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小麦TaVIP1家族基因克隆、分子特性及功能分析 被引量:3
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作者 赵佩 腾丽杰 +4 位作者 王轲 杜丽璞 任贤 佘茂云 叶兴国 《作物学报》 CAS CSCD 北大核心 2017年第2期201-209,共9页
植物VIP1蛋白(Vir E2 interacting protein 1)与农杆菌侵染植物后T-DNA在细胞内的转运有关,影响植物转化效率,但还未见有关小麦中VIP1基因研究的报道。本研究利用in silico技术从普通小麦中克隆了TaVIP1家族基因,该家族基因全部由4个外... 植物VIP1蛋白(Vir E2 interacting protein 1)与农杆菌侵染植物后T-DNA在细胞内的转运有关,影响植物转化效率,但还未见有关小麦中VIP1基因研究的报道。本研究利用in silico技术从普通小麦中克隆了TaVIP1家族基因,该家族基因全部由4个外显子构成,编码产物相似性高,与拟南芥AtVIP1蛋白质序列相似性仅为50.7%~51.4%。Southern杂交结果表明,TaVIP1基因在小麦基因组中存在3个拷贝。根据小麦3个TaVIP1基因的差异序列设计特异引物,以四倍体小麦Langdon与中国春D组染色体代换系为材料进行PCR检测,结合生物信息学分析,将小麦3个TaVIP1基因分别定位在4AL、4BS和4DS染色体上。亚细胞定位分析表明,TaVIP1蛋白分布于细胞膜、细胞质和细胞核中。农杆菌转化烟草,过表达TaVIP1基因降低了烟草转化效率。小麦TaVIP1基因编码的氨基酸序列与拟南芥AtVIP1基因及烟草NtVIP1基因编码的氨基酸序列相似性很低,这可能是小麦农杆菌转化效率低的原因之一。 展开更多
关键词 小麦 tavip1 烟草 农杆菌转化
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TavWA1 is critical for wheat growth by modulating cell morphology and arrangement
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作者 Guowei Chang Yue Li +10 位作者 Lei Peng Chuncai Shen Yipeng Lu Wan Teng Yangyang Liu Yingchun Wang Weiqi Zhu Cuimin Liu Xue He Yiping Tong Xueqiang Zhao 《Journal of Integrative Plant Biology》 2025年第1期71-86,共16页
Plant growth is determined by the production of cells and initiation of new organs.Exploring genes that control cell number and cell size is of great significance for understanding plant growth regulation.In this stud... Plant growth is determined by the production of cells and initiation of new organs.Exploring genes that control cell number and cell size is of great significance for understanding plant growth regulation.In this study,we characterized two wheat mutants,ah and dl,with abnormal growth.The ah mutant is a naturally occurring variant characterized by severe dwarfism,increased tiller number,and reduced grain length,while the dl mutant is derived from an ethyl methane sulfonate(EMS)-mutagenized population and exhibits smaller grain size and slightly reduced plant height.Cytological analyses revealed abnormal cell number,cell morphology and arrangement in the stems and leaves of the ah mutant,along with reduced cell length in the grains of the dl mutant.Map-based cloning identified that both mutants carry mutations in the same gene TavWA1-7D,which encodes a protein with a von Willebrand factor A(vWA)domain.The ah mutant harbors a 174-bp insertion in the 1,402-bp coding sequence(CDS)of TavWA1-7D,causing premature termination of protein translation,while the dl mutant contains a Glu420Lys substitution.Mimicking the TavWA1-7D ahthrough clustered regularly interspaced short palindromic repeats(CRISPR)/CRISPR-associated nuclease 9-mediated genome editing leads to a severe dwarfism phenotype.The C-terminus of the protein is crucial for its correct subcellular localization and interaction,supporting its critical role for TavWA1-7D function.Proteomic analysis showed that the dwarf phenotype of the ah mutant is associated with impaired photosynthesis,ribosome function,and nucleosome formation.Additionally,TavWA1-7D interacts with an E3 ligase,Ta VIP1-3B,the expression levels of which are elevated in both mutants.Overexpression and knockout studies of TaVIP1-3B demonstrated its negative regulatory role in cell length and grain size.Together,our findings suggest that TavWA1-7D plays a vital role in regulating wheat growth and yield-related traits,with the dl mutant's short grain phenotype being associated with TaVIP1-3B expression levels. 展开更多
关键词 grain size severe dwarf tavip1 TavWA1 WHEAT
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