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相关概念视频

Evolutionary Relationships through Genome Comparisons02:54

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Genome comparison is one of the excellent ways to interpret the evolutionary relationships between organisms. The basic principle of genome comparison is that if two species share a common feature, it is likely encoded by the DNA sequence conserved between both species. The advent of genome sequencing technologies in the late 20th century enabled scientists to understand the concept of conservation of domains between species and helped them to deduce evolutionary relationships across diverse...
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From Water to Land
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Alternative RNA splicing is the regulated splicing of exons and introns to produce different mature mRNAs from a single pre-mRNA. Unlike in constitutive splicing where a single gene produces a single type of mRNA, alternative splicing allows an organism to produce multiple proteins from a single gene and plays an important role in protein diversity.
There are five types of alternative RNA splicing that vary in the ways the pre-mRNA segments are removed or retained in the mature mRNA. The first...
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Recombinant DNA technology called transgenesis is often used to add a foreign gene or remove a detrimental gene from an organism. Such genetically modified organisms are called transgenic organisms.
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Transposons make up a significant part of genomes of various organisms. Therefore, it is believed that transposition played a major evolutionary role in speciation by changing genome sizes and modifying gene expression patterns. For example, in bacteria, transposition can lead to conferring antibiotic resistance. Movement of transposable elements within the genetic pool of pathogenic bacteria can aid in transfer of antibiotic-resistant genetic elements. In eukaryotes, transposons can carry out...
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Plant morphogenesis—the development of a plant’s form and structure—involves several overlapping developmental processes, including growth and cell differentiation. Precursor cells differentiate into specific cell types, which are organized into the tissues and organ systems that make up the functional plant.
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如何利用比较转录学来剖析植物的形态多样性.

Siyu Li1, Hokuto Nakayama2, Neelima R Sinha1

  • 1Department of Plant Biology, University of California, Davis, One Shields Avenue, Davis, CA 95616, USA.

Current opinion in plant biology
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概括

比较转录学通过分析基因表达来帮助理解植物进化. 本综述探讨了克服在不同植物物种和发育阶段对基因活性进行比较方面的挑战的方法.

关键词:
进行比较的转录学.这就是Evo-devo.同性学 同性学是指同性学.网络分析 网络分析

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科学领域:

  • 进化生物学 进化生物学
  • 基因组学就是基因组学.
  • 发展生物学 发展生物学

背景情况:

  • 对比转录学是理解器官形态发生和进化多样化的遗传基础的关键.
  • 通过转录组学研究植物形态多样性面临挑战:识别同源基因,选择阶段和提取基因网络.

研究的目的:

  • 审查克服植物进化比较转录学挑战的方法.
  • 突出识别基因功能,调整发育阶段和发现基因调控网络的方法.

主要方法:

  • 用于在物种之间识别功能相等的基因的植物谱学.
  • 聚类和基因共同表达网络,以揭示基因调节关系.
  • 解决诸如植物基因组复杂性和发展阶段对齐中的异时性等挑战.

主要成果:

  • 确定了克服植物基因组复杂性和发育阶段对齐的方法.
  • 证明了植物层谱,聚类和基因共同表达网络的实用性.
  • 强调将基因网络与其他数据类型集成的重要性.

结论:

  • 比较转录学,使用诸如树系谱学和基因共同表达网络之类的方法,对于理解植物形态进化至关重要.
  • 解决基因同质性,发育阶段对齐和网络分析方面的挑战是必不可少的.
  • 整合多样化的数据源可以提高对进化过程的全面理解.