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1.
本文报导不同栽培措施下水稻田甲烷释放的特性和甲烷产生菌、甲烷氧化菌的数量、种类。结果表明,水稻田的甲烷释放,无论是早稻还是晚稻,成活期每天的释放量较少,随着生长逐渐增加,至分蘖期达到最高,随后又逐渐减少,长期淹水和施用高量氮肥或有机肥可以明显地增加水稻田的甲烷释放量。水稻田土壤中产甲烷细菌的数量湿灌溉少氮处理少于其他各处理,其他各处理间无明显差异。早稻生长前期较后期土壤中的产甲烷菌数量低2—3个数量,晚稻生长中期略高于生长前期和后期。甲烷氧化菌数量在早稻生长期间从10~3~10~4/g干土增加到生长后期的10~8/g干土。在晚稻生长期间维持在10~8/g干土。产甲烷细菌的种类主要为甲烷杆菌属(Methanobacterium)和甲烷八叠球菌属(Methanosarcina)的种。甲烷氧化菌主要为杆状,除甲烷外还能利用其他基质的兼性异养型甲基营养型细菌。  相似文献   

2.
土壤微生物多样性是表征土壤质量最有潜力的指标,与农田生态系统的稳定性和生产力密切相关。云南永胜涛源乡是保持我国水稻小面积超高产纪录的特殊生态区,常年施用丁草胺作为选择性芽前除草剂,因此,了解丁草胺对其土壤微生物物种多样性的影响意义重大。采用平板菌落计数法,研究了模拟条件下不同丁草胺剂量(有效成分质量分数0.15、0.30和1.5 mg·kg^-1)对高产水稻土中好氧细菌(aerobic bacteria)、放线菌(actinobacteria)和真菌(fungi),以及功能微生物自生固氮菌(nitrogen fixing bacteria)、磷酸盐溶解菌(phosphate solubilizing bacteria)和硅酸盐细菌(silicate dissolving bacteria)数量的影响。结果表明:施药7 d,中、高质量分数(0.30和1.50 mg·kg^-1)丁草胺处理好氧细菌数量比CK分别高出78.6%和153.8%,而后数量逐渐下降,表现出先刺激生长、后抑制活性的作用,低质量分数(0.15 mg·kg^-1)丁草胺对好氧细菌的生长和增殖影响不明显;施药7 d,高质量分数处理放线菌数量超过CK 75.1%,表现出明显的刺激作用;施药15 d,中等质量分数处理放线菌数量比 CK 高出125.0%,丁草胺浓度越高,刺激作用越迅速,低浓度丁草胺对放线菌则主要表现为抑制作用。低浓度丁草胺对真菌的生长和增殖基本没有影响,中等浓度有先抑制后刺激的作用,施药30 d后其真菌数量超过CK 56.9%,高浓度丁草胺则表现为抑制作用,施药7、30和45 d其真菌数量始终显著低于CK;不同浓度处理丁草胺均能刺激自生固氮菌的数量显著增加,施药7 d,低、中、高质量分数处理自生固氮菌数量分别高出CK 237.1%,179.9%和138.1%,刺激作用显著,但随培养时间延长,高浓度开始表现出抑制作用;不同浓度丁草胺均能抑制磷酸盐溶解菌的生长和增殖,低浓度处理抑制作用微弱,中、高浓度处  相似文献   

3.
A survey was done in 15 typical villages, 150 soil and 86 vegetable plant samples were taken in Jiaxin prefecture of the Taihu Lake region, northern Zhejian province. Results indicate that after 15–20 years land use changed from the paddy rice–wheat (or oilseed rape) double cropping system, to a continuous vegetable land has caused soil quality dramatic change. (1) Acidification: average soil pH was 5.4; about 61% of total samples were pH < 5.5. It was 0.9 units lower than 10 years ago with same upland vegetable cultivation and was 1.2 units lower than soil pH of paddy rice–wheat (or oilseed rape) rotation. (2) Fertilizer salt accumulation: the average salt content was 0.28%, among these about 36.2% of the total samples contained more than 0.3%. (3) Nitrate N and available phosphorus (P) over accumulation: on average it was 279 mg NO3-N/kg, and 45–115 mg P/kg. Nitrate N four times higher and available P 4–10 times more than it is in present paddy rice–wheat rotation soils respectively. This has caused wide concern because of possible groundwater and well drinking water pollution by leached nitrate N and the P losses to water by runoff from vegetable lands induce surface water eutrophication.  相似文献   

