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1. Environmental effects of ozone depletion and its interactions with climate change: Progress report, 2016

2. Linkages between stratospheric ozone, UV radiation and climate change and their implications for terrestrial ecosystems.

3. Environmental effects of ozone depletion, UV radiation and interactions with climate change: UNEP Environmental Effects Assessment Panel, update 2017.

4. UV Screening in Native and Non-native Plant Species in the Tropical Alpine: Implications for Climate Change-Driven Migration of Species to Higher Elevations.

5. Diurnal adjustment in ultraviolet sunscreen protection is widespread among higher plants.

6. Rapid modulation of ultraviolet shielding in plants is influenced by solar ultraviolet radiation and linked to alterations in flavonoids.

7. Molecular and physiological effects of environmental UV radiation on fungal conidia.

8. Rediscovering leaf optical properties: New insights into plant acclimation to solar UV radiation.

9. Growth under visible light increases conidia and mucilage production and tolerance to UV-B radiation in the plant pathogenic fungus Colletotrichum acutatum.

10. Solar ultraviolet radiation and ozone depletion-driven climate change: effects on terrestrial ecosystems.

11. Adjustments in epidermal UV-transmittance of leaves in sun-shade transitions.

12. Effects of solar ultraviolet radiation on terrestrial ecosystems. Patterns, mechanisms, and interactions with climate change.

13. Serious complications in experiments in which UV doses are effected by using different lamp heights.

14. Diurnal changes in epidermal UV transmittance of plants in naturally high UV environments.

15. Terrestrial ecosystems, increased solar ultraviolet radiation, and interactions with other climate change factors.

16. Environmental effects of ozone depletion: 2006 assessment: interactions of ozone depletion and climate change. Executive summary.

17. Conidial pigmentation is important to tolerance against solar-simulated radiation in the entomopathogenic fungus Metarhizium anisopliae.

18. Variations in UV-B tolerance and germination speed of Metarhizium anisopliae conidia produced on insects and artificial substrates.

19. Plant responses to current solar ultraviolet-B radiation and to supplemented solar ultraviolet-B radiation simulating ozone depletion: an experimental comparison.

20. Field testing of biological spectral weighting functions for induction of UV-absorbing compounds in higher plants.

21. Six years of solar UV-B manipulations affect growth of Sphagnum and vascular plants in a Tierra del Fuego peatland.

22. How much variance is explained by ecologists? Additional perspectives.

23. Terrestrial ecosystems, increased solar ultraviolet radiation and interactions with other climatic change factors.

24. Damage and recovery from UV-B exposure in conidia of the entomopathogens Verticillium lecanii and Aphanocladium album.

25. Both solar UVA and UVB radiation impair conidial culturability and delay germination in the entomopathogenic fungus Metarhizium anisopliae.

26. Variability in response to UV-B among species and strains of Metarhizium isolated from sites at latitudes from 61 degrees N to 54 degrees S.

27. A meta-analysis of plant field studies simulating stratospheric ozone depletion.

28. Effects of UVB irradiance on conidia and germinants of the entomopathogenic Hyphomycete Metarhizium anisopliae: a study of reciprocity and recovery.

29. Plant competition for light analyzed with a multispecies canopy model : III. Influence of canopy structure in mixtures and monocultures of wheat and wild oat.

30. Plant competition for light analyzed with a multispecies canopy model : II. Influence of photosynthetic characteristics on mixtures of wheat and wild oat.

31. Plant competition for light analyzed with a multispecies canopy model : I. Model development and influence of enhanced UV-B conditions on photosynthesis in mixed wheat and wild oat canopies.

32. Germination dimorphism and developmental flexibility in the ruderal weed Heterotheca grandiflora.

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