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| 1 | Insights into the differences in leaf functional traits of heterophyllous Syringa oblata under different light intensities显示文摘Many plants exhibit heterophylly; the spatially and temporally remarkable ontogenetic differences in leaf morphology may play an adaptative role in their success under diverse habitats. Thus, this study aimed to gain insights into differences in leaf functional traits of heterophyllous Syringa oblata Lindl., which has been widely used as an ornamental tree around the world under different light intensities in East China. No significant differences existed in specific leaf area(SLA) between lanceolate- and heart-shaped leaves. Differences in the investment per unit of light capture surface area deployed between lanceolate- and heart-shaped leaves may be not obvious. This may be attributing to the fact that single leaf wet and dry weight of heart-shaped leaves were significantly higher than those of lanceolate leaves but leaf length and leaf thickness of heart-shaped leaves were significantly lower than those of lanceolate leaves. The SLA of shade trees was significantly higher than that of sun trees. The investment per unit of light capture surface of shade trees was lower than that of sun trees, making it possible to increase light capture and use efficiency in low-light environments. The phenotypic plasticity of most leaf functional traits of lanceolate leaves was higher than those of heart-shaped leaves because the former is the juvenile and the latter is the adult leaf shape during the process of phylogenetic development of S. oblate. The higher range of phenotypic plasticity of leaf thickness and leaf moisture for sun trees may be beneficial to obtain a more efficient control of water loss and nutrient deprivation in highlight environments, and the lower range of phenotypic plasticity of single leaf wet and dry weight, and SLA for shade trees may gain an advantage to increase resource(especially light) capture and use efficiency in low-light environments. In brief, the successfully ecological strategy of plants is to find an optimal mode for the trade-off between various functional traits to obtain more living resources and achieve more fitness advantage as much as possible in the multivariate environment. | Hongguang Xiao Congyan Wang Jun Liu Lei Wang Daolin Du | 2015 | Journal of Forestry Research2015,26,3: | 8 |
| 2 | 生物入侵过程中的植物-土壤反馈:一种入侵植物的凋落物分解对其本地近缘植物的影响显示文摘植物入侵可通过正或负的植物-土壤反馈效应改变土壤的生物和非生物性质,从而影响入侵栖息地的土壤理化性质。许多入侵物种的凋落物分解可增加土壤养分,降低本地植物多样性,并导致进一步的植物入侵。关于入侵植物凋落物在不同土壤类型及深度分解及反馈效应的研究依然很少。本研究旨在明确入侵植物南美蟛蜞菊(Sphagneticola trilobata)凋落物在不同土壤类型和不同土壤深度条件下的分解情况及其对本地近缘植物蟛蜞菊(S.calendulacea)生理生长的影响。将装有南美蟛蜞菊凋落物的尼龙袋加入到不同深度(即0、2、4和6 cm)的砂土、营养土和粘土中,经6个月的分解后,回收凋落物袋并计算分解速率,随后在凋落物分解处理后的土壤中种植本地蟛蜞菊,并在生长期结束时测量其生理生态指标。研究结果表明,所有处理土壤类型中,凋落物在土壤深度为2和4 cm处分解后显著增加了土壤养分,而对本地蟛蜞菊的叶片叶绿素、叶氮含量等生长指标表现为负效应。因此,入侵植物南美蟛蜞菊凋落物分解对土壤养分表现为正的反馈效应,而对本地植物蟛蜞菊的生长表现为负效应。我们的研究结果还表明,入侵植物的凋落物分解对土壤和本地物种的影响还因凋落物分解所在的土壤深度而显著不同。未来的研究应侧重于入侵栖息地中更多本地和入侵物种的植物-土壤反馈效应,以及更多土壤类型和土壤深度的入侵植物凋落物效应。 | Jianfan Sun Susan Rutherford Muhammad Saif Ullah Ikram Ullah Qaiser Javed Ghulam Rasool Muhammad Ajmal Ahmad Azeem Muhammad Junaid Nazir Daolin Du | 2022 | Journal of Plant Ecology2022,15,3: | 2 |
