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拟南芥中基因组AtCYCD2;1的表达在较小细胞尺寸时诱导细胞分裂:对植物生长控制的启示。

Expression of genomic AtCYCD2;1 in Arabidopsis induces cell division at smaller cell sizes: implications for the control of plant growth.

作者信息

Qi Ruhu, John Peter Crook Lloyd

机构信息

Plant Cell Biology Group, Research School of Biological Sciences, Australian National University, Canberra, Australian Capital Territories, Australia.

出版信息

Plant Physiol. 2007 Jul;144(3):1587-97. doi: 10.1104/pp.107.096834. Epub 2007 May 18.

Abstract

The Arabidopsis (Arabidopsis thaliana) CYCD2;1 gene introduced in genomic form increased cell formation in the Arabidopsis root apex and leaf, while generating full-length mRNA, raised CDK/CYCLIN enzyme activity, reduced G1-phase duration, and reduced size of cells at S phase and division. Other cell cycle genes, CDKA;1, CYCLIN B;1, and the cDNA form of CYCD2;1 that produced an aberrantly spliced mRNA, produced smaller or zero increases in CDK/CYCLIN activity and did not increase the number of cells formed. Plants with a homozygous single insert of genomic CYCD2;1 grew with normal morphology and without accelerated growth of root or shoot, not providing evidence that cell formation or CYCLIN D2 controls growth of postembryonic vegetative tissues. At the root apex, cells progressed normally from meristem to elongation, but their smaller size enclosed less growth and a 40% reduction in final size of epidermal and cortical cells was seen. Smaller elongated cell size inhibited endoreduplication, indicating a cell size requirement. Leaf cells were also smaller and more numerous during proliferation and epidermal pavement and palisade cells attained 59% and 69% of controls, whereas laminas reached normal size. Autonomous control of expansion was therefore not evident in abundant cell types that formed tissues of root or leaf. Cell size was reduced by a greater number formed in a tissue prior to cell and tissue expansion. Initiation and termination of expansion did not correlate with cell dimension or number and may be determined by tissue-wide signals acting across cellular boundaries.

摘要

以基因组形式导入的拟南芥(Arabidopsis thaliana)CYCD2;1基因增加了拟南芥根尖和叶片中的细胞形成,同时产生全长mRNA,提高了CDK/CYCLIN酶活性,缩短了G1期持续时间,并减小了S期和分裂期细胞的大小。其他细胞周期基因,CDKA;1、CYCLIN B;1以及产生异常剪接mRNA的CYCD2;1的cDNA形式,在CDK/CYCLIN活性上增加较小或没有增加,并且没有增加形成的细胞数量。具有基因组CYCD2;1纯合单插入的植株形态正常生长,根或茎没有加速生长,没有提供细胞形成或细胞周期蛋白D2控制胚后营养组织生长的证据。在根尖,细胞从分生组织正常进展到伸长区,但它们较小的尺寸包含的生长较少,并且表皮和皮层细胞的最终大小减少了40%。较小的伸长细胞大小抑制了核内复制,表明对细胞大小有要求。在增殖期间,叶细胞也更小且更多,表皮铺板细胞和栅栏细胞分别达到对照的59%和69%,而叶片达到正常大小。因此,在形成根或叶组织的丰富细胞类型中,自主扩展控制并不明显。在细胞和组织扩展之前,组织中形成的细胞数量增加导致细胞大小减小。扩展的起始和终止与细胞尺寸或数量无关,可能由跨越细胞边界的全组织信号决定。

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