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29 results for “Mangifera indica”

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zenodo40/100

Figs. 1–16 in Scirtothrips species (Thysanoptera: Thripidae) described from Mangifera indica (Anacardiaceae) in Mexico

Figs. 1–16. Scirtothrips pronota (1–15, copied from Johansen & Mojica-Guzman 1999). 1, citri; 2, mangonoxius; 3, danieltelizi; 4, mangoaffinis; 5, willihennigi; 6, mangofrequentis; 7, mangiferaffinis; 8, mangoinfestans; 9, apatzinganensis; 10, martingonzalezi; 11, novomangorum; 12, dieterenkerlini; 13, mangorum; 14, dieterenkerlini; 15, mangorum; 16, citri.

opencc-by-4.0Dec 2016View details →
zenodo40/100

Figs. 17–28. Scirtothrips pronota. 17–22 in Scirtothrips species (Thysanoptera: Thripidae) described from Mangifera indica (Anacardiaceae) in Mexico

Figs. 17–28. Scirtothrips pronota. 17–22 Paratype females on loan from Johansen: 17, danieltelizi; 18, mangoaffinis; 19, willihennigi; 20, mangofrequentis; 21, mangiferaffinis; 22, mangoinfestans. 23–28 Recent slide mounts: 23, citri from citrus at Riverside, California; 24–25, citri from mango at Riverside, California; 26-28, citri from mango at Chiapas, Mexico.

opencc-by-4.0Dec 2016View details →
zenodo40/100

Figs. 7 A-H in Efeito fitotóxico de Mangifera indica L. (Anacardiaceae) em diferentes Horários de coletA

Figs. 7 A-H. Alterações cromossômicas observadas nas diversas concentrações do extrato aquoso bruto de manga preparado com folhas coletadas às 12h. A. Célula binucleada; B. Pontes anafásicas; C. Célula portadora de micronúcleo; D, E. Metáfase com aderência e perdas cromossômicas; F. Ponte telofásica; G. Anáfase multipolar com pontes anafásicas; H. Célula com micronúcleo. Barra = 1 µm

opencc-by-4.0Dec 2016View details →
zenodo40/100

Figs. 8 A-D in Efeito fitotóxico de Mangifera indica L. (Anacardiaceae) em diferentes Horários de coletA

Figs. 8 A-D. Divisões celulares do controle nos experimentos 7h30min e 12h. A. Prófase; B. Metáfase; C. Anáfase; D. Telófase. Barra = 1 µm

opencc-by-4.0Dec 2016View details →
zenodo40/100

Figs. 6 A-T in Efeito fitotóxico de Mangifera indica L. (Anacardiaceae) em diferentes Horários de coletA

Figs. 6 A-T. Anomalias cromossômicas observadas nas diversas concentrações do extrato aquoso bruto de manga com folhas coletadas às 7h30min. A. Separação precoce de cromátides; B. Célula interfásica com um micronúcleo; C. Pontes anafásicas; D. Pró-metáfase com perda de cromossomos; E. Anáfase multipolar; F. Célula interfásica com perda de material genético; G. Perda cromossômica; H. Quebra do fuso acromático; I. Anáfase com desorganização dos cromossomos; J. Célula em C-metáfase; K. Perda cromossômica e aderência; L. Ponte anafásica e quebras de cromossomos; M. Metáfase desorganizada com aderência cromossômica; N. Metáfase com atraso cromossômico; O. Perda de vários cromossomos na metáfase; P. Anáfase multipolar com ponte anafásica; Q. Metáfase com atraso cromossômico; R. Anáfase com micronúcleo; S. Pontes anafásicas; T. Ponte telofásica. Barra = 1 µm

opencc-by-4.0Dec 2016View details →
zenodo40/100

Fig. 5 in Efeito fitotóxico de Mangifera indica L. (Anacardiaceae) em diferentes Horários de coletA

