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4篇 您的检索式:作者名="Bangqian"
    题名 作者 年代 出处 被引量
1Mapping deciduous rubber plantations through integration of PALSAR and multi-temporal Landsat imagery显示文摘Jinwei Dong Xiangming Xiao Bangqian Chen Nathan Torbick Cui Jin Geli Zhang Chandrashekhar Biradar 2013Remote Sensing of Environment2013,,:1
2Combinatorial analysis of transcription and metabolism reveals the regulatory network associated with antioxidant substances in waxy corn显示文摘Maize is an essential source of nutrition for humans and animals and is rich in various metabolites that determine its quality.Different maize varieties show significant differences in metabolite content.Two kinds of waxy maize parental materials,S181 and 49B,created by the Chongqing Academy of Agricultural Sciences,are widely grown in China.S181 shows higher starch and sugar contents than 49B.This study generated metabolic profiles to assess the differences between the two varieties.A total of 674 metabolites that were significantly differentially expressed between the two varieties were identified by gas chromatography and untargeted metabolomics technology.These metabolites were associated with 21 categories,including antioxidant metabolites.Moreover,6415 differentially expressed genes(DEGs)were identified by RNA-seq.Interestingly,these DEGs comprised starch and sugar synthesis pathway genes and 72 different transcription factor families.Among these,six families that were reported to play an essential role in plant antioxidant action accounted for 39.2%of the transcription factor families.Using the Kyoto Encyclopedia of Genes and Genomes(KEGG)classification,the DEGs were mainly involved in amino acid biosynthesis,glycolysis/glucose metabolism,and the synthetic and metabolic pathways of antioxidant active substances.Furthermore,the correlation analysis of transcriptome and metabolomics identified five key transcription factors(ZmbHLH172,ZmNAC44,ZmNAC-like18,ZmS1FA2,ZmERF172),one ubiquitin ligase gene(ZmE25A)and one sucrose synthase gene(ZmSS1).They likely contribute to the quality traits of waxy corn through involvement in the metabolic regulatory network of antioxidant substances.Thus,our results provide new insights into maize quality-related antioxidant metabolite networks and have potential applications for waxy corn breeding.Jianhong Ke Rui Wang Bangqian Song Jinglun Du Xiaojiao Li Ningning Song Zhirong Cai Rongli Chen Honghua Yi Xiangyin Lu Chen Jiang Zhengguo Li Baowen Huang 2022Food Quality and Safety2022,6,4:0
3Shortwave Radiation Calculation for Forest Plots Using Airborne LiDAR Data and Computer Graphics显示文摘Forested environments feature a highly complex radiation regime,and solar radiation is hindered from penetrating into the forest by the 3D canopy structure;hence,canopy shortwave radiation varies spatiotemporally,seasonally,and meteorologically,making the radiant flux challenging to both measure and model.Xinbo Xue Shichao Jin Feng An Huaiqing Zhang Jiangchuan Fan Markus P.Eichhorn Chengye Jin Bangqian Chen Ling Jiang Ting Yun 2022Plant Phenomics2022,4,1:0
4Molecular regulatory events of flower and fruit abscission in horticultural plants显示文摘Flower and fruit abscission is a highly programmed physiological process,which is closely related to the yield of horticultural plants.The coordination of many regulatory factors associated with metabolic and signaling pathways plays a key role in the flower and fruit shedding.Hormones,peptides,carbohydrates,polyamines or cell wall modifying proteins regulate flower and fruit shedding.This article reviewed the recent studies of flower and fruit abscission,including the molecular regulation mechanism of abscission zone formation,typical structure and location of abscission zones,and other factors affecting flower and fruit abscission,such as stresses,hormones,peptides,carbohydrates,polyamines and cell wall modifying proteins.Overall,the review summarizes the developmental mechanism and the diversity of abscission zones,and the key factors affecting flower and fruit abscission of horticultural plants,aiming to provide guidance for studying the molecular regulatory mechanism of flower and fruit abscission.Yuan Shi Bangqian Song Qin Liang Deding Su Wang Lu Yudong Liu Zhengguo Li 2023Horticultural Plant Journal2023,9,5:0
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