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Seasonal dynamics of N:P ratio stoichiometry and Ca fraction for four dominant plants in the Alxa Desert 被引量:1
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作者 JianTan Guo XingDong He +1 位作者 HongJuan Jing YuTing Liang 《Research in Cold and Arid Regions》 CSCD 2018年第4期326-332,共7页
Desert plants take on unique physiologically adaptive mechanisms in response to an adverse environment. In this study, we determined the concentrations of leaf nitrogen(N), phosphorus(P), and calcium(Ca) fraction for ... Desert plants take on unique physiologically adaptive mechanisms in response to an adverse environment. In this study, we determined the concentrations of leaf nitrogen(N), phosphorus(P), and calcium(Ca) fraction for dominant species of Artemisia ordosica, A. frigida, Calligonum mongolicum, and Oxytropis aciphylla in the Alxa Desert and discussed seasonal changes of their leaf N:P ratio and Ca fraction. The results showed that, from May to September, the N:P ratios of A. ordosica and C. mongolicum gradually and significantly increased, while those of A. frigida, and O. aciphylla had an increase trend that was not significant; the physiologically active Ca of A. ordosica and A. frigida increased significantly,while that of C. mongolicum and O. aciphylla decreased significantly. The physiologically inert calcium of C. mongolicum increased extremely significantly, while that of others was not significant. There was a significantly positive correlation between the N:P ratio and physiologically active Ca for A. ordosica, and the N:P ratio was significantly and negatively correlated with physiologically active Ca for O. aciphylla. These findings revealed that the physiological regulation mechanism was different for the plants either in earlier stage or later stage of plant-community succession. 展开更多
关键词 the Alxa Desert n:p ratio CA FRACTIOn seasonal dynamic
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The Inhibitory Degree Between Skeletonema costatum and Dinoflagllate Prorocentrum donghaiense at Different Concentrations of Phosphate and Nitrate/Phosphate Ratios 被引量:1
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作者 CAO Jing WANG Jiangtao 《Journal of Ocean University of China》 SCIE CAS 2012年第2期153-158,共6页
Interactions between Skeletonema costatum (S. costatum) and Prorocentrum donghaiense (P. donghaiiense) were inves-tigated using bi-algal cultures at different concentrations of phosphate (PO4-P) and nitrate/phosphate ... Interactions between Skeletonema costatum (S. costatum) and Prorocentrum donghaiense (P. donghaiiense) were inves-tigated using bi-algal cultures at different concentrations of phosphate (PO4-P) and nitrate/phosphate (N/P) ratios. Experiments were conducted under P-limited conditions and the Lotka-Volterra mathematical model was used to simulate the growth of S. costatum and P. donghaiense in the bi-algal cultures. Both of these two species were inhibited significantly in bi-algal culture. The results of the simulation showed that the inhibitory degree of S. costaum by P. donghaiense was high when the concentration of PO4-P was low (0.1μmolL-1/2 d), but that of P. donghaiense by S. costaum was high with increased PO4-P supply (0.6μmolL-1/2 d). At low concen-tration of PO4-P (0.1μmolL-1/2 d), or high concentration of PO4-P (0.6μmolL-1/2 d) with high N/P ratio (160), the interactions be-tween S. costatum and P. donghaiense were dependent on the initial cell densities of both species. At high concentration of PO4-P (0.6μmolL-1/2 d) with low N/P ratio (25 or 80), S. costatum exhibited a survival strategy superior to that of P. donghaiense. The de-gree of inhibition of P. donghaiense by S. costaum increased with elevated N/P ratio when the medium was supplemented with con-centration 0.1μmolL-1/2 d of PO4-P. The degree of inhibition to P. donghaiense by S. costaum increased with elevated N/P ratio at low concentration of PO4-P (0.1 μmolL-1/2 d). This trend was conversed at high concentration of PO4-P (0.6μmolL-1/2 d). However, the degree of inhibition of S. costaum by P. donghaiense increased with the increased N/P ratio at different PO4-P concentrations (0.1μmolL-1/2 d and 0.6μmolL-1/2 d). These results suggested that both phosphate concentration and N/P ratio affected the competition between S. costaum and P. donghaiense: P. donghaiense is more competitive in environments with low phosphate or high N/P ratio and the influence of N/P ratio on the competition was more significant with lower phosphate concentration. 展开更多
