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中国菌根研究60年:过去、现在和将来被引量:34
2012年
菌根(真菌根系)存在于大约90%的植物中,在促进土壤结构、植物养分与生长、元素生物地球化学循环和陆地生态系统结构与功能等方面具有重要作用.过去60年尤其是近30年,中国菌根研究成果举世瞩目,如共鉴定出20种新种与120余种新记录种丛枝菌根真菌、30种新种与800余种新记录种外生菌根真菌以及10种新种与100余种新记录种兰花菌根真菌.同时,在菌根真菌菌种丰富度与遗传结构、菌种生态分布与植物种群,植物养分摄取与生长、植物修复与土地复垦、植物抗病性和与其他土壤微生物相互作用、菌根植物酶学性质及大气CO2和O3浓度升高对丛枝菌根多样性的影响等方面也取得重大进展.本文选介中国菌根主要研究成就,进行研究前景展望,以促进我国菌根研究的深入开展.
何新华段英华陈应龙徐明岗
关键词:丛枝菌根外生菌根植物修复物种多样性
长期不同施肥下黑土和红壤团聚体氮库分布特征被引量:11
2013年
为阐明长期不同施肥下土壤氮库的演变特征,揭示氮库稳定性不同的团聚体对不同施肥的响应,为化肥和有机物的合理施用提供科学依据。本研究通过对黑土和红壤22年的田间肥料定位试验,研究了长期不同施肥模式对土壤全氮、微生物氮以及各级团聚体中氮贡献率的影响。结果表明,长期不施肥(CK)和施用化肥(NPK),黑土土壤全氮含量以0.015 g/(kg·a)的速率显著下降(P<0.05);而长期化肥配施有机肥(NPKM),黑土全氮含量以0.025 g/(kg·a)的速率显著上升(P<0.05)。在CK、NPK、NPKM和秸秆还田(NPKS)处理下,红壤全氮含量均没有显著变化。施肥22年后,NPKM处理下黑土和红壤微生物氮含量较NPK处理下分别增加了15%和43%,全氮含量分别增加了43%和45%,差异均达到显著水平(P<0.05)。氮素在黑土上主要积累在2 53μm微团聚体中,达到0.73 1.21 g/kg,在红壤上主要积累在<2μm微团聚体中,达到0.46 0.98 g/kg。与NPK相比,NPKM处理下黑土和红壤250 2000μm大团聚体中氮素贡献率均显著提高,分别增加了4.3%和5.1%。与NPK相比,NPKM和NPKS处理下,红壤2 53μm微团聚体中氮贡献率分别降低了5.9%和9.7%,而黑土除大团聚体外的各级团聚体氮贡献率均没有显著变化。可见,不同土壤类型对施肥响应不同,主要是2 53μm微团聚体中氮素的响应不同,化肥配施有机肥可提高土壤250 2000μm大团聚体中氮的贡献率,进而增加土壤对作物的氮素供给能力,是有助于提高土壤肥力和生产力的农业生产可持续性施肥模式。
刘震徐明岗段英华张丽娟张毅功
关键词:长期施肥黑土红壤团聚体
Nitrogen Use Efficiency as Affected by Phosphorus and Potassium in Long-Term Rice and Wheat Experiments被引量:9
2014年
Improving nitrogen use efficiency (NUE) and decreasing N loss are critical to sustainable agriculture. The objective of this research was to investigate the effect of various fertilization regimes on yield, NUE, N agronomic efficiency (NAE) and N loss in long-term (16- or 24-yr) experiments carried out at three rice-wheat rotation sites (Chongqing, Suining and Wuchang) in subtropical China. Three treatments were examined: sole chemical N, N+phosphorus (NP), and NP+potassium (NPK) fertilizations. Grain yields at three sites were significantly increased by 9.3-81.6% (rice) and 54.5-93.8% (wheat) under NP compared with N alone, 1.7-9.8% (rice) and 0-17.6% (wheat) with NPK compared with NP. Compared to NP, NUE significantly increased for wheat at Chongqing (9.3%) and Wuchang (11.8%), but not at Suining, China. No changes in NUE were observed in rice between NP and NPK at all three sites. The rice-wheat rotation's NAE was 3.3 kg kg1 higher under NPK than under NP at Chongqing, while NAE was similar for NP and NPK at Suining and Wuchang. We estimated that an uptake increase of 1.0 kg N hal would increase 40 kg rice and 30 kg wheat ha-1. Nitrogen loss/input ratios were -60, -40 or -30% under N, NP or NPK at three sites, indicating significant decrease of N loss by P or PK additions. We attribute part of the increase in NUE soil N accumulation which significantly increased by 25-55 kg ha-1 yr1 under NPK at three sites, whereas by 35 kg ha-1 yr-1 under NP at Chongqing only. This paper illustrates that apply P and K to wheat, and reduce K application to rice is an effective nutrient management strategy for both the NUE improvement and N losses reduction in China.
