HomeScientific Augustinianvol. 14 no. 1 (2023)

Oviposition Behavior of Yellow Stem Borer Scirpophaga Incertulas (Walker) (Lepidoptera: Pyralidae) and Rice Bug Leptocorisa Oratorius (Fabricius) (Hemiptera: Alydidae)

Jenny Faith Sanchez | Kimber Jann Adraneda | Atiyyah Herrera | Aluel Paolo Gonzaga | Julliene Rose Magsico | Gerald Bello | Leonardo Marquez | Phillip Raymund De Oca

Discipline: agricultural sciences

 

Abstract:

This study assessed the oviposition behavior of the Yellow Stem Borer (YSB) and Rice Bug (RB) on various rice varieties to identify factors influencing crop yield losses and inform pest management strategies. The research was conducted in nine phases: construction of oviposition cages, germination of rice seeds, transplanting of germinated seedlings, acquisition of pupae and adults, male-to-female copulation, egg collection, proper disposal, and data analysis. Thirteen rice cultivars with distinct genetic characteristics were selected to represent a spectrum of resistance and susceptibility. The pests were exposed to these rice varieties, and their oviposition preferences were systematically monitored and recorded. Results revealed significant variation in the quantity and dimensions of eggs deposited by the two pest species across susceptible rice varieties, highlighting species-specific oviposition behaviors. Rice varieties with desirable eating qualities—PSB RC 27, ARABON, NSIC RC 216, PSB RC 18, CALATRAVA, and NSIC RC 480—exhibited higher susceptibility to oviposition. In contrast, varieties such as NSIC RC 442, NSIC RC 222, NSIC RC 160, PSB RC 82, RC 534, RC 506, and CUEVAS showed lower oviposition preference. Morphological traits of the rice varieties, including leaf blade and sheath dimensions, appeared to significantly influence pest preferences and levels of vulnerability. These findings underscore the importance of plant morphology in pest-host interactions and offer insights for developing pest-resistant rice varieties.



References:

  1. Abino, A. C., Castillo, J. A. A., & Lee, Y. J. (2014). Species diversity, biomass, and carbon stock assessments of a natural mangrove forest in Palawan, Philippines. Pak. J. Bot, 46(6), 1955-1962.
  2.  Agua, J. R., & Wong Jr, H. L. (2023). Carbon Stock Sequestration in the Mangrove Forest of Barangay Camudmud MPA, Island Garden City of Samal, Davao Del Norte. International  Journal of Research and Innovation in Applied Science, 8(6), 143-155.
  3. Akram, H., Hussain, S., Mazumdar, P., Chua, K. O., Butt, T. E., & Harikrishna, J. A. (2023). Mangrove health: A review of functions, threats, and challenges associated with mangrove   management practices. Forests, 14(9), 1698.
  4. Alimbon, J. A., & Manseguiao, M. R. S. (2021). Species composition, stand characteristics, aboveground biomass, and carbon stock of mangroves in Panabo Mangrove Park, Philippines. Biodiversitas Journal of Biological Diversity, 22(6).
  5. Alongi, D. M. (2002). Present state and future of the world’s mangrove forests. Environmental conservation, 29(3), 331-349.
  6. Alongi, D. M. (2015). The impact of climate change on mangrove forests. Current Climate Change Reports, 1, 30-39.
  7. Alongi, D. M. (2022). Impacts of climate change on blue carbon stocks and fluxes in mangrove forests. Forests, 13(2), 149.
  8. Ávila-Acosta, C. R., Domínguez-Domínguez, M., Vázquez-Navarrete, C. J., Acosta-Pech, R. G., &Martínez-Zurimendi, P. (2024). Aboveground biomass and carbon storage in Mangrove Forests in Southeastern Mexico. Resources, 13(3), 41.
  9. in Southeastern Mexico. Resources, 13(3), 41.
  10. Aye, W. N., Tong, X., & Tun, A. W. (2022). Species diversity, biomass and carbon stock        assessment of Kanhlyashay Natural Mangrove Forest. Forests, 13(7), 1013.
  11. Azman, A., Ng, K. K. S., Ng, C. H., Lee, C. T., Tnah, L. H., Zakaria, N. F., ... & Lee, S. L. (2020). Low genetic diversity indicating the threatened status of Rhizophora apiculata (Rhizophoraceae) in           Malaysia: declined evolution meets habitat             destruction. Scientific Reports, 10(1), 19112.
  12. Bai, J., Meng, Y., Gou, R., Lyu, J., Dai, Z., Diao, X., ... & Lin, G. (2021). Mangrove diversity enhances plant biomass production and carbon storage in Hainan island, China. Functional Ecology, 35(3), 774-786.
  13. Baleta, F. N., & Casalamitao Jr, R. S. (2016). Species composition, diversity and abundance of mangroves along the estuarine Area of Maligaya, Palanan, Isabela, Philippines. International  Journal of Fisheries and Aquatic Studies, 4(2), 303-307.
  14. Barrientos, K., & Apolonio, J. (2017). Species            diversity and soil carbon sequestration potential of mangrove species at Katunggan It Ibajay (KII) Eco-Park in Aklan, Philippines. Prism, 22(1).
  15. Benavides, R. C., Patero, J. L., Jondonero, M. A. P., Jondonero, P. K. A., Mariano, H. G., &   Amparado, R. F. (2024, December). Below ground carbon stock of mangrove stands of a     mining site in Hinatuan Island, Northeastern   Mindanao, Philippines. In IOP Conference Series: Earth and Environmental Science (Vol. 1415, No. 1, p. 012004). IOP Publishing.
  16. Bitantos, B. L., Abucay, M. D., Dacula, J. A., & Recafort, R. D. (2017). Mangrove in the grove: diversity, species composition, and habitat in Pamintayan, Dumanquillas Bay, Philippines. Advances in Environmental Sciences, 9(3),183-192.
  17. Bobon-Carnice, P. A., Magalona, M. M. L., & Obias, D. J. A. (2023). SPECIES DIVERSITY AND CARBON STOCK OF MANGROVE IN GUIUAN, EASTERN SAMAR,                            PHILIPPINES. Journal of Biology/TẠp chí Sinh HỌc, 45(3).
  18. Brown, W. H. (Ed.). (1920). Minor products of Philippine forests (No. 22). Bureau of Printing.
  19. Calzeta, E., Alaira, S., Replan, E., Padilla, C., Cabangbang, R. P., Lawas, T., & Ancog, R. (2024). Geospatial Biodiversity Assessment of Lagadlarin Mangrove Forest in Lobo, Batangas, Philippines for Sustainable Ecotourism. Journal of Environmental Science and Management, 27(1).
  20. Camacho, L. D., Gevaña, D. T., Carandang, A. P., Camacho, S. C., Combalicer, E. A., Rebugio, L. L., & Youn, Y. C. (2011). Tree biomass and             carbon stock of a community‐managed mangrove forest in Bohol, Philippines. Forest Science and Technology, 7(4), 161-167.
  21. Camacho, L. D., Gevaña, D. T., Sabino, L. L., Ruzol, C. D., Garcia, J. E., Camacho, A. C. D., ... & Takeuchi, K. (2020). Sustainable   mangrove rehabilitation: Lessons and insights from community-based management in the Philippines and Myanmar. APN Science Bulletin.