关键词 东海原甲藻 中肋骨条藻 磷酸盐 硝酸盐 LOTKA-VOLTERRA 比率 相互作用 p浓度
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Yield ratio of neutrons to protons in 12C(d,n)13N and 12C(d,p)13C from 0.6 to 3 MeV
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作者 Wu-Jie Li Yu-Gang Ma +8 位作者 Guo-Qiang Zhang Xian-Gai Deng Mei-Rong Huang Aldo Bonasera De-Qing Fang Jian-Qing Cao Qi Deng Yong-Qi Wang Qian-Tao Lei 《Nuclear Science and Techniques》 SCIE CAS CSCD 2019年第12期65-71,共7页
The neutron yield in the12C(d,n)13N reaction and the proton yield in the12C(d,p)13C reaction have been measured using deuteron beams of energies 0.6-3 MeV.The deuteron beam is delivered from a 4-MeV electrostatic acce... The neutron yield in the12C(d,n)13N reaction and the proton yield in the12C(d,p)13C reaction have been measured using deuteron beams of energies 0.6-3 MeV.The deuteron beam is delivered from a 4-MeV electrostatic accelerator and bombarded on a thick carbon target.The neutrons are detected at 0°,24°,and 48°and the protons at135°in the laboratory frame.Further,the ratio of the neutron yield to the proton yield was calculated.This can be used to effectively recognize the resonances.The resonances are found at 1.4 MeV,1.7 MeV,and 2.5 MeV in the12C(d,p)13C reaction,and at 1.6 MeV and 2.7 MeV in the12C(d,n)13N reaction.The proposed method provides a way to reduce systematic uncertainty and helps confirm more resonances in compound nuclei. 展开更多
关键词 proton neutron ratio 12C(d n) p) TROJAn HORSE method(THM)
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Comparison of the S-, N- or P-Deprivations’ Impacts on Stomatal Conductance, Transpiration and Photosynthetic Rate of Young Maize Leaves 被引量:1
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作者 Dimitris L. Bouranis Styliani N. Chorianopoulou +4 位作者 Alexandros Dionias Giouli Sofianou Aristotelis Thanasoulas Georgios Liakopoulos Dimosthenis Nikolopoulos 《American Journal of Plant Sciences》 2012年第8期1058-1065,共8页
Seven-day-old maize (Zea mays) plants were grown hydroponically for ten days in deprived nutrient solutions against the corresponding control grown under full nutrition;the effects of S-, N- or P-deprivation on lamina... Seven-day-old maize (Zea mays) plants were grown hydroponically for ten days in deprived nutrient solutions against the corresponding control grown under full nutrition;the effects of S-, N- or P-deprivation on laminas’ mean stomatal conductance (gs), transpiration rate (E) and photosynthetic rate (A) were monitored, along with the impact on the laminas’ total dry mass (DM), water amount (W), length and surface area (Sa). Furthermore, a time series analysis of each parameter’s response ratios (Rr), i.e. the treatment’s value divided by the corresponding control’s one, was performed. Under S-deprivation, the Rr of laminas’ mean gs, E, and A presented oscillations within a ±15% fluctuation zone, notably the “control” zone, whilst those of laminas’ total DM, water amount, surface area, and length included oscillation during the first days and deviation later on, presenting deviation during d10. Under the N-deprivation conditions all Rr time courses except the A one, included early deviations from the control zone without recovering. The deviation from the control zone appeared at d4. Under P-deprivation, all Rr time courses represented oscillations within the control zone. P-deprivation’s patterns resembled those of S-deprivation. Compared to the one of the S-deprivation, the P-one’s oscillations took place within a broader zone. Linear relationships among the various Rr patterns were found between gs-E, gs-A, E-A, DM-W and DM-Sa. In conclusion, the impact of P-deprivation appeared in an early stage and included an alleviation action, the one of N-deprivation appeared early with no alleviation action, whilst that of S-deprivation appeared later, being rather weaker when compared to the impact of the P-deprivation’s impact. 展开更多
关键词 S-Deprivation n-Deprivation p-Deprivation Hydroponics Zea Mays StoMATAL Conductance TRAnSpIration RATE photosynthetic RATE Response ratios Fluctuation Analysis
