• 제목/요약/키워드: african plants

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Bioactive Compound Produced by Endophytic Fungi Isolated From Pelargonium sidoides Against Selected Bacteria of Clinical Importance

  • Manganyi, Madira Coutlyne;Tchatchouang, Christ-Donald K.;Regnier, Thierry;Bezuidenhout, Cornelius Carlos;Ateba, Collins Njie
    • Mycobiology
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    • 제47권3호
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    • pp.335-339
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    • 2019
  • Endophytic fungi have the ability to live inside the host plant tissues without causing neither symptoms of diseases/or harm. Opportunistic infections are accountable for majority of the outbreaks, thereby putting a burden on the health system. To investigate and characterize the bioactive compounds for the control of bacteria of clinical importance, extracts from endophytic fungi were isolated from indigenous South African medicinal plants. Extracts from endophytic fungi were isolated from 133 fungal strains and screened against Gram positive and negative bacteria namely Bacillus cereus, Escherichia coli, Enterococcus faecium, and E. gallinarum using disk diffusion. Furthermore, gas chromatography-mass spectrometry was performed to identify the bioactive compounds. Sixteen out of one hundred and thirty-three (12%) fungi extracts exhibited antibacterial properties against some of the selected bacteria. E. coli was found to be the most susceptible in contrast to E. faecium and E. gallinarum which were the most resistant. The isolate MHE 68, identified as Alternaria sp. displayed the greater spectrum of antibacterial activities by controlling selected clinical bacteria strains including resistant E. faecium and E. gallinarum. The chemical analysis of the extract from MHE 68 indicated that linoleic acid (9,12-octadecadienoic acid (Z,Z)) and cyclodecasiloxane could be accountable for the antibacterial activity. This is the first study conducted on the secondary metabolites produced by endophytic fungal strains isolated from the Pelargonium sidoides DC. possessing antibacterial properties.

Assessment of anatomical characteristics of the medicinal plant African cherry (Prunus africana) for its accurate taxonomic identification

  • Komakech, Richard;Yang, Sungyu;Song, Jun Ho;Choi, Goya;Kim, Yong-Goo;Okello, Denis;Omujal, Francis;Kyeyune, Grace Nambatya;Matsabisa, Motlalepula Gilbert;Kang, Youngmin
    • Journal of Plant Biotechnology
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    • 제49권2호
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    • pp.139-144
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    • 2022
  • The genus Prunus (family: Rosaceae) consists of over 400 plant species and exhibits vast biodiversity worldwide. Given the wide distribution of this genus, its taxonomic classification is important. Anatomical characteristics are conserved and stable and can therefore be used as an important tool for the taxonomic characterization of plants. Therefore, this study aimed to assess and document the anatomical characteristics of the leaf, stem, and seed of P. africana using micrographs and photographs for possible use in the identification, quality control, and phylogenetic analysis of the species. The anatomical sections of a young stem revealed a cortex consisting of isodiametric parenchyma cells, druse crystals, primary vascular bundles, and pith. The mature stem bark majorly consisted of the rhytidome, with the periderm densely arranged in multiple layers; a cluster of stone cells; and sclerenchyma. The leaf sections were hypostomatic, with stomata sizes ranging from 18.90-(22.34)-26.90 × 15.41-(18.40)-21.22 ㎛. The leaf sections showed the presence of characteristic druse crystals, vascular bundles, and mesophyll layers. The pericarp contained the epicarp, mesocarp, and endocarp, with their thickness being approximately 350-400, 300-350, and 30-50 ㎛, respectively. In addition, it contained a seed testa with a thickness of approximately 50-60 ㎛. The morphological and anatomical characteristics observed in P. africana leaves, stems, and seeds in this study could serve as useful data for the taxonomic identification of this species.

아프리카 재래종 카사바의 경단분열조직 배양에 의한 체세포배발생과 식물체 재분화 (Somatic Embryogenesis and Plant Regeneration in Shoot Apical Meristem Cultures of an African Local Variety Cassava (Manihot esculenta Crantz))

  • 민성란;양승균;유장렬
    • 식물조직배양학회지
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    • 제21권5호
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    • pp.303-308
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    • 1994
  • 가나 재래종 카사바 식물체의 경단 분열조직을 2 mg/L 2,4-D가 함유된 MS 배지에서 배양하였을 때 32%가 체세포배를 형성하였다. 절단한 체세포배를 1 mg/L 2,4-D가 함유된 배지에 배양하였을 때는 최고 93%가 2차배를 형성하였다. 체세포배는 식물체로 전환하지 못하였으므로 종단으로 자른 체세포배를 0.1-5mg/L BA가 함유된 배지에서 배양하여 부정아를 유도하였다. 8주 경과하였을 때 최고 100%가 부정아를 형성하였으며 이들은 발근된 후에 토양으로 이식하였다

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Diversity and origin of bottle gourd, Lagenaria