4.
除草剂苯噻草胺对水稻田土壤微生物种群的影响   总被引:7,自引:0,他引:7  
以浙江大学华家池校区水稻土为材料,采用室内培养法,研究了不同浓度的外源除草剂苯噻草胺对水稻田土壤可培养微生物种群数量的影响.结果表明:土壤中各微生物类群对不同浓度的苯噻草胺具有各自不同的反应.苯噻草胺能刺激好氧细菌数量增加,但不利于真菌和放线菌的生长.低浓度苯噻草胺刺激水解发酵性细菌(AFB)、产氢产乙酸细菌(HPAB)和产甲烷细菌(MPB)数量的增加,但高浓度苯噻草胺却具有抑制性.在苯噻草胺施用第4周时可强烈刺激反硝化细菌(DNB)数量的增加.苯噻草胺也能刺激厌氧固氮菌(ANFB)数量增加,但这种刺激作用在第2周才出现,而且在培养后期消失.苯噻草胺的短期影响即急性毒性对土壤中可培养微生物的影响较小,比上一代除草剂丁草胺相对安全.图2表1参15  相似文献   

5.
A survey was done in 15 typical villages, 150 soil and 86 vegetable plant samples were taken in Jiaxin prefecture of the Taihu Lake region, northern Zhejian province. Results indicate that after 15-20 years land use changed from the paddy rice-wheat (or oilseed rape) double cropping system, to a continuous vegetable land has caused soil quality dramatic change. (1) Acidification: average soil pH was 5.4; about 61% of total samples were pH < 5.5. It was 0.9 units lower than 10 years ago with same upland vegetable cultivation and was 1.2 units lower than soil pH of paddy rice-wheat (or oilseed rape) rotation. (2) Fertilizer salt accumulation: the average salt content was 0.28%, among these about 36.2% of the total samples contained more than 0.3%. (3) Nitrate N and available phosphorus (P) over accumulation: on average it was 279 mg NO3-N/kg, and 45-115 mg P/kg. Nitrate N four times higher and available P 4-10 times more than it is in present paddy rice-wheat rotation soils respectively. This has caused wide concern because of possible groundwater and well drinking water pollution by leached nitrate N and the P losses to water by runoff from vegetable lands induce surface water eutrophication.  相似文献   

6.
A survey was done recently in Jiaxing city of Zhejiang Province in the Yangtze River Delta to compare the differences of soil microbiological properties among paddy soils with different land use including continuous open-field vegetable cultivation (OFVC), plastic-greenhouse vegetable cultivation (PGVC) and traditional rice-wheat rotation (RWR). The soil types included are percolating, permeable and waterlogged paddy soils. The results indicate that the microbial flora was markedly changed as the land use changed for all the three soil types. In continuous vegetable cultivation soils, especially in PGVC soils, the bacteria amounts decreased dramatically, but the fungal and actinomyce amounts increased as compared with RWR soils. The dehydrogenase activities decreased significantly in vegetable soils, especially in PGVC soils as compared with RWR soils. The microbial biomass C and the total phospholipid contents (TPL) in vegetable cultivation soil greatly decreased as compared with RWR soils. Biolog analysis indicated that the kinds of carbon sources that could be metabolized by native microbes in PGVC soils greatly decreased as compared with OFVC soils and RWR soils, revealing that microbial diversity had decreased since land use change. The activities of some soil enzymes including urease, invertase and phosphase were all lower in OFVC soils than those in RWR soils, and those in PGVC soils were the lowest. The degradation of microbiological activities in continuous vegetable cultivation soils, especially in PGVC soils, as compared with RWR soils might have been caused by soil acidification and accumulation of salts due to overuse of both organic and inorganic fertilizers in vegetable cultivation.  相似文献   

