Showing 1 - 15 results of 15 for search '"angiosperm"', query time: 0.07s Refine Results
  1. 1

    The marine angiosperms, seagrass by Bujang, Japar Sidik

    Published 2012
    “…They are under the sub-division of angiosperms classed within a family of the monocotyledonous plants, which also includes the freshwater aquatic macrophytes. …”
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    Inaugural Lecture
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  3. 3

    Estimation of the sensitivity to photoinhibition in Striga hermonthica-infected sorghum by Ramlan, Mohd Fauzi, Graves, Jonathan D.

    Published 1996
    “…Sensitivity to photoinhibition was assessed in sorghum infected with the angiosperm root parasite Striga hermonthica and in uninfected sorghum plants, at four times during the development of the host-parasite association. …”
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    Article
  4. 4

    Functional characterization of sesquiterpene synthase from Polygonum minus by Ee, Su Fang, Mohamed Hussein, Zeti Azura, Othman, Roohaida, Shaharuddin, Noor Azmi, Ismail, Ismanizan, Zainal, Zamri

    Published 2014
    “…We also constructed a phylogenetic tree, which showed that PmSTS belongs to the angiosperm sesquiterpene synthase subfamily Tps-a. To examine the function of PmSTS, we expressed this gene in Arabidopsis thaliana. …”
    Article
  5. 5

    Physical and chemical characteristics of seagrass fiber for papermaking by Syed, Nurul Nur Farahin

    Published 2013
    “…Marine angiosperm could inevitably offer considerable potential resources for their fiber yet less research has been conducted especially in Malaysia. …”
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    Project Paper Report
  6. 6

    Transformation of tobacco (nicotiana tabacum) with the oil palm cinnamyl alcohol dehydrogenase 1 (CAD1) gene by Yee, Mei Foong

    Published 2015
    “…The oil palm CAD1 shares a common ancestor with their counterparts in the angiosperm and gymnosperm lineages. The CAD phylogeny showed that EgCAD1 was clustered together with the genes from rice, pinus and banana, and they share the same recent common ancestor. …”
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    Project Paper Report
  7. 7

    An update on orchid diversity in Malaysia, threat, conservation status and challenges in a changing climate by Go, Rusea

    Published 2016
    “…Orchidaceae is one of the largest angiosperm families found in Malaysia. Botanical exploration for orchids in various forests and vegetation types since 1999 to date have revealed tremendous changes in species diversity and distribution in Malaysia, being home for more than 4000 species of wild orchids with numbers still increasing today. …”
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    Conference or Workshop Item
  8. 8

    Embryo sac and microsporangium development in Pandanus (pandanaceae) by Cheah, C. H., Stone, B. C.

    Published 1975
    “…The development of the microsporangium is normal for angiosperms. The pollen grains are binucleate. …”
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    Article
  9. 9

    Seagrass in Malaysia: issues and challenges ahead by Bujang, Japar Sidik, Zakaria, Muta Harah, Short, Frederick T.

    Published 2016
    “…Seagrasses are submerged monocotyledonous angiosperms living in marine and estuarine habitats. …”
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    Book Section
  10. 10

    Variability of leaf morphology and marker genes of members of the halophila complex collected in Viet Nam by Vy, Nguyen Xuan, Bujang, Japar Sidik, Papenbrocka, Jutta

    Published 2013
    “…Seagrasses are marine angiosperms and adapted to aquatic life several times independently. …”
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    Article
  11. 11

    Fiber characteristics and papermaking of seagrass using hand-beaten and blended pulp by Nur Syed, Nurul Farahin, Zakaria @ Ya, Muta Harah, Bujang, Japar Sidik

    Published 2016
    “…Marine angiosperms could inevitably offer considerable potential resources for their fiber, yet little research has been conducted, especially in Malaysia. …”
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    Article
  12. 12

    An endochitinase gene expressed at high levels in the stylar transmitting tissue of tomatoes by Harikrishna, K., Jampates-Beale, Rachanee, Milligan, Stephen B., Gasser, Charles S.

    Published 1996
    “…In vegetative tissue, low levels of Chi2;1 mRNA were detected, and these levels did not increase in response to wounding or treatment with ethephon. mRNA from Chi2;1 orthologs was not detected in most other angiosperms tested, even including some members of the Solanaceae, and it is therefore unlikely that Chi2;1 is essential for stylar function. …”
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    Article
  13. 13

    Transformation of tobacco (Nicotiana tabacum l.) with the oil palm Cinnamyl alcohol dehydrogenase 2 gene by Mohd Fauzi, Muhamad Saiful Nizam

    Published 2015
    “…In addition, the phylogeny of the CAD gene family from selected woody angiosperms was also constructed. Tobacco plants were transformed with two plasmids (pRI201-CAD2 and pMDC32-H2) based on the standard agrobacterium-mediated transformation protocol using leaf discs as target tissues. …”
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    Project Paper Report
  14. 14

    Plant diversity in oil palm plantations in Felda Wilayah Jengka, Malaysia by Shaipudin, Nor'izzati

    Published 2014
    “…One hundred and twenty-four plant (124) species belonging to six divisions; 93 angiosperms (Magnoliophyta), 23 true ferns (Monilophyta), two fern allies (Lycophyta), three mosses (Bryophyta), two liverworts (Hepatophyta) and one gymnosperm (Gnetophyta) were identified throughout this study. …”
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    Thesis
  15. 15

    Gametophyte development, antioxidant properties and response to salinity of Brassica rapa L. var. parachinensis by Ghanad, Mona

    Published 2015
    “…Gametophyte development of B. rapa var. parachinensis found similar with other angiosperms and Brassica. New embryological characteristics had been explored and not reported yet in any Brassicaceae which are the reduced type of anther wall development and the ovule type is Hemitropous. …”
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    Thesis