DUAN Ying-huaSHI Xiao-junLI Shuang-laiSUN Xi-faHE Xin-hua
Soil CO_2 and N_2O Emissions in Maize Growing Season Under Different Fertilizer Regimes in an Upland Red Soil Region of South China被引量:4
2014年
Upland red soils have been identified as major CO2 and N2O sources induced by human activities such as fertilization. To monitor characteristics of soil surface CO2 and N2O fluxes in cropland ecosystems after continuous fertilizer applications over decades and to separate the respective contributions of root and heterotrophic respiration to the total soil CO2 and N2O fluxes, the measurements of soil surface CO2 and N2O fluxes throughout the maize growing season in 2009 were carried out based on a fertilization experiment (from 1990) through of the maize (Zea mays L.) growing season in red soil in southern China. Five fertilization treatments were chosen from the experiment for study: zero-fertilizer application (CK), nitrogen-phosphorus- potassium (NPK) fertilizer application only, pig manure (M), NPK plus pig manure (NPKM) and NPK with straw (NPKS). Six chambers were installed in each plot. Three of them are in the inter-row soil (NR) and the others are in the soil within the row (R). Each fertilizer treatment received the same amount of N (300 kg ha-1 yr-1). Results showed that cumulative soil CO2 fluxes in NR or R were both following the order: NPKS〉M, NPKM〉NPK〉CK. The contributions of root respiration to soil CO2 fluxes was 40, 44, 50, 47 and 35% in CK, NPK, NPKM, M and NPKS treatments, respectively, with the mean value of 43%. Cumulative soil N2O fluxes in NR or R were both following the order: NPKS, NPKM〉M〉NPK〉CK, and soil N2O fluxes in R were 18, 20 and 30% higher than that in NR in NPKM, M and NPKS treatments, respectively, but with no difference between NR and R in NPK treatment. Furthermore, combine with soil temperature at -5 cm depth and soil moisWxe (0-20 cm) together could explain 55-70% and 42-59% of soil CO2 and N2O emissions with root interference and 62- 78% and 44-63% of that without root interference, respectively. In addition, soil CO2 and N2O flUXeS per unit yield in NPKM (0.55 and 0.10 kg C t^-1) and M (0.65 and 0.13 g N t^
ZHANG Xu-boWU Lian-haiSUN NanDING Xue-shanLI Jian-weiWANG Bo-renLI Dong-chu
关键词:MANURE
A 60-year journey of mycorrhizal research in China:Past,present and future directions被引量:24
2010年
The significance of mycorrhizas(fungal roots in 90% of land plants) in plant nutrient acquisition and growth,element biogeo-chemical cycling and maintaining of terrestrial ecosystem structures has been globally established for more than 120 years.Great progress in mycorrhizal research in the past 60 years(1950-2009,1981-2009 in particular) has also been made across China,particularly in the mainland,Hong Kong and Taiwan.For instance,a total of 20 new and ~120 records of arbuscular mycorrhizal(AM) fungal species,30 new and ~800 records of ectomycorrhizal(EM) fungal species,a dozen of new and ~100 records of orchid mycorrhizal(OM) fungal species have been isolated by morphological observation and/or molecular identification in China since the 1950s.Great accomplishment has also been made in the following area,including fungal species richness and genetic structure,relationships between species composition and plant taxa,effects of mycorrhizal fungi on plant nutrient uptake and growth,resistances to pathogens and interactions with other soil microorganisms,potential of mycorrhizal fungi in phytoremediation and/or land reclamation,alterations of enzymatic activities in mycorrhizal plants,and elevated CO2 and O3 on root colonization and species diversity.Unfortunately,the international community cannot easily appreciate almost all Chinese mycorrhizal studies since the vast majority of them have been published in Chinese and/or in China-based journals.The aim of this review is to make a comprehensive exposure of the past and present China's major mycorrhizal research to the whole world,and then to suggest potential directions for the enhancement of future mycorrhizal research within and/or between the Chinese and international mycorrhizal community.
