• Title/Summary/Keyword: Pollen

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In Vitro Culture and Transformation by Agroinfiltration of Lisianthus (Eustoma russellianus) Pollen (Lisianthus 화분의 기내배양 및 Agroinfiltration에 의한 형질전환)

  • Park Hee Sung
    • Journal of Life Science
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    • v.14 no.6 s.67
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    • pp.1018-1022
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    • 2004
  • Optimized conditions for Agrobacterium-mediated lisianthus pollen transformation were adjusted using various factors such as temperature, pH and sucrose concentration. Pollen tube growth was successfully achieved in a medium (pollen germination medium; PGM) containing $7-15\%$ sucrose with pH in the range of 5.5-7.0 at temperature of $20-27^{\circ}C$. Lisianthus pollen was vacuum-infiltrated with Agrobacterium cell suspension for 20 min, and transformed pollen was confirmed by GUS histochemistry and Southern hybridization following RT-PCR. Transgenic pollen system may be utilized for establishing an area of plant transient expression systems based on the convenient pollen transformation procedure presented in here.

Changes in potassium distribution with the maturity of barley(Hordeum vulgar L.) pollen

  • Lee, Kui-Jae;S. Rehman;Park, Min-Kyung;Lee, Wang-Hyu
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2003.10b
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    • pp.46-46
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    • 2003
  • An important function of pollen aperture is believed to be regulating the water balance of the pollen when subjected to changes in humidity (Shukla, et al. 1998). It has been reported that mature barley pollen rapidly swells upon hydration and pollen tube emerges in a few minutes of germination (Anthony and Harlan, 1920). Although, there could be other factors responsible for rapid hydration of pollen. However, K is widely known for its rapid action as an osmotic regulator (Heslop-Harrison and Heslop-Harrison, 1996). In the present study, changes in K distrbution were traced during different stages of pollen maturation in barley. The existence of K at the aperture area of matured pollen may possibly play other import physiological roles. For example, K is reported to be an essential constituent of pollen germination and even required in higher concentration for pollen tube growth(Fan et al., 2001). These results suggest that there could be a possible relationship between K, located at the aperture area and rapid uptake of water by pollen.

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Effects of Flavonoids on Pollen Tube Growth in Arabidopsis thaliana

  • Kim, Young-Soon;Song, Kyu-Sang;Cheong, Hyeon-Sook
    • Journal of Plant Biology
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    • v.39 no.4
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    • pp.273-278
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    • 1996
  • Arabidopsis mutants deficient in flavonoid and sinapate ester (tt4 and fah1-7, respectively) were evaluated in vivo and in vitro to study the possible role of flavonoid compounds in pollen tube growth. In vivo, we investigated pollen tube growth in the pistils of the mutants and wild type(Ler). The growth of pollen tubes was significantly different among the three genotypes. In the fal1-7 pistils, the tubes grew to a greater length relative to those of the wild type or tt4. To examine in vitro pollen tube growth, a solid medium was devised for pollen germination and subsequent growth. In vitro, the identical result was obtained; fahl-7 pollens developed the longest tubes and elongated most rapidly. Therefore, the growth response of pollen tubes to phenolic compounds was examined by adding quercetin or sinapate ester in various concentrations to the media. Quercetin enhanced both germination rate and tube growth in the pollens of the mutants and the wild type, especially in tt4. In contrast, sinapate ester inhibits pollen germination and pollen tube growth in three genotypes. These results suggest that flavonoids and related phenolic compounds have physiological role in the plant reproductive system.

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Pollen morphology and character evolution in the subtribe Neoguillauminiinae (Euphorbiaceae)

  • PARK, Ki-Ryong
    • Korean Journal of Plant Taxonomy
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    • v.49 no.2
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    • pp.101-106
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    • 2019
  • A pollen morphological study was conducted using light and scanning electron microscopy involving six species belonging to the subtribe Neoguillauminiinae. Pollen samples from the six species are tricolporate, and the colpi are surrounded by broad margo, with the widest width in the equator, narrower toward the pole, and rounded at the end. Based on the pollen morphology, pollen of the species in the subtribe Neoguillauminiinae were divided into four types: the Neoguillauminia type (T1), the C. collinus type (T2), the C. casuarinoides type (T3) and the C. paucifolius type (T4). The generic divergence between Neoguillauminia and Calycopeplus was supported by the pollen characters of the size, amb and lumina shape. In particular, the traits of rounded shape in the outline of the polar view and circular lumina, which appear only in the pollen grains of N. cleopatra, support the recognition of Neoguillauminia as a monotypic genus. Calycopeplus oligandrus and C. paucifolius had the same reticulate pattern of pollen grains, supporting Forster's hypothesis that these two species are closely related. On the other hand, the close relationship between the morphologically similar C. collinus and C. casuarinoides was not supported by the pollen characters. Within the subtribe there are two equally parsimonious hypotheses regarding the evolution of exine characters. The first consists of two changes of microreticulate through parallel evolution from the primitive reticulate exine, and the second is that the microreticulate pattern is differentiated from the reticulate state and then reversed to reticulate pollen grains.

