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11篇 您的检索式:作者名="Pan Yunxia"
    题名 作者 年代 出处 被引量
1A Rare Allele of GS2 Enhances Grain Size anc Grain Yield in Rice显示文摘谷物尺寸决定谷物重量并且影响谷物质量。调整谷物尺寸的几主要量的特点 loci (QTL ) 被克隆;然而,我们调整米饭谷物的尺寸的内在的机制的理解仍然保持碎片。这里,我们报导克隆和主导的 QTL 的描述,染色体 2 上的谷物尺寸(GS2 ) 编码调整生长的因素 4,一个 transcriptional 管理者。GS2 本地化到原子核并且可以充当抄写使活跃之物。影响 microRNA 的有约束力的地点的 GS2 的一个稀罕变化, OsmiR396c,原因提高了 GS2/OsGRF4 的表示。GS2 表示的增加导致更大的房间和房间的增加的数字,它因此提高谷物重量和产量。进米饭栽培变种的 GS2/OsGRF4 的这稀罕等位基因的介绍能显著地提高谷物重量和增加谷物产量,用在引起产量很高的米饭变化的可能的应用。Jiang Hu Yuexing Wang Yunxia Fang Longjun Zeng Jie Xu Haiping Yu Zhenyuan Shi Jiangjie Pan Dong Zhang Shujing Kang Li Zhu Guojun Dong Longbiao Guo Dali Zeng Guangheng Zhang Lihong Xie Guosheng Xiong Jiayang Li Qian Qian 2015Molecular Plant2015,8,10:57
2MULTI-TILLERING DWARF1, a new allele of BRITTLE CULM 12, affects plant height and tiller in rice显示文摘Plant height and tillering are crucial factors determining rice plant architecture and influencing rice grain production. In this study, multi-tillering dwarf1(mtd1), a stable multi-tiller and dwarf mutant, was screened from the ethylmethane sulfonate-treated japonica rice variety Wuyunging7. Compared with the wild type, mtd1 mutant exhibited pleiotropic phenotypes, including dwarfism, more tillers, brittle culms and delayed heading date.By employing map-based cloning strategy, the gene MTD1 was finally mapped to an approximately 66-kb region on the short arm of chromosome 9. Sequencing results showed that the gene LOC_Os09g02650(BC12) in mtd1 mutant had a single nucleotide substitution(G to A), which generated a premature translation stop. Over-expressing MTD1/BC12 coding sequence rescued all the phenotypes of mtd1 mutants including plant height and tillers, which confirms that BC12 is the mutated gene in mtd1 mutant.Quantitative reverse transcription-PCR analysis showed that MTD1/BC12 could negatively regulate the expression of MONOCULM 1, IDEAL PLANT ARCHITECTURE1 and Tillering and Dwarf 1, and control rice tillering. Remarkably, a-amylase activity analysis and gibberellic acid(GA)treatment showed that the dwarf phenotype of mtd1 mutant was dependent on GA biosynthesis pathway. These results facilitated to further uncover the molecular mechanism of the growth and development in rice.Haiping Yu Deyong Ren Yangzhou Zhu Jiangmin Xu Yuexing Wang Ruifang Liu Yunxia Fang Zhenyuan Shi Jiangjie Pan Mei Lu Bojun Ma Jiang Hu Yuchun Rao 2016Science Bulletin2016,61,23:3
3中药逆转肝癌多药耐药的研究现状(英文)显示文摘Multi-drug resistance(MDR) is a major obstacle in the chemotherapy of hepatocellular carcinoma.Comparing with western reversal agents,traditional Chinese medicine have advantages of low cost,hypotoxicity,wide safety range,broad-spectrum and multi-targets,etc.Therefore,traditional Chinese medicine may be expected to open up a new path to reverse MDR of liver cancer.Studies about applying traditional Chinese medicine to reverse MDR in hepatocellular carcinoma are outlined below.Shengli Yang Yunxia Wang Xiaoli Pan Zhifan Xiong 2011The Chinese-German Journal of Clinical Oncology2011,10,9:3
4Physiological,Biochemical and Molecular Responses of Barley Seedlings to Aluminum Stress显示文摘Barley(Hordeum vulgare L.)is one of the most Aluminum(Al)sensitive cereal species.In this study,the physiological,biochemical,and molecular response of barley seedlings to Al treatment was examined to gain insight into Al response and tolerance mechanisms.The results showed that superoxide dismutase(SOD),peroxidase(POD)and catalase(CAT)activity were inhibited to different degrees following Al exposure.The MDA content also significantly increased with increasing Al concentrations.SRAP results indicated significant differences between Al treatments and controls in terms of SRAP profile,and the genomic template stability(GTS)decreased with increasing Al concentration and duration.These integrative results help to elucidate the underlying mechanisms that the barley response to Al toxicity.Xiaoqin Zhang Tao Tong Bin Tian Yunxia Fang Jiangjie Pan Junjun Zheng Dawei Xue 2019Phyton-International Journal of Experimental Botany2019,88,3:2