  22. Cañizares, L. P., & Seronay, R. A. (2016). Diversity and species composition of mangroves in Barangay Imelda, Dinagat Island, Philippines. Aquaculture, Aquarium, Conservation & Legislation, 9(3), 518-526.
  23. Castillo, J. A. A., & Breva, L. A. (2012, December). Carbon stock assessment of four mangrove reforestations/plantation stands in the Philippines. In Proceedings of the 1st ASEAN Congress on Mangrove Research and Development, Manila.
  24. Castillo, J. A. A., Apan, A. A., Maraseni, T. N., & Salmo III, S. G. (2018). Tree biomass quantity, carbon stock and canopy correlates in mangrove forest and land uses that replaced mangroves in Honda Bay, Philippines. Regional Studies in Marine Science, 24, 174-183.
  25. Catulay, A. J. E., Contemplo, N. A., Viray, N. B., Goyo, S. L. D., Jandug, C. M. B., & Palaso, R. L. (2024). Species diversity, aboveground biomass, and carbon stock of mangrove species in coastal area of Mahaba Island, Placer, Surigao Del Norte. International Journal of Biosciences, 24(5), 190–196.
  26. Choudhary, B., Dhar, V., & Pawase, A. S. (2024). Blue carbon and the role of mangroves in carbon sequestration: Its mechanisms, estimation, human impacts and conservation strategies for economic incentives. Journal of Sea Research, 199, 102504.
  27. Cooley, S., Schoeman, D., Bopp, L., Boyd, P., Donner, S., Kiessling, W., ... & Simmons, C. T. (2023). Oceans and coastal ecosystems and their services.
  28. Cudiamat, M. A., & Rodriguez, R. A. (2017). Abundance, structure, and diversity of mangroves in a community-managed forest in Calatagan,     Batangas, Verde Island Passage, Philippines. Asia Pacific Journal of Multidisciplinary Research, 5(3), 27-33.
  29. Decena, S. C. P., Avorque, C. A., Requioma Jr, D. M., & Arribado, A. O. (2024). Diversity and   assemblage of mangroves along the carigara bay in Leyte, Philippines. Biologia, 79(10), 2993-3010.
  30. Department of Environment and Natural Resources. (2017, May 2). DENR Administrative Order No. 2017-11: Updated national list of threatened              Philippine plants and their categories. Republic of the Philippines. http://www.denr.gov.ph
  31. Duke, N. C. (2011). Mangroves. Encyclopedia of Modern Coral Reefs: Structure, Form and Process, 655-663.
  32. English, S., Wilkinson, C., & Baker, V. (1997). Survey manual for tropical marine resources.
  33. Fatonah, S., HAMIDY, R., & MULYADI, A. (2021). Floristic composition and stand structure of mangrove forests with varying vegetation  conditions in Sungai Apit, Siak, Riau, Indonesia. Biodiversitas: Journal of Biological Diversity, 22(9).
  34. Fernando, E. S. (1998). Forest formations and flora of the Philippines: Handout in FBS 21. College of Forestry and Natural Resources, University of the Philippines at Los Baños (Unpublished).
  35. Fortes, M. D. (2004). Wetland conservation and management in the Philippines: where are we now? The case of seagrass and mangrove. In Wetlands Ecosystems in Asia (pp. 233-262). Elsevier.
  36. Friess, D. A., Adame, M. F., Adams, J. B., &  Lovelock, C. E. (2022). Mangrove forests under climate change in a 2 C world. Wiley Interdisciplinary Reviews: Climate Change, 13(4), e792.
  37. Gevaña, D. T., Pulhin, J. M., & Tapia, M. A. (2019). Fostering climate change mitigation through a community-based approach: Carbon stock potential of community-managed mangroves in the Philippines. In Coastal management (pp. 271-282). Academic Press.
  38. Giri, C., Ochieng, E., Tieszen, L. L., Zhu, Z., Singh, A., Loveland, T., ... & Duke, N. (2011). Status and distribution of mangrove forests of the world using earth observation satellite data. Global  ecology and biogeography, 20(1), 154-159.
  39. Goloran, A. B., Demetillo, M. T., & Betco, G. L. (2020). Mangroves assessment and diversity in coastal area of Barangay Cagdianao, Claver, Surigao del Norte, Philippines. International Journal of Environmental Sciences and Natural Resources, 26(3), 82-90.
  40. Goloran, A. B., Laurence, C., Glenn, B., & Tricia, M. A. (2020). Species composition, diversity and habitat assessment of mangroves in the selected area along Butuan Bay, Agusan Del Norte, Philippines. Open Access Library Journal, 7(4), 1-11.
  41. Hadiyanto, H., Halim, M. A. R., Muhammad, F., Soeprobowati, T. R., & Sularto, S. (2021). Potential for environmental services based on the estimation of reserved carbon in the mangunharjo mangrove ecosystem. Polish J Environ Stud., 30, 3545-3552.
  42. Herrera, A. (2013). Responses to flooding of plant water relations and leaf gas exchange in tropical tolerant trees of a black-water wetland. Frontiers in Plant Science, 4, 106.