Fig. 5. Índice mitótico das células de alface sobre o efeito das diferentes concentrações do do extrato aquoso bruto de M. indica coletadas em dois horários. (**) significativo ao nível de 1% de probabilidade (p<0,01). As médias seguidas pela mesma letra não diferem estatisticamente entre si pelo teste de Tukey a 5% de probabilidade.

opencc-by-4.0Dec 2016View details →
zenodo40/100

Fig. 3 in Efeito fitotóxico de Mangifera indica L. (Anacardiaceae) em diferentes Horários de coletA

Fig. 3. Biometria dos caulículos de alface sobre o efeito das diferentes concentrações do extrato aquoso bruto de M. indica coletadas em dois horários. (**) significativo ao nível de 1% de probabilidade (p<0,01). As médias seguidas pela mesma letra não diferem estatisticamente entre si pelo teste de Tukey a 5% de probabilidade.

opencc-by-4.0Dec 2016View details →
zenodo40/100

Fig. 2 in Efeito fitotóxico de Mangifera indica L. (Anacardiaceae) em diferentes Horários de coletA

Fig. 2. Índice de velocidade de germinação das sementes de Lactuca sativa L. (alface) submetidas às diversas concentrações do extrato aquoso bruto de M. indica coletadas em dois horários. (**) significativo ao nível de 1% de probabilidade (p<0,01). As médias seguidas pela mesma letra não diferem estatisticamente entre si pelo teste de Tukey a 5% de probabilidade.

opencc-by-4.0Dec 2016View details →
zenodo40/100

Fig. 1 in Efeito fitotóxico de Mangifera indica L. (Anacardiaceae) em diferentes Horários de coletA

Fig. 1. Número de sementes germinadas das sementes de Lactuca sativa L. (alface) submetidas às diversas concentrações do extrato aquoso bruto de M. indica coletadas em dois horários. (**): significativo ao nível de 1% de probabilidade (p<0,01). As médias seguidas pela mesma letra não diferem estatisticamente entre si pelo teste de Tukey a 5% de probabilidade.

opencc-by-4.0Dec 2016View details →
zenodo40/100

Figure 2 in Effect of the essential oil from the latex of the fruit Mangifera indica L. on Tetranychus urticae Koch (Acari, Tetranychidae)

Figure 2 Egg laying preference (mean ± SE) ofTetranychus urticaeexposed toMangifera indica oils and selected constituents for 48 hours. *significantly different (p<0.05).

opencc-by-4.0Aug 2019View details →
zenodo36/100

Figure 1 in Biodiversity of mites in mango orchards (Mangifera indica L.) and evaluation of some mineral and essential oils against Cisaberoptus kenyae Keifer (Acari: Eriophyidae) management

Figure 1 The homogenous of some species during 2020–2021 year.

opencc-by-4.0Jan 2022View details →
zenodo36/100

Advancing Wood Quality with Convective Vacuum Drying and its Influence on Multiple Properties of Mangifera Indica L. Timber

<p>This study explores the impact of convective vacuum drying on the quality of Mangifera indica L. timber, focusing on key parameters such as drying rate, time, and alterations in mechanical, physical, and anatomical properties. By significantly reducing moisture content, this method aims to enhance basic density, reduce volumetric shrinkage, and improve mechanical strength. Additionally, the study examines potential anatomical changes, including vessel and fiber dimensions, and assesses the overall suitability of convective vacuum drying for improving timber quality for industrial applications.</p>

opencc-by-4.0May 2024View details →
zenodo36/100

Table 2 in Effects of different combinations of N, P and K at different time interval on vegetative, reproductive, yield and quality traits of mango (Mangifera Indica. L) cv. Dusehri