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多孔n-GaN/p-Zn_(x)Cu_(1-x)S异质结的制备及紫外探测性能研究
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作者 杜志伟 贾伟 +5 位作者 贾凯达 任恒磊 李天保 董海亮 贾志刚 许并社 《人工晶体学报》 CAS 北大核心 2024年第8期1326-1336,共11页
本文首先采用紫外光辅助电化学刻蚀(UV-EC)方法制备出了孔隙密度为1.51×10^(10)cm^(-2)、平均孔径为38 nm的多孔n-GaN薄膜;随后在其上通过水浴法沉积了一系列Zn_(x)Cu_(1-x)S复合薄膜,x为0.0、0.2、0.4、0.6、0.8、1.0,形成的多孔n... 本文首先采用紫外光辅助电化学刻蚀(UV-EC)方法制备出了孔隙密度为1.51×10^(10)cm^(-2)、平均孔径为38 nm的多孔n-GaN薄膜;随后在其上通过水浴法沉积了一系列Zn_(x)Cu_(1-x)S复合薄膜,x为0.0、0.2、0.4、0.6、0.8、1.0,形成的多孔n-GaN/p-Zn_(x)Cu_(1-x)S异质结带隙在2.34~3.51 eV调控;最后基于这些异质结构建出p-n结型紫外探测器。I-V曲线结果表明这些探测器均具有良好的整流特性,特别是n-GaN/p-Zn_(0.4)Cu_(0.6)S探测器性能最优。在暗态下,I_(+3 V)/I_(-3 V)约为1.78×10~5;在偏压为-3 V、光功率密度为432μW/cm^(2)(365 nm)的条件下,光暗电流比超过10~3,上升/下降时间为0.09/39.8 ms,响应度(R)为0.352 A/W,外量子效率(EQE)为119.6%,探测率(D^(*))为3.21×10^(12)Jones。I-t曲线结果表明,多孔n-GaN/p-Zn_(x)Cu_(1-x)S异质结紫外探测器在连续开-关光循环过程中拥有稳定的光电流响应。该研究为制备异质结紫外探测器提供了一定的理论指导和实验数据。 展开更多
关键词 p-Zn_(x)Cu_(1-x)S 多孔n-Gan 异质结 紫外探测器 光暗电流比 响应度
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N/P比对锂离子混合型电容器性能的影响研究
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作者 谢胜男 杨重阳 张灿 《广东化工》 CAS 2024年第11期7-10,40,共5页
锂离子混合型电容器因兼具锂离子电池的高比能量和超级电容器的高比功率优点而被高度重视。然而,负极/正极容量比(N/P)的变化,不仅会在初始循环过程中造成容量损失消耗活性锂,而且可能导致过充电和过放电,对锂离子混合型电容器的长期循... 锂离子混合型电容器因兼具锂离子电池的高比能量和超级电容器的高比功率优点而被高度重视。然而,负极/正极容量比(N/P)的变化,不仅会在初始循环过程中造成容量损失消耗活性锂,而且可能导致过充电和过放电,对锂离子混合型电容器的长期循环稳定性、快充性能和安全性能的影响很大。因此,研究N/P比对于首次库伦效率(ICE)、循环性能、快充性能和安全性能具有重要意义。本文采用活性炭和电池型材料LiNi_(0.5)Co_(0.2)Mn_(0.3)O_(2)做复合正极材料(AC/NCM),硬碳(HC)做负极材料,设计并制备了不同N/P比(0.5、0.6、0.8、1.2、1.8、2.7)的软包锂离子混合型电容器,通过一系列研究表明,N/P比远大于1时,对能量密度和首效的发挥不利,N/P比小于1时,对安全性能极为不利。 展开更多
关键词 锂离子混合型电容器 n/p 循环稳定性 快充性能 安全性能
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Effect of nutrient level on phytoplankton community structure in different water bodies 被引量:26
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作者 Wei Zhu Lei Wan Lianfang Zhao 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2010年第1期32-39,共8页
Increasing levels of pollution within water bodies can cause eutrophication and an associated rapid growth in and reproduction of phytoplankton. Although most frequently occurring in bodies of water such as lakes and ... Increasing levels of pollution within water bodies can cause eutrophication and an associated rapid growth in and reproduction of phytoplankton. Although most frequently occurring in bodies of water such as lakes and dams, in recent years an increasing number of river systems in China have suffered serious algal blooms. The community structure of phytoplankton may differ, however, dependent on the hydrodynamic conditions and nutrient levels within the water body. The field investigation results obtained from a stagnant river in Suzhou City and Taihu Lake, China, showed that in water with higher concentrations of nitrogen and phosphorus, Chlorophyta became the predominant species and in water with lower concentrations of nitrogen and phosphorus, Cyanobacteria became the predominant species. Growth experiments with competitive species, Microcystis aeruginosa Kutz and Scenedesmus quadricauda (Turp.), were conducted at three different nutrient levels. The biomass of algae in pure and mixed cultures was measured under conditions of different N/P ratios at oligotrophic, eutrophic and hypertrophic nutrient levels. The results indicated that the most suitable state for the growth and reproduction of M. aeruginosa and S. quadricauda were eutrophic conditions in both pure and mixed cultures. Under competition, however, the lower medium nutrient levels favoured M. aeruginosa, while the higher medium nutrient levels better suited S. quadricauda. Under similar hydrodynamic conditions, the community structure of phytoplankton in the water body was determined by the dominant species in competition for nutrients. 展开更多
关键词 pHYtopLAnKton community structure nutrients level n/p ratio
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Comparison of foliar nutrient concentrations between natural and artificial forests of Pinus sylvestris var. mongolica on sandy land, China 被引量:7
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作者 ZHU Jiao-jun TAN Hui +1 位作者 KANG Hong-zhang XU Mei-ling 《Journal of Forestry Research》 SCIE CAS CSCD 2006年第3期177-184,共8页
