| Literature DB >> 27752448 |
Frieder Hofmann1, Maren Kruse-Plass2, Ulrike Kuhn3, Mathias Otto4, Ulrich Schlechtriemen5, Boris Schröder6, Rudolf Vögel7, Werner Wosniok8.
Abstract
BACKGROUND: Risk assessment for GMOs such as Bt maize requires detailed data concerning pollen deposition onto non-target host-plant leaves. A field study of pollen on lepidopteran host-plant leaves was therefore undertaken in 2009-2012 in Germany. During the maize flowering period, we used in situ microscopy at a spatial resolution adequate to monitor the feeding behaviour of butterfly larvae. The plant-specific pollen deposition data were supplemented with standardised measurements of pollen release rates and deposition obtained by volumetric pollen monitors and passive samplers.Entities:
Keywords: Bt maize; Butterfly; Exposure; Genetically modified organisms (GMOs); Host plants; Leaf deposition; Lepidoptera; Pollen; Risk assessment; Risk management; Zea mays
Year: 2016 PMID: 27752448 PMCID: PMC5044972 DOI: 10.1186/s12302-016-0082-9
Source DB: PubMed Journal: Environ Sci Eur ISSN: 2190-4715 Impact factor: 5.893
Fig. 1Maize (Zea mays) pollen deposition onto maize leaves during the 2010 flowering season. Shedding of pollen from an early flowering maize variety began in field A on 23 July and from a later-flowering variety in field B on 3–4 August. The maize flowering period ended around 23 August. Leaf deposition measurements in 2010 were made in field A from 28 July to 6 August and in field B from 7 to 17 August. Green dots, data (n = 2497); solid red line, daily mean; red dashed lines, 90 and 10 % quantiles based on the daily data and the censored maximum likelihood-fitted log-normal distribution
Statistical parameters of leaf deposition data
| Maize pollen deposition on leaves in n/cm2 | Maize | Nettle | Goosefoot | Sorrel | Blackberry | |||||
|---|---|---|---|---|---|---|---|---|---|---|
| Field/site | Total | A | B | Total | A | B | B | A2 | A1 | |
| Sample size n | 5377 | 2497 | 1593 | 904 | 1646 | 810 | 836 | 586 | 324 | 324 |
| Parameters and quantiles from the fitted log-normal-distribution (CML estimate) | ||||||||||
| Mean log10 | µlog10 | 2.12 | 1.79 | 2.68 | 2.14 | 1.89 | 2.39 | 2.57 | 1.73 | 2.20 |
| SD.log10 | σlog10 | 1.03 | 1.01 | 0.84 | 0.74 | 0.66 | 0.72 | 0.68 | 1.01 | 0.58 |
| SD factor on linear scale | σlin Factor | 10.7 | 10.3 | 7.0 | 5.5 | 4.6 | 5.3 | 4.8 | 10.3 | 3.8 |
| 95 % quantile | L95 % | 6497 | 2831 | 11,716 | 2270 | 953 | 3791 | 4908 | 2499 | 1452 |
| 90 % quantile | L90 % | 2747 | 1214 | 5780 | 1225 | 547 | 2067 | 2774 | 1070 | 892 |
| 75 % quantile | L75 % | 652 | 295 | 1775 | 437 | 217 | 751 | 1070 | 260 | 395 |
| 50 % quantile | L50 % | 132 | 61 | 478 | 139 | 77 | 244 | 371 | 54 | 160 |
| 25 % quantile | L25 % | 27 | 13 | 129 | 44 | 28 | 79 | 129 | 11 | 65 |
| 10 % quantile | L10 % | 6.3 | 3.1 | 40 | 16 | 11 | 29 | 50 | 2.7 | 29 |
| 5 % quantile | L5 % | 2.7 | 1.3 | 20 | 8.5 | 6.3 | 16 | 28 | 1.2 | 18 |
| Maxima and quantiles from the empirical distribution function | ||||||||||
| Maximum | Emax | 103,000 | 14,112 | 103,000 | 13,802 | 10,987 | 13,802 | 17,098 | 6055 | 2246 |
| 95 % quantile | E95 % | 4613 | 2282 | 8858 | 2194 | 879 | 3770 | 4532 | 2043 | 1213 |
| 90 % quantile | E90 % | 2526 | 1152 | 5090 | 1152 | 586 | 2078 | 3389 | 1270 | 864 |
| 75 % quantile | E75 % | 762 | 342 | 1730 | 474 | 244 | 700 | 989 | 391 | 488 |
| 50 % quantile | E50 % | 162 | 72 | 536 | 146 | 49 | 288 | 412 | 49 | 169 |
| 25 % quantile | E25 % | 36 | 18 | 124 | 33 | <33 | 82 | 144 | 33 | 49 |
Results of the application of different statistical models to the collected deposition data. The log-normal distribution was fitted to the data by censored maximum likelihood (CML) estimation. The empirical distribution describes the raw data
Fig. 2Daily mean pollen concentrations (n/m3) indicating pollen release rates and related daily mean pollen deposition rates [n/(cm2 day)]. Continuous measurements of pollen concentrations were made by a PMO volumetric pollen monitor at tassel height in late-flowering maize field B near Angermünde in 2010. Left y-axis, daily mean pollen concentration at tassel height in the field in n/m3 (log10); right y-axis, daily mean deposition rate in n/(cm2 day) (log10)
Fig. 3Comparison of mean leaf deposition and its variability with PMF-based cumulative deposition and integrated deposition over the flowering period. Data are from late-flowering field B in 2010. Green dots, single leaf-deposition observations; red line, daily mean leaf deposition; dotted red lines, leaf-deposition 90 and 10 % confidence intervals based on censored maximum likelihood estimation; blue line, cumulative deposition rates based on PMO pollen monitor standardised measurements; cyan square, integrated deposition based on PMF passive sampler standardised measurements
Fig. 4Combining plant-specific leaf deposition and its variability with standardised measurements of deposition. Blue cumulative maize pollen deposition, D total (=cumulative daily deposition rate), measured with a PMO pollen monitor; green standardised integrated deposition, D S, measured with a PMF passive sampler; red variability of plant-specific leaf deposition on maize leaves over the flowering period (log-normal distribution; red curve) with mean and 90 % confidence intervals
Conversion factors between plant-specific leaf deposition and standardised measurements of pollen deposition
| Conversion factors | Standardised technical methods | ||
|---|---|---|---|