<p><b>Table 2.</b> Effect of different fertilizer combinations of N, P and K on reproductive physiology of mango cv. Dusehri.</p><table><tbody><tr><th><b>Treatments</b></th><th><b>Growth size (mm)</b></th><th><b>Total No. of Panicle/Tree</b></th><th><b>Total no. of flowers / Panicle</b></th><th><b>Sex Ratio (%)</b></th><th><b>Fruit Drop (%)</b></th><th><b>Fruit Retention (%)</b></th><th><b>Total no. of fruit/tree</b></th><th><b>Yield (Kg/Tree)</b></th><th><b>Fruit Length (cm)</b></th><th><b>Fruit Weight (g)</b></th><th><b>Pulp Weight (g)</b></th><th><b>Stone Weight (g)</b></th><th><b>Peel Weight (g)</b></th><th><b>TSS (%)</b></th><th><b>Total Acidity (%)</b></th><th><b>TSS/Acid Ratio</b></th><th><b>Vit. C (mg/100 mL)</b></th><th><b>Total Sugar (%)</b></th></tr></tbody><tbody><tr><th>T1 (Control)</th><td>149.34d &plusmn; 3.89</td><td>397.67h &plusmn; 3.51</td><td>543.21h &plusmn; 3.61</td><td>51.17c &plusmn; 2.10</td><td>94.85a &plusmn; 1.40</td><td>1.83e &plusmn; 0.15</td><td>186.72g &plusmn; 4.51</td><td>40.01e &plusmn; 4.51</td><td>15.4b &plusmn; 3.17</td><td>155.15e &plusmn; 6.34</td><td>76.30g &plusmn; 2.22</td><td>24.14f &plusmn; 2.02</td><td>28.61f &plusmn; 1.86</td><td>20.29d &plusmn; 1.05</td><td>0.52a &plusmn; 0.005</td><td>22.43</td><td>31.26f &plusmn; 0.92</td><td>14.52c &plusmn; 0.25</td></tr><tr><th>T2 (N)</th><td>166.67b &plusmn; 4.47</td><td>508.57f &plusmn; 4.51</td><td>612.47f &plusmn; 4.58</td><td>54.42bc &plusmn; 1.05</td><td>94.86a &plusmn; 2.41</td><td>5.57d &plusmn; 0.57</td><td>213.34f &plusmn; 3.06</td><td>52.70cd &plusmn; 4.50</td><td>16.4b &plusmn; 3.11</td><td>175.50bc &plusmn; 5.50</td><td>82.41f &plusmn;1.90</td><td>30.04de &plusmn; 2.21</td><td>33.70e &plusmn; 1.38</td><td>21.06cd &plusmn; 0.95</td><td>0.49b &plusmn; 0.004</td><td>25.16</td><td>42.22c &plusmn; 1.18</td><td>15.24bc &plusmn; 0.41</td></tr><tr><th>T3 (P)</th><td>156.26cd &plusmn; 4.85</td><td>467.33g &plusmn; 4.04</td><td>593.34g &plusmn; 3.61</td><td>53.57bc &plusmn; 1.01</td><td>91.72ab&plusmn; 2.51</td><td>8.82bc &plusmn; 0.72</td><td>241.40e &plusmn; 4.04</td><td>50.14d &plusmn; 5.03</td><td>18.3ab &plusmn; 2.75</td><td>169.24cd &plusmn; 5.41</td><td>85.23f &plusmn; 1.96</td><td>28.50e &plusmn; 2.00</td><td>35.62de &plusmn;1.94</td><td>22.07bc &plusmn; 1.10</td><td>0.45c &plusmn; 0.005</td><td>29.13</td><td>39.37d &plusmn; 0.98</td><td>15.82bc &plusmn; 0.29</td></tr><tr><th>T4 (K)</th><td>164.80bc &plusmn; 4.95</td><td>634.57c &plusmn; 4.51</td><td>730.19c &plusmn; 4.56</td><td>57.39bc &plusmn; 2.38</td><td>94.26ab &plusmn; 1.79</td><td>5.83d &plusmn; 0.48</td><td>278.33d &plusmn; 3.51</td><td>55.23cd &plusmn; 4.50</td><td>19.3ab &plusmn; 2.99</td><td>182.01b &plusmn; 5.47</td><td>99.92e &plusmn; 