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10篇 您的检索式:作者名="Bozhi Yang"
    题名 作者 年代 出处 被引量
1PepperHub, an Informatics Hub for the Chili Pepper Research Community显示文摘Feng Liu Huiyang Vu Yingtian Deng Jingyuan Zheng Minglei Liu Lijun Ou Bozhi Yang Xiongze Dai Yanqing Ma Shengyu Feng Shuang He Xuefeng Li Zhuqing Zhang Wenchao Chen Shudong Zhou Rong Chen Minmin Liu Sha Yang Ruimin Wei Huadong Li Feng Li Bo Ouyang Xuexiao Zou 2017Molecular Plant2017,10,8:13
2Acetyl salicylic acid attenuates cardiac hypertrophy through Wnt signaling显示文摘室的肥大是心血管的疾病的事件的一个强大、独立的预言者。低剂量的乙酰水杨酸酸(阿司匹林) 的脉管的性质通过血小板 cyclooxygenase 的不可逆的抑制提供心血管的好处 1;然而,可能的 anti-hypertrophic 性质和阿司匹林的潜在的机制没详细被调查。在这研究,健康野类型的雄的老鼠随机被划分成三个组并且使遭到了到横向的大动脉的收缩(TAC ) 或假冒的操作。操作 TAC 的老鼠与低剂量的阿司匹林的人的等价物被对待(10 mg 吗?Samuel Chege Gitau Xuelian Li Dandan Zhao Zhenfeng Guo Haihai Liang Ming Qian Lifang Lv Tianshi Li Bozhi Xu Zhiguo Wang Yong Zhang Chaoqian Xu Yanjie Lu Zhiming Du Hongli Shan Baofeng Yang 2015Frontiers of Medicine2015,9,4:6
3A latchable microvalve using phase change of paraffin wax 显示文摘YANG Bozhi LIN Qiao 2006Sensors and Actuator: A2006,7,:1
4A latchahle mircrovalve using phase change of paraffin wax 显示文摘YANG BOZHI LIN QIAO 2007Sensors and Actuators2007,134,:1
5A novel single-base mutation in CaSGR1 confers the stay-green phenotype in pepper显示文摘The stay-green trait is of considerable importance in extending the shelf life of green pepper fruit(Capsicum annuum L.)and in enhancing the appearance of ornamental plants.The study revealed the genetic and regulatory mechanisms of the stay-green trait in pepper,which will aid in the selection of ornamental pepper varieties.In this study,a pepper mutant with stay-green fruit named TNX348 was identified from a germplasm resource bank.Two segregating populations were constructed using the stay-green mutant TNX348 and then used in bulked segregant analysis combined with RNA sequencing and linkage analyses.The causal gene of the stay-green trait was mapped to an approximately 131-kb region,and a senescence-induced chloroplast protein gene,CaSGR1(Capana01g000359),was identified as a candidate gene.Sequencing analysis revealed a G→A single-base mutation of CaSGR1 in TNX348 that led to early termination of translation.Based on the single-base mutation,a single nucleotide polymorphism(SNP)marker co-segregating with the stay-green trait was developed.Furthermore,in transcriptome analysis,expression patterns of 11 hormone transduction-related transcription factors,such as abscisic acid-insensitive(ABI),abscisic acidresponsive element-binding factor(ABF),and NAC transcription factor,were similar or opposite to that of CaSGR1.The results indicated that the transcription factors might mediate chlorophyll degradation by regulating the expression of CaSGR1.Yuhua Liu Lijun Ou Zhoubin Liu Junheng Lyu JingWang Jingshuang Song Bozhi Yang Wenchao Chen Sha Yang Wei Liu Xuexiao Zou Zhuqing Zhang 2023Horticultural Plant Journal2023,9,2:0
6A multi-omics approach identifies bHLH71-like as a positive regulator of yellowing leaf pepper mutants exposed to high-intensity light显示文摘Light quality and intensity can have a significant impact on plant health and crop productivity.Chlorophylls and carotenoids are classes of plant pigments that are responsible for harvesting light energy and protecting plants from the damaging effects of intense light.Our understanding of the role played by plant pigments in light sensitivity has been aided by light-sensitive mutants that change colors upon exposure to light of variable intensity.In this study,we conducted transcriptomic,metabolomic,and hormone analyses on a novel yellowing mutant of pepper(yl1)to shed light on the molecular mechanism that regulates the transition from green to yellow leaves in this