HE XinHuaDUAN YingHuaCHEN YingLongXU MingGang
关键词:ECTOMYCORRHIZAPHYTOREMEDIATION
长期施肥下中国典型农田小麦氮肥利用率的时空演变被引量:17
2011年
【目的】阐明长期不同施肥条件下中国典型农田土壤小麦氮肥利用率时间演变趋势和空间差异,为评价和建立长期施肥模式、提高氮肥利用率提供依据。【方法】对中国典型农田土壤——褐潮土、轻壤质潮土、塿土和红壤设置的15—18年长期试验的小麦氮肥利用率及相关数据进行统计分析。【结果】小麦多年平均氮肥利用率在长期偏施氮肥(N处理)条件下最低,为6.5%—14.4%,在平衡施肥(NPK处理)条件下可达到20.5%—78.5%。N处理小麦的氮肥利用率以每年0.61%—2.32%的速率下降,NPK处理小麦的氮肥利用率在褐潮土、轻壤质潮土和塿土上呈上升趋势,而在红壤上呈下降趋势。红壤上化肥配施有机肥(NPKM处理),小麦的氮肥利用率较NPK处理增加了15.9%,且年际间保持持平。长期单施氮肥土壤氮、磷、钾养分呈亏缺或者持平趋势,均衡施用氮、磷、钾肥土壤养分逐年上升,氮、磷、钾养分的均衡供应有利于提高小麦对氮肥的利用率。【结论】长期偏施氮肥会导致小麦氮肥利用率随施肥年限增加而降低,施用有机肥不但可以保证土壤的可持续供氮能力,而且在南方红壤地区还可以防止土壤酸化。
闫鸿媛段英华徐明岗吴礼树
关键词:长期施肥氮肥利用率小麦
添加有机物料后红壤CO_2释放特征与微生物生物量动态被引量:32
2011年
【目的】对不同有机物料施入红壤后CO2释放特征及几种形态碳、氮变化进行了观测,并分析其相互关系,以阐明添加有机物料后红壤中CO2释放量及几种碳、氮形态的变化特征。【方法】采用室内恒温培养试验,向红壤中添加5种有机物料(猪粪、牛粪、鸡粪、玉米秸秆和小麦秸秆),培养期间定期采样分析红壤CO2释放量及土壤微生物量碳、氮(SMBC、SMBN)的动态变化。【结果】添加有机物料后,各处理CO2释放速率在培养前期较高,在培养18-20 d后基本趋于稳定。整个培养期间,土壤CO2-C的累积过程符合一级反应动力学方程。添加不同有机物料后红壤CO2潜在释放量从高到低顺序为:小麦秸秆(1.51 g.kg-1)>玉米秸秆(1.38 g.kg-1)>猪粪(0.89 g.kg-1)>鸡粪(0.78 g.kg-1)>牛粪(0.50 g.kg-1)。添加几种有机物料后红壤CO2释放量存在显著差异,秸秆类有机物料分解释放CO2量相当于动物有机肥的2倍以上,其中小麦秸秆最高,牛粪最低,且有机物料分解释放CO2量与SMBC、SMBN、土壤可溶性有机碳(WSOC)和有机物料C/N呈显著相关。【结论】等碳量的有机物料施入红壤后能显著提高土壤CO2的释放速率和释放量,且土壤CO2释放量与土壤微生物量、可溶性碳和有机物料的C/N紧密相关。添加有机物料处理,土壤微生物生物量和碳源、氮源的有效性较高,有利于土壤养分的转化和释放。
