<?xml version="1.0" encoding="ISO-8859-1"?><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
<front>
<journal-meta>
<journal-id>0120-0488</journal-id>
<journal-title><![CDATA[Revista Colombiana de Entomología]]></journal-title>
<abbrev-journal-title><![CDATA[Rev. Colomb. Entomol.]]></abbrev-journal-title>
<issn>0120-0488</issn>
<publisher>
<publisher-name><![CDATA[Sociedad Colombiana de Entomología]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S0120-04882009000200011</article-id>
<title-group>
<article-title xml:lang="en"><![CDATA[Selectivity of insecticides for adult workers of Apis mellifera (Hymenoptera: Apidae)]]></article-title>
<article-title xml:lang="es"><![CDATA[Selectividad de insecticidas sobre obreras adultas de Apis mellifera (Hymenoptera: Apidae)]]></article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname><![CDATA[THOMAZONI]]></surname>
<given-names><![CDATA[DANIELLE]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[SORIA]]></surname>
<given-names><![CDATA[MIGUEL F]]></given-names>
</name>
<xref ref-type="aff" rid="A02"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[KODAMA]]></surname>
<given-names><![CDATA[CÁSSIO]]></given-names>
</name>
<xref ref-type="aff" rid="A02"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[CARBONARI]]></surname>
<given-names><![CDATA[VLADSON]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[FORTUNATO]]></surname>
<given-names><![CDATA[RONI P]]></given-names>
</name>
<xref ref-type="aff" rid="A02"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[DEGRANDE]]></surname>
<given-names><![CDATA[PAULO E]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[VALTER]]></surname>
<given-names><![CDATA[V. A. Jr]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
</contrib-group>
<aff id="A01">
<institution><![CDATA[,Universidade Federal da Grande Dourados  ]]></institution>
<addr-line><![CDATA[ ]]></addr-line>
</aff>
<aff id="A02">
<institution><![CDATA[,Universidade Federal da Grande Dourados  ]]></institution>
<addr-line><![CDATA[ ]]></addr-line>
<country>Brasil</country>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>12</month>
<year>2009</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>12</month>
<year>2009</year>
</pub-date>
<volume>35</volume>
<numero>2</numero>
<fpage>173</fpage>
<lpage>176</lpage>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_arttext&amp;pid=S0120-04882009000200011&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_abstract&amp;pid=S0120-04882009000200011&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_pdf&amp;pid=S0120-04882009000200011&amp;lng=en&amp;nrm=iso"></self-uri><abstract abstract-type="short" xml:lang="en"><p><![CDATA[Cotton is a crop that is attractive to a wide variety of organisms, including pests, natural enemies of the pests and arthropod pollinators. Consequently, integrated pest management is necessary for this crop as chemical control is often required to avoid production losses. Among pollinators found on cotton, Apis mellifera is one of the most important, as it can increase cotton production 20 - 30%. On the other hand, selectivity is an important characteristic of insecticides, as it makes it possible to lessen impacts on pollinators and other non-target organisms. We examined the toxicity of various insecticides for honey bees foraging on cotton in a greenhouse, including Turbine® 500 WG (150 g ha-1) (flonicamid), Actara® 250 WG (200 g ha-1) (thiamethoxam), Cartap® 500 SP (1500 g ha-1) (cartap), Talstar® 100 CE (1000 mL ha-1) (bifenthrin) and Match® 50 CE (1000 mL ha-1) (lufenuron). Applications of Talstar®, Actara® and Cartap® were quite toxic. Talstar® was the most deadly, while Match CE® and Turbine® were only slightly toxic for adult honey bees. The Match CE® treatment mortality was similar to that of the control; thus, we classified it as innocuous for A. mellifera adults.]]></p></abstract>