| 3 | Invasive European frogbit(Hydrocharis morsus-ranae L.)in North America:an updated review 2003-16显示文摘Aims European frogbit(Hydrocharis morsus-ranae L.)is an aquatic plant originating from Europe that has emerged as an invasive species,spreading in the USA and Canada since it was first brought to North America in 1932.It can now be found in many water bodies,from small ponds and long rivers to large lakes such as Lake Ontario and Lake Erie.The continuous spread of this spe-cies indicates its success as an invasive species despite legisla-tive attempts to limit its distribution.Catling et al.(Catling PM,Miltrow G,Haber E,et al.(2003)The biology of Canadian weeds.124.Hydrocharis morsus-ranae L.Can J Plant Sci 83:1001-16)wrote a thorough review about this invasive species in North America.Our review aims for a compilation of the most recent available data and recent studies on H.morsus-ranae L.and focuses primarily on its environmental uses,ecological impacts and management.The purpose of this review is to offer an organ-ized and updated report on European frogbit that can be used towards future studies with the goal of eradicating this invasive species and providing insights on management of other invasive plants.Important Findings Our findings reveal that European forgbit’s ecological effects on other species and the invaded environment were shown to be less harmful than previously feared.European frogbit had negative impacts on native plants and reduced dissolved oxygen concentration.However,water chemistry,phytoplankton and zooplankton communities were actually not affected by European frogbit.For fungi,bacteria and macroinvertebrates,studies have showed complex and sometimes conflicting results.We also specifically discussed the new method to control this species using shading and the more recent studies on biological control.Shading with a shade cloth has been shown to effectively remove European frogbit and had minor environmental effects.However,using biological control to combat the spread of the invasive frogbit seems not as successful as we wished. | Bin Zhu Cora C.Ottaviani Rahmat Naddafi Zhicong Dai Daolin Du | 2018 | Journal of Plant Ecology2018,11,1: | 1 |
| 4 | Catalytic kinetics of oxidative desulfurization with surfactant-type polyoxometalate-based ionic liquids显示文摘 | Wenshuai Zhu Guopeng Zhu Huaming Li Yanhong Chao Ming Zhang Daolin Du Qian Wang Zhen Zhao | 2013 | Fuel Processing Technology2013,,: | 1 |
| 5 | A magnetic particle- based competitive enzyme immunoassay for rapid determination of ciprofloxacin: a potential method for the general detection of fluoroquinolones显示文摘 | ZHANG Bo DU Daolin MENG Meng | 2014 | Analytical Letters2014,47,7: | 1 |
| 6 | 入侵植物与重金属胁迫的相互作用研究进展显示文摘全球变化改变了植物群落的分布格局,包括入侵植物,而人为污染可能降低本地植物对入侵植物的抗性。因此,本文总结了近几十年本地植物、入侵植物和植物-土壤生态系统中重金属生物地球化学行为的研究,以加深我们对入侵植物与环境胁迫因子相互作用的认识。我们的研究结合已有文献报道表明:(i)入侵物种对环境胁迫的影响具有异质性,(ii)影响的大小是多变的,(iii)即使在同一影响类型内,影响类型也具有多向性。然而,入侵植物暴露在重金属环境中表现出更强的自我保护机制,对重金属的生物可利用性和毒性有正向或负向的影响。另一方面,由于入侵植物普遍具有较高的耐受性,加之本地植物暴露于有毒重金属污染时具有“逃逸行为”,重金属胁迫环境更有利于植物的成功入侵。但是,对于入侵植物的重金属等元素组成是否与污染地区的本地植物不同,目前尚无共识。因此,在全球范围内对外来入侵植物与本土植物的植物体内、凋落物和土壤污染物含量进行定量比较是今后研究的一个重要方向。 | Jian Li Zhanrui Leng Yueming Wu Yizhou Du Zhicong Dai Asim Biswas Xiaojun Zheng Guanlin Li Esawy Kasem Mahmoud Hui Jia Daolin Du | 2022 | Journal of Plant Ecology2022,15,3: | 1 |
| 7 | 干旱利于刺苋的竞争优势显示文摘干旱可以影响入侵植物的生长和土壤酶活性。因此,非常有必要评估干旱背景下入侵植物的竞争优势以及入侵植物和干旱对土壤酶活性的影响。本研究旨在分析干旱背景下起源于热带美洲的入侵植物刺苋(Amaranthus spinosus)与本地植物苋菜(Amaranthus tricolor)共存时的竞争优势和土壤酶活性。通过栽植实验进行刺苋与苋菜的竞争共栽培,并进行不同水平的干旱处理,即:(i)对照;(ii)轻度干旱;(iii)重度干旱。实验结束后测定两种苋属植物的功能性状、渗透调节、抗氧化酶活性以及土壤pH、电导率、土壤微生物生物量碳含量和土壤酶活性。干旱背景下,刺苋的相对竞争强度和相对优势度均高于苋菜。因此,干旱利于刺苋的竞争优势。干旱背景下,刺苋的土壤水溶性盐含量和蔗糖水解能力均大于苋菜。而较高的土壤水溶性盐含量和蔗糖水解能力利于刺苋对养分的获取和利用。 | Youli Yu Huiyuan Cheng Shu Wang Mei Wei Congyan Wang Daolin Du | 2022 | Journal of Plant Ecology2022,15,3: | 1 |