In order to examine the causes of degradation of Pinus sylvestris var. mongolica plantations on sandy land, the foliar concentrations of N, P, K and C were analyzed and compared between the field grown P. sylvestris v... In order to examine the causes of degradation of Pinus sylvestris var. mongolica plantations on sandy land, the foliar concentrations of N, P, K and C were analyzed and compared between the field grown P. sylvestris var. mongolica trees from two provenances (natural forests and plantations). The results indicated that natural tree needles had lower N, P and C concentrations, and higher K concentrations than those of plantation tree needles. For plantation tree needles, ratios of N: P, P. K and N: K increased with tree age before 45 years old; but they were not clear for the natural tree needles. Compared with the conclusions reported on Pinus spp., we found that the foliar N and P concentrations were in the optimal range for both natural and plantation tree needles. This result suggested that N or P might not be the absolute limit factors in plant nutrient for P sylvestris var. mongolica on sandy land. However, foliar K concentrations in both natural and plantation tree needles were much lower than those reported on Pinus spp. (〉4.80 g kg-1).The N: P ratio of natural needles was in the adequate ranges, but N: P ratio of plantation needles was out of the adequate ranges. These results indicated that there was a better balanced nutrition status in the natural forest than in the plantations. If only considering the foliar nutrient concentrations of P sylvestris var. mongolica from different provenances, it might be concluded that the degradation phenomenon of P. sylvestris var. mongolica plantations was not induced by nutrition deficiency of absolute nutrients of N and P, but might be induced by other mineral nutrients or by the effectiveness of N and P nutrients. The unbalanced nutrition status and relatively quick decomposition of needles in the plantations might also contribute to the degradation. 展开更多
关键词 Degradation phenomenon Forest ecosystem on sandy land n p ratio natural Mongolian pine pinus sylvestris var. mongolica plantation Mongolian pine
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Phenotypic plasticity of Artemisia ordosica seedlings in response to different levels of calcium carbonate in soil 被引量:1
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作者 XUE Pingping ZHAO Xuelai +1 位作者 GAO Yubao HE Xingdong 《Journal of Arid Land》 SCIE CSCD 2019年第1期58-65,共8页
Plant phenotypic plasticity is a common feature that is crucial for explaining interspecific competition, dynamics and biological evolution of plant communities. In this study, we tested the effects of soil CaCO_3(cal... Plant phenotypic plasticity is a common feature that is crucial for explaining interspecific competition, dynamics and biological evolution of plant communities. In this study, we tested the effects of soil CaCO_3(calcium carbonate) on the phenotypic plasticity of a psammophyte, Artemisia ordosica, an important plant species on sandy lands in arid and semi-arid areas of China, by performing pot experiments under different CaCO_3 contents with a two-factor randomized block design and two orthogonal designs. We analyzed the growth responses(including plant height, root length, shoot-leaf biomass and root biomass) of A. ordosica seedlings to different soil CaCO_3 contents. The results revealed that, with a greater soil CaCO_3 content, A. ordosica seedlings gradually grew more slowly, with their relative growth rates of plant height, root length, shoot-leaf biomass and root biomass all decreasing significantly. Root N/P ratios showed significant negative correlations with the relative growth rates of plant height, shoot-leaf biomass and root length of A. ordosica seedlings; however, the relative growth rate of root length increased significantly with the root P concentration increased, showing a positive correlation. These results demonstrate that soil CaCO_3 reduces the local P availability in soil, which produces a non-adaptive phenotypic plasticity to A. ordosica seedlings. This study should prove useful for planning and promoting the restoration of damaged/degraded vegetation in arid and semi-arid areas of China. 展开更多
关键词 ARTEMISIA ORDOSICA n/p ratio pHEnOTYpIC plasticity relative growth rate SOIL CaCO3 SOIL p availability ARID and SEMI-ARID areas
