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Using chlorophyll fluorescence to determine stress in Eucalyptus grandis seedlings

机译:利用叶绿素荧光测定桉树幼苗的胁迫

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Since several environmental factors affect the functioning of the photosynthetic system, the status of the photosynthetic apparatus is a good indicator of the plant in terms of stress and stress adaptation. The measurement of chlorophyll fluorescence with a portable fluorimeter has been shown to be a useful non-destructive method for the investigation of the structure and function of the photosynthetic apparatus. A quantitative analysis of fluorescence emission, called the JIP-test, has also been introduced by which the behaviour of the photosynthetic system in response to environmental changes can be monitored. A pilot trial was conducted to determine the effect of light, water and nutrient stress on the fluorescence emission of Eucalyptus grandis seedlings. Flourescence measurements were made on potted plants with a Hansatech Plant Efficiency Analyser, every one to two days from stress initiation until trial termination. The results indicate that water and light stress in E. grandis seedlings can be detected using chlorophyll fluorescence data. The quantum efficiency of primary photochemistry (F_v/F_m) is a good indicator of water stress, while a more detailed analysis of the JIP-test parameters is required for detection of light stress. Theseresults indicate that nutrient stress may have to be severe before photosynthesis and growth are affected. As a practical tool to detect unhealthy plants this technique could be useful to the forestry industry particularly in the fields of establishmentand tree breeding where drought or temperature stressed seedlings could be detected before mortality occurs. More detailed studies are required to confirm this.
机译:由于几种环境因素影响光合作用系统的功能,因此从压力和压力适应性角度来看,光合作用设备的状态是植物的良好指标。用便携式荧光计测量叶绿素荧光已被证明是一种用于研究光合装置结构和功能的有用的非破坏性方法。还引入了称为JIP测试的荧光发射定量分析,通过该分析可以监测光合系统响应环境变化的行为。进行了一项中试试验,以确定光,水和养分胁迫对桉树幼苗荧光发射的影响。从胁迫开始到试验终止,每隔一到两天使用Hansatech植物效率分析仪对盆栽植物进行荧光测量。结果表明,利用叶绿素荧光数据可以检测出E. grandis幼苗的水分和光照胁迫。初级光化学的量子效率(F_v / F_m)是水分胁迫的良好指标,而对JIP测试参数的更详细分析则需要检测光胁迫。这些结果表明,在影响光合作用和生长之前,营养胁迫可能必须严重。作为检测不健康植物的实用工具,此技术可能对林业行业有用,特别是在可以在干旱发生之前检测出干旱或高温胁迫的幼苗的设施和树木育种领域。需要更详细的研究来确认这一点。

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