| 8 | Warming and elevated nitrogen deposition accelerate the invasion process of Solidago canadensis L.显示文摘Background:Invasive species can threaten native diversity and alter ecosystem processes while interacting with other components of global environmental change.Invasive plants are becoming increasingly problematic and this can be stimulated by changes in the environment.However,existing studies have primarily investigated the effects of environmental change on a specific stage of plant invasion rather than the continuous invasion process.Methods:A space-for-time substitution experiment was performed to investigate how warming and nitrogen deposition affects the invasion process of a plant.Specifically,different ratios of invasive Solidago canadensis L.to native Artemisia argyi Levl.et Van were employed as a proxy to represent successive levels of invasion.A total of seven treatments were applied in the experiment:ambient(CK),N addition(+5,+12 g m^(−2)year^(−1)),warming(+1.15,+1.86℃)and their interaction(5 g N m^(−2)year^(−1)+1.15℃,12 g N m^(−2)year^(−1)+1.86℃).The growth performance and competitiveness of S.canadensis were investigated.Results:The competitiveness of Solidago canadensis decreased linearly with its invasion degree(p<0.05).Non-linear regression showed that S.canadensis invasion levels of 53%,53%,68%,55%and 58%were the critical thresholds for shifting the direction or magnitude of chlorophyll,leaf nitrogen,leaf shape index,diameter,and root/shoot ratio,respectively.Compared with the ambient treatment(CK,no warming and no N addition),the diameter,height,bio-mass and relative competitiveness of S.canadensis were each limited by warming,to a certain extent,whereas these and the above parameters were significantly increased by nitrogen deposition.The interaction of increased temperature and nitrogen deposition led to significant increases in the growth and competitiveness of S.canadensis,and this effect was detected in every stage of the invasion,throughout the invasion process.Conclusions:Environmental change might have a continuous,progressive,and augmentative effect on the phenotypic traits of S.canadensis.This study provides fairly robust evidence that environmental change promotes the invasion process of S.canadensis in general,not simply in specific stages.In the future,rather than focusing on specific stages,experimental studies should consider examining invasion on a broader scale. | Guangqian Ren Bin Yang Miaomiao Cui Zhicong Dai Yan Xiang Haiyan Zhang Guanlin Li Jian Li Qaiser Javed Daolin Du | 2022 | Ecological Processes2022,11,1: | 0 |
| 9 | 重度干旱降低两种菊科入侵植物凋落物共同降解的速率显示文摘当前,中国已分布的入侵植物隶属于菊科的种类数量最多。更关键的是,两种入侵植物可以在同一生境中形成共同入侵。此外,干旱可以影响入侵植物的凋落物降解和土壤酶活性。基于此,本研究旨在解析干旱背景下两种菊科入侵植物鬼针草(Bidens pilosa)和加拿大一枝黄花(Solidago canadensis)对凋落物降解和土壤酶活性的单一影响和复合影响。本研究主要通过聚乙烯凋落袋实验完成,其中每一个凋落袋装入5 g入侵植物鬼针草的凋落物,或装入5 g入侵植物加拿大一枝黄花的凋落物,或装入5 g两种菊科入侵植物鬼针草和加拿大一枝黄花等比例混匀的凋落物。干旱处理水平设置为:对照、轻度干旱和重度干旱。实验结束后测定两种菊科入侵植物凋落物单一降解速率和共同降解速率以及土壤酶活性。两种菊科入侵植物凋落物共同降解对土壤脲酶活性的影响为叠加效应。两种菊科入侵植物凋落物共同降解速率以及入侵植物鬼针草凋落物单一降解速率显著高于入侵植物加拿大一枝黄花凋落物单一降解速率。轻度干旱显著增加土壤脲酶活性,但重度干旱显著降低土壤脲酶活性。重度干旱显著降低两种菊科入侵植物凋落物共同降解速率以及入侵植物鬼针草凋落物单一降解速率,但干旱处理未显著影响入侵植物加拿大一枝黄花凋落物单一降解速率。因此,重度干旱可能通过减缓营养循环速率显著影响两种菊科入侵植物共同入侵进程以及入侵植物鬼针草单一入侵进程,但并未显著影响入侵植物加拿大一枝黄花单一入侵进程。 | Youli Yu Huiyuan Cheng Congyan Wang Daolin Du | 2023 | Journal of Plant Ecology2023,16,1: | 0 |
| 10 | Sulfur mediated heavy metal biogeochemical cycles in coastal wetlands:From sediments,rhizosphere to vegetation显示文摘The interactions and mechanisms between sulfur and heavy metals are a growing focus of biogeochemical studies in coastal wetlands.These issues underline the fate of heavy metals bound in sediments or released into the system through sediments.Despite the fact that numerous published studies have suggested sulfur has a significant impact on the bioavailability of heavy metals accumulated in coastal wetlands,to date,no review article has systematically summarized those studies,particularly from the perspective of the three major components of wetland ecosystems(sediments,rhizosphere,and vegetation).The present review summarizes the studies published