGEV)、猪德尔塔冠状病毒(PDCoV)和猪繁殖与呼吸综合征病毒(PRRSV)检测结果均为阴性。所构建的标准品检测灵敏度下限可以达到3.31×101拷贝·μL-1,组内和组间变异系数均小于1%,表明其具有良好的灵敏性和重复性。用该方法检测SADS-CoV感染IPI-2I和IPEC-J2细胞后不同时间点和不同接毒剂量的复制情况,结果显示,SADS-CoV感染细胞后2 h病毒含量较低,在12~36 h病毒含量迅速增长,36 h后增长速度减缓且病毒含量维持在较高水平。分别用0、0.1、1 MOI SADS-CoV感染细胞结果显示病毒的mRAN转录水平呈现剂量依赖性增加,当MOI为1时,IPI-2I和IPEC-J2细胞病毒含量分别为106.7、105.3拷贝·mL-1。进一步利用所建立的方法对经口服攻毒SADS-CoV仔猪的临床样本进行检测,结果发现病毒在空肠回肠含量较高,表明病毒主要定殖于空肠和回肠。综上表明,本研究建立SYBR Green荧光定量PCR检测方法能灵敏特异地检测SADS-CoV,为SADS-CoV的诊断和病毒相关基础研究提供可靠的检测手段。  相似文献   
77.
为研究紫花苜蓿在叶片和根系水平上响应干旱胁迫的形态和生理的品种特异性规律,在温室内分析了干旱胁迫下WL363HQ和巨能7紫花苜蓿株高、分枝数、生物量及叶片和根系中丙二醛(MDA)、脯氨酸、抗氧化酶类物质、C、N含量、C/N、稳定性C同位素(δ13C)和稳定性N同位素(δ15N)。结果表明:干旱胁迫显著降低了供试品种地上部分和根系的干重及分枝数(P<0.05)。干旱胁迫显著降低了巨能7的株高(P<0.05),但增加了巨能7的根冠比,而WL363HQ的结果与之相反,这说明干旱胁迫下供试品种的株高和根冠比具有品种特异性的规律。干旱胁迫增加了WL363HQ和巨能7叶片和根系中MDA和脯氨酸的含量及抗氧化酶物质的活性,且在器官水平也具有品种特异性规律。干旱胁迫下巨能7叶片的MDA含量显著增加(P<0.05),而在WL363HQ根系中的MDA含量也显著增加(P<0.05)。干旱胁迫下WL363HQ叶片脯氨酸含量、POD和SOD活性,及根系SOD的活性均显著增加(P<0.05),而巨能7仅叶片SOD活性,根系脯氨酸含量、POD活性显著升高(P<0.05)。尽管干旱胁迫对供试品种叶片和根系C、N含量无显著影响(P>0.05),但干旱胁迫显著提高了WL363HQ和巨能7紫花苜蓿根系的δ13C(P<0.05),且WL363HQ叶片的δ15N均显著高于巨能7(P<0.05)。此外,干旱胁迫均显著提高了巨能7叶片和根系的C/N(P<0.05)。干旱胁迫下供试品种C、N代谢参数并没有在叶片和根系中表现出较为明显的品种特异性规律,深层次的机制还有待进一步研究。本研究结果将为进一步掌握紫花苜蓿叶片和根系协同抗旱机制及抗旱丰产紫花苜蓿新品种的选育提供理论依据。  相似文献   
78.
2021年1月12—19日,山东黄河三角洲国家级自然保护区大汶流管理站出现35只死亡的野生疣鼻天鹅。经现场调查,市级和省级实验室检测,诊断为疑似H5N8亚型高致病性禽流感,经国家禽流感参考实验室进行病毒分离鉴定,最终确定为H5N8亚型高致病性禽流感疫情。疫情发生后,通过现场调查、座谈及实验室检测等方式,对此次疫情开展了紧急流行病学调查,追溯疫情的可能来源,分析疫情的扩散风险,继而提出针对性的应急处置措施。调查发现,此次疫情由迁徙候鸟带毒引入引起的可能性较大;野生鸟类未及时开展免疫,导致体内抗体水平低下是疫情暴发的内源因素。由于迅速采取了合理的应急处理措施,此次疫情得到迅速控制,避免了疫情扩散。本次疫情警示,必须切实做好禽流感的强制免疫和监测工作,高度重视自然保护区及其附近场所珍稀禽类的免疫,以降低疫情发生风险。  相似文献   
79.
调查分析海南荔枝主产区荔枝园土壤养分状况,为荔枝的养分管理与合理施肥提供理论依据和科学指导。选择具有一定种植规模、有代表性的荔枝园 49 个,采集0~30 cm土层土壤样品进行养分丰缺状况的测试分析各种性质。结果表明,海南荔枝园土壤pH大部分呈酸性,16.3 % 荔枝园土壤pH适宜荔枝生长,土壤阳离子交换量为中等水平,63.3 % 果园土壤有机质含量处于适宜值及以上;土壤全氮、碱解氮、有效磷、速效钾含量丰富;土壤交换性钙、有效硫含量丰富,42.7 % 果园土壤交换性镁含量缺乏,4.1 % 果园极缺乏;土壤微量元素铁、锰、铜、锌、钼含量较为丰富,但73.5 % 果园土壤有效硼含量低于适宜值。不同产区荔枝园土壤养分状况存在差异,海口果园土壤有机质和有效养分氮、钾、钙、镁含量最高,约2/3产区果园土壤偏缺交换性镁,仅海口、澄迈、定安土壤交换性镁含量在适宜值以上,各产区荔枝园土壤有效铁、锰、铜、锌、钼微量元素丰富,土壤有效硼在琼海果园含量丰富,澄迈、万宁、陵水、儋州、白沙荔枝园土壤有效硼偏缺。综合分析可知,各产区土壤肥力由高到低依次为:海口>定安>澄迈>文昌>琼海>儋州>万宁>陵水>白沙。综上所述,海南荔枝园应根据土壤养分情况平衡施肥,改良土壤酸度,增施有机肥,重视镁、硼肥施用,适当减施化肥以获得更好的产量效应。  相似文献   
80.
有机食用菌杏鲍菇的栽培是宁夏南部山区的特色产业,杏鲍菇的生物学特性直接决定了工厂化栽培的基本特征。温湿度、二氧化碳浓度等环境因子对杏鲍菇不同时期的生长有着重要影响,研究环境因子的调控理论和方法是提升杏鲍菇品质与产量的重要基础,因此需要对环境因子各种变量进行数据采集。为此,以三菱FX2NPLC、FX2N-4 AD模拟量输入模块,以及传感器搭建环境因子数据采集平台;并以Lab VIEW作为上位机,通过PC与PLC串口通信,实现对环境因子的实时监控及数据存储。该研究为后期分析温室内外环境因子与杏鲍菇生长发育状况的数据关系奠定了科学基础。  相似文献   
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