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1.
【目的】探究季风常绿阔叶林凋落物对氮沉降增加的响应规律。【方法】设置4个氮添加水平:对照、低氮、中氮和高氮,其年添加氮量分别为0、35、70和105 kg·hm~(–2),分干、湿季收集凋落物样品,并进行碳、氮组分含量分析。【结果】随氮添加量的上升,凋落物总有机碳(TOC)和水溶性有机碳(WSOC)含量显著增加,且WSOC/TOC质量比具有上升趋势。氮添加未显著改变酸不溶组分碳(AIFC)含量以及AIFC/TOC质量比,但与对照比较均具有下降趋势。不同的氮添加处理均未显著改变凋落物总氮(TN)、水溶性氮(WSN)和酸不溶组分氮(AIFN)含量,以及WSN和AIFN占TN的比例。短期氮添加对凋落物C/N质量比和AIFC/AIFN质量比无显著影响,但显著增加干季的WSOC/WSN质量比。【结论】氮沉降促进了季风常绿阔叶林凋落物中可溶性有机碳的积累,这可能有利于可溶性有机物转入土壤中,从而影响生态系统中的养分循环。  相似文献   
2.
Intensive vegetable production in greenhouses has rapidly expanded in China since the 1990s and increased to 1.3 million ha of farmland by 2016, which is the highest in the world. We conducted an 11‐year greenhouse vegetable production experiment from 2002 to 2013 to observe soil organic carbon (SOC) dynamics under three management systems, i.e., conventional (CON), integrated (ING), and intensive organic (ORG) farming. Soil samples (0–20 and 20–40 cm depth) were collected in 2002 and 2013 and separated into four particle‐size fractions, i.e., coarse sand (> 250 µm), fine sand (250–53 µm), silt (53–2 µm), and clay (< 2 µm). The SOC contents and δ13C values of the whole soil and the four particle‐size fractions were analyzed. After 11 years of vegetable farming, ORG and ING significantly increased SOC stocks (0–20 cm) by 4008 ± 36.6 and 2880 ± 365 kg C ha?1 y?1, respectively, 8.1‐ and 5.8‐times that of CON (494 ± 42.6 kg C ha?1 y?1). The SOC stock increase in ORG at 20–40 cm depth was 245 ± 66.4 kg C ha?1 y?1, significantly higher than in ING (66 ± 13.4 kg C ha?1 y?1) and CON (109 ± 44.8 kg C ha?1 y?1). Analyses of 13C revealed a significant increase in newly produced SOC in both soil layers in ORG. However, the carbon conversion efficiency (CE: increased organic carbon in soil divided by organic carbon input) was lower in ORG (14.4%–21.7%) than in ING (18.2%–27.4%). Among the four particle‐sizes in the 0–20 cm layer, the silt fraction exhibited the largest proportion of increase in SOC content (57.8% and 55.4% of the SOC increase in ORG and ING, respectively). A similar trend was detected in the 20–40 cm soil layer. Over all, intensive organic (ORG) vegetable production increases soil organic carbon but with a lower carbon conversion efficiency than integrated (ING) management.  相似文献   
3.
【目的】利用高光谱成像技术对水稻纹枯病进行早期的快速无损识别,结合判别分析方法建立相应的鉴别模型。【方法】以健康和感染纹枯病的水稻幼苗为研究对象,采集叶片和冠层各180个样本的380~1 030 nm波段的360条高光谱图像,剔除明显噪声部分后,以440~943 nm波段作为水稻样本的光谱范围,分别用不同的方法预处理获得水稻叶片的光谱曲线。采用偏最小二乘–判别分析(PLS-DA)对不同预处理的光谱建模。采用MNF算法对冠层的原始光谱数据进行特征信息提取,并基于特征信息建立线性判别分析(LDA)模型和误差反向传播神经网络(BPNN)判别模型。【结果】标准正态变量变换(SNV)预处理后建立的PLS-DA模型的预测集判别正确率最高,为92.1%。基于特征信息的LAD和BPNN模型的判别结果优于基于全波段的PLS-DA判别模型。基于最小噪声分离变换特征信息提取的BPNN模型取得了最优效果,建模集和预测集正确率分别达99.1%和98.4%。【结论】采用高光谱成像技术对水稻纹枯病生理特征进行无损鉴别是可行的,本研究为水稻纹枯病的识别提供了一种新方法。  相似文献   
4.