in the past four decades and highlights the major achievements in this field.Research and studies available thus far indicate that under anaerobic conditions,most of the potentially bioavailable heavy metals in coastal wetland sediments are fixed as precipitates,such as metal sulfides.However,fluctuations in physicochemical conditions may affect sulfur cycling,and hence,directly or indirectly lead to the conversion and migration of heavy metals.In the rhizosphere,root activities and microbes together affect the speciation and transformation of sulfur which in turn mediate the migration of heavy metals.As for plant tissues,tolerance to heavy metals is enhanced by sulfur-containing compounds via promoting a series of chelation and detoxification processes.Finally,to further understand the interactions between sulfur and heavy metals in coastal wetlands,some major future research directions are proposed. | Yueming Wu Zhanrui Leng Jian Li Chongling Yan Xinhong Wang Hui Jia Lingyun Chen Sai Zhang Xiaojun Zheng Daolin Du | 2022 | Frontiers of Environmental Science & Engineering2022,16,8: | 0 |
| 11 | Role of phosphorus on the biogeochemical behavior of cadmium in the contaminated soil under leaching and pot experiments显示文摘Phosphorus(P)is involved in various biochemical reactions in plant growth,so it is beneficial to plants growing in soils contaminated by metals,including cadmium(Cd).However,few studies have reported on the mechanistic roles of P in mitigating Cd toxicity to ryegrass root,and especially in alleviating the disruption of the mitochondrial function of living cells.In this study,the physiological and biochemical mechanisms associated with ryegrass growth under various Cd and P treatments were investigated using leaching and pot systems.The concentration of Cd in soil leachates showed a significantly positive relationship with redox potential(P<0.05),but negative relationship(P<0.05)with leachate pH values and dissolved organic carbon(DOC),indicating that exogenous P addition(as H_(2)PO_(4)*)may decrease Cd leaching from contaminated soil.Compared to the control(without P addition),the cumulative Cd content was reduced by 53.3%and 64.5%in the soil leachate with exogenous P application(20 mg/L and 80 mg/L),respectively.Notably,application of P decreased the Cd concentrations in the symplastic fractions and increased the Cd concentrations in the apoplastic fractions in root tips,which may help to alleviate Cd stress to the protoplast.Moreover,exogenous P was found to play a positive role in mitochondrial function and Ca^(2+)variation in root cells under Cd stress,which provides novel insights into the mechanisms of exogenous P in alleviating plant Cd injury. | Hui Jia YifanWu Mengqi Zhang Jinhui Ye Daolin Du He Wang | 2024 | Journal of Environmental Sciences2024,,3: | 0 |
| 12 | Global change and biological invasions显示文摘Invasion by exotic species is one of the serious socio-economic,environmental and ecological problems currently faced by mankind.Biological invasions have changed the species composition,structure and function of ecosystems,and are seriously threatening global biodiversity,economy and human health(Iqbal et al.2021;Wang et al.2020;Yang et al.2021;Zhao et al.2020;Zheng et al.2015).Biological invasions have resulted in an economic loss of at least US$1.288 trillion over the past few decades worldwide(Diagne et al.2021).As a consequence of these far-reaching impacts,biological invasions have become a hot research topic in modern ecology,and attract major attention from international organizations,governments and scientists all over the world. | Yu-Long Feng Daolin Du Mark van Kleunen | 2022 | Journal of Plant Ecology2022,15,3: | 0 |
