转基因和致病过程中 T-DNA 的表观遗传控制。

IF 6.5 1区 生物学 Q1 PLANT SCIENCES
Joaquin Felipe Roca Paixao, Angélique Déléris
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引用次数: 0

摘要

被称为 T-DNA 的移动元件从病原农杆菌转移到植物中,并对宿主细胞进行重编程,形成毛细根或肿瘤。在植物基因工程中,解除武装的非致癌 T-DNA 被广泛用于传递转基因。这种 T-DNA 是 RNA 沉默机制的第一个已知目标,它能检测植物细胞中的外来 RNA,并产生诱导转录本降解的小 RNA。在植物体内,这些 T-DNA 也可以通过 DNA 甲基化和赖氨酸 9 的二甲基化(H3K9me2)等表观遗传标记的沉积而转录沉默。在此,我们回顾了转基因植物中以及致病过程中 RNA 沉默和 DNA 甲基化对 T-DNA 的靶向和作用。此外,我们还讨论了致病过程中 T-DNA 与 DNA 甲基化全基因组变化之间的相互影响。我们还讨论了最近发现的调控现象,如 T-DNA 抑制和 RNA 沉默无关机制以及表观遗传无关机制,这些机制可使 T-DNA 沉默。最后,我们讨论了 T-DNA 沉默的发现对改进植物基因工程的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epigenetic control of T-DNA during transgenesis and pathogenesis.

Mobile elements known as T-DNAs are transferred from pathogenic Agrobacterium to plants and reprogram the host cell to form hairy roots or tumors. Disarmed non-oncogenic T-DNAs are extensively used to deliver transgenes in plant genetic engineering. Such T-DNAs were the first known targets of RNA silencing mechanisms, which detect foreign RNA in plant cells and produce small RNAs that induce transcript degradation. These T-DNAs can also be transcriptionally silenced by the deposition of epigenetic marks such as DNA methylation and the dimethylation of lysine 9 (H3K9me2) in plants. Here, we review the targeting and the roles of RNA silencing and DNA methylation on T-DNAs in transgenic plants as well as during pathogenesis. In addition, we discuss the crosstalk between T-DNAs and genome-wide changes in DNA methylation during pathogenesis. We also cover recently discovered regulatory phenomena, such as T-DNA suppression and RNA silencing-independent and epigenetic-independent mechanisms that can silence T-DNAs. Finally, we discuss the implications of findings on T-DNA silencing for the improvement of plant genetic engineering.

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来源期刊
Plant Physiology
Plant Physiology 生物-植物科学
CiteScore
12.20
自引率
5.40%
发文量
535
审稿时长
2.3 months
期刊介绍: Plant Physiology® is a distinguished and highly respected journal with a rich history dating back to its establishment in 1926. It stands as a leading international publication in the field of plant biology, covering a comprehensive range of topics from the molecular and structural aspects of plant life to systems biology and ecophysiology. Recognized as the most highly cited journal in plant sciences, Plant Physiology® is a testament to its commitment to excellence and the dissemination of groundbreaking research. As the official publication of the American Society of Plant Biologists, Plant Physiology® upholds rigorous peer-review standards, ensuring that the scientific community receives the highest quality research. The journal releases 12 issues annually, providing a steady stream of new findings and insights to its readership.
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