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Effect of nitrogen and phosphorus addition on leaf nutrient concentrations and nutrient resorption efficiency of two dominant alpine grass species 被引量:1
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作者 LIU Yalan LI Lei +2 位作者 LI Xiangyi YUE Zewei LIU Bo 《Journal of Arid Land》 SCIE CSCD 2021年第10期1041-1053,共13页
Nitrogen(N)and phosphorus(P)are two essential nutrients that determine plant growth and many nutrient cycling processes.Increasing N and P deposition is an important driver of ecosystem changes.However,in contrast to ... Nitrogen(N)and phosphorus(P)are two essential nutrients that determine plant growth and many nutrient cycling processes.Increasing N and P deposition is an important driver of ecosystem changes.However,in contrast to numerous studies about the impacts of nutrient addition on forests and temperate grasslands,how plant foliar stoichiometry and nutrient resorption respond to N and P addition in alpine grasslands is poorly understood.Therefore,we conducted an N and P addition experiment(involving control,N addition,P addition,and N+P addition)in an alpine grassland on Kunlun Mountains(Xinjiang Uygur Autonomous Region,China)in 2016 and 2017 to investigate the changes in leaf nutrient concentrations(i.e.,leaf N,Leaf P,and leaf N:P ratio)and nutrient resorption efficiency of Seriphidium rhodanthum and Stipa capillata,which are dominant species in this grassland.Results showed that N addition has significant effects on soil inorganic N(NO_(3)^(-)-N and NH_(4)^(+)-N)and leaf N of both species in the study periods.Compared with green leaves,leaf nutrient concentrations and nutrient resorption efficiency in senesced leaves of S.rhodanthum was more sensitive to N addition,whereas N addition influenced leaf N and leaf N:P ratio in green and senesced leaves of S.capillata.N addition did not influence N resorption efficiency of the two species.P addition and N+P addition significantly improved leaf P and had a negative effect on P resorption efficiency of the two species in the study period.These influences on plants can be explained by increasing P availability.The present results illustrated that the two species are more sensitive to P addition than N addition,which implies that P is the major limiting factor in the studied alpine grassland ecosystem.In addition,an interactive effect of N+P addition was only discernable with respect to soil availability,but did not affect plants.Therefore,exploring how nutrient characteristics and resorption response to N and P addition in the alpine grassland is important to understand nutrient use strategy of plants in terrestrial ecosystems. 展开更多
关键词 leaf nutrient concentration nutrient resorption efficiency leaf n:p ratio n addition p addition Seriphidium rhodanthum Stipa capillata
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Effects of N:P ratio of Artemisia ordosica on growth influenced by soil calcium carbonate 被引量:1
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作者 YuTing Liang XingDong He +1 位作者 JianTan Guo HongJuan Jing 《Research in Cold and Arid Regions》 CSCD 2018年第4期333-339,共7页
Soil calcium carbonate(CaCO_3) has a strong solid phosphorus effect, and high content of CaCO_3 can significantly reduce the effectiveness of soil phosphorus. To reveal the limiting effect of soil CaCO_3 on the growth... Soil calcium carbonate(CaCO_3) has a strong solid phosphorus effect, and high content of CaCO_3 can significantly reduce the effectiveness of soil phosphorus. To reveal the limiting effect of soil CaCO_3 on the growth of plants on sand land and its mechanism of plant physiology, we performed pot experiments with a two-factor randomized block design and a three-factor orthogonal design for different soil CaCO_3 content treatments using Artemisia ordosica seedlings. In the experiments, we surveyed plant height, aboveground biomass, root length and root weight and analyzed N, P concentrations and RNA content of the seedlings, and discussed the relationships between relative growth rate(RGR) of the seedlings and N:P ratio as well as RNA. Results show that, the RGRs of plant height and above-ground biomass of the seedlings decreased significantly with the increase of soil CaCO_3 content, and those for root length and root weight decreased. The RGRs of plant height and above-ground biomass of the seedlings were significantly negatively correlated with leaf N:P ratios, but significantly positively correlated with leaf RNA content and leaf P concentrations. It can be seen that soil CaCO_3 is a stress factor for the growth of A. ordosica seedlings, and the growth response of the seedlings under the influence of soil CaCO_3 is in line with the Growth Rate Hypothesis. 展开更多
