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Genome-Wide Exploration of the Grape GLR Gene Family and Differential Responses of VvGLR3.1 and VvGLR3.2 to Low Temperature and Salt Stress
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作者 honghui sun Ruichao Liu +6 位作者 Yueting Qi Hongsheng Gao Xueting Wang Ning Jiang Xiaotong Guo Hongxia Zhang Chunyan Yu 《Phyton-International Journal of Experimental Botany》 SCIE 2024年第3期533-549,共17页
Grapes,one of the oldest tree species globally,are rich in vitamins.However,environmental conditions such as low temperature and soil salinization significantly affect grape yield and quality.The glutamate receptor(GLR... Grapes,one of the oldest tree species globally,are rich in vitamins.However,environmental conditions such as low temperature and soil salinization significantly affect grape yield and quality.The glutamate receptor(GLR)family,comprising highly conserved ligand-gated ion channels,regulates plant growth and development in response to stress.In this study,11 members of the VvGLR gene family in grapes were identified using whole-genome sequence analysis.Bioinformatic methods were employed to analyze the basic physical and chemical properties,phylogenetic trees,conserved domains,motifs,expression patterns,and evolutionary relationships.Phylogenetic and collinear analyses revealed that the VvGLRs were divided into three subgroups,showing the high conservation of the grape GLR family.These members exhibited 2 glutamate receptor binding regions(GABAb and GluR)and 3-4 transmembrane regions(M1,M2,M3,and M4).Real-time quantitative PCR analysis demonstrated the sensitivity of all VvGLRs to low temperature and salt stress.Subsequent localization studies in Nicotiana tabacum verified that VvGLR3.1 and VvGLR3.2 proteins were located on the cell membrane and cell nucleus.Additionally,yeast transformation experiments confirmed the functionality of VvGLR3.1 and VvGLR3.2 in response to low temperature and salt stress.Thesefindings highlight the significant role of the GLR family,a highly conserved group of ion channels,in enhancing grape stress resistance.This study offers new insights into the grape GLR gene family,providing fundamental knowledge for further functional analysis and breeding of stress-resistant grapevines. 展开更多
关键词 Genome-wide identification glutamate receptor(GLR)family low temperature stress salt stress GRAPE
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开放教育完全学分制管理探析 被引量:7
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作者 孙宏辉 《中国远程教育》 CSSCI 北大核心 2019年第9期26-31,42,共7页
实施开放教育完全学分制管理模式改革,是实现开放大学转型发展、推进教育教学改革的重要的系统工程。我国部分高校推进完全学分制的实践虽取得了一定成效,但尚未形成可示范推广的成熟体系和与之相适应的信息管理平台。在开放大学办学中... 实施开放教育完全学分制管理模式改革,是实现开放大学转型发展、推进教育教学改革的重要的系统工程。我国部分高校推进完全学分制的实践虽取得了一定成效,但尚未形成可示范推广的成熟体系和与之相适应的信息管理平台。在开放大学办学中实施完全学分制对践行"有教无类、因材施教"的开放教育理念、促进终身学习体系的建立具有重要意义。"以课程为中心"是完全学分制管理最显著的特征,教学教务管理围绕课程和课程体系管理、学分管理和学籍管理三条主线开展,要重视一个信息化管理平台和课程库、学生库、学分库、专业库、师资库五个关键数据库的建设。开放教育完全学分制管理的九个核心业务模块是学籍档案管理、课程团队管理、专业培养方案管理、课程体系管理、选课管理、课程考核与评价管理、学分认证与转换管理、毕业与学位管理以及信息支持服务管理。 展开更多
关键词 开放大学 开放教育 完全学分制 以课程为中心 课程体系 自主选课 教学教务管理 学分管理
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