7.
A survey was done recently in Jiaxing city of Zhejiang Province in the Yangtze River Delta to compare the differences of soil microbiological properties among paddy soils with different land use including continuous open-field vegetable cultivation (OFVC), plastic-greenhouse vegetable cultivation (PGVC) and traditional rice–wheat rotation (RWR). The soil types included are percolating, permeable and waterlogged paddy soils. The results indicate that the microbial flora was markedly changed as the land use changed for all the three soil types. In continuous vegetable cultivation soils, especially in PGVC soils, the bacteria amounts decreased dramatically, but the fungal and actinomyce amounts increased as compared with RWR soils. The dehydrogenase activities decreased significantly in vegetable soils, especially in PGVC soils as compared with RWR soils. The microbial biomass C and the total phospholipid contents (TPL) in vegetable cultivation soil greatly decreased as compared with RWR soils. Biolog analysis indicated that the kinds of carbon sources that could be metabolized by native microbes in PGVC soils greatly decreased as compared with OFVC soils and RWR soils, revealing that microbial diversity had decreased since land use change. The activities of some soil enzymes including urease, invertase and phosphase were all lower in OFVC soils than those in RWR soils, and those in PGVC soils were the lowest. The degradation of microbiological activities in continuous vegetable cultivation soils, especially in PGVC soils, as compared with RWR soils might have been caused by soil acidification and accumulation of salts due to overuse of both organic and inorganic fertilizers in vegetable cultivation.  相似文献   

8.
Soil organic carbon (SOC) sequestration impacts on food security and climate change and may be affected by soil microbes in fertilized croplands. A 12-year field experiment under the rice–wheat system was used to evaluate the effect of the long-term fertilization on the SOC accumulation, culturable soil microbes, and their interaction in purple paddy soil. Results showed that varied fertilizations resulted in a significant increase of the SOC content and stock in the plow layer, as well as rise in populations of major soil microbes, including bacteria, actinomycetes, and fungi compared with no fertilization. Soil with combined application of chemical NPK fertilizer and organic amendment (pig manure or rice straw return) on average had the highest organic carbon content and stock, amounts of bacteria, actinomycetes, and fungi, which were 7.8%, 5.8%, 75.8%, 130.5%, and 16.2% higher than the NPK fertilization alone. Fertilization differentially altered populations of the functional anaerobic bacteria in paddy soil. With the combined application of chemical NPK fertilizer and organic amendment, soil displayed higher amounts of anaerobic cellulolytic bacteria, anaerobic fermentative bacteria, hydrogen-producing acetogen, methanogenic bacteria, denitrifying bacteria, and sulphate-reducing bacteria than that with the NPK fertilization alone or no fertilization. Populations of all three major soil microbes showed significantly positive correlations with the SOC content, indicating their interaction was of mutual promotion. Data suggest that the combined application of the NPK fertilizer with organic amendment especially by the rice straw return is recommended to sustain the soil biological fertility and mitigate the emission of the greenhouse gas by the SOC sequestration in purple paddy soil.  相似文献   

9.
王卫  谢小立  谢永宏 《生态环境》2010,19(11):2758-2763
土壤种子库是指存在于土壤表面和土壤中全部存活种子的总和。稻田土壤种子库是地上杂草产生的根本来源。我国是一个水稻种植大国,目前关于稻田土壤种子库的研究还不够全面和深入。研究稻田土壤种子库对于防治稻田草害具有重要指导意义,同时也是种子库研究领域的一个重要补充。取样方法和取样时间是研究土壤种子库的关键所在。而萌发法是最常见的判定方法。关于稻田土壤种子库大小的结论相差很大,从103~105 m-2不等。稻田土壤种子库中的杂草主要有19科55种,一般的稻田可检出10科或20种左右。种子的垂直分布格局主要受耕作强度的影响。70%~80%甚至更多的杂草种子分布在0~10 cm。稻田土壤种子库由于萌发、捕食、衰老和种子散布等原因具有季节动态。轮作制度、耕作方式、不同施肥处理以及除草方式等对稻田土壤种子库有重要影响。连续多年的田间管理会使种子库的大小、分布和物种组成产生年际变化。目前,需要加强长期定位研究,扩大研究区域和研究内容,重点研究杂草种子的休眠萌发机制和种子命运研究,为杂草治理提供更准确的信息。  相似文献   