  • Yuasa, Hiroshi
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2002년도 심포지엄
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    • pp.96-97
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    • 2002
  • Bottle gourd, Lagenaria siceraria, is one of the oldest cultivated plants. To bigin with, its fruit was used as a complete liquid bottle or container. It was a very widespread cultivated plant in prehistoric times, for example (there) is a report from Peru as early as between 13,000 B.C and 11,000 B.C. The dug-out finds in Japan proved to be about 95,000 years old according to the /sup 14/C analysis. The bottle grourd was the most important plant before the invention of pottery in many areas of Asia, New Guinea, Polynesia, America, and Africa. I would like to suggest that there should be "The Bottle Gourd Age" prior to the Pottery Age. Bottle gourds are also used for various purposes such as food, masks, pipes, musical instruments, medicine, symbols, artistic products and also as penis-sheaths of men's attire. Their purposes number more than 220 including 70 varienties of containers or bottles. I consider that its utilization should be called a culture, as it were, "The gourd culture." The shape and the size of the fruit of bottle gourd have a larger variety than those of any other plant. As for the size, it is reported that they range from those that are shorter than 3cm to those that are ovoid and longer than 60cm in diameter. With regard to the shape of its fruit, the bottle gourd can be classified into 7 groups and even more than 30 races, considering the difference of the size. The seeds are so variable without two horn-like projections, with smooth surface or longitudinalines, white or brown, with smooth corky margin. Generally, it seems that there is no correlation between seem shape and fruit shape. My study shows that the seeds of gourd. My study shows that the seeds of gourd in Asia are so simple in shape and in color except for the size. But the seeds of those in Africa are various and seem to be beyond the confines. Explaining the great diversity of the seeds of those in Africa therefore, they appear to have no correlation among the types of fruit of the bottle gourd with African origin. It might be supposed that another 4 wild Lagenaria spp. distribute only in Africa. The intraspecies hybrid is confirmed between the bottle gourd, Lagenaria siceraria, and wild L. spehaerica. And Fl hybrid is sterile: it has no fertility. However, even though the shapes of the fruit and the seeds are different, they can cross with each other. Moreover, their hybrids grow up to be extremely vigorous and have normal fertility. Fruit shapes of Fl plants are similar to those of their parents, if they have the same character. Whereas, the fruit shape often became different from each other when the cross occurs between those with different fruit shapes. It is shown that dumbbell shapes, HYOTAN in Japanese, is recessive while its bitterness is dominant. Thus the character of F2 hybrids Is segregative. I'll give further particulars of the heredity of the groud in my lecture.

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스마트-독립전력망을 사용한 소규모 태양광 발전소의 건설과 운영: 한국-탄자니아 적정기술 거점센터의 사례 (Construction and Operation of Small Solar Plant Using Smart-Off-Grid: Case of Tanzania-Korea Innovative Technology and Energy Center)

  • 김지수;정우균;하보라;문지현;이협승;안성훈
    • 적정기술학회지
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    • 제5권2호
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    • pp.62-69
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    • 2019
  • 안정적인 전력 공급은 해당 지역의 생활수준 개선과 소득 수준에 중요한 역할을 하기 때문에, 공적개발원조 (Official Development Assistance, 이하 ODA)의 중요한 목표중에 하나이다. 하지만 수많은 개도국의 교외지역은 국가 전력망과 제대로 연결되지 못하여 전력을 전혀 공급 받지 못하고 있고, 국가 전력망과 연결된 일부 받는 지역도 전력 용량의 한계로 인해 수시로 정전이 일어나고 있는 상황이며, 이는 해당 지역의 소득 수준 향상과 생활수준 개선에 큰 장애요소로써 작용하고 있다. 서울대학교가 넬슨-만델라 아프리카 과학기술원 (Nelson-Mandela African Institution of Science and Technolgoy, 이하 NM-AIST)과 협력하여 건립된 한국-탄자니아 적정기술거점센터 (Korea-Tanzania Innovative Technology and Energy Center, 이하 iTEC)은 이러한 문제를 해결하기 위해, 전력이 공급되지 않는 탄자니아 교외지역에 스마트-독립전력망을 활용한 소규모 태양광 발전소를 건설하고, 이와 연계된 사업을 진행함으로써, 이러한 문제를 해결하고자 한다. 이를 위해 킬리만자로 (Kilimanajaro) 주 음카라마 (Mkalama) 마을과 아루샤 (Arusha) 주 응구르도토(Ngurdoto) 마을에 각각 10 kW, 7 kW급 태양광 발전소를 건설하여, 각각 50 여가구에 전력을 공급하고 있다. 또한, 이에 대한 데이터를 수집하고 발전소와 배전 시스템의 운영을 위해 스마트 모니터링 시스템을 설치하였다. 이를 통해 고장 진단, 사용량 측정 등 다양한 기능을 수행하고 있다. ITEC에서는 이러한 스마트-독립전력망을 활용한 소규모 태양광 발전소 건설과 전력 공급, 그리고 다양한 연계사업 진행을 통해 지속가능한 개발도상국 농촌 주민의 소득수준과 삶의 질 향상을 도모하고 있다.