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拟南芥叶的时空生长模式及糖对叶片昼夜生长周期调控的证据。

Spatio-temporal leaf growth patterns of Arabidopsis thaliana and evidence for sugar control of the diel leaf growth cycle.

作者信息

Wiese A, Christ M M, Virnich O, Schurr U, Walter A

机构信息

Institute for Chemistry and Dynamics of the Geosphere III (ICG III) Phytosphere, Research Centre Juelich, 52425 Juelich, Germany.

出版信息

New Phytol. 2007;174(4):752-761. doi: 10.1111/j.1469-8137.2007.02053.x.

Abstract

Leaf growth dynamics are driven by diel rhythms. The analysis of spatio-temporal leaf growth patterns in Arabidopsis thaliana wild type and mutants of interest is a promising approach to elucidate molecular mechanisms controlling growth. The diel availability of carbohydrates is thought to affect diel growth. A digital image sequence processing (DISP)-based noninvasive technique for visualizing and quantifying highly resolved spatio-temporal leaf growth was adapted for the model plant A. thaliana. Diel growth patterns were analysed for the wild type and for a mutant with altered diel carbohydrate metabolism. A. thaliana leaves showed highest relative growth rates (RGRs) at dawn and lowest RGRs at the beginning of the night. Along the lamina, a clear basipetal gradient of growth rate distribution was found, similar to that in many other dicotyledonous species. The starch-free 1 (stf1) mutant revealed changed temporal growth patterns with reduced nocturnal, and increased afternoon, growth activity. The established DISP technique is presented as a valuable tool to detect altered temporal growth patterns in A. thaliana mutants. Endogenous changes in the diel carbohydrate availability of the starch-free mutant clearly affected its diel growth rhythms.

摘要

叶片生长动态受昼夜节律驱动。分析拟南芥野生型和相关突变体的时空叶片生长模式是阐明控制生长的分子机制的一种有前景的方法。碳水化合物的昼夜可利用性被认为会影响昼夜生长。一种基于数字图像序列处理(DISP)的用于可视化和量化高分辨率时空叶片生长的非侵入性技术被应用于模式植物拟南芥。分析了野生型和昼夜碳水化合物代谢改变的突变体的昼夜生长模式。拟南芥叶片在黎明时相对生长速率(RGR)最高,在夜间开始时RGR最低。沿叶片,发现了明显的从基部向顶部的生长速率分布梯度,这与许多其他双子叶植物物种相似。无淀粉1(stf1)突变体显示出改变的时间生长模式,夜间生长活动减少,下午生长活动增加。已建立的DISP技术是检测拟南芥突变体中改变的时间生长模式的有价值工具。无淀粉突变体昼夜碳水化合物可利用性的内源性变化明显影响其昼夜生长节律。

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