| 13 | 基质有效性调节加拿大一枝黄花入侵对土壤呼吸的抑制作用显示文摘外来植物入侵不仅会降低河边近岸湿地生态系统植被多样性,而且会改变湿地生态系统的地下碳过程。外来入侵植物加拿大一枝黄花(Solidago canadensis L.)已广泛入侵我国东南部地区,但加拿大一枝黄花入侵对入侵地生态系统地下土壤碳循环过程的影响却知之甚少。本研究通过野外原位观测实验和温室模拟入侵实验,探究外来植物加拿大一枝黄花入侵对入侵地土壤呼吸的影响规律及其驱动因素。野外原位观测实验开展于2018年7月21日至12月15日,期间每周测定样地土壤呼吸。温室模拟入侵实验开展于2019年7月15日至12月15日,期间每月1日与15日上午测定土壤呼吸、自养呼吸和异养呼吸。土壤呼吸、自养呼吸和异养呼吸通过静态箱结合深埋根系隔离法测定。野外原位观测实验和温室模拟入侵实验结果均显示,加拿大一枝黄花的入侵降低了土壤二氧化碳的排放通量。加拿大一枝黄花入侵对土壤呼吸的抑制作用可能归因于其入侵引起的土壤可利用底物质量与数量的变化,表明外来入侵植物加拿大一枝黄花可通过改变植物释放基质以及与本地植物和/或土壤微生物争夺土壤有效基质而影响土壤碳循环。这些研究结果对于评估外来入侵植物对入侵地地下碳动态的影响以及对全球变暖的贡献具有重要意义。 | Zhiyuan Hu Jiaqi Zhang Yizhou Du Kangwei Shi Guangqian Ren Babar Iqbal Zhicong Dai Jian Li Guanlin Li Daolin Du | 2022 | Journal of Plant Ecology2022,15,3: | 0 |
| 14 | Genetic effects of historical anthropogenic disturbance on a long-lived endangered tropical tree Vatica mangachapoi显示文摘The endangered Vatica mangachapoi,a longlived,tropical tree with economic and ecological importance found in Hainan,China,was used to assess the hypothesis that historical human activities in Hainan's tropical rain forest could have negative effects on the genetic diversity of V.mangachapoi.Three hundred and twenty individuals from 11 natural populations—which were classified into three groups according to levels of disturbance—were sampled and analyzed with ISSRmarkers.Although genetic diversity of V.mangachapoi is high at the species level,it is relatively low within populations.A significant genetic differentiation occurs among different disturbance levels.Significant isolation-by-distance indicated relevant historical anthropogenic changes.Our findings showed that historical human disturbances significantly increase the genetic differentiation and slightly decrease the genetic diversity of long-lived tree V.mangachapoi.Relevant targeting conservation actions were recommended. | Zhicong Dai Chuncan Si Deli Zhai Ping Huang Shanshan Qi Ying Lin Ruiping Wang Qiongxin Zhong Daolin Du | 2018 | Journal of Forestry Research2018,29,2: | 0 |
| 15 | 植物生长调节剂通过克隆整合对空心莲子草顶端和基部生长的不同作用显示文摘入侵植物不仅对全球生物多样性造成了巨大的威胁,同时也严重影响了农业生产与粮食安全。克隆整合使得相连植株进行资源共享,能促进入侵植物的生长从而获得优势。然而,入侵杂草在植物调节剂(plant growth regulators,PGRs)影响下的克隆整合作用则很少有报道。PGRs被广泛应用于农作物生产上,并能通过土壤淋溶、侵蚀和径流作用,影响分布在作物附近的农田杂草的生长。本研究采用两种PGRs赤霉素(gibberellins,GA)和多效唑(paclobutrazol,PAC)处理恶性入侵杂草空心莲子草(Alternanthera philoxeroides)基端,并保持或者通过剪切达到控制基端与顶端的连通,从而探究克隆整合作用在空心莲子草响应两种农业常用PGRs中的作用。研究结果表明,GA和PAC对空心莲子草生长的作用相反。GA通过克隆整合作用显著促进顶端植株的地上生长。相反地,PAC显著抑制基端和顶端的地上生长,但是能够通过克隆整合作用显著促进基端和顶端的地下生长。这些研究结果解释了克隆整合作用能促进PGRs对空心莲子草生长的促进作用,这很可能是外来杂草能够成功入侵人为干扰较多的农业生态系统的重要原因之一。 | Shanshan Qi Susan Rutherford Furong He Bi-Cheng Dong Bin Zhu Zhicong Dai Weiguo Fu Hanping Mao Daolin Du | 2022 | Journal of Plant Ecology2022,15,3: | 0 |
| 16 | MAX-DOAS and in-situ measurements of aerosols and trace gases over Dongying,China:Insight into ozone formation sensitivity based on secondary HCHO显示文摘This study presents a comprehensive overview of the atmospheric pollutants including Sulfur dioxide(SO_(2)),Nitrogen dioxide(NO_(2)),Formaldehyde(HCHO),Particulate Matter PM;PM_(10):diameter≤10μm,and PM_(2.5):diameter≤2.5μm,and Ozone(O_(3)),over Dongying(Shandong Province)from March-April 2018 and September-October 2019 by employing ground-based Multiple Axis Differential Optical Absorption Spectroscopy(MAX-DOAS)observations along with the in-situ measurements attained by the national air quality monitoring platform.The concentrations of SO_(2)and NO_(2)were under the acceptable level,while both PM_(2.5),and PM_(10)were higher than the safe levels as prescribed by national and international air quality standards.The results depict that 21%of the total observation days were found to be complex polluted days(PM_(2.5)>35μg/m^(3) and O_(3)>160μg/m^(3)).The secondary HCHO was used for accurate analysis of