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有限通气导致拟南芥在体外生长过程中形态、生理和分子表型的应激和变化。

Limited ventilation causes stress and changes in Arabidopsis morphological, physiological and molecular phenotype during in vitro growth.

机构信息

Department of Plant Genetics, Breeding, and Biotechnology, Faculty of Horticulture and Landscape Architecture, Warsaw University of Life Sciences - SGGW, Nowoursynowska Str. 159, Warszawa, 02-776, Poland.

Department of Plant Genetics, Breeding, and Biotechnology, Faculty of Horticulture and Landscape Architecture, Warsaw University of Life Sciences - SGGW, Nowoursynowska Str. 159, Warszawa, 02-776, Poland.

出版信息

Plant Physiol Biochem. 2019 Feb;135:554-562. doi: 10.1016/j.plaphy.2018.11.003. Epub 2018 Nov 10.

Abstract

A huge number of experiments in plant biology are conducted in sterile, sealed containers, providing environmental stability and full control of factors influencing the plant system. With respect to roots the in vitro growth has another benefit - the ease of conducting visual observations when grown in transparent media. Moreover, straightforward measurements of in vitro grown root systems make them a sensitive and convenient sensor of multiple stresses which may occur during experiments. In order to optimize root nematode infection tests for Arabidopsis mutants with relatively mild phenotypes, two Petri dish sealing techniques were tested (permeable medical adhesive tape and a popular non-permeable plastic film). Using standard experimental settings applied for infection tests, the root architecture, nematode infections, ion leakage, efficiency of photosynthesis, ethylene (ET) production, and CO accumulation were monitored in Arabidopsis thaliana Ws-0 wild-type and lsd1 (lesion stimulating disease 1) plants, which is a conditional dependent programmed cell death mutant. All tested parameters gave statistically significant differences between the analyzed sealing tapes, indicating the importance of air exchange. This factor is quite obvious but often ignored in experiments performed in Petri dishes. The results clearly indicate that stress is greater in air-tight sealed plates. These observations were supported by the great expression variation of several marker genes associated with reactive oxygen species (ROS), ET, salicylic (SA), and jasmonic acid (JA) biosynthesis and signaling in two-week-old seedlings. These results are discussed in light of the observed changes in the ET and CO concentration. Our results clearly indicate the importance of culture parameters for monitoring of abiotic and biotic stress responses in laboratory conditions, including accurate mutant phenotyping.

摘要

大量的植物生物学实验是在无菌、密封的容器中进行的,为植物系统提供了环境稳定性和对影响因素的完全控制。就根部而言,体外生长还有另一个好处——在透明培养基中生长时便于进行可视化观察。此外,体外生长的根系易于进行直接测量,使其成为一种敏感且方便的传感器,可以检测实验过程中可能发生的多种胁迫。为了优化拟南芥突变体的根结线虫感染测试,具有相对温和表型的拟南芥突变体,我们测试了两种 Petri 皿密封技术(透气医用胶带和一种流行的不透气塑料薄膜)。使用适用于感染测试的标准实验设置,监测了野生型拟南芥 Ws-0 和 lsd1(病变刺激病 1)植物的根结构、线虫感染、离子渗漏、光合作用效率、乙烯(ET)产生和 CO 积累,lsd1 是一种条件依赖性程序性细胞死亡突变体。所有测试参数在分析的密封带之间均显示出统计学上的显著差异,表明空气交换的重要性。这一因素在 Petri 皿中进行的实验中很明显,但经常被忽略。结果清楚地表明,在密封严密的平板中,胁迫更大。这些观察结果得到了与活性氧(ROS)、ET、水杨酸(SA)和茉莉酸(JA)生物合成和信号相关的几个标记基因的表达变化的支持,这些基因在两周龄幼苗中差异显著。这些结果结合 ET 和 CO 浓度的观察变化进行了讨论。我们的结果清楚地表明,培养参数对于监测实验室条件下的非生物和生物胁迫反应,包括准确的突变体表型,非常重要。

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