关键词 Artemisia ORDOSICA relative GROWTH rate n:p ratio RnA SOIL CaCO3
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Effects of soil nitrogen:phosphorus ratio on growth rate of Artemisia ordosica seedlings 被引量:1
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作者 Wei Wu XingDong He +4 位作者 HuaCong Ci Rong Li PingPing Xue YuBao Gao HaLin Zhao 《Research in Cold and Arid Regions》 2010年第4期328-334,共7页
关键词 Artemisia ordosica soil n:p ratio plant n:p ratio plant growth rate nutrient limitation
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Features on N/P ratio of plants with different functional groups between two types of steppe in semi-arid area
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作者 YueDan Zhao XingDong He +4 位作者 Lei Chen XinFeng Ding MengQi Li PingYi Xu YuBao Gao 《Research in Cold and Arid Regions》 CSCD 2019年第5期371-381,共11页
The differences in nitrogen/phosphorus(N/P)ratios of different functional groups in ecology are more helpful in explaining species competition and community dynamics.Based on the functional groups of plant growth type... The differences in nitrogen/phosphorus(N/P)ratios of different functional groups in ecology are more helpful in explaining species competition and community dynamics.Based on the functional groups of plant growth type,carbon metabolism pathway,root type and phylogenetic type,we analyzed characteristics of leaf N/P ratios of 77 species in Sanggendalai(typical grassland zone)of Zhenglan Banner,Inner Mongolia,China and 91 species in the Habahu National Nature Reserve(desertified grassland zone)in Yanchi County of Ningxia,China.The results show that the N/P ratio(16.91)of C3 plants in the desertified steppe was significantly larger than that(12.72)in the typical steppe,but there was no significant difference between the N/P ratios of C4 plants in the two zones.There was no significant difference in N/P ratios between C3 plants and C4 plants in the same zone.Similarly,the N/P ratio(16.60)of dicotyledons in desertified steppe were significantly higher than that(12.98)in typical steppe,while differences in N/P ratios between monocotyledonous plants of the two zones was not significant,and there existed no significant difference in N/P ratios between dicotyledonous and monocotyledonous plants in the same zone.The N/P ratio had significant difference between gramineous and non-gramineous plants in the typical steppe but not in the desertified steppe,but there existed no significant difference in N/P ratios among different root types of perennial herbaceous plants in the same type of steppe or between two types of steppe.Thus,different features on the N/P ratios of C3 plants and dicotyledonous plants between typical steppe and desertified steppe may lead to different growth status of plants,and the N/P ratio stoichiometric of the same plant functional group may be a foundation of the changes of a plant community. 展开更多
关键词 SEMI-ARID region pLAnT n/p ratio pLAnT functional GROUpS desertified STEppE TYpICAL STEppE
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Patterns and driving factors of leaf C,N,and P stoichiometry in two forest types with different stand ages in a mid-subtropical zone
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作者 Yunni Chang Quanlin Zhong +3 位作者 Hong Yang Chaobin Xu Weiping Hua Baoyin Li 《Forest Ecosystems》 SCIE CSCD 2022年第1期47-56,共10页