10.
SUMMARY

An interdisciplinary team of 10 completed an exploratory one-month survey of villages in Nahom, Oudomxay Province, Laos, an area representative of upland farming systems based on opium and shifting cultivation. The study included investigation of the physical and socioeconomic environments and assessment of the farming systems. Due to the relatively low population density, there is enough land for villagers to practice shifting cultivation with a one year cultivation cycle, followed by 10–12 years of fallow. The soil degradation commonly caused by shifting cultivation was not significant in this area and the soil fertility is still relatively high. However, most of the original forests had been cut down and used for shifting cultivation and some degradation of the vegetation has occurred, showing that the ecological sustainability has been threatened by prevailing practices. Thirty-six percent of the households had food supply problems for more than three months of each year. The extremely low return for labour from upland rice cultivation, only 5.64 kg per labour-day, was the critical factor that caused the food shortage. Because of poor technique, rice yield from paddy fields was also low, thus shifting cultivators have no enthusiasm to expand their paddy fields. Income from opium provided 80.5% of household income. Opium was extremely tempting to local people due to the very high return for labour, 5700 kip (US$6) per labour-day, low investment, and good labour availability (mostly during the off-season of rice cultivation). However, opium was also a ‘two-edged sword’. It did not bring real wealth, health and happiness but instead brings poverty, poor health and disappointment.  相似文献   

11.
为评价二氯喹啉酸在水稻及其土壤中的安全性,建立其在水稻上的使用规范,于2008、2009年在杭州、济南和铁力三地进行田间试验,研究了二氯喹啉酸在水稻、土壤和田水中消解动态及最终残留量。建立了二氯喹啉酸在水稻、土壤和田水中残留量的超高效液相色谱串联质谱测定方法。在添加水平5~100μg.kg-1范围内,二氯喹啉酸的平均回收率在81.6%~105.7%之间,相对标准偏差均低于17.9%。残留试验结果表明,二氯喹啉酸在植株、土壤和田水中消解均符合一级动力学方程,消解半衰期分别为16.4~18.6、16.6~21.9和15.4~16.9 d;二氯喹啉酸在植株、土壤、糙米和稻壳中最终残留量均未检出(〈5μg.kg-1)。若二氯喹啉酸在水稻中的最高残留限量推荐值为0.5 mg.kg-1,建议每年以有效成分25 g.mu-1的剂量,于水稻移栽后10 d喷施1次,用于防治水稻田中稗草。  相似文献   

12.
The total concentration-based regulations for soil remediation do not consider the possible changes in bioaccessibility of remaining arsenic (As) in soils due to biogeochemical interactions after remediation. This study used As-contaminated soil and pore water samples that were collected from the rice paddy and forest/farmland located in the vicinity of a former smelter site in Republic of Korea to elucidate the changes in As bioaccessibility due to biogeochemical interactions. Bioaccessibility and chemical forms of As in soils were determined by using an in vitro method and sequential extraction, respectively, and soil microbial community was evaluated. Bioaccessibility of As in the rice paddy soil samples was higher than that in the forest/farmland soil samples. This could be attributed to relatively higher dependence of bioaccessible As in the rice paddy soils on the soil concentration of iron (Fe), aluminum, or manganese, which could lead to greater changes in bioaccessible As via reductive dissolution. The strong linear relationship (R 2 = 0.90, p value ≤0.001) between the pore water As and Fe concentrations, and the greater portion of bacterial species related to reductive dissolution of Fe oxides in the rice paddies can support the higher As bioaccessibility promoted by reductive dissolution. Therefore, it is necessary to consider the potential changes in the bioaccessible As due to biogeochemical interactions in remediation of As-contaminated soils, particularly when soils are likely to be reused under reductive dissolution-promoting conditions (e.g., flooded conditions).  相似文献   

13.
我国农田土壤碳氮耦合特征的区域差异   总被引:29,自引:0,他引:29  
利用中国第2次土壤普查数据,分析了稻作和旱作方式下农田耕层土壤有机碳和全氮特征及其区域差异。结果表明,水田土壤有机碳和全氮含量分别为旱地的147.8%和145.5%,但水田碳氮含量的区域变异低于旱地。全国水田和旱地土壤有机碳氮比值分别为10.8和9.9,各区域水田土壤碳氮比值普遍高于旱地,其中东北水田最高,而华东旱地和西北旱地最低。旱地碳氮比值的区域变异显著,水田则不显著。农田耕层土壤有机碳和全氮含量呈显著正相关,除华北地区外,各区域无论水田还是旱地其碳氮含量之间相关系数都超过0.8,达极显著水平。由此可见,我国农田耕层土壤有机碳和全氮含量之间存在显著耦合关系,而且不同利用方式和区域之间差异显著;相同氮水平下,水田土壤可能储存更多的有机碳。  相似文献   