| Specific leaf deposition | Integrated deposition PMO {3404 n/cm2} | Standardised deposition PMF {359 n/cm2} | |
| Maize ( | |||
| Mean (50 % quantile) |
| 0.14 | 1.33 |
| 90 % quantile | DZM (90 %) | 1.70 | 16.1 |
| 95 % quantile | DZM (95 %) | 3.44 | 32.6 |
| Nettle ( | |||
| Mean (50 % quantile) |
| 0.07 | 0.68 |
| 90 % quantile | DUD (90 %) | 0.61 | 5.76 |
| 95 % quantile | DUD (95 %) | 1.11 | 10.5 |
Specific leaf deposition was estimated by censored maximum likelihood with data obtained from parallel measurements in field B over the flowering period
Fig. 5Expected mean and variability of maize pollen deposition onto maize leaves in relation to distance. Solid and dotted blue lines mean regression line with 95 % confidence interval, respectively; red lines 95 % confidence interval for PMF-measured standardised deposition single values; green lines 95 % confidence interval for plant-specific (maize) deposition single values
| Accumulation | Increase in the amount of pollen deposited on leaves over time. Accumulation can be described using mean leaf-density values; while the mean value increases over time, the stochastic variability around the mean basically remains stable (see “aggregation”) |
| Aggregation | Describes the tendency of particles or pollen grains to progressively clump together on leaf surfaces, leading to increased variability in leaf-density values around the mean over time. Aggregation contributes to stochastic variation at the time of deposition during the process of accumulation (see “accumulation”) |
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| CA | Index for |
| CML | Censored maximum likelihood (estimation method) |
| Cumulative deposition | Sum of daily deposition rates (see “integrated deposition”) |
|
| Index for day/daily |
| Daily deposition rate, | Daily pollen input per surface area from standardised measurements of aerial pollen concentration in n/(cm2 day). Obtained with a volumetric pollen monitor. |
| Daily mean concentration, | Daily mean number of pollen grains per air volume in n/m3 from standardised measurements using a volumetric pollen monitor. |
| Daily leaf deposition, | Mean value of observed pollen density on a leaf surface (n/cm2) of plant species i for a given day |
| Deposition, | Describes (a) the process of pollen loading (input) from the air to an acceptor (surface area) as a function of time, |
| Evaluation area, | Leaf area for a single measurement (here, 5–50 mm2) |
| Flowering period, | Period of pollen shedding (here, of maize) |
| GMO | Genetically modified organism |
| i | Index for acceptor |
| Integrated concentration, | Integrated concentration over flowering period |
| Integrated deposition, | Total pollen deposition integrated over the entire flowering period |
| Integrated potential deposition, | Integrated deposition over the flowering period assuming a permanent downwind position (n/cm2) |
| Integration | (a) Deposition: Integration describes the integral of the results of input–output processes taking place on an acceptor over time in the course of deposition (e.g. pollen density on a leaf surface or pollen captured by a PMF passive sampler). Accumulation, in a strict sense, sums together the input rates, whereas integration refers to the measured density values on the acceptor and also reflects sample efficiency and losses. (b) Concentration: Concentration cannot be summed over time, only averaged. The index of total yearly concentration is calculated as the sum of daily mean concentration values per m3 air volume over the flowering period to indicate the intensity of pollen flow at a site; this index might be more correctly described as an integral of concentration over time |
|
| Index for single observation |
| Leaf deposition, | Measured pollen density on the leaf surface of a species |
| Mean concentration | Average number of pollen grains in a volume of air per time period, e.g. hourly or 3-hourly (see “daily mean concentration”) |
| n/m3 | Pollen grains per cubic metre of air volume |
| n/cm2 | Pollen grains per square centimetre |
| n/(cm2 day) | Pollen grains per square centimetre per day |
| PMF | Pollen mass filter, a passive pollen sampler standardised according to VDI 4330-3 and CEN-TS 16817-1 for integrated measurement of pollen flow and deposition in the air over a measurement period of up to several weeks during flowering |
| PMO | Pollen monitor, a continuously recording, high-volume aerosol particle sampler with an omnidirectional inlet for standardised measurements of aerial pollen concentration (n/m3); (see “mean daily concentration”, “integrated concentration over flowering period”, “deposition”, “daily deposition rates” and “integrated deposition over flowering period”) |
| Pollen concentration, | Number of pollen grains per air volume (n/m3) at time |
| Pollen count, | Measured pollen density on a leaf, recorded as the number of pollen grains per evaluation area |
| pot | Index for potential (see “integrated potential deposition”) |
| RA | Index for |
| Conversion factor, | Factor describing the relation between two pollen exposure parameters, e.g. leaf deposition on |
| RU | Index for |
| S | Index for standardised deposition (see “standardised deposition”) |
| Standardised deposition, | Standardised measurement of integrated deposition over flowering period |
|
| Index for time/date |
| Total | Index for integrated concentration and integrated deposition (see definitions) over the flowering period |
| UD | Index for |
|
| Deposition velocity in m/s |
| ZM | Index for |