Effects of Herbicides on Flowering

被引:27
作者
Carpenter, David J. [1 ]
Mathiassen, Solvejg K. [2 ]
Boutin, Celine [1 ]
Strandberg, Beate [3 ]
Casey, Carlene S. [1 ]
Damgaard, Christian [3 ]
机构
[1] Carleton Univ, Environm & Climate Change Canada, Sci & Technol Branch, Ottawa, ON, Canada
[2] Aarhus Univ, Dept Agroecol, Slagelse, Denmark
[3] Aarhus Univ, Dept Biosci, Silkeborg, Denmark
关键词
Herbicides; Nontarget plants; Flower production; Delays of flowering; Herbicide drift; Gompertz growth models; NONTARGET PLANT REPRODUCTION; FLORAL RESOURCES; SUBLETHAL RATES; POLLINATION; DICAMBA; INJURY; PHENOLOGY; DRIFT;
D O I
10.1002/etc.4712
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Herbicides have been shown to reduce flower production and to delay flowering, with results varying among herbicides and tested plant species. We investigated the effects of herbicides on flowering in an extensive greenhouse study conducted in Canada and Denmark. The effects of low doses of 5 different herbicides (bromoxynil, ioxynil + bromoxynil, metsulfuron-methyl, clopyralid, and glyphosate), simulating realistic drift scenarios (1 and 5% recommended field rates), on plant flowering were examined using 9 wild plant species exposed at either the seedling (6- to 8-leaf) or flower bud stage. Following herbicide exposure, initial flowering date as well as flower production over time were recorded over the growing period. The effect of herbicides on cumulative flower numbers and flowering time were modeled using Gompertz growth models. Significant delays to peak flowering and/or reductions in flower production were observed in at least one plant species for all tested herbicides, with glyphosate often exhibiting the greatest negative effects, that is, plant death. Except for ioxynil + bromoxynil, there was no clear evidence of either the seedling or the flower bud stage being more sensitive. Overall, 58% of all species x life stage x herbicide treatments resulted in either a statistically significant or a strong decline in flower production with herbicide application rates up to 5% of recommended field rates, whereas significant or strong delays in peak flowering were also detected but were slightly less common. Effects at 1% label rates were minimal. Simultaneous delays to peak flowering and reductions in total flower production occurred in approximately 25% of all cases, indicating that herbicide application rates simulating realistic drift scenarios would likely have negative effects on wild floral communities. Environ Toxicol Chem 2020;00:1-13. (c) 2020 SETAC
引用
收藏
页码:1244 / 1256
页数:13
相关论文
共 46 条
[31]  
Rautmann D., 2001, Workshop on risk management and risk mitigation measures in the context of authorization of plant protection products, P133
[32]   A vegetation-based indicator to assess the pollination value of field margin flora [J].
Ricou, Charles ;
Schneller, Chloe ;
Amiaud, Bernard ;
Plantureux, Sylvain ;
Bockstaller, Christian .
ECOLOGICAL INDICATORS, 2014, 45 :320-331
[33]   Sublethal effects of herbicides on the biomass and seed production of terrestrial non-crop plant species, influenced by environment, development stage and assessment date [J].
Riemens, Marleen M. ;
Dueck, Thom ;
Kempenaar, Corne ;
Lotz, Lambertus A. P. ;
Kropff, Martin J. J. .
ENVIRONMENTAL POLLUTION, 2009, 157 (8-9) :2306-2313
[34]   Role of floral resources in the conservation of pollinator communities in cider-apple orchards [J].
Rosa Garcia, Rocio ;
Minarro, Marcos .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2014, 183 :118-126
[35]   The Role of Resources and Risks in Regulating Wild Bee Populations [J].
Roulston, T'ai H. ;
Goodell, Karen .
ANNUAL REVIEW OF ENTOMOLOGY, VOL 56, 2011, 56 :293-312
[36]   Plant-pollinator interactions and the assembly of plant communities [J].
Sargent, Risa D. ;
Ackerly, David D. .
TRENDS IN ECOLOGY & EVOLUTION, 2008, 23 (03) :123-130
[37]   Museum specimens reveal loss of pollen host plants as key factor driving wild bee decline in The Netherlands [J].
Scheper, Jeroen ;
Reemer, Menno ;
van Kats, Ruud ;
Ozinga, Wim A. ;
van der Linden, Giel T. J. ;
Schaminee, Joop H. J. ;
Siepel, Henk ;
Kleijn, David .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2014, 111 (49) :17552-17557
[38]   Agrochemicals in field margins-Field evaluation of plant reproduction effects [J].
Schmitz, Juliane ;
Schaefer, Karoline ;
Bruehl, Carsten A. .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2014, 189 :82-91
[39]  
Seber G.A.F., 1989, Nonlinear regression
[40]  
Strandberg B., 2019, Pesticide Effects on Non-target Terrestrial Plants at Individual, Population and Ecosystem Level