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相关概念视频

Epistasis01:39

Epistasis

In addition to multiple alleles at the same locus influencing traits, numerous genes or alleles at different locations may interact and influence phenotypes in a phenomenon called epistasis. For example, rabbit fur can be black or brown depending on whether the animal is homozygous dominant or heterozygous at a TYRP1 locus. However, if the rabbit is also homozygous recessive at a locus on the tyrosinase gene (TYR), it will have an unshaded coat that appears white, regardless of its TYRP1...
Fruit Development, Structure, and Function01:58

Fruit Development, Structure, and Function

Fruits form from a mature flower ovary. As seeds develop from the ovules contained within, the ovary wall undergoes a series of complex changes to form fruit. In some fruits, such as soybeans, the ovary wall dries; in other fruits, such as grapes, it remains fleshy. In some cases, organs other than the ovary contribute to fruit formation; such fruits are called accessory fruits.
Eukaryotic Transcription Inhibitors01:52

Eukaryotic Transcription Inhibitors

Certain biochemical processes, such as embryonic development and cell growth regulation, depend on the repression of specific genes. DNA binding proteins known as eukaryotic transcription inhibitors regulate the repression of gene expression in eukaryotes. The presence of these inhibitors at the required location and time in the cell is triggered by the presence of hormones and additional signals from other cells.
Eukaryotic transcription inhibitors usually contain two distinct domains, a DNA...
Riboswitches01:56

Riboswitches

Riboswitches are non-coding mRNA domains that regulate the transcription and translation of downstream genes without the help of proteins. Riboswitches bind directly to a metabolite and can form unique stem-loop or hairpin structures in response to the amount of the metabolite present. They have two distinct regions – a metabolite-binding aptamer and an expression platform.
The aptamer has high specificity for a particular metabolite which allows riboswitches to specifically regulate...
Cell Signaling in Plants01:25

Cell Signaling in Plants

Plant cells communicate to coordinate their cycle of growth, flowering and fruiting, and activities in roots, shoots, and leaves in response to the changing environmental conditions. Plant signaling is distinct from animal signaling. Plants primarily utilize enzyme-linked receptors, whereas the largest class of cell-surface receptors in animals are G-protein coupled receptors (GPCRs). Unlike animals, receptor tyrosine kinases are rare in plants. Instead, plants have a diverse class of...
Transcriptional Regulation: Riboswitches01:23

Transcriptional Regulation: Riboswitches

Riboswitches are RNA elements that regulate gene expression by altering their secondary structures in response to specific effector molecules. These elements, located in the leader regions of certain mRNAs, act as transcriptional regulators by toggling between alternative conformations to control downstream gene expression. Riboswitch-mediated regulation is a precise mechanism for modulating biosynthetic pathways, as exemplified by the riboflavin biosynthesis pathway in Bacillus...

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相关实验视频

Updated: Jun 25, 2026

Isolation and Biophysical Study of Fruit Cuticles
15:53

Isolation and Biophysical Study of Fruit Cuticles

Published on: March 30, 2012

一个MADS盒基因,在番茄成熟抑制剂 (rin) 位点中,对于果实成熟是必不可少的.

Julia Vrebalov1, Diane Ruezinsky, Veeraragavan Padmanabhan

  • 1U.S. Department of Agriculture-Agricultural Research Service (USDA-ARS) Plant, Soil and Nutrition Lab and Boyce Thompson Institute for Plant Research, Cornell University, Ithaca, NY 14853, USA.

Science (New York, N.Y.)
|April 16, 2002
PubMed
概括
此摘要是机器生成的。

番茄成熟抑制剂 (rin) 突变影响水果成熟和植物发育. 定位克隆确定了两个MADS盒子基因,LeMADS-RIN和LeMADS-MC,调节这些独特的特征.

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The Tomato/GFP-FLP/FRT Method for Live Imaging of Mosaic Adult Drosophila Photoreceptor Cells
09:33

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Tomato Root Transformation Followed by Inoculation with Ralstonia Solanacearum for Straightforward Genetic Analysis of Bacterial Wilt Disease
09:05

Tomato Root Transformation Followed by Inoculation with Ralstonia Solanacearum for Straightforward Genetic Analysis of Bacterial Wilt Disease

Published on: March 11, 2020

相关实验视频

Last Updated: Jun 25, 2026

Isolation and Biophysical Study of Fruit Cuticles
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Isolation and Biophysical Study of Fruit Cuticles

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The Tomato/GFP-FLP/FRT Method for Live Imaging of Mosaic Adult Drosophila Photoreceptor Cells
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The Tomato/GFP-FLP/FRT Method for Live Imaging of Mosaic Adult Drosophila Photoreceptor Cells

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Tomato Root Transformation Followed by Inoculation with Ralstonia Solanacearum for Straightforward Genetic Analysis of Bacterial Wilt Disease
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科学领域:

  • 植物遗传学 植物遗传学
  • 分子生物学分子生物学
  • 发育生物学是发展生物学.

背景情况:

  • 番茄植物中的成熟抑制剂 (rin) 突变阻止了水果的成熟.
  • 相关的表型包括扩大的分和不确定的花朵.

研究的目的:

  • 为了确定负责rin突变表型的基因.
  • 阐明了番茄果实成熟和植物发育背后的分子机制.

主要方法:

  • 定位克隆用于识别rin locus中的基因.
  • 基因表达分析.
  • 基因抑制和突变补充测试.

主要成果:

  • 在rin位点发现了两个协同的MADS盒基因,LeMADS-RIN和LeMADS-MC.
  • 林基因突变会影响这两种基因的表达.
  • 莱马德斯-RIN调节了水果的成熟过程.
  • LeMADS-MC控制了分泌体的发育和花朵的决定性.

结论:

  • 莱马德斯-RIN在非荷尔蒙调节番茄果实成熟过程中起着至关重要的作用.
  • 在番茄中,LeMADS-MC对于分离体的发育和花朵的决定至关重要.
  • 这项研究强调了植物MADS盒基因在农业中的重要性.