Oviposition and Colony Development of the Bumblebees, Bombus ignitus and B. terrestris depending on Different Pollen

  • Yoon, Hyung-Joo;Kim, Sam-Eun;Lee, Kyeong-Yong;Lee, Sang-Beom;Park, In-Gyun
    • International Journal of Industrial Entomology and Biomaterials
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    • v.11 no.2
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    • pp.99-105
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    • 2005
  • We investigated oviposition and colony development of Bombus ignitus and B. terrestris depending on different pollen. In five kinds of pollen blend, the colony development in fresh-freezing pollen blend produced in Korea (Korea-FFP) was the best performance, although egg-laying characteristics is lower than that of pollen blend for oviposition imported from Korppert company (Kopport-FOP). The Kopport-FOP proved that it was suitable to use for oviposition of bumblebees. The Korea-FFDP, freezing dried-fresh pollen blend produced in Korea, is lower rather than the Korea-FDP although it is similar to the KopportFOP in colony development. It is not efficient to use commercial pollen for bumblebee because it is expensive in cost. The dried pollen blend for honeybee feeding imported from China (China-DP) was not suitable for rearing of bumblebee because it did not form colony although the worker emerged. In types of pollen, the oviposition and colony development of B. ignitus were not affected by the fresh-freezing pollen and dried-freezing pollen. This result also indicated that dried pollen, dried in the shade for 5 - 6 days, is possible to use as commercial pollen for bumblebee reproduction.

The effect of bee pollen and its flavonoids on immune-modulating in mice

  • Jia Bak;Il Kyung Chung;Yun-Sik Choi
    • Journal of the Korean Applied Science and Technology
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    • v.40 no.5
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    • pp.955-964
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    • 2023
  • Bee pollen is a valuable apitherapeutic product and has been known to have diverse biological activities, including antimicrobial, anti-inflammatory, and even anticancer activity. However, its effect on the immune system is not well studied and is rather controversial. This study intended to elucidate the biological activity of bee pollen on immunity. For this purpose, we used lyophilized bee pollen after wet grinding, which shows increased extraction of bioactive components and enhanced biological activity. First, lyophilized bee pollen after wet grinding significantly increased the proliferation of splenocytes isolated from normal mice. On the other hand, lyophilized bee pollen after wet grinding dose-dependently reversed splenocyte proliferation by concanavalin A or lipopolysaccharide. To clarify the activity of bee pollen on immunity lyophilized bee pollen after wet grinding was administered daily to mice for five weeks and isolated splenocytes. In this study, there was no significant difference in the population of immune cells and the size of spleen between bee pollen- and sterile water-treated groups. However, proliferation of splenocyte isolated from bee pollen-administered animals was boosted by both concanavalin A and lipopolysaccharide. Finally, kaempferol, a well-known flavonoid from bee pollen, dose-dependently increased splenocyte proliferation by both Con A and LPS. On the other hand, naringenin, another flavonoid in the bee pollen, dose-dependently inhibited the proliferation of splenocytes by Con A and LPS. Together, these data indicate that bee pollen may be able to prime the immunity to boost immune reaction after inflammation.

Antioxidative Effect of Pine, Oak, and Lily Pollen Extracts (송화분, 참나무 및 백합화분 추출물의 항산화 효능)

