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通过比较植物胚胎和小鼠胚胎中 MKRN 基因的表达模式,深入了解达尔文的“植物大脑假说”。

A molecular insight into Darwin's "plant brain hypothesis" through expression pattern study of the MKRN gene in plant embryo compared with mouse embryo.

机构信息

Laboratory of Molecular Cell Physiology, Faculty of Agriculture, Ehime University, Matsuyama, Japan.

出版信息

Plant Signal Behav. 2012 Mar;7(3):375-81. doi: 10.4161/psb.19094. Epub 2012 Mar 1.

DOI:10.4161/psb.19094
PMID:22499205
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3443919/
Abstract

MKRN gene family encodes zinc ring finger proteins characterized by a unique array of motifs (C3H, RING and a characteristic cys-his motif) in eukaryotes. To elucidate the function of the MKRN gene and to draw an analogy between plant root apical meristem and animal brain, we compared the gene expression pattern of MKRN in plant seeds with that of mouse embryo. The spatio-temporal expression of MKRN in seeds of pea and rice was performed using non radioactive mRNA in situ hybridization (NRISH) with DIG and BIOTIN labeled probes for pea and rice embryos respectively. Images of MKRN1 expression in e10.5 whole mount mouse embryo, hybridized with DIG labeled probes, were obtained from the Mouse Genome Database (MGD). MKRN transcripts were expressed in the vascular bundle, root apical meristem (RAM) and shoot apical meristem (SAM) in pea and rice embryos. The spatial annotation of the MKRN1 NRISH of whole mount mouse embryo shows prominent localization of MKRN1 in the brain, and its possible expression in spinal cord and the genital ridge. Localization of MKRN in the anterior and posterior ends of pea and rice embryo suggests to the probable role it may have in sculpting the pea and rice plants. The expression of MKRN in RAM may give a molecular insight into the hypothesis that plants have their brains seated in the root. The expression of MKRN is similar in functionally and anatomically analogous regions of plant and animal embryos, including the vascular bundle (spinal cord), the RAM (brain), and SAM (genital ridge) thus paving way for further inter-kingdom comparison studies.

摘要

MKRN 基因家族编码锌指蛋白,其特征在于真核生物中存在独特的基序(C3H、RING 和特征性半胱氨酸-组氨酸基序)。为了阐明 MKRN 基因的功能,并在植物根尖分生组织和动物大脑之间进行类比,我们比较了 MKRN 在植物种子中的基因表达模式与小鼠胚胎中的基因表达模式。使用非放射性 mRNA 原位杂交(NRISH),分别用 DIG 和 BIOTIN 标记的豌豆和水稻胚胎探针,在豌豆和水稻种子中进行了 MKRN 的时空表达研究。从 Mouse Genome Database (MGD) 获取了用 DIG 标记探针杂交的 e10.5 期全胚胎小鼠的 MKRN1 表达图像。MKRN 转录本在豌豆和水稻胚胎的维管束、根尖分生组织(RAM)和茎尖分生组织(SAM)中表达。全胚胎小鼠 MKRN1 NRISH 的空间注释显示 MKRN1 在大脑中具有明显的定位,其在脊髓和生殖嵴中可能有表达。MKRN 在豌豆和水稻胚胎前后端的定位表明,它可能在塑造豌豆和水稻植物方面发挥作用。在 RAM 中表达的 MKRN 可能为植物的大脑位于根部的假说提供分子上的见解。MKRN 在功能和解剖学上类似的植物和动物胚胎区域的表达相似,包括维管束(脊髓)、RAM(大脑)和 SAM(生殖嵴),从而为进一步的跨领域比较研究铺平了道路。

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本文引用的文献

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BMC Genomics. 2010 Dec 20;11:721. doi: 10.1186/1471-2164-11-721.
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The Mouse Genome Database (MGD): premier model organism resource for mammalian genomics and genetics.小鼠基因组数据库(MGD):哺乳动物基因组学和遗传学的首要模式生物资源。
Nucleic Acids Res. 2011 Jan;39(Database issue):D842-8. doi: 10.1093/nar/gkq1008. Epub 2010 Nov 3.
3
The 'root-brain' hypothesis of Charles and Francis Darwin: Revival after more than 125 years.查尔斯和弗朗西斯·达尔文的“根脑”假说:125 年之后的复兴。
Plant Signal Behav. 2009 Dec;4(12):1121-7. doi: 10.4161/psb.4.12.10574.
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Identification of protein domains required for makorin-2-mediated neurogenesis inhibition in Xenopus embryos.鉴定 Makorin-2 介导的神经发生抑制所需的蛋白质结构域在非洲爪蟾胚胎中的作用。
Biochem Biophys Res Commun. 2010 Mar 26;394(1):18-23. doi: 10.1016/j.bbrc.2010.02.041. Epub 2010 Feb 16.
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Recent surprising similarities between plant cells and neurons.最近,植物细胞和神经元之间出现了令人惊讶的相似之处。
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