O_(3)sensitivity.A difference of 11.40%and 10%during March-April 2018 and September-October 2019 respectively in O_(3)sensitivity was found between HCHO_(total)/NO_(2)and HCHO_(sec)/NO_(2).The results indicate that primary HCHO have significant contribution in HCHO.O_(3)formation predominantly remained to be in VOC-limited and transitional regime during March-April 2018 and September-October 2019 in Dongying.These results imply that concurrent control of both NO_(x) and VOCs would benefit in ozone reductions.Additionally,the criteria pollutants(PM,SO_(2),and NO_(2))depicted strong correlations with each other except for O_(3)for which weak correlation coefficient was obtained with all the species.This study will prove to be baseline for designing of air pollution control strategies. | Xiaojun Zheng Zeeshan Javed Cheng Liu Aimon Tanvir Osama Sandhu Haoran Liu Xiangguang Ji Chengzhi Xing Hua Lin Daolin Du | 2024 | Journal of Environmental Sciences2024,,1: | 0 |
| 17 | How Physical Disturbance and Nitrogen Addition Affect the Soil Carbon Decomposition?显示文摘The decomposition of soil organic carbon(SOC)plays a critical role in regulating atmospheric CO_(2)concentrations and climate dynamics.However,the mechanisms and factors controlling SOC decomposition are still not fully understood.Here,we conducted a 60 days incubation experiment to test the effects of physical disturbance and nitrogen(N)addition on SOC decomposition.N addition increased the concentration of NO3-by 51%in the soil,but had little effect on the concentration of NH4+.N addition inhibited SOC decomposition,but such an effect differed between disturbed and undisturbed soils.In disturbed and undisturbed soils,application of N decreased SOC decomposition by 37%and 15%,respectively.One possible explanation is that extra N input suppressed microbial N mining and/or increased the stability of soil organic matter by promoting the formation of soil aggregates and incorporating part of the inorganic N into organic matter,and consequently decreased microbial mineralization of soil organic matter.Physical disturbance intensified the inhibition of N on SOC decomposition,likely because physical disturbance allowed the added N to be better exposed to soil microbes and consequently increased the availability of added N.We conclude that physical disturbance and N play important roles in modulating the stability of SOC. | Muhammad Junaid Nazir Xiuwei Zhang Daolin Du Feihai Yu | 2022 | Phyton-International Journal of Experimental Botany2022,91,9: | 0 |
| 18 | Research Advances on Immunoassays for Phthalic Acid Esters显示文摘Phthalates( PAEs) compounds are a class of widely used environmental hormone plasticizers. Their harm to the environment and human health has caused a lot of attention. The detection of such substances,especially the simple and rapid detection,is of great significance for the protection of environmental food safety and consumer health. At present,a series of rapid immunoassay techniques have been applied to PAE detection with advantages of simple and fast operation,low cost,high sensitivity,high specificity and high throughput,achieving the goal of screening a large number of samples and making up for the shortcomings of chromatographic detection which uses expensive equipment with cumbersome operation,requires professional and technical personnel,and cannot achieve the target of screening a large number of samples. This paper introduced the research progress of PAE antibodies and their rapid immunoassay technology,and performed evaluation,in order to provide guidance and help for the development and application of PAE rapid detection technology. | Yin CUI Ming LI Daolin DU | 2020 | Agricultural Biotechnology2020,9,3: | 0 |