<abstract abstract-type="short" xml:lang="es"><p><![CDATA[El algodón es un cultivo atractivo a una amplia variedad de organismos incluyendo plagas, enemigos naturales de las plagas y los polinizadores. Por lo tanto, el manejo integrado de plagas es necesario para este cultivo ya que el control químico se requiere a menudo para evitar pérdidas de producción. Entre los polinizadores encontrados en algodón, Apis mellifera es uno del más importantes pues puede aumentar la producción de 20 - 30% del algodón. Por otro lado, la selectividad es una característica importante de insecticidas, pues permite disminuir impactos en polinizadores y otros organismos no-blanco. Se examinó la toxicidad de varios insecticidas sobre abejas de Apis mellifera forrajeando en el algodón en condiciones de invernadero, incluyendo Turbine® 500 WG (150 g ha-1) (flonicamid), Actara® 250 WG (200 g ha-1) (thiametoxam), Cartap® 500 SP (1500 g ha-1) (cartap), Talstar® 100 CE (1000 ml ha-1) (bifenthrin) y Match® 50 CE (1000 ml ha-1) (lufenuron). Las aplicaciones de Talstar®, Actara® y Cartap® fueron absolutamente tóxicos. Talstar ® fue el más mortal, mientras que el Match® CE y Turbine® fueron solamente levemente tóxicos para los adultos de la abeja. El tratamiento Match® CE presentó mortalidad similar a la del control; entonces, lo clasificamos como inofensivo para los adultos de A. mellifera.]]></p></abstract>
<kwd-group>
<kwd lng="en"><![CDATA[Pollinator]]></kwd>
<kwd lng="en"><![CDATA[Non-target effects]]></kwd>
<kwd lng="en"><![CDATA[Environmental impact]]></kwd>
<kwd lng="es"><![CDATA[Polinizadores]]></kwd>
<kwd lng="es"><![CDATA[Efecto no blanco]]></kwd>
<kwd lng="es"><![CDATA[Impacto ambiental]]></kwd>
</kwd-group>
</article-meta>
</front><body><![CDATA[ <p align="center"><font size="4" face="Verdana"><b>Selectivity of insecticides for adult workers of <i>Apis mellifera</i> (Hymenoptera: Apidae)</b></font></p>     <p align="center"><font size="3" face="Verdana"><b> Selectividad de insecticidas sobre obreras adultas de <i>Apis mellifera</i> (Hymenoptera: Apidae)</b></font></p> <font size="2" face="Verdana">      <p><b> DANIELLE THOMAZONI<sup>1</sup>, MIGUEL F. SORIA<sup>2</sup>, C&Aacute;SSIO KODAMA<sup>2</sup>, VLADSON CARBONARI<sup>1</sup>,    RONI P. FORTUNATO<sup>2</sup>, PAULO E. DEGRANDE<sup>1</sup> and V. A. Jr., VALTER<sup>1</sup></b></p>        <p> <sup>1</sup> Universidade Federal da Grande Dourados, Programa de P&oacute;s-gradua&ccedil;&atilde;o em Entomologia e Conserva&ccedil;&atilde;o da Biodiversidade, Faculdade de Ci&ecirc;ncias Biol&oacute;gicas   e Ambientais, Departamento de Ci&ecirc;ncias Biol&oacute;gicas/Unidade II. Rodovia Dourados-Itahum, Km 12, Caixa Postal: 241, Cep: 79804-970, Dourados/MS,   Brazil.</p>        <p> <sup>2</sup> Universidade Federal da Grande Dourados, Programa de P&oacute;s-gradua&ccedil;&atilde;o em Produ&ccedil;&atilde;o Vegetal, Faculdade de Ci&ecirc;ncias Agr&aacute;rias, Departamento de Ci&ecirc;ncias   Agr&aacute;rias/Unidade II. Rodovia Dourados-Itahum, Km 12. Cidade Universit&aacute;ria. Aeroporto. Caixa Postal: 533, CEP: 79.804-970, Dourados, MS, Brasil. <a href="mailto:paulodegrande@ufgd.edu.br">   paulodegrande@ufgd.edu.br</a>. Autor para correspondencia.