Interactive effects of salinity and inundation on native Spartina foliosa, invasive S. densiflora and their hybrid from San Francisco Estuary, California

被引:19
|
作者
Gallego-Tevar, Blanca [1 ]
Grewell, Brenda J. [2 ]
Futrell, Caryn J. [3 ]
Drenovsky, Rebecca E. [4 ]
Castillo, Jesus M. [1 ]
机构
[1] Univ Seville, Dept Biol Vegetal & Ecol, Ap 1095, Seville 41080, Spain
[2] ARS, USDA, Invas Species & Pollinator Hlth Res Unit, Washington, DC USA
[3] Univ Calif Davis, Dept Plant Sci MS 4, Davis, CA 95616 USA
[4] Univ Hts, John Carroll Univ, Dept Biol, Cleveland, OH 44118 USA
关键词
Abiotic stress; climate change; estuarine ecosystems; evolutionary biology; functional traits; halophytes; hybridization; invasiveness; plant invasion; salt marsh; sea level rise; PACIFIC COAST; SALT-MARSH; PHYSIOLOGICAL-RESPONSES; PHENOTYPIC PLASTICITY; PLANT-RESPONSES; CLIMATE-CHANGE; CORDGRASS; WATER; STRESS; POPULATIONS;
D O I
10.1093/aob/mcz170
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background and Aims Sea level rise (SLR) associated with climate change is intensifying permanent submersion and salinity in salt marshes. In this scenario, hybridization between native and invasive species may result in hybrids having greater tolerance of abiotic stress factors than their parents. Thus, understanding the responses of native and invasive halophytes and their hybrids to interacting physiological stresses imposed by SLR is key to native species conservation. We analysed how salinity, inundation depth and their interaction impact the functional traits of native and invasive cordgrass species and their hybrid (genus Spartina; Poaceae). Methods In a mesocosm experiment, we evaluated interactive stress effects of three inundation depths (4.5, 35.5 and 55 cm) and four aqueous salinities (0.5, 10, 20 and 40 ppt) on 27 functional traits of native Spartina foliosa, invasive S. densiflora and their hybrid S. densiflora x S. foliosa from San Francisco Estuary. Key Results The combined effect of salinity and inundation led to synergistic effects on leaf biochemical stress indicators. Spartina foliosa behaved as a stress-tolerant species, with high leaf sodium exudation rate and glycine betaine concentrations that also increased with stress. Spartina foliosa was less sensitive to salinity than S. densiflora and the hybrid but was highly growth-limited in response to increased inundation and salinity. Spartina densiflora was fast-growing in low-stress conditions and tolerated moderate interactive stresses. The hybrid produced more biomass, rhizome reserves and tillers than its parents, even under the most stressful conditions. Transgressivity improved the hybrid's capacity to deal with flooding stress more so than its response to increasing salinity. Conclusions Based on our observations, we predict that established populations of both native and invasive cordgrasses will experience reduced vegetative and sexual fitness in response to SLR. In particular, the combined effects of high salinity and deep inundation may decrease floret production in S. densiflora, a key trait for the spread of its invasive populations. In contrast, the hybrid likely will be able to sustain its invasiveness under SLR based on its ability to maintain growth and biomass production under stressful conditions.
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收藏
页码:377 / 389
页数:13
相关论文
共 17 条
  • [1] Responses to salinity of Spartina hybrids formed in San Francisco Bay, California (S. alterniflora × foliosa and S.densiflora × foliosa)
    Alex K. Lee
    Debra R. Ayres
    Mary R. Pakenham-Walsh
    Donald R. Strong
    [J]. Biological Invasions, 2016, 18 : 2207 - 2219
  • [2] Responses to salinity of Spartina hybrids formed in San Francisco Bay, California (S-alterniflora x foliosa and S. densiflora x foliosa )
    Lee, Alex K.
    Ayres, Debra R.
    Pakenham-Walsh, Mary R.
    Strong, Donald R.
    [J]. BIOLOGICAL INVASIONS, 2016, 18 (08) : 2207 - 2219
  • [3] Hybridization between invasive Spartina densiflora (Poaceae) and native S-foliosa in San Francisco Bay, California, USA
    Ayres, Debra R.
    Grotkopp, Eva
    Zaremba, Katherine
    Sloop, Christina M.
    Blum, Michael J.
    Bailey, John P.
    Anttila, Carina K.
    Strong, Donald R.
    [J]. AMERICAN JOURNAL OF BOTANY, 2008, 95 (06) : 713 - 719
  • [4] From physiology to salt marsh management challenges with sea level rise: the case of native Spartina foliosa, invasive S. densiflora and their hybrid
    Gallego-Tevar, Blanca
    Peinado-Torrubia, Procopio
    Alvarez, Rosario
    Grewell, Brenda J.
    Castillo, Jesus M.
    [J]. CONSERVATION PHYSIOLOGY, 2020, 8
  • [5] From physiology to salt marsh management challenges with sea level rise: the case of native Spartina foliosa, invasive S. densiflora and their hybrid
    Gallego-Tevar, Blanca
    Peinado-Torrubia, Procopio
    Alvarez, Rosario
    Grewell, Brenda J.
    Castillo, Jesus M.
    [J]. CONSERVATION PHYSIOLOGY, 2020, 8 (01):
  • [6] Hybridization between introduced smooth cordgrass (Spartina alterniflora; Poaceae) and native California cordgrass (S-foliosa) in San Francisco Bay, California, USA
    Daehler, CC
    Strong, DR
    [J]. AMERICAN JOURNAL OF BOTANY, 1997, 84 (05) : 607 - 611
  • [7] Mycorrhizal association with native and invasive cordgrass Spartina spp. in San Francisco Bay, California
    Eberl, Renate
    [J]. AQUATIC BIOLOGY, 2011, 14 (01): : 1 - 7
  • [8] Salinity and inundation effects on productivity of brackish tidal marsh plants in the San Francisco Bay-Delta Estuary
    Christopher N. Janousek
    Bruce D. Dugger
    Brandon M. Drucker
    Karen M. Thorne
    [J]. Hydrobiologia, 2020, 847 : 4311 - 4323
  • [9] Salinity and inundation effects on productivity of brackish tidal marsh plants in the San Francisco Bay-Delta Estuary
    Janousek, Christopher N.
    Dugger, Bruce D.
    Drucker, Brandon M.
    Thorne, Karen M.
    [J]. HYDROBIOLOGIA, 2020, 847 (20) : 4311 - 4323
  • [10] Salinity Tolerance and Competition Drive Distributions of Native and Invasive Submerged Aquatic Vegetation in the Upper San Francisco Estuary
    Borgnis, Evyan
    Boyer, Katharyn E.
    [J]. ESTUARIES AND COASTS, 2016, 39 (03) : 707 - 717