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A Two-Step Model for de novo Activation of WUSCHEL during Plant Shoot Regeneration

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TLDR
The results provide important insights into the molecular framework for cytokinin-directed shoot regeneration and reveal a two-step mechanism for de novo activation of WUS, the homeodomain transcription factor for Arabidopsis thaliana.
Abstract
Plant cells are totipotent and competent to regenerate from differentiated organs. It has been known for six decades that cytokinin-rich medium induces shoot regeneration from callus cells. However, the underlying molecular mechanism remains elusive. The homeodomain transcription factor WUSCHEL (WUS) is essential for de novo establishment of the shoot stem cell niche in Arabidopsis thaliana We found that WUS-positive (WUS+) cells mark the shoot progenitor region during regeneration. A cytokinin-rich environment initially promotes the removal of the repressive histone mark H3K27me3 at the WUS locus in a cell cycle-dependent manner. Subsequently, the B-type ARABIDOPSIS RESPONSE REGULATORs (ARRs) ARR1, ARR2, ARR10, and ARR12, which function as transcriptional activators in the cytokinin signaling pathway, spatially activate WUS expression through binding with microRNA165/6-targeted HD-ZIP III transcription factors. Thus, our results provide important insights into the molecular framework for cytokinin-directed shoot regeneration and reveal a two-step mechanism for de novo activation of WUS.

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Changes in biochemistry and histochemical characteristics during somatic embryogenesis in Ormosia henryi Prain

TL;DR: Results showed that energy substances were the material basis of SE, which affected enzyme activities, regulated reactive oxygen species (ROS) metabolism, and thus regulated the morphogenesis and development of somatic embryos.
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Stem cells within the shoot apical meristem: identity, arrangement and communication

TL;DR: This review article summarizes recent progress on control of stem cells in the SAM from studies of the model plant Arabidopsis thaliana and discusses in depth how stem cells are arranged in an organized manner in theSAM, how dynamically the stem cell identity is regulated, what factors participate in stem cell control, and how intercellular communication by mobile signals modulates stem cell behaviors within the SAM.
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New Insights Into Tissue Culture Plant-Regeneration Mechanisms

TL;DR: This review summarizes two regenerative pathways in tissue culture: somatic embryogenesis and de novo organogenesis and reviews the environmental factors influencing plant regeneration from explant sources, basal culture medium, plant growth regulators, and light/dark treatment.
Journal ArticleDOI

De Novo Shoot Regeneration Controlled by HEN1 and TCP3/4 in Arabidopsis.

TL;DR: It is demonstrated that the miR319-TCP3/4-ARR16 axis controls de novo shoot regeneration by modulating cytokinin-responses.
Journal ArticleDOI

The HK5 and HK6 cytokinin receptors mediate diverse developmental pathways in rice.

TL;DR: Disrupting a subset of histidine kinase (HK) genes in Oryza sativa reveals that HK5 and HK6 act as cytokinin receptors with overlapping functions to regulate diverse aspects of rice growth and development.
References
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Journal ArticleDOI

Clustal W and Clustal X version 2.0

TL;DR: The Clustal W and ClUSTal X multiple sequence alignment programs have been completely rewritten in C++ to facilitate the further development of the alignment algorithms in the future and has allowed proper porting of the programs to the latest versions of Linux, Macintosh and Windows operating systems.
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Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana

TL;DR: The modified method should facilitate high-throughput transformation of Arabidopsis for efforts such as T-DNA gene tagging, positional cloning, or attempts at targeted gene replacement.
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Arabidopsis mesophyll protoplasts: a versatile cell system for transient gene expression analysis.

TL;DR: The transient gene expression system using Arabidopsis mesophyll protoplasts has proven an important and versatile tool for conducting cell-based experiments using molecular, cellular, biochemical, genetic, genomic and proteomic approaches to analyze the functions of diverse signaling pathways and cellular machineries.
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The Stem Cell Population of Arabidopsis Shoot Meristems Is Maintained by a Regulatory Loop between the CLAVATA and WUSCHEL Genes

TL;DR: This paper showed that the shoot meristem has properties of a self-regulatory system in which WUS/CLV interactions establish a feedback loop between the stem cells and the underlying organizing center.
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