14.
对小麦不同物候期农田防护林系统土壤含水量动态变化的测定结果表明:小麦不同物候期田间平均含水量的变化规律为幼苗期>返青期>拔节期>灌浆期,幼苗期和返青期杨树防护林对小麦的胁地影响不大,灌浆期是农田防护林与小麦争夺水分最为激烈的时期;幼龄防护林带能有效增加农田土壤含水量,对小麦生长有利,成熟林与农作物争夺水分的能力比幼龄林强,且对农作物的水分竞争主要集中在0.2倍树高范围内,造成此范围内土壤含水量明显不足。  相似文献   

15.
In this study, soil samples were collected to a depth of 100?cm from different land-uses, including maize field (MZ), wheat field (WT), paddy field (PD), apple orchard (OC), grassland (GL) and wetland (WL) in the Ili River Valley in northwest China, to investigate the effects of land-use on vertical distributions of soil carbon (C) and nitrogen (N) fractions, and examine whether such effects were different between topsoil (0–40?cm) and subsoil (40–100?cm). The results showed that soil organic C, water-extractable organic C, microbial biomass C, total N and microbial biomass N of croplands (MZ, WT, PD and OC) were significantly lower than those of natural lands (GL and WL) in both topsoil and subsoil, indicating that contents of soil C and N fractions can be reduced by agricultural land-uses, and the reductions are not limited to topsoil. However, the contents of soil ammonium N and nitrate N showed complex trends under different land-uses, possibly due to that the plant species and agricultural practices (e.g. application rate of fertiliser and irrigation) are considerably different among land-uses. Therefore, we suggest that more nutrient inputs should be applied to croplands to improve soil fertility in the Ili River Valley.  相似文献   

16.
以中嘉早17号为材料,采用水培试验方法,研究水稻超氧化物歧化酶(SOD)活性和丙二醛(MDA)含量在不同浓度Cd胁迫下的变化,并探讨了其与水稻糙米Cd含量的相关性。结果表明,在水稻发育过程中,SOD活性和MDA含量与Cd胁迫浓度呈正相关。SOD活性变化趋势为分蘖期乳熟期孕穗期; MDA含量变化趋势为分蘖期孕穗期乳熟期,且水稻主要时期叶片SOD活性和MDA含量与糙米Cd含量均呈显著正相关。  相似文献   

17.
溶解态有机氮(DON)是土壤中活跃的氮库,其生态环境行为与它的化学组成和粒径分布密切相关。为评估热带滨海区不同土地利用方式对不同粒径中土壤溶解性有机氮组成特征的影响,从水稻田、橡胶园、菜园和果园采集土壤样品,通过一系列微滤和超滤(0.7,0.45,0.2,0.1μm,100,10,1 kDa)对土壤溶解性有机氮分级,并使用连续流动分析仪、三维荧光光谱和红外光谱研究了滤液中溶解态有机氮、无机氮的含量及荧光组分和有机官能团特征。结果表明,4种土地利用背景下土壤DON值的范围为5.25-10.88 mg·kg^-1,其大小顺序为水稻>菜园>果树>橡胶,且DON与溶解性总氮(DTN)的比值范围为26.08%-67.11%,其中橡胶土最高,水稻土最低;不同粒径下4种土地利用类型土壤DON主要集中在<100 kDa的粒径中,其值范围为4.85-9.48 mg·kg^-1,占全量的85.89%-92.41%。三维荧光光谱(3D-EEMs)及平行因子分析表明,4种土地利用背景下土壤DON含有两种类腐殖质组分及一种类蛋白质组分,且以类腐殖质组分为主,占比54.00%-77.67%;类蛋白组分对土地利用变化敏感,且随着粒径的减小,类蛋白组分占比增加,在<1 kDa组分中比例最高。红外光谱结果表明,4种土地利用背景下土壤DON主要在6个位置有相似的吸收峰,包含3410 cm^-1、1636 cm^-1、1402 cm^-1、1138-1035 cm^-1、673 cm^-1、602 cm^-1,不同土地利用背景下各吸收峰的透光度不同,强度最大的吸收来自游离的胺类N-H伸缩振动;水稻、菜园土壤DON芳香物质含量较高,结构较复杂。了解DON的组成与粒径分布对土地利用的响应,对进一步研究其生态环境行为具有重要意义。  相似文献   

