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果实成熟突变体为成熟控制提供了见解。

Fruit ripening mutants yield insights into ripening control.

作者信息

Giovannoni James J

机构信息

US Department of Agriculture - Agricultural Research Service and Boyce Thompson Institute for Plant Research, Tower Road, Cornell University Campus, Ithaca, New York 14853, USA.

出版信息

Curr Opin Plant Biol. 2007 Jun;10(3):283-9. doi: 10.1016/j.pbi.2007.04.008. Epub 2007 Apr 17.

Abstract

Fruit ripening is a developmental process that is exclusive to plants whereby mature seed-bearing organs undergo physiological and metabolic changes that promote seed dispersal. Molecular investigations into ripening control mechanisms have been aided by the recent cloning of tomato ripening genes that were previously known only through mutation. Advances in the genomics of tomato have provided genetic and molecular tools that have facilitated the positional and candidate-gene-based cloning of several key ripening genes. These discoveries have created new inroads into understanding of the primary ripening control mechanisms, including transcription factors such as those encoded by the RIPENING-INHIBITOR (RIN) MADS-box and COLOURLESS NON-RIPENING (CNR) SPB-box genes, which are necessary for the progression of virtually all ripening processes. They have also facilitated the elucidation of downstream signal transduction components that impact the hormonal and environmental stimuli that coordinate and modulate ripening phenotypes.

摘要

果实成熟是植物特有的一个发育过程,在此过程中,带有成熟种子的器官会经历生理和代谢变化,以促进种子传播。对成熟控制机制的分子研究因最近克隆出番茄成熟基因而得到助力,这些基因此前仅通过突变才为人所知。番茄基因组学的进展提供了遗传和分子工具,推动了基于定位和候选基因的几个关键成熟基因的克隆。这些发现为理解主要的成熟控制机制开辟了新途径,包括转录因子,如由成熟抑制因子(RIN)MADS盒和无色非成熟(CNR)SPB盒基因编码的转录因子,这些转录因子对于几乎所有成熟过程的进展都是必需的。它们还促进了对下游信号转导成分的阐明,这些成分影响协调和调节成熟表型的激素和环境刺激。

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