J
Jerry M. Baskin
Researcher at University of Kentucky
Publications - 514
Citations - 22259
Jerry M. Baskin is an academic researcher from University of Kentucky. The author has contributed to research in topics: Germination & Dormancy. The author has an hindex of 58, co-authored 495 publications receiving 20186 citations. Previous affiliations of Jerry M. Baskin include Xinjiang Agricultural University & Austin Peay State University.
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Ecology of the Endangered Species Solidago shortii. II. Ecological Life Cycle
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Hydrated mucilage reduces post-dispersal seed removal of a sand desert shrub by ants in a semiarid ecosystem.
Xuejun Yang,Carol C. Baskin,Jerry M. Baskin,Ruiru Gao,Fan Yang,Lingling Wei,Leilei Li,Hongju He,Zhenying Huang +8 more
TL;DR: The importance of mucilage in reducing seed removal by ants and thus in anchoring seeds of desert plants in the vicinity of mother plants is demonstrated.
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Ecological life cycle of Chaerophyllum procumbens variety shortii (Apiaceae), a winter annual of the North American Eastern Deciduous Forest
TL;DR: Although mass of reproductive structures was strongly correlated with plant vegetative mass, differences in slopes of the regressions between years indicated that between cohort differences in percent reproductive allocation were not completely accounted for by overall plant size.
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Seed germination ecology of the aquatic winter annual Hottonia inflata
TL;DR: Although seeds of Hottonia inflata have the potential to germinate in the field from April–October, the species functions as a winter annual and its life cycle is regulated by favourable and unfavourable conditions for germination in its habitat in autumn and spring–summer, respectively.
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Global patterns of potential future plant diversity hidden in soil seed banks.
Xuejun Yang,Carol C. Baskin,Jerry M. Baskin,Robin J. Pakeman,Zhenying Huang,Ruiru Gao,Johannes H. C. Cornelissen +6 more
TL;DR: In this article, a global dataset of soil seed banks in natural plant communities and report a spatially explicit analysis of environmental controls of seed bank density and diversity was compiled and analyzed to quantify their environmental determinants and global patterns.