Plant Ecophysiology, Institute of Environmental Biology, Utrecht University, Utrecht, the Netherlands.
New Phytol. 2011 Apr;190(2):299-310. doi: 10.1111/j.1469-8137.2010.03552.x. Epub 2010 Nov 25.
• The exploitation of natural variation in Arabidopsis thaliana (Arabidopsis) provides a huge potential for the identification of the molecular mechanisms underlying this variation as a result of the availability of a vast array of genetic and genomic resources for this species. Eighty-six Arabidopsis accessions were screened for natural variation in flooding tolerance. This forms the first step towards the identification and characterization of the role of candidate genes contributing to flooding tolerance. • Arabidopsis accessions at the 10-leaf stage were subjected to complete submergence in the dark. Survival curves were plotted to estimate median lethal times as a measure of tolerance. Flooding-associated survival parameters, such as root and shoot oxygen content, initial carbohydrate content and petiole elongation under water, were also measured. • There was a significant variation in submergence tolerance among Arabidopsis accessions. However, the order of tolerance did not correlate with root and shoot oxygen content or initial amounts of shoot starch and total soluble sugars. A negative correlation was observed between submergence tolerance and underwater petiole elongation. • Arabidopsis accessions show considerable variation in the ability to tolerate complete submergence, making it a good species in which to identify and characterize genes and to study mechanisms that contribute to survival under water.
• 在拟南芥(Arabidopsis)中利用自然变异为鉴定这种变异的分子机制提供了巨大的潜力,因为该物种有大量的遗传和基因组资源。对 86 个拟南芥品系进行了耐淹水能力的自然变异筛选。这是鉴定和描述有助于耐淹水能力的候选基因作用的第一步。• 在 10 叶期,将拟南芥品系置于黑暗中完全淹没。绘制生存曲线以估计作为耐受力衡量标准的中位致死时间。还测量了与淹水相关的生存参数,如根和茎的含氧量、初始碳水化合物含量和叶柄在水下的伸长。• 拟南芥品系之间的耐淹水能力存在显著差异。然而,耐受力的顺序与根和茎的含氧量或茎部淀粉和总可溶性糖的初始含量无关。耐淹水能力与水下叶柄伸长之间存在负相关。• 拟南芥品系在耐受完全淹没的能力方面表现出相当大的差异,因此它是一个很好的物种,可以用来鉴定和描述有助于水下生存的基因,并研究相关机制。