</p>        <p>Received: 14-sep-2008 - Accepted: 11-jul-2009</p>  <hr size= />  </font>      <p> <font size="2" face="Verdana"><b><font size="3">Abstract: </font></b>Cotton is a crop that is attractive to a wide variety of organisms, including pests, natural enemies of the pests   and arthropod pollinators. Consequently, integrated pest management is necessary for this crop as chemical control is   often required to avoid production losses. Among pollinators found on cotton, <i>Apis mellifera</i> is one of the most important,   as it can increase cotton production 20 - 30%. On the other hand, selectivity is an important characteristic of   insecticides, as it makes it possible to lessen impacts on pollinators and other non-target organisms. We examined the   toxicity of various insecticides for honey bees foraging on cotton in a greenhouse, including Turbine<sup>&reg;</sup> 500 WG (150 g   ha<sup>-1</sup>) (flonicamid), Actara<sup>&reg;</sup> 250 WG (200 g ha<sup>-1</sup>) (thiamethoxam), Cartap<sup>&reg;</sup> 500 SP (1500 g ha<sup>-1</sup>) (cartap), Talstar<sup>&reg;</sup> 100   CE (1000 mL ha<sup>-1</sup>) (bifenthrin) and Match<sup>&reg;</sup> 50 CE (1000 mL ha<sup>-1</sup>) (lufenuron). Applications of Talstar<sup>&reg;</sup>, Actara<sup>&reg;</sup> and   Cartap<sup>&reg;</sup> were quite toxic. Talstar<sup>&reg;</sup> was the most deadly, while Match CE<sup>&reg;</sup> and Turbine<sup>&reg;</sup> were only slightly toxic for adult   honey bees. The Match CE<sup>&reg;</sup> treatment mortality was similar to that of the control; thus, we classified it as innocuous   for <i>A. mellifera</i> adults.</font></p>     <p> <font size="2" face="Verdana"><b><font size="3">Key words: </font></b>Pollinator. Non-target effects. Environmental impact.</font></p> <hr size= />     <p> <font size="2" face="Verdana"><b><font size="3">Resumen: </font></b>El algod&oacute;n es un cultivo atractivo a una amplia variedad de organismos incluyendo plagas, enemigos naturales   de las plagas y los polinizadores. Por lo tanto, el manejo integrado de plagas es necesario para este cultivo ya que el   control qu&iacute;mico se requiere a menudo para evitar p&eacute;rdidas de producci&oacute;n. Entre los polinizadores encontrados en algod&oacute;n, <i>Apis mellifera</i> es uno del m&aacute;s importantes pues puede aumentar la producci&oacute;n de 20 - 30% del algod&oacute;n. Por otro   lado, la selectividad es una caracter&iacute;stica importante de insecticidas, pues permite disminuir impactos en polinizadores   y otros organismos no-blanco. Se examin&oacute; la toxicidad de varios insecticidas sobre abejas de <i>Apis mellifera</i> forrajeando   en el algod&oacute;n en condiciones de invernadero, incluyendo Turbine<sup>&reg;</sup> 500 WG (150 g ha<sup>-1</sup>) (flonicamid), Actara<sup>&reg;</sup> 250 WG   (200 g ha<sup>-1</sup>) (thiametoxam), Cartap<sup>&reg;</sup> 500 SP (1500 g ha<sup>-1</sup>) (cartap), Talstar<sup>&reg;</sup> 100 CE (1000 ml ha<sup>-1</sup>) (bifenthrin) y Match<sup>&reg;</sup> 50 CE (1000 ml ha<sup>-1</sup>) (lufenuron). Las aplicaciones de Talstar<sup>&reg;</sup>, Actara<sup>&reg;</sup> y Cartap<sup>&reg;</sup> fueron absolutamente t&oacute;xicos. Talstar <sup>&reg;</sup> fue el m&aacute;s mortal, mientras que el Match<sup>&reg;</sup> CE y Turbine<sup>&reg;</sup> fueron solamente levemente t&oacute;xicos para los adultos de la   abeja. El tratamiento Match<sup>&reg;</sup> CE present&oacute; mortalidad similar a la del control; entonces, lo clasificamos como inofensivo   para los adultos de <i>A. mellifera</i>.</font></p>     <p><font size="2" face="Verdana"><b> <font size="3">Palabras clave: </font></b>Polinizadores. Efecto no blanco. Impacto ambiental.</font></p> <hr size= />     ]]></body>