18.
水稻田的甲烷释放特性及其生物学机理   总被引:1,自引:0,他引:1  
本文报导采用土柱法和田间原位法研究渍水稻田甲烷释放特性的结果。不同生育期的测定表明,早稻以分蘖盛期时释放量最大,以后逐渐减少,晚稻从分蘖始期起逐渐增加,至分蘖盛期、末期时达到最大,随后在孕穗期急剧减少,至生长后期又有所回升。以原位法测定表明,晚间和上午释放的甲烷量较多,中午几乎无甲烷释放,下午又有少量释放。不同施肥区稻田甲烷释放量明显不同,以施猪粪有机肥区为最高,次为施尿素无机氮区,不施肥区最低。但各施肥区水稻不同生育期的甲烷释放趋势完全一致,以分蘖期释放量最大,稻田释放的甲烷主要是稻植株释放的,可占总释放量的85%以上。行株间土壤释放的量不多。田间水释放极少,就植株而言,甲烷释放部位主要是在与土壤密切结合的未扰动的根基和根系部位,水面下茎秆白色部分和水上绿色部分几乎无释放。根系也主要是靠近根基的上半部分,根尖部位甲烷形成活性明显小得多。且研究表明,产甲烷细菌附存于根表而不进入根内组织。根际土壤中产甲烷细菌、厌氧性纤维素分解细菌和甲烷氧化细菌的数量以及总挥发有机酸含量都明显高于和行间土壤。  相似文献   

19.
土壤固相不同组分对镉,锌吸持的研究   总被引:6,自引:2,他引:6  
邵孝侯  侯文华 《环境化学》1994,13(4):340-345
本文选用三种不同类型的土壤,用连续提取法依次去除土壤固相中碳酸盐(石灰性土壤)、锰、有机质、无定型氧化铁和晶型氧化铁组分,制得分离某一组分或某几个组分后的土壤钙饱和的样品,藉此研究土壤固相各组分对重金属Cd和Zn吸持的影响,研究结果表明,不同土壤去除某一组分或多个组分后对Cd和Zn吸持的影响是不同的,土壤固相中组分的相互作用可能是其主要原因。  相似文献   

20.
张豪  汤洁  梁爽 《生态环境》2013,(12):1899-1903
水稻土是中国主要的耕作土壤,在陆地土壤碳循环研究中具有重要现实意义。针对吉林西部水田土壤的特征,将无机碳库纳入土壤碳库研究,以典型灌区前郭县为例,野外采集盐碱地和已开发5、15、25、35、55年的5种不同水田表层土壤,建立实验样地,在水稻生长的幼苗期、分蘖期、长穗期和结实期采集土壤样品,用TOC仪分别测试表层土壤有机碳和碳酸盐含量,分析其季节动态规律和开发年份特征。结果表明:吉林西部盐碱水田土壤有机碳呈现“减-增-减”的季节变化规律,水稻生长的幼苗期和分蘖期有机碳含量下降,长穗期含量上升,结实期含量下降,碳酸盐季节变化规律与其相反,二者季节变化呈显著负相关;经历一个生长季后,开发5、15、25、35、55年的土壤有机碳含量分别增加了2.98%、3.53%、3.66%、2.72%、2.30%,碳酸盐含量分别增加了4.07%、2.15%、1.08%、1.61%、11.36%,说明研究区水田生长期具有碳汇作用;与未开发盐碱地相比,开发的5、15、25、35、55年生长季土壤平均总碳量分别增加了89.81%、121.03%、137.22%、188.28%,有机碳含量分别增加了284.28%、392.00%、456.37%、559.08%、666.06%,碳酸盐含量分别降低了13.49%、22.84%、32.23%、43.53%、62.40%;开发年份越长,水田土壤总碳和有机碳含量越高,碳酸盐含量越低;总碳的增加来自有机碳的增加;盐碱地开发有利于土壤碳汇。水稻生长期温度和降雨量影响土壤有机碳和碳酸盐季节变化。  相似文献   

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