5Structural regulation of single-atom catalysts for enhanced catalytic oxidation performance of volatile organic compounds显示文摘The catalytic oxidation of volatile organic compounds(VOCs)is considered a feasible method for VOCs treatment by virtue of its low technical cost,high economic efficiency,and low additionally produced pollutants,which is of important social value.Singleatom catalysts(SACs)with 100%atom utilization and uniform active sites usually have high activity and high product selectivity,and promise a broad range of applications.Precise regulation of the microstructures of SACs by means of defect engineering,interface engineering,and electronic effects can further improve the catalytic performance of VOCs oxidation.In this review,we introduce the mechanisms of VOCs oxidation,and systematically summarize the recent research progress of SACs in catalytic VOCs total oxidation into CO_(2)and H_(2)O,and then discuss the effects of various structural regulation strategies on the catalytic performance.Finally,we summarize the current problems yet to be solved and challenges currently faced in this field,and propose future design and research ideas for SACs in catalytic oxidation of VOCs.Fei Jiang Zhiyuan Zhou Chao Zhang Chao Feng Gaoyan Xiong Yunxia Wang Zhaoyang Fei Yunqi Liu Yuan Pan 2023Nano Research2023,16,2:1
6Oxidation of acidic dye Eosin Y by the solar photo-Fenton processes显示文摘Zheng Huaili Pan Yunxia Xiang Xinyi 2007Journal of Hazardous Materials2007,141,:1
7Molecular cloning and functional characterization of dihydroflavonol-4-reductase gene from Calibrachoa hybrida显示文摘Yunxia Chu Junsong Pan Aizhong Wu Run Cai Hairong Chen 2014Scientia Horticulturae2014,,:1
8Biological Characteristics and Comprehensive Prevention and Treatment Methods of Acantholyda piceacola Xiao et Zhou显示文摘[Objective] The paper was to clear biological characteristics and comprehensive prevention and treatment methods of Acantholyda piceacola Xiao et Zhou. [Method] Through captive observation and field survey,the current situation,life history and life habits of A. piceacola were investigated; the occurrence degree of A. piceacola in various regions and the relationship between soil depth and number distribution of A. piceacola were studied. Moreover,the contrast test of a variety of control measures was conducted. [Result] A. piceacola needed one year or more to complete a generation; there were significant differences in insect plant rate and extremely significant differences in population density among different plots. Trunk injection and foliar spraying conducted before the forth larval stage had good protection effects on needles of Picea mongolica; trunk injection with 14% imidacloprid · dichlorvos at egg stage received the best control effect,the loss rate of needles was the lowest of 8. 43%,so the method could be massively popularized in the future. [Conclusion]The results provide a reference for the control of A. piceacola.Ma Yunxia Li Gangtie Feng Fei Ma Yuan Pan Yiyong Tong Chunyuan 2017Plant Diseases and Pests2017,8,5:1
9Oxidation of acidic dye Eosin Y by the solar photo-Fenton processes显示文摘ZHENG Huaili PAN Yunxia XIANG Xinyi 2007Journal of Hazardous Materials2007,141,3:1
10Impact of elevated ozone concentration on yield of four Chinese rice cultivars under fully open-air field conditions显示文摘Guangyao Shi Lianxin Yang Yunxia Wang Kazuhiko Kobayashi Jianguo Zhu Haoye Tang Shiting Pan Tao Chen Gang Liu Yulong Wang 2009Agriculture Ecosystems and Environment2009,,3:1
11A New-Nipponbare Rice Germplasm with High Seed-Setting Rate显示文摘Rice(Oryza sativa L.)is an important crop providing staple food for more than half the world’s population and also considered as a model plant for molecular biological study of the cereals.In 1998,the large-scale sequencing of japonica rice cultivar Nipponbare(bred at Aichi Agricultural Center in Japan and released in 1963)was initiated byJiang Hu Guojun Dong Yunxia Fang Yuchun Rao Jie Xu Dawei Xue Haiping Yu Changwei Ge Zhenyuan Shi Jiangjie Pan Li Zhu Dali Zeng Guangheng Zhang Longbiao Guo Qian Qian 2014Journal of Genetics and Genomics2014,41,10:0
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