  • Kim, Seok-Joong;Youn, Kwang-Sup;Park, Hee-Sung
    • Korean Journal of Food Science and Technology
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    • v.37 no.5
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    • pp.833-837
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    • 2005
  • Antioxidative activities of pine, oak, and lily pollen extracts were evaluated based on 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical-scavenging ability and inhibition of lipid peroxidation in animal tissues. Each pollen was extracted with 50% ethanol, 100% ethanol or water. DPPH radical-scavenging capacity of 50% ethanol extract ($EC_{50}$ 40.0 mg/mL) of pine pollen was higher than those of water (46.8 mg/mL) and 100% ethanol (131.2 mg/mL) extracts of pollen. Fifty percent ethanol (3,2 mg/mL) was also better than 100% ethanol (4.5 mg/mL) and water (8.3 mg/mL) for extraction of oak pollen. For preparation of lily pollen extracts, 100% ethanol was most effective (14.0 mg/mL), followed by water (18.8 mg/mL) and 50% ethanol (24.0 mg/mL). Oak pollen showed higher DPPH radical-scavenging activity than others. Lipid peroxidation in rat brain homogenate induced by ascorbate-Fe3+-EDTA and rat kidney homogenate were inhibited by water extracts of all pollens in dose-dependent manner. Extracts of oak and lily pollen showed higher lipid peroxidation inhibition than pine pollen extract. Polyphenol content was highest in oak pollen extract $(32.5{\pm}0.7\;{\mu}g/mg\;pollen)$, followed by lily extract $(25.9{\pm}1.4\;{\mu}g/mg\;pollen)$ and pine extract $(9.3{\pm}0.7\;{\mu}g/mg\;pollen)$.

Characteristics and Temporal Distribution of Airborne Pollen in an Urban Area of Japan

  • Ma Chang-Jin;Kasahara Mikio;Tohno Susumu;Kang Gong-Unn
    • Journal of Korean Society for Atmospheric Environment
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    • v.21 no.E3
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    • pp.107-113
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    • 2005
  • Using a sampling device of our own making, airborne pollen has been monitored in Kyoto, Japan from the middle of February to the end of May 2004. From the morphological analysis of pollen grains by Scanning Electron Microscope (SEM), it was possible to identify some pollen types like Cryptomeria, Pine, Alder, Cyclobalanopsis, Chamaecyparis, and Equisetum. Daily average airborne pollen counts show strong variations from the day to day which makes the appropriate daily forecasts that could be of practical use for patients difficult. Diurnal variation of airborne pollen grains at our local sampling site is very irregular and shows no similarity between pollen types. The highest concentrations of Cryptomeria and Alder pollens in the south -west wind directions might be attributed to the airborne pollen transport, while the increase in Pine pollen grain in the southern wind direction was probably due to the local spread. Prevailing wind direction (SW) during the pollinating periods of Cryptomeria and Alder pollens could suggest a long-distance transport from a distant mountain.

Use of Pine (Pinus densiflora) Pollen Cones as an Environmentally Friendly Sound-Absorbing Material

  • JANG, Eun-Suk
    • Journal of the Korean Wood Science and Technology
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    • v.50 no.3
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    • pp.186-192
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    • 2022
  • This study examined the utility of pine (Pinus densiflora) pollen cones as an environmentally friendly material with sound-absorbing properties. Pine pollen cone samples with widths of 0.8-1.2 cm and lengths of 3.5-4.5 cm were prepared. After filling impedance tubes to heights of 6, 8, 10, or 12 cm with the pine pollen cones, the sound absorption coefficient of the pine pollen cones was investigated. The peak sound absorption frequency of the samples with a thickness of 6 cm was reached at 1,512 Hz; however, this value shifted to 740 Hz in samples with a thickness of 12 cm. Therefore, the sound-absorbing performance of pine pollen cones at low frequencies improved as the material thickness increased. According to KS F 3503 (Korean Standards Association), the sound absorption grade of pine pollen cones ranges from 0.3 to 0.5 M, depending on the material thickness of the pine pollen cones. In conclusion, the pine pollen cones demonstrated good sound absorption properties. They, thus, may be considered an environmentally friendly sound-absorbing material.

Identification of Floral Type for Honey and Pollen Load (봉밀(蜂蜜) 및 화분하(花粉荷)의 기원식물(基源植物))

  • Suk, Kuy-Duk;Kim, Mi-Kyung
    • Korean Journal of Pharmacognosy
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    • v.14 no.3
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    • pp.83-91
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    • 1983
  • The purpose of this study is concerned with identification of floral type of commercially available honeys and pollen loads. Ikuse's technique was applied to identify the pollen species of honey and pollen loads. Among six kinds of commercially available honeys in Taegu, Korea i.e. Robinia Honey, Brassica Honey, Castanea Honey, Rhododendron Honey, Lespedeza Honey and Multipant Honey, all honeys contained pollens, which were coincident with their trade names given by the apirists, except Lespedeza Honey. The trade name of imported honeys were not given by the plant, from which pollen material and nectar were collected. Among four kinds of these products, pollen was not identified in Clover Honey. A spectrum of honey products added by pollen loads was, of course, wider than simple honey products. The pollen load showed spectrum of pollens including not only those which are specialized for wind pollination, eq. Pinus species and Gramineae, but also contained for insect pollination, eq. rose and leguminous plants.

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