Background:Carbon(C),nitrogen(N),and phosphorus(P)stoichiometry is a key indicator of nutrient utilization in plants,and C/N/P ratios are related to the life histories and adaptation strategies of tree species.However... Background:Carbon(C),nitrogen(N),and phosphorus(P)stoichiometry is a key indicator of nutrient utilization in plants,and C/N/P ratios are related to the life histories and adaptation strategies of tree species.However,no consensus has been reached on how leaf stoichiometric characteristics are affected by forest type and stand ages.The relationships between leaf stoichiometry and geographical,meteorological,and soil factors also remain poorly understood.Methods:Leaf and soil were sampled from forest stands of different age groups(young,middle-aged,near-mature,and mature)in two forest types(Chinese fir(Cunninghamia lanceolata)forests and evergreen broadleaved forests).The relationships between leaf C,N,and P stoichiometric parameters and geographical,meteorological,and soil factors were analysed by using redundancy analysis(RDA)and stepwise linear regression analysis.Results:Leaf C concentrations peaked in the near-mature stands with increasing age irrespective of forest type.Leaf N and P concentrations fluctuated with a rising trend in Chinese fir forests,while decreased first and increased later from young to mature phases in natural evergreen broadleaved forests.Chinese fir forests were primarily limited by N and P,while natural evergreen broadleaved forests were more susceptible to P limitation.Leaf C,N,and P stoichiometric characteristics in Chinese fir forests were mainly affected by the soil total P concentration(SP),longitude(LNG),growing season precipitation(GSP)and mean temperature in July(JUT).The leaf C concentration was mainly affected by GSP and JUT;leaf N and P concentrations were both positively correlated with LNG;and leaf P was positively correlated with SP.In evergreen broadleaved forests,however,leaf stoichiometric parameters displayed significant correlations with latitude(LAT)and mean annual precipitation(MAP).Conclusions:Leaf stoichiometry differed among forest stands of different age groups and forest types.Leaf C,N,and P stoichiometry was primarily explained by the combinations of SP,LNG,GSP and JUT in Chinese fir forests.LAT and MAP were the main controlling factors affecting the variations in the leaf C,N,and P status in natural evergreen broadleaved forests,which supports the temperature-plant physiological hypothesis.These findings improve the understanding of the distribution patterns and driving mechanisms of leaf stoichiometry linked with stand age and forest type. 展开更多
关键词 Leaf stoichiometry C/n/p ratios Environmental factors Stand age groups Chinese fir forest natural evergreen broadleaved forest
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The Contribution of Nutrients and Water Properties to the Carbonate System in Three Particular Areas of the Tropical Atlantic (NE-BRAZIL)
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作者 Leonardo Bertini Elisabete de Santis Braga 《Journal of Geoscience and Environment Protection》 2022年第2期135-161,共27页
Tropical waters show different regional aspects due to specificities in their nutrient biogeochemical cycles, which can affect the carbon system and influence their regional role as sinks or sources of CO<sub>2&... Tropical waters show different regional aspects due to specificities in their nutrient biogeochemical cycles, which can affect the carbon system and influence their regional role as sinks or sources of CO<sub>2</sub>. This study was performed on particular tropical areas that present a different seasonal behaviour related to the carbon cycle observed in the late rainy season (July 2013). Understanding the CO<sub>2</sub> drawdown and outgassing potential in these areas is needed to call attention to more long-term monitoring efforts and protect understudied tropical coastal systems more efficiently. This study is focused on nutrient values, hydrological data, biogeochemical carbon behaviour linked to the carbonate system and includes estimates of CO<sub>2</sub> fluxes in three contrasting areas off the northeastern Brazilian shelf: 1) an urbanised estuary (Recife-REC), 2) a coastal Island (Itamaracá-ITA) and 3) an oceanic archipelago (Fernando de Noronha-FN). In general, REC acted as a source, while ITA and FN as carbon sinks. In ITA, despite the high DIC and Total Alkalinity observed (mean ~2360 μmol&#183;kg<sup>-1</sup>), the sink is associated with an effective cascading of atmospheric CO<sub>2</sub> associated with turbulent shallow waters coupled with biogenic removal of and precipitation of CaCO<sub>3</sub> by coralline algae. FN acted as a sink, linked to minor decreases in Total Alkalinity (mean~2295 μmol&#183;kg<sup>-1</sup>) influenced by ammonium-based primary production, nitrogen fixation and sporadic entrainment of nutrient rich waters in the upper thermocline. More studies in different western tropical Atlantic coastal systems can improve the knowledge of tropical shelf seas and their contribution to the ocean carbon budget under specific regional trophic regimes. 展开更多
