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| 1 | Identification of two novel mutations in the GALNT3 gene in a Chinese family with hyperphosphatemic familial tumoral calcinosis显示文摘Hyperphosphatemic familial tumoral calcinosis(HFTC) is a rare, autosomal recessive genetic disease.This disease is characterized by the progressive calcification of soft tissues leading to symptoms of pressure and hyperphosphatemia but normal concentrations of serum calcium with or without an elevation of1,25-dihydroxyvitamin D3 levels.HFTC is caused by loss-of-function mutations in the GALNT3, FGF23 or KL genes. Here, we identified two novel mutations in the GALNT3 gene in a Chinese family with HFTC.Identification of a novel genotype in HFTC provides clues for understanding the phenotype–genotype relationships in HFTC and may assist not only in the clinical diagnosis of HFTC but also in the interpretation of the genetic information used for prenatal diagnosis and genetic counseling. | Lihao Sun Lin Zhao Lianiun Du Peipei Zhang Minjia Zhang Min Li Tingting Liu Lei Ye Bei Tao Hongyan Zhao Jianmin Liu Xiaoyi Ding | 2016 | Bone Research2016,4,4: | 2 |
| 2 | Evolution of the wave function in a dissipative system显示文摘 | SUN Changpu YU Lihao | 1994 | Phys Rev1994,49,: | 1 |
| 3 | Profit maximization for plug-in electric taxi with uncertain future electricity prices显示文摘 | Yang Zaiyue Sun Lihao Chen Jiming | 2014 | IEEE Transactions on Power Systems2014,29,6: | 1 |
| 4 | Mediator complex subunit MED25 physically interacts with DST to regulate spikelet number in rice显示文摘Grain number is a flexible trait and contributes significantly to grain yield.In rice,the zinc finger transcription factor DROUGHT AND SALT TOLERANCE(DST)controls grain number by directly regulating cytokinin oxidase!dehydrogenase 2(OsCKX2)expression.Although specific upstream regulators of the DST-OsCKX2 module have been identified,the mechanism employed by DST to regulate the expression of OsCKX2 remains unclear.Here,we demonstrate that DST-interacting protein 1(DIP1),known as Mediator subunit OsMED25,acts as an interacting coactivator of DST.Phenotypic analyses revealed that OsMED25-RNAi and the osmed25 mutant plants exhibited enlarged panicles,with enhanced branching and spikelet number,similar to the dst mutant.Genetic analysis indicated that OsMED25 acts in the same pathway as the DST-OsCKX2 module to regulate spikelet number per panicle.Further biochemical analysis showed that OsMED25 physically interacts with DST at the promoter region of OsCKX2,and then recruits RNA polymerase II(Pol II)to activate OsCKX2 transcription.Thus,OsMED25 was involved in the communication between DST and Pol II general transcriptional machinery to regulate spikelet number.In general,our findings reveal a novel function of OsMED25 in DST-OsCKX2 modulated transcriptional regulation,thus enhancing our un derstanding of the regulatory mechanism underlying DST-OsCKX2-mediated spikelet number. | Lihao Lin Minmin Du Shuyu Li Chuanlong Sun Fangming Wu Lei Deng Qian Chen Chuanyou Li | 2022 | Journal of Integrative Plant Biology2022,64,4: | 1 |
| 5 | Recoloring tomato fruit by CRISPR/Cas9-mediated multiplex gene editing显示文摘Fruit color is an important horticultural trait,which greatly affects consumer preferences.In tomato,fruit color is determined by the accumulation of different pigments,such as carotenoids in the pericarp and f lavonoids in the peel,along with the degradation of chlorophyll during fruit ripening.Since fruit color is a multigenic trait,it takes years to introgress all color-related genes in a single genetic background via traditional crossbreeding,and the avoidance of linkage drag during this process is difficult.Here,we proposed a rapid breeding strategy to generate tomato lines with different colored fruits from red-fruited materials by CRISPR/Cas9-mediated multiplex gene editing of three fruit color-related genes(PSY1,MYB12,and SGR1).Using this strategy,the red-fruited cultivar‘Ailsa Craig’has been engineered to a series of tomato genotypes with different fruit colors,including yellow,brown,pink,light-yellow,pink-brown,yellow-green,and light green.Compared with traditional crossbreeding,this strategy requires less time and can obtain transgene-free plants with different colored fruits in less than 1 year.Most importantly,it does not alter other important agronomic traits,like yield and fruit quality.Our strategy has great practical potential for tomato breeding and serves as a reference for improving multigene-controlled traits of horticultural crops. | Tianxia Yang Muhammad Ali Lihao Lin Ping Li Hongju He Qiang Zhu Chuanlong Sun Ning Wu Xiaofei Zhang Tingting Huang Chang-Bao Li Chuanyou Li Lei Deng | 2023 | Horticulture Research2023,10,1: | 0 |