<body><![CDATA[<p><font size="3" face="Verdana"><b>Introduction</b></font></p> <font size="2" face="Verdana">     <p> Although cotton (<i>Gossypium hirsutum L</i>.) is attacked by agricultural   pests that damage roots, stems, leaves, flower buds,   flowers, fruits and bolls, it is also host to various pollinators   and natural enemies such as predators, parasitoids and   pathogens, which are indispensable components of dynamic   agroecosystems. Damage inflicted by agricultural pests can   drastically reduce cotton productivity, directly affecting seed   and fiber characteristics, and reducing their commercial value   (Degrande and Gomes 1990). Consequently, pest control   techniques, such as cultural, chemical and biological tactics   that are part of Integrated Pest Manegement (IPM) of cotton,   have proven to be extremely important for the success of this   crop. Their use has increased significantly as it is considered   a safe methodology that provides a satisfactory cost/benefit   ratio (Degrande 2000; Gallo <i>et al. 2002).</i></p>      <p> Among control methods, chemicals are the most widely   employed due to their ease of application and effectiveness   (Santos 1999). However, careless use of this form of control   results in adverse effects on non-target organisms, including   humans, domestic animals, pollinators, natural enemies and   other wild organisms, in addition to contaminating soil and   water. These side effects need to be eliminated or minimized   in order to avoid problems such as pest reinfestations, secondary   pest outbreaks, and evolution of pest resistance (Metcalf   1982; Nakano 1986).</p>     <p> Among the beneficial pollinator insects that visit cotton,   the Africanized honey bee, Apis mellifera L., 1752 (Hymenoptera:   Apidae), is prominent. In addition to its ecological   importance as a pollinator, this insect has its own economic   importance as a producer of honey, beeswax and royal jelly.   Some studies have demonstrated an increase in cotton fruit   and seed production on the order of 20 - 30% when honey   bees pollinate this crop, which has also been found for other   crops, such as sunflower and onion seed (Fermiano 1981;   Lorenzon and Martinho 1992; Moreti et al. 1996; Gallo et al. 2002). Laboratory tests of the effect of insecticides pyrethroids are the most dangerous (100% mortality within   two hours after spraying), while carbamates and organophosphates   elicited 50% mortality under the same conditions   (Rigotti 2005).</p>     <p> If insecticides are used in an appropriate manner, they can   control target organisms without negatively affecting natural   enemy and pollinator populations; otherwise, these predators   and pollinators will be less able to provide their beneficial   services (Melksham et al. 1988; Davis 1989). One way to   achieve this objective would be to use selectively toxic insecticides   (Carvalho et al. 2002; Degrande et al. 2002; Magalh&atilde;es   et al. 2002; Godoy et al. 2004). Considering the importance   of A. mellifera as a pollinating agent in agroecosystems,   we evaluated the effect of the insecticides Turbine<sup>&reg;</sup> 500 WG   (flonicamid), Actara<sup>&reg;</sup> 250 WG (thiamethoxam), Cartap<sup>&reg;</sup> 500   SP (cartap), Talstar<sup>&reg;</sup> 100 CE (bifenthrin) and Match 50 CE<sup>&reg;</sup> (lufenuron), which are used on cotton, on the mortality of   honey bee workers.</p> </font>     <p><font size="3" face="Verdana"><b> Material and Methods</b></font></p> <font size="2" face="Verdana">     <p> The experiment was conducted in a greenhouse, with potted   cotton plants at the Faculdade de Ci&ecirc;ncias Agr&aacute;rias (FCA) of   the Universidade Federal da Grande Dourados (UFGD), in   Dourados (22&deg;14&rsquo;S, 54&deg;44&lsquo;W, altitude 452 m), Mato Grosso   do Sul state, Brazil, from November 2006 to January 2007.   Each pot was planted with six seeds of cotton cultivar Fibermax   933, later reduced to four plants per pot. The soil used   for the plants&rsquo; cultivation was an Oxisol collected from the   subsoil (&gt; 40 cm deep). During flowering, approximately   50 - 55 days after germination, the plants were sprayed with   the insecticide treatments at a rate of 400 liters of spray liquid   per hectare. The sprayer was washed with water, water +   detergent and 92.8% ethanol between treatments, to remove   residues of the different insecticides.