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10篇 您的检索式:作者名="Ronghui Pan"
    题名 作者 年代 出处 被引量
1Proteome analysis of peroxisomes from dark-treated senescent Arabidopsis leaves显示文摘Peroxisomes compartmentalize a dynamic suite of biochemical reactions and play a central role in plant metabolism, such as the degradation of hydrogen peroxide,metabolism of fatty acids, photorespiration, and the biosynthesis of plant hormones. Plant peroxisomes have been traditionally classified into three major subtypes, and in-depth mass spectrometry(MS)-based proteomics has been performed to explore the proteome of the two major subtypes present in green leaves and etiolated seedlings. Here, we carried out a comprehensive proteome analysis of peroxisomes from Arabidopsis leaves given a 48-h dark treatment.Our goal was to determine the proteome of the third major subtype of plant peroxisomes from senescent leaves, and further catalog the plant peroxisomal proteome. We identifieda total of 111 peroxisomal proteins and verified the peroxisomal localization for six new proteins with potential roles in fatty acid metabolism and stress response by in vivo targeting analysis. Metabolic pathways compartmentalized in the three major subtypes of peroxisomes were also compared, which revealed a higher number of proteins involved in the detoxification of reactive oxygen species in peroxisomes from senescent leaves. Our study takes an important step towards mapping the ful function of plant peroxisomes.Ronghui Pan Sigrun Reumann Piotr Lisik Stefanie Tietz Laura J.Olsen Jianping Hu 2018Journal of Integrative Plant Biology2018,60,11:5
2Peroxisomes in plant reproduction and seed-related development显示文摘Peroxisomes are small multi-functional organelles essential for plant development and growth.Plant peroxisomes play various physiological roles,including phytohormone biosynthesis,lipid catabolism,reactive oxygen species metabolism and many others.Mutant an alysis dem on strated key roles for peroxisomes in plant reproduction,seed development and germination and post-germinative seedling establishment;however,the underlying mechanisms remain to be fully elucidated.This review summarizes fin dings that reveal the importance and complexity of the role of peroxisomes in the pertinent processes.Theβ-oxidation pathway plays a central role,whereas other peroxisomal pathways are also involved.Understanding the biochemical and molecular mechanisms of these peroxisomal functions will be instrumental to the improvement of crop plants.Ronghui Pan Jun Liu Jianping Hu 2019Journal of Integrative Plant Biology2019,61,7:1
3Arabidopsis Forkhead-Associated Domain Protein 3 negatively regulates peroxisome division显示文摘Peroxisomes are ubiquitous and dynamic eukaryotic organelles capable of altering their abundance in response to environmental and developmental cues, yet the regulatory mechanism of plant peroxisome division/proliferation is unclear. To identify transcriptional regulators of the peroxisome division factor gene PEX11 b, we performed a nuclear pull-down experiment and identified Arabidopsis ForkheadAssociated Domain Protein 3(FHA3) as a novel protein that binds to the promoter of PEX11 b. Our data supported the conclusion that, in contrast to the previously identified HY5 HOMOLOG(HYH) protein that promotes the transcription of PEX11 b, FHA3 is a negative regulator of PEX11 b expression and peroxisome division.Mintu Desai Ronghui Pan Jianping Hu 2017Journal of Integrative Plant Biology2017,59,7:1
4Ultraf- lat optical frequency comb generated based on casca- ded polarization modulators 显示文摘He Chao Pan Shilong Guo Ronghui 2012Optics Letters2012,37,18:1
5Protein ubiquitination in plant peroxisomes显示文摘Protein ubiquitination regulates diverse cellular processes in eukaryotic organisms,from growth and development to stress response.Proteins subjected to ubiquitination can be found in virtually all subcellular locations and organelles,including peroxisomes,singlemembrane and highly dynamic organelles ubiquitous in eukaryotes.Peroxisomes contain metabolic functions essential to plants and animals such as lipid catabolism,detoxification of reactive oxygen species(ROS),biosynthesis of vital hormones and cofactors,and photorespiration.Plant peroxisomes possess a complex proteome with functions varying among different tissue types and developmental stages,and during plant response to distinct environmental cues.However,how these