In this study,effects of temperature,light and their interactions on allelopathic effects and the functional traits specific leaf area(SLA)and stem mass fraction(SMF)of different allelopathic potential rice accessions at different growth stages were analyzed.The main results were as follows:Allelopathic responses to temperature and light varied with different allelopathic potential rice accessions at different growth stages.With the rise of temperature and the extension of photoperiod,allelopathic effect increased firstly and then decreased at 2–3 leaf stage,but increased constantly at the 4–5 and 7–8 leaf stages in strong allelopathic rice accessions[O.longistaminata,F1(O.longistaminata×RD23),F2(RL159 and RL169)].Temperature had significant impact on allelopathic effect without considering light factors,but light showed little effect on rice allelopathy at the same temperature conditions.The greatest allelopathic effect was attained with moderate temperature and long photoperiod at 2–3 leaf stage in strong allelopathic rice accessions,but all the rice accessions showed weak allelopathic effects at the low temperature condition(15oC/10oC),and the influence of different factors on allelopathy followed a general trend as temperatureleaf stagelight,indicating that among the multiple factors impacting rice allelopathy,temperature was the main factor.Allelopathic characteristics of F1 and F2 to various temperature and light were similar to O.longistaminata,showing that allelopathic genes from wild rice can be expressed in its descendants.Temperature and light also had significant effects on SLA and SMF,and rice allelopathy was closely correlative to SLA in strong allelopathic rice accessions at the 4–5 and 7–8 leaf stages,but there was no correlation between rice allelopathy and SMF at different growth stages.These results suggested that rice adjust the relationship between allelopathy and SLA and adapt to the varied environments,and that high temperature and long photoperiod can enhance rice allelopathic activity.  相似文献   
5.
添加氧化镁和铵明矾对菜田高磷土壤活性磷的影响   总被引:2,自引:0,他引:2  
为研究不同种类钝化剂对土壤磷素的固定效果,通过室内培养试验,向土壤中添加氧化镁、铵明矾及二者不同比例的混合物,研究其对土壤0.01 mol·L~(-1)CaCl_2浸提磷、0.5 mol·L~(-1)NaHCO_3浸提磷含量及磷素组分的影响。结果表明:与未钝化的对照处理相比,向土壤分别添加0.5%和2.0%(m/m)的氧化镁、铵明矾或其混合物培养45 d后,均显著降低了土壤CaCl_2浸提磷含量。添加氧化镁或铵明矾分别降低了87.8%(0.5%)、98.0%(2.0%)和44.4%(0.5%)、88.8%(2.0%)的CaCl_2浸提磷含量,而二者混合物的钝化效果明显弱于氧化镁。添加2.0%的氧化镁、铵明矾或其混合物对土壤NaHCO_3浸提磷含量降低明显,但氧化镁和铵明矾的混合物降低土壤NaHCO_3浸提磷的效果弱于铵明矾。对培养45 d后的土壤进行Hedley分组测定磷素组分发现,添加氧化镁或铵明矾显著降低了土壤H_2O浸提总磷和NaHCO_3浸提总磷含量,添加铵明矾显著增加了土壤中Na OH浸提总磷的含量。氧化镁、铵明矾和土壤活性磷不同的作用机理是导致氧化镁固定CaCl_2-P效果显著而铵明矾固定Olsen-P效果显著的主要原因。  相似文献   
6.
Inappropriate crop management and long-term use of heavy agricultural equipment can lead to soil compaction. On the other hand, soil and water salinity causes reduction in the plant yield in addition to adverse effects on plants tolerance to the various stresses. The aim of this study was to investigate the interaction between soil compaction and salinity on the macronutrients uptake and wheat yield as well as its agronomic traits. The pot experiment was carried out on the loamy soil in a completely randomized block design with three replications. The treatments consisted of two salinity types (saline, EC = 6 dS/m and non-saline soil) and five levels of compaction; control, 5%, 10%, 15% and 20%. The results showed that soil compaction had significant effect on the amount of N, P and K in wheat grain, so that the uptake of N, P and K by grain has been decreased by increasing the compaction level of soil. Soil salinity had significant effect on N, P and K content in grain that the content of N, P and K has been diminished in the saline treatments compared to non-saline treatments. Results on the agronomic traits and yield of wheat also revealed that soil compaction and salinity had significant effect (p < 0.01) on straw weight, number of ears, number of grain, and thousand grain weight which caused reduction in these parameters. The interaction between compaction and salinity had only significant correlation (p < 0.01) with thousand grain weight leading to the decrement of thousand grain weight with increasing compaction levels, particularly in the saline treatment.  相似文献   
7.
Decreased iron and zinc bioaccessibility, caused by the anti-nutrient phytic acid, is one of the leading reasons for micronutrient deficiency-related disorders. Biofortification of wheat with phytase gene to enhance iron and zinc bioaccessibility appears to be a fitting solution for this problem, especially in developing countries where most of the population belongs to the lower economic sector. However, societal views on crops, particularly crops that are genetically modified (GM) to express a new trait, needs to be changed. Risk assessment of GM crops can play a crucial role in fostering positive public perception, since it is imperative to ensure safety before allowing human consumption. The present study performed compositional and morphological risk assessment of T3 and T4 generations of phytase transgenic wheat by comparing their biochemical and morphological traits. Transgenic plants were analysed for their carbohydrate, protein, starch and phytic acid content along with iron bioaccessibility, zinc bioaccessibility and phytase enzyme activity. Morphological traits studied included plant height, seed number, seed weight and spike number. No significant differences were observed for carbohydrate, protein, starch content and for morphological traits; however, a significant increase was observed in phytase activity as well as iron and zinc bioaccessibility, which correlated with a significant decrease in phytic acid. These results demonstrate that phytase transgenic wheat is as native as local wheat varieties and can potentially increase iron and zinc bioaccessibility.  相似文献   
8.
