Traditional transgenic detection methods require high test conditions and struggle to be both sensitive and efficient.In this study,a one-tube dual recombinase polymerase amplification(RPA)reaction system for CP4-EPSP...Traditional transgenic detection methods require high test conditions and struggle to be both sensitive and efficient.In this study,a one-tube dual recombinase polymerase amplification(RPA)reaction system for CP4-EPSPS and Cry1Ab/Ac was proposed and combined with a lateral flow immunochromatographic assay,named“Dual-RPA-LFD”,to visualize the dual detection of genetically modified(GM)crops.In which,the herbicide tolerance gene CP4-EPSPS and the insect resistance gene Cry1Ab/Ac were selected as targets taking into account the current status of the most widespread application of insect resistance and herbicide tolerance traits and their stacked traits.Gradient diluted plasmids,transgenic standards,and actual samples were used as templates to conduct sensitivity,specificity,and practicality assays,respectively.The constructed method achieved the visual detection of plasmid at levels as low as 100 copies,demonstrating its high sensitivity.In addition,good applicability to transgenic samples was observed,with no cross-interference between two test lines and no influence from other genes.In conclusion,this strategy achieved the expected purpose of simultaneous detection of the two popular targets in GM crops within 20 min at 37°C in a rapid,equipmentfree field manner,providing a new alternative for rapid screening for transgenic assays in the field.展开更多
Crop water stress index(CWSI)is widely used for efficient irrigation management.Precise canopy temperature(T_(c))measurement is necessary to derive a reliable CWSI.The objective of this research was to investigate the...Crop water stress index(CWSI)is widely used for efficient irrigation management.Precise canopy temperature(T_(c))measurement is necessary to derive a reliable CWSI.The objective of this research was to investigate the influences of atmospheric conditions,settled height,view angle of infrared thermography,and investigating time of temperature measuring on the performance of the CWSI.Three irrigation treatments were used to create different soil water conditions during the 2020-2021 and 2021-2022 winter wheat-growing seasons.The CWSI was calculated using the CWSI-E(an empirical approach)and CWSI-T(a theoretical approach)based on the T_(c).Weather conditions were recorded continuously throughout the experimental period.The results showed that atmospheric conditions influenced the estimation of the CWSI;when the vapor pressure deficit(VPD)was>2000 Pa,the estimated CWSI was related to soil water conditions.The height of the installed infrared thermograph influenced the T_(c)values,and the differences among the T_(c)values measured at height of 3,5,and 10 m was smaller in the afternoon than in the morning.However,the lens of the thermometer facing south recorded a higher T_(c)than those facing east or north,especially at a low height,indicating that the direction of the thermometer had a significant influence on T_(c).There was a large variation in CWSI derived at different times of the day,and the midday measurements(12:00-15:00)were the most reliable for estimating CWSI.Negative linear relationships were found between the transpiration rate and CWSI-E(R^(2)of 0.3646-0.5725)and CWSI-T(R^(2)of 0.5407-0.7213).The relations between fraction of available soil water(FASW)with CWSI-T was higher than that with CWSI-E,indicating CWSI-T was more accurate for predicting crop water status.In addition,The R^(2)between CWSI-T and FASW at 14:00 was higher than that at other times,indicating that 14:00 was the optimal time for using the CWSI for crop water status monitoring.Relative higher yield of winter wheat was obtained with average seasonal values of CWSI-E and CWSI-T around 0.23 and 0.25-0.26,respectively.The CWSI-E values were more easily influenced by meteorological factors and the timing of the measurements,and using the theoretical approach to derive the CWSI was recommended for precise irrigation water management.展开更多