关键词 n/p/Si ratios total Alkalinity CO2 Flux Dissolved Inorganic Carbon Trophic Conditions Western Tropical Atlantic
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太湖马来眼子菜(Potamogeton malaianus)生物量变化及影响因素 被引量:22
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作者 刘伟龙 胡维平 谷孝鸿 《生态学报》 CAS CSCD 北大核心 2007年第8期3324-3333,共10页
2006年5月和10月在太湖马来眼子菜分布区进行了定点采样,分析了马来眼子菜的生物量在不同水域变化特征及影响其生物量主要因素。结果表明:不同水环境中,马来眼子菜的生物量变化较大,介于526~4843g/m2,个体植株生物量依次为叶>根>... 2006年5月和10月在太湖马来眼子菜分布区进行了定点采样,分析了马来眼子菜的生物量在不同水域变化特征及影响其生物量主要因素。结果表明:不同水环境中,马来眼子菜的生物量变化较大,介于526~4843g/m2,个体植株生物量依次为叶>根>茎,其中叶的生物量占总生物量的55%~80%。水深增加能促进植株高度和生物量的增加,但单位面积生物量变化不明显。群落的自疏效应使马来眼子菜生物量与资源供应维持在一个动态平衡的水平上。马来眼子菜的生物量与水体中TN呈显著正相关,P是影响其生物量变化的间接限制因子,根、茎、叶的N/P介于16.92~59.88之间,叶片的N/P达到42.33。马来眼子菜对水环境的形态可塑性响应是其在水环境长期变化中逐步成为幸存者和优势种的重要原因之一。底泥的深度和营养含量对其分布和生物量具有显著影响。围网捕捞、养殖以及航运的发展是造成局部地区马来眼子菜生物量急剧下降的主要人为因素。不同水域的生物量的差异是水深、水体营养盐、底质特征、水体透明度、人类活动等因素综合作用的结果。同时,对水环境变化在形态上较强的可塑性响应,也是马来眼子菜生物量变化的重要原因之一。 展开更多
关键词 马来眼子菜 生物量 水深 氮磷比 透明度 底泥 太湖
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Effects of Elemental Sulphur and Farmyard Manure on pH and Salinity of Calcareous Sandy Loam Soil and Some Nutrient Elements in Tomato Plant
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作者 S. Orman M. Kaplan 《Journal of Agricultural Science and Technology》 2011年第1期20-26,共7页
关键词 土壤pH值 石灰性土壤 元素硫 番茄苗 砂壤土 营养元素 种植 应用程序
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新型纳米非病毒基因输送体系PCL-PEG-chitosan的构建与特性
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作者 王斌 金才益 +2 位作者 童海骏 戴尅戎 张晓玲 《上海交通大学学报(医学版)》 CAS CSCD 北大核心 2013年第1期1-5,共5页
目的优化新型纳米非病毒载体聚己内酯(PCL)-聚乙二醇(PEG)-壳聚糖(chitosan)(PCL-PEG-chitosan)在体外与质粒的复合条件,并进行转染活性测定。方法在体外利用凝胶电泳方法确定非病毒载体与携带绿色荧光蛋白基因的质粒(pEGFP)复合的最小... 目的优化新型纳米非病毒载体聚己内酯(PCL)-聚乙二醇(PEG)-壳聚糖(chitosan)(PCL-PEG-chitosan)在体外与质粒的复合条件,并进行转染活性测定。方法在体外利用凝胶电泳方法确定非病毒载体与携带绿色荧光蛋白基因的质粒(pEGFP)复合的最小氮磷比。利用动态光散射粒径测量仪确定复合物在不同氮磷比、不同缓冲溶液体系下粒径的变化情况。将pEGFP与PCL-PEG-chitosan进行复合后转染293T细胞,荧光显微镜观察转染效率。结果凝胶电泳结果显示,非病毒载体PCL-PEG-chitosan与pEGFP复合的最小氮磷比为4:1,PCL-chitosan与pEGFP复合的最小氮磷比也为4:1,chitosan与pEGFP复合的最小氮磷比为1:1。动态光散射实验结果显示:非病毒载体PCL-PEG-chitosan与pEGFP复合而成的复合物的粒径随着氮磷比的增大而减小;在醋酸盐缓冲体系与DMEM缓冲体系中,复合物的粒径基本一致,相对稳定。荧光显微镜观察发现,经过接枝改性的纳米载体PCL-PEG-chitosan的转染效率有所提高。结论 PCL修饰可减弱chitosan对pEGFP的复合能力,提高最低复合氮磷比。经PCL和PEG修饰的纳米载体PCL-PEG-chitosan的细胞转染活性有所提高,但尚需进一步改进。 展开更多
关键词 pCL—pEG—chitosan 修饰 DnA 转染 氮磷比
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NP配施对平茬后云南松苗木N、P、K化学计量比的影响 被引量:1
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作者 陆庄跃 杨振欣 +3 位作者 郑超凡 罗茜 蔡年辉 许玉兰 《植物研究》 CAS CSCD 北大核心 2023年第2期218-230,共13页
为了解NP配施对平茬后云南松(Pinus yunnanensis)苗木各器官N、P、K化学计量比的影响,分析云南松苗木不同器官(根、茎、叶、萌条)的ω(N)∶ω(P)、ω(N)∶ω(K)、ω(P)∶ω(K)化学计量比的季节变化特征,探讨各器官间N、P、K化学计量比... 为了解NP配施对平茬后云南松(Pinus yunnanensis)苗木各器官N、P、K化学计量比的影响,分析云南松苗木不同器官(根、茎、叶、萌条)的ω(N)∶ω(P)、ω(N)∶ω(K)、ω(P)∶ω(K)化学计量比的季节变化特征,探讨各器官间N、P、K化学计量比的相关性及其变异来源。采用N、P二因素三水平的3×3回归设计开展不同施肥试验,并对苗木采样测定,研究NP配施对平茬后云南松根、叶、茎及其萌条N、P、K化学计量特征的影响。结果表明:平茬后云南松苗木不同器官的营养元素分配没有统一的规律,展现出丰富的变异。随着施肥季节的变化,ω(N)∶ω(P)在根、茎和萌条中逐渐下降,在叶中先下降后上升,但总体差异不大。单施N肥、P肥和NP配施均对云南松苗木生长的影响产生一定差异,总体来看NP配施更有利于促进苗木的生长,且以处理5(N_(1)P_(1))表现为极显著(P<0.01)。云南松苗木各器官N、P、K化学计量比主要受N×P交互作用的影响,其次是N,影响最小的是P。除在根和叶中ω(N)∶ω(P)与ω(N)∶ω(K)之间相关性发生改变之外,其余两两间的正负相关性均保持不变,而ω(N)∶ω(P)与ω(P)∶ω(K)、ω(N)∶ω(K)与ω(P)∶ω(K)的相关性均随着施肥季节的变化相关性发生改变,且相关系数降低,分别受P和K的调控。平茬改变植株体内的营养元素含量,不同施肥处理促使云南松各器官中N、P、K化学计量特征差异极显著(P<0.01)。NP配施可以有效缓解单施N肥、P肥对植株的限制作用,使养分处于一个平衡状态,从而满足植株对生长的需要。 展开更多
关键词 云南松 np配施 施肥季节 化学计量比
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颗石藻C∶N∶P比率对海洋酸化与暖化的响应及其机制
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作者 张泳 马帅 +4 位作者 谢蓉蓉 周志华 张虹 韩永和 张勇 《亚热带资源与环境学报》 2023年第2期24-32,共9页
颗石藻是海洋中最重要的初级生产者之一,且能通过钙化作用产生颗粒无机碳(方解石小片,也称颗石粒)并释放CO_(2),对海洋碳循环有重要贡献。由大气CO_(2)浓度升高引起的海洋酸化与暖化对颗石藻产生重大影响,受到广泛关注。本研究主要综述... 颗石藻是海洋中最重要的初级生产者之一,且能通过钙化作用产生颗粒无机碳(方解石小片,也称颗石粒)并释放CO_(2),对海洋碳循环有重要贡献。由大气CO_(2)浓度升高引起的海洋酸化与暖化对颗石藻产生重大影响,受到广泛关注。本研究主要综述海洋酸化与暖化对颗石藻的生长速率和碳(C)∶氮(N)∶磷(P)比率的单一和耦合效益的影响及其潜在机制,得出结果:海洋酸化对颗石藻生长速率的影响较小,通常增大颗石藻C∶P和N∶P比率;海洋升温通常提高颗石藻的生长速率,可能增大或减小C∶P和N∶P比率。海洋酸化降低颗石藻生长速率的最适温度;而海洋升温增加生长速率的最适CO_(2)浓度。结果表明:海洋酸化与暖化的耦合作用很可能增加颗石藻的生长速率及其对CO_(2)的吸收能力,进而增加颗石藻对海洋碳循环的贡献。 展开更多
关键词 海洋酸化 颗石藻 生长速率 碳∶氮∶磷比率 全球变暖
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