Long-term seed bank persistence in a stochastic desert environment

被引:1
|
作者
de Queiroz, Tara [1 ]
Meyer, Susan E. [1 ]
机构
[1] USDA Forest Serv, Shrub Sci Lab, Rocky Mt Res Stn, 369 North 100 East, Cedar City, UT 84721 USA
来源
ECOLOGY AND EVOLUTION | 2023年 / 13卷 / 03期
关键词
Arctomecon californica; climate change; cue-nonresponsive dormancy; germination; Las Vegas bearpoppy; Mojave Desert; rare plant; SHADSCALE ATRIPLEX-CONFERTIFOLIA; CLIMATE-CHANGE; GERMINATION; STRATEGIES; DORMANCY; ECOLOGY; PLANT;
D O I
10.1002/ece3.9924
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Seed banks, the collection of viable seeds in the soil, are particularly important determinants of population survival in highly variable environments. Predictions of increased stochasticity in the amount and timing of precipitation in desert environments raise the question of how seed banks of desert species will respond to climate change, and ultimately, whether these species will persist. Here, we present data from our long-term studies of germination requirements and seed bank dynamics in a rare desert gypsophile perennial, Arctomecon californica (Las Vegas bearpoppy). Arctomecon californica is a relatively short-lived plant that recruits from seed in sequences of unusually favorable years. We used germination experiments, an in situ seed bank study, and a 15-year field seed retrieval study to examine factors affecting seed bank persistence. In the germination study, a majority of seeds remained dormant, despite a wide variety of treatments, suggesting that a large proportion of the seed dispersed each year has cue-nonresponsive dormancy. Our in situ seed bank study showed that seed density varied widely between sites, among transects, and among samples within a transect. The patchiness of seeds in the soil highlights the importance of protecting large areas where A. californica populations are known to have existed in the past. The seed retrieval study provided strong evidence that this species has a long-lived seed bank in which only a small fraction of seeds (roughly 5%) become nondormant each year, allowing seed banks of this species to last up to 20 years without a seed production event. Whether this impressive life-history strategy can maintain the species in the face of climate change depends on the future frequency of the well-timed precipitation that allows for the establishment of new cohorts of adult plants.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] Seed bank persistence of artificial vegetation under stochastic shock in desert regions
    Fu, Tonglin
    Li, Xinrong
    Jia, Rongliang
    ECOLOGICAL INDICATORS, 2021, 133
  • [2] Long-term persistence of Velloziaceae species in the soil seed bank in campo rupestre vegetation, Brazil
    Garcia, Queila S.
    Saraiva, Izabella S.
    Soares da Mota, Leticia A.
    Bicalho, Elisa M.
    PLANT ECOLOGY & DIVERSITY, 2017, 10 (04) : 323 - 328
  • [3] Long-term relationships between seed bank communities and wildfire across four North American desert sites
    Hosna, Rachel K.
    Reed, Sasha C.
    Faist, Akasha M.
    ECOSPHERE, 2023, 14 (03):
  • [4] LONG-TERM AND SEASONAL DYNAMICS OF THE SEED BANK IN ARABLE SOIL
    HOLUB, M
    BIOLOGIA, 1994, 49 (01) : 131 - 137
  • [5] LONG-TERM PERSISTENCE
    Guiso, Luigi
    Sapienza, Paola
    Zingales, Luigi
    JOURNAL OF THE EUROPEAN ECONOMIC ASSOCIATION, 2016, 14 (06) : 1401 - 1436
  • [6] The long-term persistence of phytoplankton resting stages in aquatic 'seed banks'
    Ellegaard, Marianne
    Ribeiro, Sofia
    BIOLOGICAL REVIEWS, 2018, 93 (01) : 166 - 183
  • [7] Effect of long-term organic farming on weed seed-bank
    Boguzas, V.
    Marcinkeviciene, A.
    JOURNAL OF PLANT DISEASES AND PROTECTION, 2008, : 379 - 384
  • [8] Long-term effects of meadow management on seed bank diversity and composition
    Habenczyus, Alida A.
    Weiterova, Iva
    Foremnik, Kacper
    Jakob, Aljaz
    Khopkar, Siddharth
    Kumar, Agnishikhe
    Lazar, Anamaria
    Paganeli, Bruno
    Samraoui, Kenz Raouf
    Sidwell, Jeni
    Hrcek, Jan
    Leps, Jan
    Segrestin, Jules
    JOURNAL OF VEGETATION SCIENCE, 2024, 35 (03)
  • [9] Long-Term Persistence of Rayleigh Signature of Optical Fibers in Harsh Environment
    Schenato, Luca
    Cappelletti, Martina
    Orsuti, Daniele
    Galtarossa, Andrea
    Santagiustina, Marco
    Cola, Simonetta
    Palmieri, Luca
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 2024, 42 (18) : 6254 - 6261
  • [10] Long-term memory persistence
    Izquierdo, Ivan
    Cammarota, Martin
    Medina, Jorge H.
    FUTURE NEUROLOGY, 2010, 5 (06) : 911 - 917