1.89</td><td>31.26e &plusmn; 1.76</td><td>40.84c &plusmn; 1.35</td><td>21.41cd &plusmn; 1.25</td><td>0.37d &plusmn; 0.002</td><td>43.27</td><td>36.62e &plusmn; 1.21</td><td>16.89b &plusmn; 0.55</td></tr><tr><th>T5 (NP)</th><td>166.48b &plusmn; 4.98</td><td>584.47d &plusmn; 3.51</td><td>639e.46 &plusmn; 4.04</td><td>56.61bc &plusmn; 1.59</td><td>93.34ab &plusmn; 2.15</td><td>6.92cd &plusmn; 0.33</td><td>288.62c &plusmn; 4.51</td><td>57.31c &plusmn; 5.03</td><td>17.2b &plusmn; 3.29</td><td>160.46de &plusmn;4.86</td><td>107.34c &plusmn; 2.11</td><td>35.63bc &plusmn; 2.02</td><td>37.81d &plusmn; 1.88</td><td>23.43ab &plusmn; 0.93</td><td>0.35d &plusmn; 0.001</td><td>40.48</td><td>42.09b &plusmn; 0.47</td><td>16.65b &plusmn; 0.61</td></tr><tr><th>T6 (NK)</th><td>160.75bc &plusmn; 5.05</td><td>684.66b &plusmn; 4.50</td><td>810.62b &plusmn; 4.59</td><td>60.17b &plusmn; 2.53</td><td>90.28cd &plusmn; 2.71</td><td>9.74ab &plusmn; 0.66</td><td>320.32b &plusmn; 3.05</td><td>66.61b &plusmn; 4.49</td><td>18.5ab &plusmn; 2.73</td><td>180.32b &plusmn; 5.35</td><td>118.04b &plusmn; 1.94</td><td>37.21b &plusmn; 1.81</td><td>46.92b &plusmn; 1.65</td><td>23.30ab &plusmn; 0.08</td><td>0.32e &plusmn; 0.002</td><td>51.28</td><td>51.48b &plusmn;1.07</td><td>16.07b &plusmn; 0.71</td></tr><tr><th>T7 (PK)</th><td>159.42bc &plusmn; 4.98</td><td>559.71e &plusmn; 3.49</td><td>701.17d &plusmn; 3.61</td><td>55.31bc &plusmn; 1.02</td><td>92.96ab &plusmn; 2.56</td><td>7.49bcd &plusmn; 0.52</td><td>274.37d &plusmn; 2.52</td><td>54.85cd &plusmn; 4.51</td><td>18.1b &plusmn; 3.01</td><td>178.24bc &plusmn; 6.53</td><td>103.51d &plusmn; 1.79</td><td>33.07cd &plusmn; 1.95</td><td>42.14c &plusmn; 1.43</td><td>2.35bc &plusmn; 0.05</td><td>0.31e &plusmn; 0.002</td><td>52.41</td><td>51.55b &plusmn; 0.95</td><td>15.01b &plusmn; 0.37</td></tr><tr><th>T8 (NPK)</th><td>177.51a &plusmn; 4.92</td><td>845.64a &plusmn; 3.61</td><td>974.52a &plusmn; 4.58</td><td>69.18a &plusmn; 2.87</td><td>86.10e &plusmn; 2.85</td><td>13.85a &plusmn; 0.43</td><td>379.05a &plusmn; 3.00</td><td>82.35a &plusmn; 3.51</td><td>23.3a &plusmn; 3.10</td><td>197.05a &plusmn; 5.62</td><td>135.32a &plusmn; 2.09</td><td>43.53a &plusmn; 2.07</td><td>52.09a &plusmn; 1.77</td><td>24.53a &plusmn; 0.06</td><td>0.26f &plusmn; 0.001</td><td>73.53</td><td>57.63a &plusmn; 0.07</td><td>20.48a &plusmn; 0.53</td></tr></tbody></table><p>Values within each column followed by the same letter are not significantly different at P &lt;0.5 level.</p><p>Values within each column followed by the same letter are not significantly different at <i>P</i> &lt;0.05 level.</p><p>Values within each column followed by the same letters are not significantly different at <i>P</i> &lt;0.05 level.</p>