Developments in genetics, agronomics and processing has positioned staple cereals as important sources of iron, zinc and provitamin A (pVA) carotenoids for nutritionally vulnerable populations. Significant effort has been placed on understanding the bioavailability of these micronutrients from cereal foods, including the exploration of underlying mechanisms by which their bioavailability can be modified. While micronutrient bioavailability is preferably assessed in clinical trials, relevant in vitro digestion and intestinal cell culture models have been applied to study effects of genetic, agronomic, post-harvest and food processing on micronutrient bioavailability. This review (1) critically assesses the application of in vitro models in the exploration of mechanisms associated with iron, zinc and provitamin A carotenoid bioaccessibility and intestinal absorption from cereal foods, and (2) identifies remaining gaps in order to frame future strategies to improve the nutritional impact of cereal foods.  相似文献   
9.
The elevated solubility of zinc(Zn) in acid sulfate paddy soils can limit rice production and pose a risk of environmental pollution.However, little attention has been paid to the ligand-controlled release of Zn in these soils. Here we quantified the rate of ligandcontrolled Zn release in Thai acid sulfate paddy soils, using ethylenediaminetetraacetic acid as the extractant. Sequential extractions were performed to obtain quantitative information on Zn fractions contributing to the ligand-controlled mechanisms. The amount of Zn released within 192 h varied significantly(8–43 mg kg~(-1)), which corresponded to 12%–40% of the total soil Zn, indicating that Zn solubility in most soils was relatively low and that Zn mainly occurred as residual phases. The kinetics of Zn release was well described by the power function model(r = 0.65–0.99, median = 0.87). The magnitude of initial Zn release(coefficient a) was significantly(P 0.05) related to the aqua regia-soluble Zn. Easily mobile Zn, organically bound Zn, and Zn associated with Fe and Mn oxides also contributed to the ligand-controlled release mechanisms to various degrees. Our results provide a systematic understanding of Zn fractions and release from acid sulfate paddy soils, the dynamics of which have a significant influence on the availability, phytoextraction, and mobility of Zn in terrestrial and engineered environments.  相似文献   
10.
水分胁迫对冬小麦冠层辐射截获率和利用效率的影响   总被引:2,自引:0,他引:2  
冬小麦地上部生物量和最终产量都取决于冠层截获光合有效辐射(Photosynthetically active radiation,PAR)的能力以及辐射利用效率(Radiation use efficiency,RUE)的大小。目前主要的作物生长模型都是利用作物冠层PAR截获率与RUE的关系来模拟作物的干物质积累和产量形成过程。为了探讨不同生育期受旱对冬小麦冠层PAR截获率和RUE的影响,本研究开展了2个生长季(2015—2016年和2016—2017年)的冬小麦田间试验。试验设置返青+拔节受旱(Early stress,ES),抽穗+灌浆受旱(Later stress,LS)以及全生育期不灌水(Whole stress,WS)3个不同处理,另外设置充分灌水处理作为对照(CK),灌水定额为80 mm。冠层接收到的太阳辐射通过每个小区中心处安装的PAR传感器全天候、不间断测得。结果表明土壤相对含水率能够有效反映冬小麦在不同受旱处理下的缺水状态。在受旱条件下,ES、LS和WS处理的最大叶面积指数分别比CK处理低31%、15%和58%。受叶面积指数影响,CK、ES、LS和WS处理的最大冠层PAR截获率分别为90%、88%、79%和42%,WS处理显著低于其他3个处理,同时,各处理叶面积指数和冠层PAR截获率的差异导致不同的冠层消光系数,其中ES处理的消光系数低于LS处理。CK、ES、LS和WS处理2年的平均地上部生物量分别为1 532、1 410、1 403、537 g/m~2。冬小麦的作物生长速率(Crop growth rate,CGR)呈现出和地上部生物量相似的规律,二者之间具有良好的相关性(R~2=0.99)。冠层辐射截获率和地上部生物量决定了冬小麦的RUE,本研究中CK处理的RUE为3.55 g/MJ,ES和LS处理的RUE要比CK处理低22%和5%,而WS处理仅比CK处理低22%。冬小麦的RUE在整个生育期呈先增大后减小的趋势,在开花期达到峰值。营养阶段受旱引起的冬小麦RUE降低幅度更大,全生育期受旱下冬小麦RUE呈现不同的干旱响应机制,有待于进一步研究。本研究认为将消光系数和RUE作为生育期或者积温的函数来对待而非单一常数,可以帮助改善作物模型中干物质的估算精度,降低模拟结果的不确定性。  相似文献   
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