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Comparison of Palm
Diversity between
subplot of Inobong
Permanent Research
Plot,
Crocker Range Park.


 By
 AK MOHD RAFIQ BIN AK MATUSIN
 BS10110016
INTRODUCTION
 Arecaceae   / palmae = 2800 species in
  190 genera
 Has diversity in tropics and subtropics
 Vast ecological and economic
  importance
 Role as a source of raw materials for
  consumption, building, daily living for
  traditional cultures oil palm, date palm
  and coconut palm
INTRODUCTION
 Crocker   Range Park : West Coast and
  interior plains of Sabah
 Focus on diversity of palm between C3
  and D4 subplot of Inobong Permanent
  Research Plot.
OBJECTIVES
 To compare the DIVERSITY palm
  species between C3 and D4
  subplots
 To CHECK LIST species found in both
  subplots
METHODS AND MATERIALS
 Location  background
  * Crocker Range Park
  * Largest protected area in Sabah
      (139,919 ha)
  * 75 km long from northeast to southeast
  * Elevation ranges widely from lowland of
      100 m to mountain
Figure 1.0 Location of CRP
(modified from Suleiman et al., 2007).
Study site

                                               C3 AND D4 SUBPLOTS




Figure 2.0 Diagram of a 10 m x 10 m subplots in 50 m x 50 m plot
(Ishida et al., 2006).
 Fieldsampling : number of individual in C3
 and D4 subplot will be counted
  Circumstances of more than 3cm
 Data analysis : Simpson Diversity Index


               ni (ni – 1)
   Ds = 1 - -------------- = Simpson Diversity
                N (N-1)
RESULTS
 C3 SUBPLOT
 Species :
  1. Calamus comptus
  2. Calamus convallium
                                    7%

                                               Calamus comptus

  3. Calamus marginatus
                              40%
                                               Calamus
                                               convallium
                                               Calamus
                                         53%
                                               marginatus

   Subfamily : Calamoideae
RESULTS
 D4  SUBPLOTS                    10%         10%

 Species :                                         Calamus comptus


  1. Calamus comptus                                Calamus
                                                    marginatus


  2. Calamus marginatus
                                                    Licuala ahliduri



  3. Licuala ahlidurii
                                        80%




   Subfamilies : Calamoideae &
    Coryphoidea
Calamus marginatus,
Calamus convallium (C3 subplot only)
Calamus comptus
Licuala ahlidurii ( only found in D4 subplot)
DATA ANALYSIS

SIMPSON   DIVERSITY INDEX

C3 SUBPLOTS: 0.59
D4 SUBPLOTS: 0.378
DISCUSSION
 Total   number of individual in both subplots
  : 25
 Simpson Diversity Index show C3 subplot
  more diverse than D4 subplot although D4
  have 2 subfamilies
 2 same species are found in both subplots
-: Calamus comptus
-: Calamus marginatus
3   species of Calamoideae found in both
  sites are classified as climbing
  undergrowth rattan
 Rattan can inhibit in a wide range of
  habitat from 0 to 3000m above sea level
 Mostly found in lowland rain forest
 Thus, these 3 species can occupy both
  study sites
 Calamus comptus, Calamus
  marginatus, Calamus convallium
 Most abundance palm genus in C3
  subplot is Calamus sp.
 Simpson Diversity Index, C3 (0.59) more
  diverse than D4 (0.378)
 C3 and D4 located at different soil
  surface condition. C3 subplot located at
  low elevation than D4 subplots
 C3 watery soil, near with small water flow
  channel
 Calamus sp. tend to grow rapidly in this
  area
 Apply in palm plantation
CONCLUSION
Total individual 25.
Study the changes trend of
 diversity along the subplot
Apply in plantation, economic
 uses, natural ecosystem
References
   Rimi, R., 2004. In: Maryati, M., Zulhazman, H., Tachi, T., & Nais, J. Crocker Range, Scientific
    Expidition 2002. Universiti Malaysia Sabah, Kota Kinabalu, Sabah.

   Suleiman, M., Ishida, H., Sugawara, A., Spait, M., Said, M. S., & Rimi, R. 2007. An introduction to
    the Crocker Range Park Permanent Research Plot Project. Universiti Malaysia Sabah, Kota
    Kinabalu, Sabah.

   Ishida, H., Takahira-Ishida, H., Said, I. M., & Rimi, R. 2006. Manual for Permanent Research Plot
    in Crocker Range Park. Research and Educational Component, Bornean Biodiversity and Ecosystem
    Conservation (BBEC) Programme, Sabah.

   Whitmore, T.C. 1998. Palms of Malaya. Second Edition. White Lotus Co. Ltd, Thailand.

   Maunder, M., Lyte, B., Dransfield, J. & Baker, W. 2001. The conservation value of botanic garden
    palm collections. Journal of Biological Conservation 98(3):259-271.