mutant upon exposure to high-intensity light.Our results revealed greater accumulation of the carotenoid precursor phytoene and the carotenoids phytofluene,antheraxanthin,and zeaxanthin in yl1 compared with wild-type plants under high light intensity.A transcriptomic analysis confirmed that enzymes involved in zeaxanthin and antheraxanthin biosynthesis were upregulated in yl1 upon exposure to high-intensity light.We also identified a single basic helix–loop–helix(bHLH)transcription factor,bHLH71-like,that was differentially expressed and positively correlated with light intensity in yl1.Silencing of bHLH71-like in pepper plants suppressed the yellowing phenotype and led to reduced accumulation of zeaxanthin and antheraxanthin.We propose that the yellow phenotype of yl1 induced by high light intensity could be caused by an increase in yellow carotenoid pigments,concurrent with a decrease in chlorophyll accumulation.Our results also suggest that bHLH71-like functions as a positive regulator of carotenoid biosynthesis in pepper.Zhoubin Liu Lianzhen Mao Bozhi Yang Qingzhi Cui Yunhua Dai Xueqiao Li Yisong Chen Xiongze Dai Xuexiao Zou Lijun Ou Sha Yang 2023Horticulture Research2023,10,7:0
7辣椒(Capsicum annuum L.)果实发育及品质相关新microRNA的鉴定与分析显示文摘MicroRNA(miRNA)是一种非编码的小RNA,在各种生物过程中起着重要的调节作用。前人研究表明,模式植物中miRNA与果实发育相关。然而,人们对辣椒(Capsicum annuum L.)果实品质及发育相关的miRNA了解尚不清楚。本研究利用二代测序技术(Next-generation sequencing technology)比较了不同品种辣椒果实在不同发育时期的小RNA。利用miRDeep2软件从4个样本中共鉴定出了59个已知miRNA和310个新miRNA。预测了新miRNA的靶基因,共656个,并对其中402个靶基因进行了注释。GO分析和KEGG途径表明,某些靶基因与淀粉糖、氨基糖以及核糖代谢相关。qPCR表明一些miRNA的表达模式与其靶向基因相反,该结果为今后研究miRNA调控果实发育和品质形成提供了重要基础。LIU Zhoubin ZHANG Yuping OU Lijun KANG Linyu LIU Yuhua LV Junheng WEI Ge YANG Bozhi YANG Sha CHEN Wenchao DAI Xiongze LI Xuefeng ZHOU Shudong ZHANG Zhuqing MA Yanqing ZOU Xuexiao 2017辣椒杂志2017,,3:0
8Integrated metabolome and transcriptome analysis revealed carotenoid metabolism difference in pepper(Capsicum annuum L.)yellowing mutants under different light quality显示文摘Light is an important environmental factor for plant growth and development,different light qualities have different regulatory effects on plants.To investigate the effect of light quality on plants,we determined the physiological characteristics,transcriptome and metabolome analysis of pepper yellowing mutants yl1 treated with blue,red,green,and purple light.Results showed that the leaf of yl1 was obviously yellowing,and the contents of chlorophyll,carotenoid and net photosynthetic rate in yl1 were significantly decreased under purple light.A total of 31,853 genes were quantified under blue,red,green and purple light.The genes related to carotenoid metabolism pathway such as PSY,LUT5 and VDE were significantly increased,while the expression levels of chlorophyll synthesis related genes POR and CAO were significantly decreased under purple light.At the same time,21 carotenoid pathway metabolites were detected under the four light different lights,and 10 metabolites were more abundant in pepper leaves.α-carotene,β-carotene,lutein,neoxanthin,α-cryptoxanthin andβ-cryptoxanthin were significantly accumulated under blue,red and green light.However,zeaxanthin and antheraxanthin were accumulated in large quantities under purple light.After silencing the CaVDE gene under purple light,leaf etiolation degree was significantly weakened,chlorophyll,carotenoids and net photosynthetic rate were significantly increased,and the accumulation of zeaxanthin and antheraxanthin was significantly decreased.These results provide a reference for analyzing the changes of carotenoid components induced by VDE in purple light and provide new insights into the mechanism of leaf color change in plants.Zhoubin Liu Yunhua Dai Lianzhen Mao Sha Yang Bozhi Yang Ying Sun Yao Zhou Shaoxiang Wang Xuexiao Zou Lijun Ou 2022Vegetable Research2022,2,1:0