diverse functions are regulated at the post-translational level is poorly understood,especially in plants.In this review,we summarized current knowledge of the involvement of protein ubiquitination in peroxisome protein import,remodeling,pexophagy,and metabolism,focusing on plants,and referencing discoveries from other eukaryotic systems when relevant.Based on previous ubiquitinomics studies,we compiled a list of 56 ubiquitinated Arabidopsis peroxisomal proteins whose functions are associated with all the major plant peroxisomal metabolic pathways.This discovery suggests a broad impact of protein ubiquitination on plant peroxisome functions,therefore substantiating the need to investigate this significant regulatory mechanism in peroxisomes at more depths.Delara Akhter Yuchan Zhang Jianping Hu Ronghui Pan 2023Journal of Integrative Plant Biology2023,65,2:0
6Assembly and phylogenomic analysis of cotton mitochondrial genomes provide insights into the history of cotton evolution显示文摘Cotton is a major crop that provides the most important renewable textile fibers in the world.Studies of the taxonomy and evolution of cotton species have received wide attentions,not only due to cotton’s economic value but also due to the fact that Gossypium is an ideal model system to study the origin,evolution,and cultivation of polyploid species.Previous studies suggested the involvement of mitochondrial genome editing sites and copy number as well as mitochondrial functions in cotton fiber elongation.Whereas,with only a few mitogenomes assembled in the cotton genus Gossypium,our knowledge about their roles in cotton evolution and speciation is still scarce.To close this gap,here we assembled 20 mitogenomes from 15 cotton species spanning all the cotton clades(A–G,K,and AD genomes)and 5 cotton relatives using short and long sequencing reads.Systematic analyses uncovered a high level of mitochondrial gene sequence conservation,abundant sequence repeats and many insertions of foreign sequences,as well as extensive structural variations in cotton mitogenomes.The sequence repeats and foreign sequences caused significant mitogenome size inflation in Gossypium and its close relative Kokia in general,while there is no significant difference between the lint and fuzz cotton mitogenomes in terms of gene content,RNA editing,and gene expression level.Interestingly,we further revealed the specific presence and expression of two novel mitochondrial open reading frames(ORFs)in lint-fiber cotton species.Finally,these structural features and novel ORFs help us gain valuable insights into the history of cotton evolution and polyploidization and the origin of species producing long lint fibers from a mitogenomic perspective.Yanlei Feng Yukang Wang Hejun Lu Jun Li Delara Akhter Fang Liu Ting Zhao Xingxing Shen Xiaobo Li James Whelan Tianzhen Zhang Jianping Hu Ronghui Pan 2023The Crop Journal2023,11,6:0
7Hyperspectral Inversion Model of Available Potassium Content in Red Soil of Eucalyptus Plantation in Northern Guangxi显示文摘Soil information is the basis of soil management and precise variable fertilization. The traditional method of obtaining soil information through chemical detection of laboratory has high cost and poor timeliness, which is difficult to meet the needs of digital forestry, soil monitoring and real-time management of nutrients. Taking red soil of Eucalyptus plantation in northern Guangxi as the research object, the spectral data of samples with different soil available potassium contents were measured, and the spectral characteristics were analyzed, and the inversion model was established by using PLS method. The results showed that the spectral sensitive bands of available potassium content in red soil of the region mainly concentrated in 400-600, 1 450, 2 200 nm and so on. After the first derivative transformation, the redundant information in the original spectral data can be significantly reduced, and the correlation between spectral indexes and soil available potassium content can be improved. The full-band modeling results of R and FDR were better than those of significant bands. The optimal model was full-band-FDR-PLS, R2=0.862, and RMSE=2.718. The results of this study can be used for the application of near-earth remote sensing in Guangxi, such as soil digital mapping, precise variable fertilization and real-time monitoring of soil available potassium.Huibiao PAN Xiajie QIN Ronghui HU Zeyao ZHANG Jian TANG 2023Meteorological and Environmental Research2023,14,2:0