The rapid identification of planting patterns for major crops in a large irrigated district has vital importance for irrigation management,water fee collection,and crop yield estimation.In this study,the OTSU algorith...The rapid identification of planting patterns for major crops in a large irrigated district has vital importance for irrigation management,water fee collection,and crop yield estimation.In this study,the OTSU algorithm and Mean-Shift algorithm were employed to automatically determine threshold values for mapping two main rotated crop patterns at the pixel scale.A time series analysis was conducted to extract the spatial distribution of rice-wheat and wheat-maize rotations in the Chuanhang irrigation district from 2016 to 2020.The results demonstrate that both threshold segmentation algorithms are reliable in extracting the spatial distribution of the crops,with an overall accuracy exceeding 80%.Additionally,both Kappa coefficients surpass 0.7,indicating better performance by OTSU method.Over the period from 2016 to 2020,the area occupied by rice-wheat rotation cropping ranged from 12500 to 14400 hm 2;whereas wheat-maize rotation cropping exhibited smaller and more variable areas ranging from 19730 to 34070 hm 2.These findings highlight how remote sensing-based approaches can provide reliable support for rapidly and accurately identifying the spatial distribution of main crop rotation patterns within a large irrigation district.展开更多
[目的]解决烤烟生长连作障碍。[方法]通过2021—2023年生物有机肥定位试验,研究连续3年生物有机肥施用对连作植烟土壤养分及微生多样性的影响。[结果]连作种植下连续3年施用生物有机肥的植烟土壤pH及有机质呈上升趋势,碱解氮含量降低,...[目的]解决烤烟生长连作障碍。[方法]通过2021—2023年生物有机肥定位试验,研究连续3年生物有机肥施用对连作植烟土壤养分及微生多样性的影响。[结果]连作种植下连续3年施用生物有机肥的植烟土壤pH及有机质呈上升趋势,碱解氮含量降低,有效磷及速效钾含量保持稳定。MiSeq高通量测序技术对植烟土壤细菌16S DNA V3~V4区域及真菌ITS ITS1的检测结果显示,连作种植下随着生物有机肥施用年限的增加,植烟土壤中的细菌及真菌OTUs数目、Chao1指数、香浓指数及物种数目呈增加趋势。在门水平上,连作植烟土壤酸杆菌门(Acidobacteria)丰富度随着生物有机肥施用年限的增加而增加,而拟杆菌门(Bacteroidetes)相对丰度减少;植烟土壤生物有机肥施用1年,子囊菌门(Ascomycota)丰富度最高,连续施用2年担子菌门(Basidiomycota)丰富度最高。[结论]生物有机肥能够降低连作植烟土壤酸化状况,提高土壤有机质含量,增加土壤微生物多样性,对稳定土壤速效养分具有一定的作用,为解决烟区连作障碍提供一定的理论依据。展开更多
【目的】系统阐述国内外烟草绿肥模式的研究热点和发展趋势,为推动中国烟草绿色高效生产提供理论支撑。【方法】利用Bibliometrix工具,结合中国知网和Web of Science数据库,综述全球烟草绿肥模式的发文量变化、重要研究机构与学者、研...【目的】系统阐述国内外烟草绿肥模式的研究热点和发展趋势,为推动中国烟草绿色高效生产提供理论支撑。【方法】利用Bibliometrix工具,结合中国知网和Web of Science数据库,综述全球烟草绿肥模式的发文量变化、重要研究机构与学者、研究热点变化和趋势等重要内容,系统对比分析国内外相关研究进展。【结果】截至2024年,国内外烟草绿肥相关研究论文合计684篇,全球烟草绿肥相关研究迅速增长,中国增长趋势尤为显著。中国农业科学研究院与法国国家研究中心是全球重要的烟草绿肥研究机构。国内研究通过大量田间试验验证了绿肥对烟田生态系统的正向调控,而国际学界更注重根际互作等基础理论突破。【结论】文献计量分析揭示了烟草—绿肥轮作研究的现状,即:全球烟草—绿肥轮作研究呈现显著的地域分化特征,国内外研究范式差异明显,近10年来中国已成为该领域的核心贡献国。通过基础理论与应用技术的双向融合,有望突破绿肥应用研究的地域限制,为全球烟区可持续发展提供系统解决方案。展开更多
基金supported by the Scientific and Innovative Action Plan of Shanghai(21N31900800)Shanghai Rising-Star Program(23QB1403500)+4 种基金the Shanghai Sailing Program(20YF1443000)Shanghai Science and Technology Commission,the Belt and Road Project(20310750500)Talent Project of SAAS(2023-2025)Runup Plan of SAAS(ZP22211)the SAAS Program for Excellent Research Team(2022(B-16))。
文摘Traditional transgenic detection methods require high test conditions and struggle to be both sensitive and efficient.In this study,a one-tube dual recombinase polymerase amplification(RPA)reaction system for CP4-EPSPS and Cry1Ab/Ac was proposed and combined with a lateral flow immunochromatographic assay,named“Dual-RPA-LFD”,to visualize the dual detection of genetically modified(GM)crops.In which,the herbicide tolerance gene CP4-EPSPS and the insect resistance gene Cry1Ab/Ac were selected as targets taking into account the current status of the most widespread application of insect resistance and herbicide tolerance traits and their stacked traits.Gradient diluted plasmids,transgenic standards,and actual samples were used as templates to conduct sensitivity,specificity,and practicality assays,respectively.The constructed method achieved the visual detection of plasmid at levels as low as 100 copies,demonstrating its high sensitivity.In addition,good applicability to transgenic samples was observed,with no cross-interference between two test lines and no influence from other genes.In conclusion,this strategy achieved the expected purpose of simultaneous detection of the two popular targets in GM crops within 20 min at 37°C in a rapid,equipmentfree field manner,providing a new alternative for rapid screening for transgenic assays in the field.
基金supported by the Project of State Grid Hebei Electric Power Co.,Ltd.(SGHEYX00SCJS2100077).
