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Comparison of Thermal and Hydrotime Requirements for Seed Germination of Seven Stipa Species From Cool and Warm Habitats

  • Rui Zhang
  • , Kai Luo
  • , Dali Chen
  • , Jerry Baskin
  • , Carol Baskin
  • , Yanrong Wang
  • , Xiaowen Hu

Producción científica: Articlerevisión exhaustiva

37 Citas (Scopus)

Resumen

Temperature and water potential are two important environmental factors influencing germination and subsequent seedling establishment. Seed germination requirements vary with species and with the environment in which the seeds are produced. Stipa species dominate large areas of the Eurasian zonal vegetation, but comparisons of germination requirements between Stipa species from different habitats is limited. We investigated the effects of temperature and water potential on seed germination of S. grandis, S. purpurea, and S. penicillata from habitats with low temperatures and relatively abundant rainfall (cool habitats) and S. glareosa, S. breviflora, S. gobiea, and S. bungeana from habitats with relatively high temperatures and low amount of rainfall (warm habitats). Seeds of species from cool habitats had a higher base (Tb), optimal (To), and maximum (Tc) temperature than those of species from warm habitats, except for the base temperature of S. purpurea. Response of six tested Stipa species to water potential differed among species but not between habitats. Median water potential for germination was lowest for S. bungeana, S. penicillata, and S. gobiea. There was a negative correlation between hydrotime constant (θH) and base water potential for 50% of the seeds of all species to germinate (ψb(50)). Germination time of seven Stipa species in response to temperature and water was well predicted by thermal time and hydrotime models. Results of the present study on germination of these seven species of Stipa may provide useful suggestions for grassland restoration in different habitats.

Idioma originalEnglish
Número de artículo560714
PublicaciónFrontiers in Plant Science
Volumen11
DOI
EstadoPublished - sept 30 2020

Nota bibliográfica

Publisher Copyright:
© Copyright © 2020 Zhang, Luo, Chen, Baskin, Baskin, Wang and Hu.

Financiación

This study was supported by the National Key R & D Program of China (2017YFC0504603), the Gansu Provincial Science and Technology Major Projects (19ZD2NA002), the National Natural Science Fund (31672473), and Gansu Provincial Science and Technology Program (18JR2TA023). The authors thank Gensheng Bao and Hongxiang Zhang for helping collect seeds and Qibo Tao for drawing the figures. This study was supported by the National Key R & D Program of China (2017YFC0504603), the Gansu Provincial Science and Technology Major Projects (19ZD2NA002), the National Natural Science Fund (31672473) , and Gansu Provincial Science and Technology Program (18JR2TA023). The authors thank Gensheng Bao and Hongxiang Zhang for helping collect seeds and Qibo Tao for drawing the figures.

FinanciadoresNúmero del financiador
Gansu Provincial Science and Technology Major Projects19ZD2NA002
Gansu Provincial Science and Technology Program
National Key Basic Research Program of China
National Natural Science Fund Projects
National Natural Science Foundation of China (NSFC)31672473
National Natural Science Foundation of China (NSFC)
National Key Basic Research and Development Program of China2017YFC0504603
National Key Basic Research and Development Program of China
Science and Technology Program of Gansu Province18JR2TA023
Science and Technology Program of Gansu Province

    ASJC Scopus subject areas

    • Plant Science

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