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拟南芥KNOXI蛋白激活细胞分裂素的生物合成。

Arabidopsis KNOXI proteins activate cytokinin biosynthesis.

作者信息

Yanai Osnat, Shani Eilon, Dolezal Karel, Tarkowski Petr, Sablowski Robert, Sandberg Goran, Samach Alon, Ori Naomi

机构信息

The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, Faculty of Agricultural, Food, and Environmental Quality Sciences, The Hebrew University of Jerusalem, P.O. Box 12, Rehovot 76100, Israel.

出版信息

Curr Biol. 2005 Sep 6;15(17):1566-71. doi: 10.1016/j.cub.2005.07.060.

Abstract

Plant architecture is shaped through the continuous formation of organs by meristems. Class I KNOTTED1-like homeobox (KNOXI) genes are expressed in the shoot apical meristem (SAM) and are required for SAM maintenance. KNOXI proteins and cytokinin, a plant hormone intimately associated with the regulation of cell division, share overlapping roles, such as meristem maintenance and repression of senescence, but their mechanistic and hierarchical relationship have yet to be defined. Here, we show that activation of three different KNOXI proteins using an inducible system resulted in a rapid increase in mRNA levels of the cytokinin biosynthesis gene isopentenyl transferase 7 (AtIPT7) and in the activation of ARR5, a cytokinin response factor. We further demonstrate a rapid and dramatic increase in cytokinin levels following activation of the KNOXI protein SHOOT MERISTEMLESS (STM). Application of exogenous cytokinin or expression of a cytokinin biosynthesis gene through the STM promoter partially rescued the stm mutant. We conclude that activation of cytokinin biosynthesis mediates KNOXI function in meristem maintenance. KNOXI proteins emerge as central regulators of hormone levels in plant meristems.

摘要

植物的形态结构是由分生组织持续形成器官塑造而成的。I类同源异型盒基因(KNOXI)在茎尖分生组织(SAM)中表达,是SAM维持所必需的。KNOXI蛋白和细胞分裂素(一种与细胞分裂调控密切相关的植物激素)具有重叠的作用,如分生组织维持和衰老抑制,但它们的机制和层级关系尚未明确。在此,我们表明使用诱导系统激活三种不同的KNOXI蛋白会导致细胞分裂素生物合成基因异戊烯基转移酶7(AtIPT7)的mRNA水平迅速增加,并激活细胞分裂素响应因子ARR5。我们进一步证明,激活KNOXI蛋白无茎尖分生组织(STM)后,细胞分裂素水平会迅速显著增加。通过STM启动子施加外源细胞分裂素或表达细胞分裂素生物合成基因可部分挽救stm突变体。我们得出结论,细胞分裂素生物合成的激活介导了KNOXI在分生组织维持中的功能。KNOXI蛋白成为植物分生组织中激素水平的核心调节因子。

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