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本文引用的文献

1
The MADS-Domain Factors AGAMOUS-LIKE15 and AGAMOUS-LIKE18, along with SHORT VEGETATIVE PHASE and AGAMOUS-LIKE24, Are Necessary to Block Floral Gene Expression during the Vegetative Phase.MADS结构域因子AGAMOUS-LIKE15和AGAMOUS-LIKE18,与SHORT VEGETATIVE PHASE和AGAMOUS-LIKE24一起,是营养生长阶段阻断花基因表达所必需的。
Plant Physiol. 2014 Aug;165(4):1591-1603. doi: 10.1104/pp.114.242990. Epub 2014 Jun 19.
2
Letting go is never easy: abscission and receptor-like protein kinases.放手从来都不容易:细胞脱落和受体样蛋白激酶。
J Integr Plant Biol. 2013 Dec;55(12):1251-63. doi: 10.1111/jipb.12116.
3
Stomatal development in Arabidopsis.拟南芥中的气孔发育
Arabidopsis Book. 2013 Jun 6;11:e0162. doi: 10.1199/tab.0162. Print 2013.
4
On fate and flexibility in stomatal development.论气孔发育中的命运与可塑性
Cold Spring Harb Symp Quant Biol. 2012;77:53-62. doi: 10.1101/sqb.2013.77.015883. Epub 2013 Feb 26.
5
Transcriptional profiling of the Arabidopsis abscission mutant hae hsl2 by RNA-Seq.利用 RNA-Seq 技术对拟南芥脱落突变体 hae hsl2 进行转录组分析。
BMC Genomics. 2013 Jan 17;14:37. doi: 10.1186/1471-2164-14-37.
6
Organ abscission: exit strategies require signals and moving traffic.器官脱落:需要信号和移动的交通来进行退出策略。
Curr Opin Plant Biol. 2012 Dec;15(6):670-6. doi: 10.1016/j.pbi.2012.09.012. Epub 2012 Oct 6.
7
Early gene expression events in the laminar abscission zone of abscission-promoted citrus leaves after a cycle of water stress/rehydration: involvement of CitbHLH1.水胁迫/复水循环后促进离层的柑橘叶片离层区早期基因表达事件:CitbHLH1 的参与。
J Exp Bot. 2012 Oct;63(17):6079-91. doi: 10.1093/jxb/ers270. Epub 2012 Oct 1.
8
Flower development.花的发育
Arabidopsis Book. 2010;8:e0127. doi: 10.1199/tab.0127. Epub 2010 Mar 23.
9
Arabidopsis class I KNOTTED-like homeobox proteins act downstream in the IDA-HAE/HSL2 floral abscission signaling pathway.拟南芥 I 类 KNOTTED 类同源框蛋白在 IDA-HAE/HSL2 花脱落信号通路中作为下游因子发挥作用。
Plant Cell. 2011 Jul;23(7):2553-67. doi: 10.1105/tpc.111.084608. Epub 2011 Jul 8.
10
The MADS box gene, FOREVER YOUNG FLOWER, acts as a repressor controlling floral organ senescence and abscission in Arabidopsis.MADS 框基因 FOREVER YOUNG FLOWER 作为一个阻遏物,控制拟南芥花器官衰老和脱落。
Plant J. 2011 Oct;68(1):168-85. doi: 10.1111/j.1365-313X.2011.04677.x. Epub 2011 Jul 21.

花器官脱落受正反馈回路调控。

Floral organ abscission is regulated by a positive feedback loop.

作者信息

Patharkar O Rahul, Walker John C

机构信息

Division of Biological Sciences and Interdisciplinary Plant Group, University of Missouri, Columbia, MO 65211.

Division of Biological Sciences and Interdisciplinary Plant Group, University of Missouri, Columbia, MO 65211

出版信息

Proc Natl Acad Sci U S A. 2015 Mar 3;112(9):2906-11. doi: 10.1073/pnas.1423595112. Epub 2015 Feb 17.

DOI:10.1073/pnas.1423595112
PMID:25730871
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4352813/
Abstract

Abscission is the process by which plants shed unwanted organs, either as part of a natural developmental program or in response to environmental stimuli. Studies in Arabidopsis thaliana have elucidated a number of the genetic components that regulate abscission of floral organs, including a pair of related receptor-like protein kinases, HAESA and HAESA-like 2 (HAE/HSL2) that regulate a MAP kinase cascade that is required for abscission. HAE is transcriptionally up-regulated in the floral abscission zone just before cell separation. Here, we identify AGAMOUS-like 15 (AGL15; a MADS-domain transcription factor) as a putative regulator of HAE expression. Overexpression of AGL15 results in decreased expression of HAE as well as a delayed abscission phenotype. Chromatin immunoprecipitation experiments indicate that AGL15 binds the HAE promoter in floral receptacles. AGL15 is then differentially phosphorylated through development in floral receptacles in a MITOGEN-ACTIVATED PROTEIN KINASE KINASE 4/5-dependent manner. MAP kinase phosphorylation of AGL15 is necessary for full HAE expression, thus completing a positive feedback loop controlling HAE expression. Together, the network components in this positive feedback loop constitute an emergent property that regulates the large dynamic range of gene expression (27-fold increase in HAE) observed in flowers when the abscission program is initiated. This study helps define the mechanisms and regulatory networks involved in a receptor-mediated signaling pathway that controls floral organ abscission.

摘要

脱落是植物去除不需要的器官的过程,这一过程或是自然发育程序的一部分,或是对环境刺激的响应。对拟南芥的研究已经阐明了一些调控花器官脱落的遗传成分,包括一对相关的类受体蛋白激酶HAESA和类HAESA 2(HAE/HSL2),它们调控脱落所需的丝裂原活化蛋白激酶级联反应。HAE在细胞分离前在花脱落区转录上调。在此,我们鉴定出AGAMOUS样15(AGL15;一种MADS结构域转录因子)作为HAE表达的假定调节因子。AGL15的过表达导致HAE表达降低以及脱落表型延迟。染色质免疫沉淀实验表明AGL15在花托中与HAE启动子结合。然后,AGL15在花托发育过程中以丝裂原活化蛋白激酶激酶4/5依赖的方式发生差异磷酸化。AGL15的丝裂原活化蛋白激酶磷酸化对于HAE的完全表达是必需的,从而完成了一个控制HAE表达的正反馈回路。总之,这个正反馈回路中的网络成分构成了一种新兴特性,它调控了在启动脱落程序时在花中观察到的基因表达的大动态范围(HAE增加27倍)。这项研究有助于定义参与控制花器官脱落的受体介导信号通路的机制和调控网络。