9Self-assembled Ag_(4)V_(2)O_(7)/Ag_(3)VO_(4) Z-scheme heterojunction by pH adjustment with efficient photocatalytic performance显示文摘Semiconductor heterojunction plays a pivotal role in photocatalysis.However,the construction of a heterojunction with a fine microstructure usually requires complex synthetic procedures.Herein,a pH-adjusted one-step method was employed to controllably synthesize Ag_(4)V_(2)O_(7)/Ag_(3)VO_(4) heterojunction with a well-tuned 0D/1D hierarchical structure for the first time.It is noteworthy that the ordered stacking of vanadium oxide tetrahedron(VO_(3)-)guided by the pH value wisely realizes the in-situ growth of Ag_(4)V_(2)O_(7) nanoparticles on the surface of Ag_(3)VO_(4) nanorods.Furthermore,comprehensive characterization and calculation decipher the electronic structures of Ag_(4)V_(2)O_(7) and Ag_(3)VO_(4) and the formation of Z-scheme heterojunction,benefiting the visible light harvesting and carrier utilization.Such a new Ag_(4)V_(2)O_(7)/Ag_(3)VO_(4) heterojunction exhibits remarkable photocatalytic activity and excellent stability.Complete degradation of Rhodamine B(RhB)can be achieved in 10 min by the Ag_(4)V_(2)O_(7)/Ag_(3)VO_(4) heterojunction under visible light irradiation,demonstrating an outstanding reaction rate of 0.35 min^(−1) that is up to 84-fold higher than those of other silver vanadates.More importantly,this integration of synthesis technology and heterojunction design,based on the intrinsic crystal and electronic structures,could be inspiring for developing novel heterostructured materials with advanced performance.Yan XING Xichuan LU Yi LI Bozhi YANG Yujia HUANG Mengfei ZHANG Jing CHENG Xin MIN Wei PAN 2022Journal of Advanced Ceramics2022,11,11:0
10Integrated analysis of changes in soil microbiota and metabolites following long-term fertilization in a subtropical maize-wheat agroecosystem显示文摘Although the application of inorganic fertilizer is a widespread agronomic practice used to boost soil productivity and crop yields,the effects on soil microbiome and the metabolic mechanisms involved in the high-yield response of crops to long-term fertilization remain poorly described.In this study,combined metagenomic and metabolomic analyses were used to explore the mechanism of crop yield response to the 20-year application of nitrogen-phosphorus-potassium fertilizers in a subtropical agroecosystem in Southwest China.Soil bacterial and fungal communities were monitored using16S r RNA(bacteria)and internal transcribed spacer 1(ITS1)full-length gene(fungi)amplicon sequencing technologies,and metabolites were detected using a liquid chromatograph mass spectrometer.The results revealed that,in addition to providing nutrients,long-term fertilization shaped the compositions of bacteria and fungi to increase crop yields.Long-term fertilization significantly increased the relative abundances of plant growth-promoting rhizobacteria and arbuscular mycorrhizal fungi and promoted the secretion of soil metabolites such as carbohydrates,organic acids,and organic nitrogen compounds,which were primarily enriched in amino acid metabolism pathways.The increases in carbon and nitrogen sources and bioactive substances in soil promoted the increases in plant biomass and thereby maintained soil quality and production capacity.The findings highlighted the importance of soil metabolites in maintaining soil productivity as well as crop yields,and suggested that regulating key metabolites could increase crop yields in agroecosystems.Guiru ZHAO Kaixian WU Tongxin AN Lu WEN Shuhui ZI Zhiwei FAN Feng ZHOU Chengren OUYANG Youqiong YANG Bozhi WU Michael AFULLEN 2023Pedosphere2023,33,3:0
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