文摘Crop water stress index(CWSI)is widely used for efficient irrigation management.Precise canopy temperature(T_(c))measurement is necessary to derive a reliable CWSI.The objective of this research was to investigate the influences of atmospheric conditions,settled height,view angle of infrared thermography,and investigating time of temperature measuring on the performance of the CWSI.Three irrigation treatments were used to create different soil water conditions during the 2020-2021 and 2021-2022 winter wheat-growing seasons.The CWSI was calculated using the CWSI-E(an empirical approach)and CWSI-T(a theoretical approach)based on the T_(c).Weather conditions were recorded continuously throughout the experimental period.The results showed that atmospheric conditions influenced the estimation of the CWSI;when the vapor pressure deficit(VPD)was>2000 Pa,the estimated CWSI was related to soil water conditions.The height of the installed infrared thermograph influenced the T_(c)values,and the differences among the T_(c)values measured at height of 3,5,and 10 m was smaller in the afternoon than in the morning.However,the lens of the thermometer facing south recorded a higher T_(c)than those facing east or north,especially at a low height,indicating that the direction of the thermometer had a significant influence on T_(c).There was a large variation in CWSI derived at different times of the day,and the midday measurements(12:00-15:00)were the most reliable for estimating CWSI.Negative linear relationships were found between the transpiration rate and CWSI-E(R^(2)of 0.3646-0.5725)and CWSI-T(R^(2)of 0.5407-0.7213).The relations between fraction of available soil water(FASW)with CWSI-T was higher than that with CWSI-E,indicating CWSI-T was more accurate for predicting crop water status.In addition,The R^(2)between CWSI-T and FASW at 14:00 was higher than that at other times,indicating that 14:00 was the optimal time for using the CWSI for crop water status monitoring.Relative higher yield of winter wheat was obtained with average seasonal values of CWSI-E and CWSI-T around 0.23 and 0.25-0.26,respectively.The CWSI-E values were more easily influenced by meteorological factors and the timing of the measurements,and using the theoretical approach to derive the CWSI was recommended for precise irrigation water management.
基金Jiangsu Water Science and Technology Project(2021081)。
文摘The rapid identification of planting patterns for major crops in a large irrigated district has vital importance for irrigation management,water fee collection,and crop yield estimation.In this study,the OTSU algorithm and Mean-Shift algorithm were employed to automatically determine threshold values for mapping two main rotated crop patterns at the pixel scale.A time series analysis was conducted to extract the spatial distribution of rice-wheat and wheat-maize rotations in the Chuanhang irrigation district from 2016 to 2020.The results demonstrate that both threshold segmentation algorithms are reliable in extracting the spatial distribution of the crops,with an overall accuracy exceeding 80%.Additionally,both Kappa coefficients surpass 0.7,indicating better performance by OTSU method.Over the period from 2016 to 2020,the area occupied by rice-wheat rotation cropping ranged from 12500 to 14400 hm 2;whereas wheat-maize rotation cropping exhibited smaller and more variable areas ranging from 19730 to 34070 hm 2.These findings highlight how remote sensing-based approaches can provide reliable support for rapidly and accurately identifying the spatial distribution of main crop rotation patterns within a large irrigation district.
文摘[目的]解决烤烟生长连作障碍。[方法]通过2021—2023年生物有机肥定位试验,研究连续3年生物有机肥施用对连作植烟土壤养分及微生多样性的影响。[结果]连作种植下连续3年施用生物有机肥的植烟土壤pH及有机质呈上升趋势,碱解氮含量降低,有效磷及速效钾含量保持稳定。MiSeq高通量测序技术对植烟土壤细菌16S DNA V3~V4区域及真菌ITS ITS1的检测结果显示,连作种植下随着生物有机肥施用年限的增加,植烟土壤中的细菌及真菌OTUs数目、Chao1指数、香浓指数及物种数目呈增加趋势。在门水平上,连作植烟土壤酸杆菌门(Acidobacteria)丰富度随着生物有机肥施用年限的增加而增加,而拟杆菌门(Bacteroidetes)相对丰度减少;植烟土壤生物有机肥施用1年,子囊菌门(Ascomycota)丰富度最高,连续施用2年担子菌门(Basidiomycota)丰富度最高。[结论]生物有机肥能够降低连作植烟土壤酸化状况,提高土壤有机质含量,增加土壤微生物多样性,对稳定土壤速效养分具有一定的作用,为解决烟区连作障碍提供一定的理论依据。
文摘【目的】系统阐述国内外烟草绿肥模式的研究热点和发展趋势,为推动中国烟草绿色高效生产提供理论支撑。【方法】利用Bibliometrix工具,结合中国知网和Web of Science数据库,综述全球烟草绿肥模式的发文量变化、重要研究机构与学者、研究热点变化和趋势等重要内容,系统对比分析国内外相关研究进展。【结果】截至2024年,国内外烟草绿肥相关研究论文合计684篇,全球烟草绿肥相关研究迅速增长,中国增长趋势尤为显著。中国农业科学研究院与法国国家研究中心是全球重要的烟草绿肥研究机构。国内研究通过大量田间试验验证了绿肥对烟田生态系统的正向调控,而国际学界更注重根际互作等基础理论突破。【结论】文献计量分析揭示了烟草—绿肥轮作研究的现状,即:全球烟草—绿肥轮作研究呈现显著的地域分化特征,国内外研究范式差异明显,近10年来中国已成为该领域的核心贡献国。通过基础理论与应用技术的双向融合,有望突破绿肥应用研究的地域限制,为全球烟区可持续发展提供系统解决方案。