</p>     <p> The experimental design consisted of randomized blocks,   with six treatments and four replicates per treatment. Each   plot consisted of a pot with four plants and 30 A. mellifera   adult workers, which were confined in gauze cages 98.5&times;41   cm. The treatments were: 1) Turbine<sup>&reg;</sup> 500 WG (150 g/ha)   (flonicamid), 2) Actara<sup>&reg;</sup> 250 WG (200 g/ha) (thiamethoxam),   3) Cartap<sup>&reg;</sup> 500 SP (1500 g/ha<sup>-1</sup>) (cartap), 4) Talstar<sup>&reg;</sup> 100 CE   (1000 mL/ha<sup>-1</sup>) (bifenthrin), 5) Match 50 CE<sup>&reg;</sup> (1000 mL/ha)   (lufenuron) and 6) a control sprayed with water; in every case   a manual sprayer at a constant pressure was used. Spraying   began at 9:00 h, at 29&ordm;C, 68% relative humidity and wind   speed below 2.5 m s<SUP>-1</SUP>, at a rate of 112 L/ha<sup>-1</sup>, these conditions   are those usually adopted in the field for insecticide sprays.   The spray was allowed to dry on the plants for three hours   before adding the 30 bees per pot. Four replicates were made   for each insecticide treatment. Each group of bees was provided   with PET bottle caps containing water and with a mixture   of honey plus sucrose composed of 50% honey or water   and 50% refined sugar (Wiese 1995).</p>     <p> The A. mellifera workers were estimated to be about 5-6   days old, based on their coloration and hair density on the   thorax, plus their in-colony activities (Free 1980). The bees   were collected from two colonies located in apiaries near the   university (FCA/UFGD), using a manual aspirator, and were   maintained in a B.O.D incubator (28&plusmn;1&deg;C and 12 hours photophase)   for 24 hours; they were fed with the sucrose and   honey mixture plus water until they were placed in the gauze   cages in the greenhouse. Evaluations were made every 30   minutes for six hours, counting the number of bees that had   died. For each evaluation the data were tabulated, expressed   as percentage mortality and transformed with square root of   (x+0.5) for the statistical analysis. The means were compared   by the Tukey&rsquo;s test (P &lt; 0.05).</p> </font>     <p><font size="3" face="Verdana"><b> Results and Discussion</b></font></p> <font size="2" face="Verdana">     ]]></body>
<body><![CDATA[<p> Among the six insecticide treatments, Talstar<sup>&reg;</sup> 100 CE (1000   mL ha<sup>-1</sup>) was the least selective, causing 100% mortality of   A. mellifera workers in the shortest time (<a href="img/revistas/rcen/v35n2/v35n2a11fig1.gif" target="_blank">Figs. 1</a> and <a href="#(fig2)">2</a>). This product is similar to the pyrethroid bifenthrin, which acts on   the modulation of Na<SUP>+</SUP> channels in the central and peripheral   nervous systems of insects. It has a potent &ldquo;knock-down&rdquo; effect,   and after contact with this insecticide, the workers displayed   uncoordinated movements and trembling, manifesting   the typical effects of pyrethroid insecticides, also observed by   Carvalho (2006). Rigotti (2005) also found that pyrethroidbased   insecticides used commercially on soybeans caused   100% mortality of A. mellifera adults, within two hours of   spraying in the lab.