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- 详细信息
- 文献和实验
- 技术资料
- 服务名称:
大肠杆菌系统重组蛋白表达
- 提供商:
普健生物(武汉)科技有限公司
Uniprot号:Q9FJK3
基因名:AGL80
蛋白名:Agamous-like MADS-box protein AGL80
蛋白别名:
Agamous-like MADS-box protein AGL80
服务内容:
| 服务项目 | 客户提供 | 服务内容 | 服务周期 | 交付内容 |
|---|---|---|---|---|
| 大肠杆菌系统 蛋白表达 |
基因序列 | 方案沟通 | 1天 | 方案报告 |
| 密码子优化和基因合成 | 5天 | 基因合成报告 | ||
| 表达纯化测试 | 3天 | 表达纯化测试报告 | ||
| 1L表达及纯化 | 3天 | 蛋白样品(3-5mg)及报告 | ||
| 放大发酵及纯化 | 7天 | 纯化的蛋白及报告 |
案例展示:

AGL80相关研究文献:
1. AGL80 is required for central cell and endosperm development in Arabidopsis. [16798889]
2. Transcriptional repression specifies the central cell for double fertilization. [32132210]
3. AGL61 interacts with AGL80 and is required for central cell development in Arabidopsis. [18599653]
4. The MADS domain protein DIANA acts together with AGAMOUS-LIKE80 to specify the central cell in Arabidopsis ovules. [18713950]
5. An atlas of type I MADS box gene expression during female gametophyte and seed development in Arabidopsis. [20631316]
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文献和实验2. Transcriptional repression specifies the central cell for double fertilization. [32132210]
3. AGL61 interacts with AGL80 and is required for central cell development in Arabidopsis. [18599653]
4. The MADS domain protein DIANA acts together with AGAMOUS-LIKE80 to specify the central cell in Arabidopsis ovules. [18713950]
5. An atlas of type I MADS box gene expression during female gametophyte and seed development in Arabidopsis. [20631316]
基因组中最小的。每个单倍染色体组( n=5)的总长只有 7000万个碱基对,即只有小麦染色体组长的 1/80,这就使克隆它的有关基因相对说来比较容易。拟南芥是自花受粉植物,基因高度纯合,用理化因素处理突变率很高,容易获得各种代谢功能的缺陷型。例如用含杀草剂的培养基来筛选,一般获得抗杀草剂的突变率是 1/100000。由于有上述这些优点,所以拟南芥是进行遗传学研究的好材料,被科学家誉为“植物中的果蝇”。
Growth of Other Species Related to Arabidopsis thaliana
Recent interest in the study of biological phenomena in Brassicaceae members (crucifers) related to the model plant, Arabidopsis thaliana , fuels the need for standard protocols for growth and maintenance of these plant species
Identifying Photoprotection Mutants in Arabidopsis thaliana
of enzymes, which convert H2 O2 into H2 O. Two of the genes encoding APX in Arabidopsis are induced by high light, namely APX1 and APX2. We have applied a genetic approach to understanding the mechanisms of photoprotection, using APX2 as an indicator
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