Fluch Silvia, Olmo Christian Carlo, Tauber Stefanie, Stierschneider Michael, Kopecky Dieter, Reichenauer Thomas G, Matusíková Ildikó
Austrian Research Centers GmbH, ARC, Division of Biogenetics/Natural Resources, PICME, 2444, Seibersdorf, Austria.
Planta. 2008 Oct;228(5):757-64. doi: 10.1007/s00425-008-0777-2. Epub 2008 Aug 22.
Responses of plant tissue to environmental challenges can vary among different plant parts and among plants of different ages. Investment into defense has been proposed to be influenced by fitness value and/or allocation of available resources. Here we show at first time at transcriptome level that plant defense is non-linear. On very young, expanding, adult and old leaves of Populus nigra plants exposed to air perturbation, we studied the ontogenic trajectory of gene expression changes to such a low-dose factor similar to wind. Although plant responses to mechanical sensation (wind, touch) are described and summarized as thigmomorphogenesis, the knowledge on the molecular background of plant responses to wind is largely incomplete. Our data describe which genes are activated during a ubiquitous and continuous environmental factor such as wind, and based on existing knowledge complement the picture on ongoing processes.
植物组织对环境挑战的反应在不同植物部位以及不同年龄的植物之间可能会有所不同。有人提出,对防御的投入会受到适合度价值和/或可用资源分配的影响。在此,我们首次在转录组水平上表明植物防御是非线性的。在暴露于空气扰动的黑杨植物的非常幼嫩、正在生长、成年和老龄叶片上,我们研究了基因表达变化对类似于风的这种低剂量因子的个体发育轨迹。尽管植物对机械刺激(风、触摸)的反应已被描述和总结为形态建成,但关于植物对风反应的分子背景的知识在很大程度上并不完整。我们的数据描述了在诸如风这样普遍且持续存在的环境因子作用下哪些基因被激活,并基于现有知识补充了正在进行的过程的情况。