张旭博徐明岗张文菊林昌虎段英华蔡泽江张崇玉
关键词:红壤有机物料
长期不同施肥条件下红壤性水稻土双季稻氮肥回收率的变化特征被引量:22
2013年
在江西进贤红壤性水稻土上连续种植双季水稻26年,分析了在化肥氮用量相同条件下,不施肥(CK),单施氮肥(N),施用氮、磷化肥(NP),氮、钾化肥(NK),氮、磷、钾化肥(NPK)和氮磷钾配施有机肥(NPKM)处理的水稻氮肥回收率的演变特征及其增产效应。结果表明,不同施肥条件下的化肥氮回收率差异显著,26年的平均氮肥回收率N处理为9.4%~11.6%、NP为13.0%~18.5%、NPK为19.8%~26.1%,NPKM为14.1%~22.9%。磷、钾肥混施和与有机肥配施可显著提高水稻氮肥回收率,且对早稻的贡献大于晚稻,NPK和NPKM处理的早稻氮肥回收率比晚稻平均高6.3和8.8个百分点。N和NK处理的早稻和晚稻氮肥回收率均随年度增加而显著降低,平均每年下降约0.6个百分点,而NPK、NPKM处理的氮肥回收率基本保持稳定。与NPK相比,NPKM处理早稻和晚稻籽粒产量分别增加19.0%和21.7%。因此,NPKM处理在提高化肥氮的回收率和高产稳产方面都是红壤性水稻土上可持续的施肥模式。
王姗娜黄庆海徐明岗段英华柳开楼
关键词:长期施肥红壤性水稻土水稻
红壤长期不同施肥对玉米氮肥回收率的影响被引量:26
2010年
为阐明长期不同施肥下玉米氮肥回收率的变化特征,揭示影响红壤玉米氮肥回收率的关键土壤因素,为红壤氮肥合理施用和提高氮肥回收率提供科学依据,在湖南红壤上连续观测了18年不施肥,施氮、磷、钾化肥,化肥配施有机肥和单施有机肥条件下玉米氮肥回收率的变化特征及其原因。结果表明,与施用化肥相比,玉米的子粒产量和植株氮素积累量在化肥配施有机肥下分别增加了61.5%和63.1%。氮、磷、钾化肥施用8年后,玉米氮肥回收率呈显著下降趋势,年平均下降速率达3.34个百分点;而化肥配施有机肥下氮肥回收率以每年1.24个百分点的速率显著增加;单施有机肥下氮肥回收率保持持平并略有上升。土壤pH、全氮和有机质含量均与氮肥回收率呈显著线性正相关,其中土壤pH对氮肥回收率的影响最明显。在土壤pH 4.5~6.3范围内,红壤pH每降低1个单位,玉米氮肥回收率下降10.9%。长期施用化肥的土壤pH以每年0.06的速率下降;单施有机肥尽管可缓解土壤酸化,但玉米产量较低,而化肥配施有机肥能同时抑制土壤酸化和提高玉米产量及氮肥回收率。因此,化肥配施有机肥具有明显的增产和保肥效果,是红壤上农业生产可持续性的施肥模式。
段英华徐明岗王伯仁黄晶
关键词:长期施肥红壤酸化玉米
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