    Aminuddin, M. 2003. Silviculture and Ecology of Rattan. Universiti Malaysia Sabah, Sabah.
THANK YOU

Q   & A SESSION

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Fieldwork presentation

  • 1. Comparison of Palm Diversity between subplot of Inobong Permanent Research Plot, Crocker Range Park. By AK MOHD RAFIQ BIN AK MATUSIN BS10110016
  • 2. INTRODUCTION  Arecaceae / palmae = 2800 species in 190 genera  Has diversity in tropics and subtropics  Vast ecological and economic importance  Role as a source of raw materials for consumption, building, daily living for traditional cultures oil palm, date palm and coconut palm
  • 3. INTRODUCTION  Crocker Range Park : West Coast and interior plains of Sabah  Focus on diversity of palm between C3 and D4 subplot of Inobong Permanent Research Plot.
  • 4. OBJECTIVES  To compare the DIVERSITY palm species between C3 and D4 subplots  To CHECK LIST species found in both subplots
  • 5. METHODS AND MATERIALS  Location background * Crocker Range Park * Largest protected area in Sabah (139,919 ha) * 75 km long from northeast to southeast * Elevation ranges widely from lowland of 100 m to mountain
  • 6. Figure 1.0 Location of CRP (modified from Suleiman et al., 2007).
  • 7.
  • 8. Study site C3 AND D4 SUBPLOTS Figure 2.0 Diagram of a 10 m x 10 m subplots in 50 m x 50 m plot (Ishida et al., 2006).
  • 9.
  • 10.  Fieldsampling : number of individual in C3 and D4 subplot will be counted Circumstances of more than 3cm  Data analysis : Simpson Diversity Index ni (ni – 1) Ds = 1 - -------------- = Simpson Diversity N (N-1)
  • 11. RESULTS  C3 SUBPLOT  Species : 1. Calamus comptus 2. Calamus convallium 7% Calamus comptus 3. Calamus marginatus 40% Calamus convallium Calamus 53% marginatus  Subfamily : Calamoideae
  • 12. RESULTS  D4 SUBPLOTS 10% 10%  Species : Calamus comptus 1. Calamus comptus Calamus marginatus 2. Calamus marginatus Licuala ahliduri 3. Licuala ahlidurii 80%  Subfamilies : Calamoideae & Coryphoidea
  • 14. Calamus convallium (C3 subplot only)
  • 16. Licuala ahlidurii ( only found in D4 subplot)
  • 17. DATA ANALYSIS SIMPSON DIVERSITY INDEX C3 SUBPLOTS: 0.59 D4 SUBPLOTS: 0.378
  • 18. DISCUSSION  Total number of individual in both subplots : 25  Simpson Diversity Index show C3 subplot more diverse than D4 subplot although D4 have 2 subfamilies  2 same species are found in both subplots -: Calamus comptus -: Calamus marginatus
  • 19. 3 species of Calamoideae found in both sites are classified as climbing undergrowth rattan  Rattan can inhibit in a wide range of habitat from 0 to 3000m above sea level  Mostly found in lowland rain forest  Thus, these 3 species can occupy both study sites  Calamus comptus, Calamus marginatus, Calamus convallium
  • 20.  Most abundance palm genus in C3 subplot is Calamus sp.  Simpson Diversity Index, C3 (0.59) more diverse than D4 (0.378)  C3 and D4 located at different soil surface condition. C3 subplot located at low elevation than D4 subplots  C3 watery soil, near with small water flow channel  Calamus sp. tend to grow rapidly in this area  Apply in palm plantation
  • 21. CONCLUSION Total individual 25. Study the changes trend of diversity along the subplot Apply in plantation, economic uses, natural ecosystem
  • 22. References  Rimi, R., 2004. In: Maryati, M., Zulhazman, H., Tachi, T., & Nais, J. Crocker Range, Scientific Expidition 2002. Universiti Malaysia Sabah, Kota Kinabalu, Sabah.  Suleiman, M., Ishida, H., Sugawara, A., Spait, M., Said, M. S., & Rimi, R. 2007. An introduction to the Crocker Range Park Permanent Research Plot Project. Universiti Malaysia Sabah, Kota Kinabalu, Sabah.  Ishida, H., Takahira-Ishida, H., Said, I. M., & Rimi, R. 2006. Manual for Permanent Research Plot in Crocker Range Park. Research and Educational Component, Bornean Biodiversity and Ecosystem Conservation (BBEC) Programme, Sabah.  Whitmore, T.C. 1998. Palms of Malaya. Second Edition. White Lotus Co. Ltd, Thailand.  Maunder, M., Lyte, B., Dransfield, J. & Baker, W. 2001. The conservation value of botanic garden palm collections. Journal of Biological Conservation 98(3):259-271.  Aminuddin, M. 2003. Silviculture and Ecology of Rattan. Universiti Malaysia Sabah, Sabah.
  • 23. THANK YOU Q & A SESSION