</p>     <p align="center"><a name="(fig2)"><img src="img/revistas/rcen/v35n2/v35n2a11fig2.gif"></a></p>     <p> Treatments with the insecticides Actara<sup>&reg;</sup> 250 WG (200 g   ha<sup>-1</sup>) (thiamethoxam) and Cartap<sup>&reg;</sup> 500 SP (1500 g ha<sup>-1</sup>) (cartap),   which affect the insect nervous system, were also not   selective, although they killed the bees at a slower rate than   did bifenthrin. Total mortality (100%) of bee workers occurred   after 360 minutes with Cartap<sup>&reg;</sup> and after 330 minutes   with Actara<sup>&reg;</sup> (<a href="img/revistas/rcen/v35n2/v35n2a11fig1.gif" target="_blank">Fig. 1</a>). Carvalho et al. (2004 a,b) and Carvalho   (2006) reported similar effects on A. mellifera workers, independent   of the mode of application whether direct spraying   or incorporation in the diet; thiamethoxam was highly toxic   to bees, requiring a mean of 22.5 hours to kill 100% of the   workers. High toxicity of thiamethoxam was also found by   Iwasa et al. (2004), who reported an LD<SUB>50</SUB> of 0.03 &mu;g/bee. According to Karnatak and Neetu (2005), thiamethoxam is one   of the most toxic insecticides for A. mellifera. </p>     <p>Similar results were reported by Thompson (2003) and   Rhodes and Scott (2006), who classified thiamethoxam as   highly toxic. They also indicated that this insecticide can   elicit physiological and behavioral effects in the bees, when   applied at sublethal doses. These include alterations in the   embryonic, larval and pupal phases, as well as changes in   flight activity, negatively affecting food collection and consequently   colony development.</p>     <p> Treatments with the insecticides Turbine<sup>&reg;</sup> (150 g ha<sup>-1</sup>)   (flonicamid) and Match 50 CE<sup>&reg;</sup> (1000 mL ha<sup>-1</sup>) (lufenuron)   were less toxic for A. mellifera workers. Match 50 CE<sup>&reg;</sup> did not   significantly affect the bees and could be considered innocuous   for them (<a href="img/revistas/rcen/v35n2/v35n2a11fig1.gif" target="_blank">Figs. 1</a> and <a href="#(fig2)">2</a>). Similar results were found with   the predator wasp Polistes canadensis canadensis (L., 1758)   (Santana-Reis et al. 2002) in laboratory tests with lufenuron.   This is a chitin-synthesis regulator, acting on ecdysis during   the insect larval stages.</p>     <p> Based on our greenhouse evaluations, the insecticide   Turbine<sup>&reg;</sup> was considered selective or relatively non-toxic for   bees, as was Match CE<sup>&reg;</sup>, eliciting only 9.16% mortality (<a href="img/revistas/rcen/v35n2/v35n2a11fig1.gif" target="_blank">Figs. 1</a> and <a href="#(fig2)">2</a>). Carvalho (2006) also tested lufenuron directly on   bees in the lab and found low toxicity, similar to that found   for the control, reaching 21% after 72 hours of confinement,   and similar to what was reported by Atkins et al. (1981), Tew   (1996) and Hunt (2000).</p> </font>     <p><font size="3" face="Verdana"><b> Conclusions</b></font></p> <font size="2" face="Verdana">     <p> Spraying with Talstar<sup>&reg;</sup>, Actara<sup>&reg;</sup> and Cartap<sup>&reg;</sup> was lethal for   A. mellifera; Talstar<sup>&reg;</sup> was the most acutely toxic. Match CE<sup>&reg;</sup> and Turbine<sup>&reg;</sup> were less toxic; mortality due to Match CE<sup>&reg;</sup> was similar to that obtained with the control spray. We classified   Match CE<sup>&reg;</sup> as innocuous for adult honey bees under   these conditions. This research contributes information that   can help conserve A. mellifera populations in the vicinity of   cotton crops, contributing to the productivity of the cotton   crop and to the quality of bee products in neighboring apiaries.</p> </font>     <p> <font size="3" face="Verdana"><b>Literature cited</b></font></p> <font size="2" face="Verdana">      <!-- ref --><p> ATKINS, E. L., KELLUM, D.; ATKINS, K. W. 1981. Reducing pesticides   hazardous to honeybees. Mortality prediction techniques   and integrated management strategies. 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