In situ chlorophyll fluorescence kinetics as a tool to quantify effects on photosynthesis in Euphorbia cyparissias by a parasitic infection of the rust fungus Uromyces pisi.

Alba Zhori, Marjol Meco, Helmut Brandl, Reinhard Bachofen

Journal: BMC research notes 2016;8():698

PMID: 26590806

Abstract

BACKGROUND

Photosynthesis is the key process for plant growth and development. The determination of chlorophyll fluorescence kinetics allows the quantification of effects on photosynthetic processes triggered by environmental stress factors such as, e.g., the infection by fungal phytopathogens. The technique is non-invasive, rapid and well suited for experimental field work.

RESULTS

Healthy and Uromyces-infected plants of Euphorbia cyparissias were monitored directly in situ in the field using rapid fluorescence kinetics. Non-infected healthy plants show a typical maximum value for the relative variable fluorescence Fv/Fm of around 0.8 with occasional variation between the leaves from the plant top towards the base, while infected plants exhibited a strong gradient to low values at the base. The photosynthetic performance index (PI) showed a higher heterogeneity within the leaves in both plant types.

CONCLUSIONS

The non-invasive and rapid measurement of chlorophyll fluorescence induction allows characterizing the photosynthetic capacity of healthy and infected plants and of parts of them directly in the field. The PI, is highly sensitive not only concerning infection, but also towards other local environmental influences.

Address: Department of Biology, University of Tirana, Tirana, Albania. [email protected].; Department of Biology, University of Tirana, Tirana, Albania. [email protected].; Institute of Evolutionary Biology and Environmental Sciences, University of Zürich, Zurich, Switzerland. [email protected].; Institute of Plant Biology, University of Zürich, Zollikerstr. 107, 8008, Zurich, Switzerland. [email protected].
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