Paternal intergenerational plasticity in the plant species Paeonia ostii: Implications for parental fitness and offspring performance

Author:

Zhang Keliang1ORCID,Ji Yusong1,Yao Linjun1,Liu Huina1,Zhang Yin1,Baskin Jerry M.2,Baskin Carol C.23ORCID,Zhang Lei1,Xu Chaohan1,Tao Jun1,Prinzing Andreas4ORCID

Affiliation:

1. College of Horticulture and Landscape Architecture Yangzhou University Yangzhou China

2. Department of Biology University of Kentucky Lexington Kentucky USA

3. Department of Plant and Soil Sciences University of Kentucky Lexington Kentucky USA

4. Research Unit ‘Ecosystem, Biodiversity, Evolution’ Université de Rennes 1/Centre National de la Recherche Scientifique Rennes France

Abstract

Abstract While there is long‐standing interest in the role of inter‐ and transgenerational plasticity via the maternal line, it rarely has been studied via the paternal line. Thus, consequences of the paternal environment for parental fitness and for performance of offspring in the environments experienced by either fathers or mothers are not known. We studied the intergenerational plasticity (IGP) of the plant species Paeonia ostii (Paeoniaceae) and tested the hypothesis that exposure of fathers to environmental stress (i) reduces parental fitness and performance of offspring grown under non‐stressful conditions, but (ii) mitigates the negative effects of environmental stress on fitness of parents and performance of offspring. Crosses were made in a greenhouse within six families of P. ostii between parents grown under drought and in a mesic environment, and the offspring of each cross were grown under both dry and mesic conditions. Production and germination of seeds and morphological and physiological traits of offspring were measured as indicators of parental fitness and offspring performance, respectively. Paternal drought decreased seed number per fruit, except when maternal plants also were grown in drought conditions. Offspring drought decreased seedling performance. However, when fathers experienced drought this negative effect on the offspring was partly mitigated, in particular when mothers also had experienced drought. In contrast, offspring grown in mesic conditions had improved seedling performance, especially when either parent (or both) also were grown in mesic conditions. Such statistical differences remained when seed mass was included as a covariate. Overall, paternal pollen of P. ostii mediated IGP to drought almost as well as it did for maternal ovules. IGP was adaptive if environments remained constantly dry across generations but maladaptive if environments changed. Hence, under future climate changes, paternal IGP might be both a blessing and a curse, with the blessing occurring when the focal habitat becomes drier and pollen comes from already‐dry places, while the curse may dominate in predictably moist habitats surrounded by drier habitats. Read the free Plain Language Summary for this article on the Journal blog.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics

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