Literature DB >> 28547109

The effects of elevated CO2 on seed production and seedling recruitment in a sheep-grazed pasture.

G Edwards1,2, H Clark1, P Newton1.   

Abstract

Seed production and seedling recruitment were measured over 2 years under ambient (360 ppm) and elevated (475 ppm) atmospheric CO2 in a free air carbon dioxide enrichment (FACE) experiment, carried out in a sheep-grazed pasture on dry, sandy soil in New Zealand. In both years elevated CO2 led to more dispersed seeds of the grasses Anthoxanthum odoratum, Lolium perenne and Poa pratensis, the legumes Trifolium repens and T. subterraneum and the herbs Hypochaeris radicata and Leontodon saxatilis. The increased seed dispersal in A. odoratum, H. radicata, Leontodon saxatilis and T. repens reflected both more inflorescences per unit area and more seeds per inflorescence under elevated CO2. The increased seed dispersal in Lolium perenne, P. pratensis and T. subterraneum was due solely to more inflorescences per unit area. The number of seedlings that emerged and survived to at least 7 months of age was increased by elevated CO2 for H. radicata, Leontodon saxatilis, T. repens and T. subterraneum in both years and for A. odoratum and Lolium perenne in the first year. For species where increased seedling recruitment was noted, there was a significant positive correlation between seed production in summer and seedling emergence in the following autumn and winter, and sowing 200 extra seeds per species m-2 resulted in more seedlings compared to unsown controls. Elevated CO2 did not affect seedling survival in any species. There was no measurable effect of elevated CO2 on canopy and soil surface conditions or soil moisture at the time of seedling emergence. The results suggest the dominant effect of elevated CO2 on seedling recruitment in this pasture was an indirect one, reflecting effects on the number of seeds produced. The biomass of H. radicata, Leontodon saxatilis, T. repens and T. subterraneum in the above-ground vegetation was greater under elevated than ambient CO2. However, the size of individual seedlings and mature plants of these four species was unaffected by elevated CO2. The results indicate an important way elevated CO2 influenced plant species composition in this pasture was through changes in the pattern of seedling recruitment.

Entities:  

Keywords:  Climate change; Germination; Seedling emergence; Seedling survival

Year:  2001        PMID: 28547109     DOI: 10.1007/s004420000602

Source DB:  PubMed          Journal:  Oecologia        ISSN: 0029-8549            Impact factor:   3.225


  6 in total

1.  Water relations in grassland and desert ecosystems exposed to elevated atmospheric CO2.

Authors:  J A Morgan; D E Pataki; C Körner; H Clark; S J Del Grosso; J M Grünzweig; A K Knapp; A R Mosier; P C D Newton; P A Niklaus; J B Nippert; R S Nowak; W J Parton; H W Polley; M R Shaw
Journal:  Oecologia       Date:  2004-05-20       Impact factor: 3.225

2.  Characterization of an urban-rural CO2/temperature gradient and associated changes in initial plant productivity during secondary succession.

Authors:  L H Ziska; J A Bunce; E W Goins
Journal:  Oecologia       Date:  2004-03-12       Impact factor: 3.225

3.  Age at flowering differentially affects vegetative and reproductive responses of a determinate annual plant to elevated carbon dioxide.

Authors:  James D Lewis; Xianzhong Wang; Kevin L Griffin; David T Tissue
Journal:  Oecologia       Date:  2003-03-08       Impact factor: 3.225

4.  Effect of elevated carbon-dioxide on plant growth, physiology, yield and seed quality of chickpea (Cicer arietinum L.) in Indo-Gangetic plains.

Authors:  Amrit Lamichaney; Kalpana Tewari; Partha Sarathi Basu; Pardip Kumar Katiyar; Narendra Pratap Singh
Journal:  Physiol Mol Biol Plants       Date:  2021-02-13

5.  Future productivity and phenology changes in European grasslands for different warming levels: implications for grassland management and carbon balance.

Authors:  Jinfeng Chang; Philippe Ciais; Nicolas Viovy; Jean-François Soussana; Katja Klumpp; Benjamin Sultan
Journal:  Carbon Balance Manag       Date:  2017-05-04

6.  Cytotoxic constituents and a new hydroxycinnamic acid derivative from Leontodon saxatilis (Asteraceae, Cichorieae).

Authors:  Serhat Sezai Ҫiҫek; Johanna Willer; Francesca Preziuso; Frank Sönnichsen; Richard Greil; Ulrich Girreser; Christian Zidorn; Karin Jöhrer
Journal:  RSC Adv       Date:  2021-03-10       Impact factor: 3.361

  6 in total

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