小麦氨酸-重构塑蛋白控制B型粉颗粒在内体发育过程中的启动时间
Jiawen Chen1, Yi Chen1, Alexander Watson-Lazowski1,2
1John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.
Plant physiology
|August 19, 2024
概括
肌重构塑蛋白 (MRC) 调节小麦内的粉颗粒时间. 失去MRC功能导致B型粉颗粒的过早发育,影响小麦粒的发育.
科学领域:
- 植物生物学 植物生物学
- 分子生物学分子生物学
- 生物化学 生物化学
背景情况:
- 粉颗粒的启动模式因物种和器官而异.
- 麦 endosperm 具有大型A型和小型B型粉颗粒,具有不同的启动时间.
研究的目的:
- 确定控制小麦内精中B型粉颗粒启动时间的分子因素.
- 为了研究米奥辛重组塑蛋白 (MRC) 在小麦粒发育中的作用.
主要方法:
- 在四小麦 (Triticum turgidum cv. ("克罗诺斯") 的使用.
- 在野生型和MRC突变系中分析粉颗粒形态和时间.
- 在小麦内精中分析MRC的表达.
主要成果:
- 肌重组塑蛋白 (MRC) 对于正确的时间调节B型粉颗粒的启动至关重要.
- mrc突变体表现出较小的A型颗粒和较高的B型颗粒的相对体积.
- 与野生型小麦相比,mRC突变物中B型颗粒开始发生的时间明显较早.
结论:
- 在小麦内种中,MRC作为B型粉颗粒启动的抑制剂.
- 这项研究揭示了MRC在谷物发育中的新型时间调节作用,与它在Arabidopsis叶中的功能不同.
- 这些发现为管理差异性粉颗粒形成的分子机制提供了洞察力.
相关概念视频
Protein Transport to the Stroma
1.8K
Chloroplasts are triple membrane structures with an outer membrane, an inner membrane, and a thylakoid membrane, each containing distinct metabolite transporters, membrane translocons, and enzymes. Appropriate sorting and translocating these proteins to their correct membrane systems is essential for chloroplast function.
Protein complexes called the translocon of the outer chloroplast membrane or TOC complex, and the translocon of the inner chloroplast membrane or TIC complex mediate the...
Protein complexes called the translocon of the outer chloroplast membrane or TOC complex, and the translocon of the inner chloroplast membrane or TIC complex mediate the...
1.8K
Protein Transport to the Outer Chloroplast Membrane
2.0K
Chloroplast outer membrane proteins encoded by the nucleus are synthesized in the cytosol. Soon after synthesis, they bind cytosolic factors such as 14-3-3 protein and the Hsp70 chaperones that keep these precursors in an unfolded state until their translocation.
Two models describe the mechanism of precursor recognition and entry across the outer membrane through the TOC complex. Model 1 suggests the newly synthesized precursor binds to the TOC receptor 159 and forms a complex.
Two models describe the mechanism of precursor recognition and entry across the outer membrane through the TOC complex. Model 1 suggests the newly synthesized precursor binds to the TOC receptor 159 and forms a complex.
2.0K
Role of Microtubules in Cell Wall Deposition
2.4K
Microtubules are small hollow tubes in eukaryotic cells. The cell wall microtubules are polymerized dimers of two globular proteins, α-tubulin and β-tubulin, two globular proteins. With a diameter of about 25 nm, microtubules are the widest components of the cytoskeleton. They help the cell resist compression and provide a track along which vesicles move through the cell or pull replicated chromosomes to opposite ends of a dividing cell. Microtubules go through quick cycles of...
2.4K
Protein Transport to the Inner Chloroplast Membrane
2.1K
Proteins targeted to the inner chloroplast membrane, or plastid proteins, are transported by two general pathways: the stop-transfer and the re-insertion or post-import pathways. Most plastid proteins carry N-terminal transit sequences and internal import sequences targeting it to the specific chloroplast subcompartment. Proteins targeted by the stop-transfer pathway have internal hydrophobic sequences that inhibit their translocation into the stroma. As a result, these precursors are arrested...
2.1K
The Phragmoplast
5.0K
Cell division is essential for organismal growth and development. In animal cells, the central spindle and its associated proteins form the midbody, a structure that has an essential role in cytokinesis. In plants, the central spindle, along with the microtubules, actin, and other cell components, matures into the phragmoplast, which is necessary for cytokinesis. Unlike the stationary midbody, the phragmoplast expands centrifugally, eventually leading to the formation of the new cell wall.
The...
The...
5.0K
Microtubule Associated Motor Proteins
7.8K
Eukaryotic cells have different motor proteins for transporting various cargo within the cell. These motor proteins differ based on the filament they associate with, the direction they move within the cell, and the type of cargo they transport. Motor proteins that associate with microtubules are known as microtubule-associated motor proteins. There are two families of microtubule-associated motor proteins —Kinesins and Dyneins. Both these proteins assist in the transport of cellular...
7.8K