8Research progresses on rice leaf color mutants显示文摘Rice leaf color variation is a morphological phenotype that is valuable in studying plant metabolism and physiology.Besides,the rice leaf color phenotype can also be utilized in the breeding process.Rice plants with color mutations typically have less efficient photosynthesis,which can result in poor growth and yield reduction.Studies of rice leaf color mutants have led to important findings about the metabolic and regulatory mechanisms of pigment synthesis and accumulation,chloroplast biogenesis and differentiation,photosynthesis,stress response,etc.In this mini-review,we summarized the current progress in the identification and study of rice leaf color mutants,and we also discussed on the limitations and perspectives of the current research about these rice leaf color mutants.Weiran Li Yuchan Zhang Md.Anisur Rahman Mazumder Ronghui Pan Delara Akhter 2022Crop Design2022,1,2:0
9De Novo Biosynthesis of Vindoline and Catharanthine in Saccharomyces cerevisiae显示文摘Vinblastine has been used clinically as one of the most potent therapeutics for the treatment of several types of cancer.However,the traditional plant extraction method suffers from unreliable supply,low abundance,and extremely high cost.Here,we use synthetic biology approach to engineer Saccharomyces cerevisiae for de novo biosynthesis of vindoline and catharanthine,which can be coupled chemically or biologically to vinblastine.On the basis of a platform strain with sufficient supply of precursors and cofactors for biosynthesis,we reconstituted,debottlenecked,and optimized the biosynthetic pathways for the production of vindoline and catharanthine.The vindoline biosynthetic pathway represents one of the most complicated pathways ever reconstituted in microbial cell factories.Using shake flask fermentation,our engineered yeast strains were able to produce catharanthine and vindoline at a titer of 527.1 and 305.1μg·liter^(−1),respectively,without accumulating detectable amount of pathway intermediates.This study establishes a representative example for the production of valuable plant natural products in yeast.Di Gao Tengfei Liu Jucan Gao Junhao Xu Yuanwei Gou Yingjia Pan Dongfang Li Cuifang Ye Ronghui Pan Lei Huang Zhinan Xu Jiazhang Lian 2022BioDesign Research2022,,1:0
10Mitigating growth-stress tradeoffs via elevated TOR signaling in rice显示文摘Rice production accounts for approximately half of the freshwater resources utilized in agriculture,result-ing in greenhouse gas emissions such as methane(CH4)from flooded paddy fields.To address this chal-lenge,environmentally friendly and cost-effective water-saving techniques have become widely adopted in rice cultivation.However,the implementation of water-saving treatments(WsTs)in paddy-field rice has been associated with a substantial yield loss of up to 50%as well as a reduction in nitrogen use efficiency(NUE).In this study,we discovered that the target of rapamycin(TOR)signaling pathway is compromised in rice under WsT.Polysome profiling-coupled transcriptome sequencing(polysome-seq)analysis unveiled a substantial reduction in global translation in response to WST associated with the downregulation of TOR activity.Molecular,biochemical,and genetic analyses revealed new insights into the impact of the positive TOR-S6K-RPS6 and negative TOR-MAF1 modules on translation repression under WST.Intriguingly,ammonium exhibited a greater ability to alleviate growth constraints under WsT by enhancing TOR signaling,which simultaneously promoted uptake and utilization of ammonium and nitrogen allocation.We further demonstrated that TOR modulates the ammonium transporter AMT1;1 as well as the amino acid permease APP1 and dipeptide transporter NPF7.3 at the translational level through the 5'untranslated region.Collectively,these findings reveal that enhancing TOR signaling could mitigate rice yield penalty due to WST by regulating the processes involved in protein synthesis and NUE.Our study will contribute to the breeding of new rice varieties with increased water and fertilizer utilization efficiency.Wei Li Jiaqi Liu Zeqi Li Ruiqiang Ye Wenzhen Chen Yuqing Huang Yue Yuan Yi Zhang Huayi Hu Peng Zheng Zhongming Fang Zeng Tao Shiyong Song Ronghui Pan Jian Zhang Jumim Tu Jen Sheen Hao Du 2024Molecular Plant2024,17,2:0
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