opencc-by-4.0Dec 2022View details →
zenodo36/100

Figure 1 in Effect of the essential oil from the latex of the fruit Mangifera indica L. on Tetranychus urticae Koch (Acari, Tetranychidae)

Figure 1 Feeding preference (mean ± SE) ofTetranychus urticaeexposed toMangifera indicaoils

opencc-by-4.0Aug 2019View details →
zenodo36/100

Exploring Soil Exchangeable Cations and Auditing the Potential of Phoenix dactylifera and Mangifera indica in CO2 Sequestration into Soil Biomass in a Naturally Occurring Tree Patches Using Infrared Gas Analyzer

<p><em>Soil Exchangeable Cations (EC) were audited, and the potential of economic trees in atmospheric CO2 sequestration into soil biomass was investigated. . The experiment indicated that economic trees are perfect for CO2 sequestration.&nbsp;</em></p>

opencc-by-4.0Jan 2023View details →
dryad36/100

Data from: Acclimation of mango (Mangifera indica cv. Calypso) to canopy light gradients - scaling from leaf to canopy

Open the record for dataset details and reuse information.

publicMay 2025View details →
zenodo32/100

FIGURES 21–24 in A new species of Procontarinia (Diptera: Cecidomyiidae) damaging fruit of mango, Mangifera indica (Anacardiaceae), in China

FIGURES 21–24. InfeStation of mango by Procontarinia fructiculi. (21) female laying eggS in flower on baSe of ovary, (22) normal fruit (upper left corner) and infeSted fruit with larval eScape holeS (centre), (23) Split open fruit to Show meSocarp with larvae within larval chamberS, (24) larval eScape holeS and larva leaving infeSted fruit.

opennotspecifiedApr 2018View details →
zenodo32/100

FIGURES 15–20. Procontarinia fructiculi. 15 in A new species of Procontarinia (Diptera: Cecidomyiidae) damaging fruit of mango, Mangifera indica (Anacardiaceae), in China

FIGURES 15–20. Procontarinia fructiculi. 15: male pupa, 16–18: female pupa, 19–20: larva. (15) ventral view, (16) ventral view, (17) lateral view, (18) dorSal view, (19) whole body in ventral view, (20) anterior end in ventral view with head and Spatula.

opennotspecifiedApr 2018View details →
zenodo32/100

FIGURES 7–14. Procontarinia fructiculi. 7–12 in A new species of Procontarinia (Diptera: Cecidomyiidae) damaging fruit of mango, Mangifera indica (Anacardiaceae), in China

FIGURES 7–14. Procontarinia fructiculi. 7–12: female, 13–14: larva. (7) 3rd flagellomere, (8) end of ovipoSitor in ventral view Showing cerci and hypoproct, (9) cerci in dorSal view, (10) occipital protuberance on head, (11) poStabdomen in lateral view, (12) maxillary palpuS, (13) Sternal Spatula with adjacent papillae, (14) poSterior Segment in dorSal view.

opennotspecifiedApr 2018View details →
zenodo32/100

FIGURES 1–6 in A new species of Procontarinia (Diptera: Cecidomyiidae) damaging fruit of mango, Mangifera indica (Anacardiaceae), in China

FIGURES 1–6. Procontarinia fructiculi. Male. (1) wing, (2) 3rd flagellomere, (3) terminalia in dorSal view, (4) terminalia in ventral view, (5) occipital protuberance on head, (6) tarSal claw with empodium.

opennotspecifiedApr 2018View details →

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