Floral freezing tolerance is tied to flowering time in North American woody plant species

Author:

Savage Jessica A1,Fakhreddine Qadry1,Vandenheuvel Britton1

Affiliation:

1. Biology Department, University of Minnesota , Duluth, MN 55812 , USA

Abstract

Abstract Background and Aims As winter and spring temperatures continue to increase, the timing of flowering and leaf-out is advancing in many seasonally cold regions. This advancement could put plants that flower early in the spring at risk of decreased reproduction in years when there are late freeze events. Unfortunately, relatively little is known about floral freezing tolerance in forest communities. In this study, we examined the impact of freezing temperatures on the flowers of woody plants in a region where there is rapid winter warming in North America. Methods We subjected the flowers of 25 woody species to a hard (−5 °C) and a light freeze (0 °C). We assessed tissue damage using electrolyte leakage. In a subset of species, we also examined the impact of a hard freeze on pollen tube growth. To determine if the vulnerability of flowers to freezing damage relates to flowering time and to examine the responsiveness of flowering time to spring temperature, we recorded the date of first flower for our study species for 3 years. Key Results and Conclusions Across species, we found that floral freezing tolerance was strongly tied to flowering time, with the highest freezing tolerance occurring in plants that bloomed earlier in the year. We hypothesize that these early blooming species are unlikely to be impacted by a false spring. Instead, the most vulnerable species to a false spring should be those that bloom later in the season. The flowering time in these species is also more sensitive to temperature, putting them at a great risk of experiencing a false spring. Ultimately, floral damage in one year will not have a large impact on species fitness, but if false springs become more frequent, there could be long-term impacts on reproduction of vulnerable species.

Funder

National Science Foundation

Vice President for Research, University of Minnesota

Publisher

Oxford University Press (OUP)

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