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| 1 | The Variation of Stone Cell Content in 236 Germplasms of Sand Pear(Pyrus pyrifolia)and Identification of Related Candidate Genes显示文摘Stone cells have been described to substantially influence pear fruit quality,as lignin and cellulose are the main components of stone cells.However,there are limited studies on the relationship between the variation and molecular basis of stone cells,lignin and cellulose content among different pear varieties.Here,to reveal the variation of stone cell content within different cultivated species,we collected 236 germplasms of sand pear(Pyrus pyrifolia)at 50 days after flower blooming(DAFB),the key stage of stone cell formation.In our results,we measured the content of stone cells,lignin and cellulose and found that these contents ranged from2.82%to 29.00%,8.84%to 55.30%and 11.52%to 30.55%,respectively.Further analysis showed that the variation coefficient of stone cell,lignin and cellulose content was 39.10%,28.03%and 16.71%,respectively.Additionally,a significant correlation between stone cell,lignin and cellulose content were detected,and the correlation coefficient between the contents of stone cell and lignin(0.912)was higher than between the contents of stone cell and cellulose(0.796).Moreover,the average lignin content(29.73%)was higher than the average cellulose content(18.03%)in stone cells in pear fruits,indicating that lignin is the main component of stone cell in pears.Finally,on the basic of the transcriptome data,we identified 10 transcription factors belonging to bHLH,ERF,MYB,and NAC transcript families,which might be involved in lignin formation in stone cells.qRT-PCR experiments verified coincident trends between expression of candidate genes and stone cell content.This research laid foundation for future studies on genetic variation of stone cells in pear fruits and provided important gene resources for stone cell regulation. | Jiaying Zhang Jiaming Li Cheng Xue Runze Wang Mingyue Zhang Kaijie Qi Jing Fan Hongju Hu Shaoling Zhang Jun Wu | 2021 | Horticultural Plant Journal2021,7,2: | 3 |
| 2 | QoS Routing in Wireless Mesh Networks显示文摘 | LIANG Zhengping WANG Zhiqiang CHENG Hongju JI Zhen | 2008 | Chinese Journal of Electronics2008,17,1: | 1 |
| 3 | A two-year follow-up for Chinese patients with abdominal aortic aneurysm undergoing open/endovascular repair显示文摘 | Sun Tao Zhang Hongju Cheng Yutong Wang Su Tao Ying Zhang Donghua Huang Ji Zhang Jingmei Li Zhizhong | 2014 | Chinese Medical Journal2014,,3: | 1 |
| 4 | Effects of fresh-cut and storage on glucosinolates profile using broccoli as a case study显示文摘Glucosinolates(GLS) contribute to the unique flavour, nutrition, and plant defence of the Cruciferous vegetables. Understanding the GLS changes through postharvest processing is essential for defined preservation. In this study, four different fresh-cut types, whole flower(W),floret(F), quarterly cut floret(QF) and shredded floret(FS) of broccoli, were stored for 0, 1, 2 and 3 day(s) to explore GLS responses to postharvest treatments. As a result, seven GLS were identified, mainly including glucoraphanin(RAA), neoglucobrassicin(NEO), and glucobrassicin(GBC)and accounting for 52.69%, 20.12% and 14.99% of the total GLS(21.92 ± 0.48) μmol · g ^(-1 )DW, respectively. FS had the sharpest decrease in GLS after three days of storage(6.55 ± 0.37) μmol · g-1DW, while QF had the least(10.16 ± 0.33) μmol · g ^(-1 )DW. All GLS components decreased over storage, except for 4-methoxyglucobrassicin(4 ME) in FS and QF, suggesting its key role in serious wound defence. The results suggested certain postharvest approaches influenced the flavour and nutrition of broccoli. | Xiaoxin Huang Bing Cheng Yaqin Wang Guangmin Liu Liping Hu Xiaolu Yu Hongju He | 2023 | Horticultural Plant Journal2023,9,2: | 1 |
| 5 | Nodes organizationfor channel assignment with topology preservation in multi-radio wire-less mesh networks显示文摘 | Cheng Hongju Xiong Naixue Vasilakos AY | 2012 | Ad hoc Networks2012,10,5: | 1 |
| 6 | Chip-based visual detection of micro RNA using DNA-functionalized gold nanoparticles显示文摘In the present study, we developed a highly sensitive and convenient biosensor consisting of gold nanoparticle(Au NP) probes and a gene chip to detect micro RNAs(mi RNAs). Specific oligonucleotides were attached to the glass surface as capture probes for the target mi RNAs, which were then detected via hybridization to the Au NP probes. The signal was amplified via the reduction of HAu Cl4 by H2O2. The use of a single Au NP probe detected 10 pmol L?1 of target mi RNA. The recovery rate for mi R-126 from fetal bovine serum was 81.5%–109.1%. The biosensor detection of mi R-126 in total RNA extracted from lung cancer tissues was consistent with the quantitative PCR(q PCR) results. The use of two Au NP probes further improved the detection sensitivity such that even 1 fmol L?1 of target mi R-125a-5p was detectable. This assay takes less than 1 h to complete and the results can be observed by the naked eye. The platform simultaneously detected lung cancer related mi R-126 and mi R-125a-5p. Therefore, this low cost, rapid, and convenient technology could be used for ultrasensitive and robust visual mi RNA detection. | Ping Wang Jianlong Zhao Bin Hu Zule Cheng Yanan Bai Qinghui Jin Huiying Liu Hongju Mao Sanqiang Li Jianlong Zhao | 2016 | Science China(Life Sciences)2016,59,5: | 0 |
| 7 | Nanostructures and catalytic atoms engineering of tellurium-based materials and their roles in electrochemical energy conversion显示文摘With the dramatic developments of renewable and environmental-friendly electrochemical energy conversion systems,there is an urgent need to fabricate durable and efficient electrocatalysts to address the limitation of high overpotentials exceeding thermodynamic requirements to facilitate practical applications.Recently,tellurium-based nanomaterials(Te NMs)with unique chemical,electronic,and topological properties,including Te-derived nanostructures and transition metal tellurides(TMTs),have emerged as one of the most promising electrocatalytic materials.In the absence of comprehensive and guiding reviews,this review comprehensively summarizes the main advances in designing emerging Te NMs for electrocatalysis.First,the engineering strategies and principles of Te NMs to enhance their electrocatalytic activity and stability from the nanostructures to the catalytic atoms are discussed in detail,especially on the chemical/physical/multiplex templating strategies,heteroatom doping,vacancy/defect engineering,phase engineering,and the corresponding mechanisms and structure-performance correlations.Then,typical applications of Te NMs in electrocatalysis are also discussed in detail.Finally,the existing key issues and main challenges of Te NMs for electrocatalysis are highlighted,and the development trend of Te NMs as electrocatalysts is expounded.This review provides new concepts to guide future directions for developing Te NMs-based electrocatalysts,thereby promoting their future wide applications in electrochemical energy systems. | Tiantian Li Yuting Deng Xiao Rong Chao He Mi Zhou Yuanjiao Tang Hongju Zhou Chong Cheng Changsheng Zhao | 2023 | SmartMat2023,4,1: | 0 |