  43. Hill, J. W., Bourke, L. A., Horton, C. M., Staples, T. L., & Lovelock, C. E. (2021). Limited                   relationships between mangrove forest structure and hydro-edaphic conditions in subtropical Queensland, Australia. Estuarine, Coastal and Shelf Science, 248, 106930.
  44. Hiraishi, T., Krug, T., Tanabe, K., Srivastava, N., Baasansuren, J., Fukuda, M., & Troxler, T. G. (2014). 2013 supplement to the 2006 IPCC     guidelines for national greenhouse gas  inventories: Wetlands. IPCC, Switzerland.
  45. Hoegh-Guldberg, O., Jacob, D., Bindi, M., Brown, S., Camilloni, I., Diedhiou, A., ... & Zougmoré, R. B. (2018). Impacts of 1.5 C global warming on               natural and human systems. In Global warming of 1.5 C.: An IPCC Special Report (pp. 175-311). IPCC Secretariat.
  46. Howard, J., Hoyt, S., Isensee, K., Telszewski, M., & Pidgeon, E. (2014). Coastal blue carbon: methods for assessing carbon stocks and emissions factors in mangroves, tidal salt marshes, and seagrasses.
  47. IUCN. 2021. The IUCN Red List of Threatened Species. IUCN Red List of Threatened Species.
  48. Jacotot, A., Marchand, C., & Allenbach, M. (2019). Increase in growth and alteration of C: N ratios of Avicennia marina and Rhizophora stylosa subject to elevated COconcentrations and longer tidal flooding duration. Frontiers in Ecology and           Evolution, 7, 98.
  49. Kaleem Shah, K. S., Abu Hena, M. K., Zamri Rosli, Z. R., Khalid Rehman Hakeem, K. R. H., & Mohammed Muzammel Hoque, M. M. H. (2016). Composition and diversity of plants in Sibuti mangrove forest, Sarawak, Malaysia.
  50. Kathiresan, K., & Bingham, B. L. (2001). Biology of mangroves and mangrove ecosystems.
  51. Kauffman, J. B., & Donato, D. C. (2012). Protocols for the measurement, monitoring and reporting of structure, biomass and carbon stocks in mangrove forests (Vol. 86, p. 7). Bogor, Indonesia: Cifor.
  52. King, R., Turner, C., Dacles, T., Solandt, J. L., & Raines, P. (2002). The mangrove communities of Danjugan Island, Cauayan, Negros Occidental, Philippines. Silliman Journal, 43(1).
  53. Komiyama, A., Poungparn, S., & Kato, S. (2005). Common allometric equations for estimating the tree weight of mangroves. Journal of tropical ecology, 21(4), 471-477.
  54. Krauss, K. W., Lovelock, C. E., McKee, K. L., López-Hoffman, L., Ewe, S. M., & Sousa, W. P. (2008). Environmental drivers in mangrove              establishment and early development: a review. Aquatic botany, 89(2), 105-127.
  55. Krauss, K. W., McKee, K. L., Lovelock, C. E., Cahoon, D. R., Saintilan, N., Reef, R., & Chen, L. (2014). How mangrove forests adjust to rising sea level. New phytologist, 202(1), 19-34.
  56. Kridiborworn, P., Chidthaisong, A., Yuttitham, M., & Tripetchkul, S. (2012). Carbon sequestration by mangrove forest planted specifically for charcoal production in Yeesarn, Samut Songkram. Journal of Sustainable Energy & Environment, 3(2),             87-92.
  57. Lebata-Ramos, M., & Hazel, J. (2013). Field guide to mangrove identification and community structure analysis. SEAFDEC Aquaculture Department, Iloilo, Philippines.
  58. Lee, S. Y., Primavera, J. H., Dahdouh‐Guebas, F., McKee, K., Bosire, J. O., Cannicci, S., ... &        Record, S. (2014). Ecological role and services of tropical mangrove ecosystems: a reassessment. Global ecology and biogeography, 23(7), 726-743.
  59. Li, S., Fang, L., Sun, Y., Xia, L., & Lou, X. (2023). Development of measuring device for diameter at breast height of trees. Forests, 14(2), 192.
  60. Lomoljo-Bantayan, N. A., Tatil, W. T., Dagoc, F. L. S., Tampus, A. D., & Amparado, R. J. F. (2023). Carbon stock assessment of mangrove forests along Macajalar Bay, Misamis Oriental, Philippines.
  61. Department of Environment and Natural Resources. (2017). Updated national list of threatened               Philippine plants and their categories (Administrative Order No. 2017-11).
  62. Magurran, A. E. (2013). Ecological diversity and its measurement. Springer Science & Business            Media.
  63. Manson, F. J., Loneragan, N. R., Skilleter, G. A., & Phinn, S. R. (2005). An evaluation of the evidence for linkages between mangroves and fisheries: a synthesis of the literature and identification of research directions. Oceanography and marine biology, 493-524.
  64. Manual, A. M. B., Gabato, N. A. S., Jetuya, Q. B., & Alimbon, J. A. (2022). Floristic composition, structure, and diversity of mangroves in the coastal areas of Mabini, Davao de Oro, Philippines. Biodiversitas Journal of Biological Diversity, 23(9).
  65. Matatula, J., Afandi, A. Y., & ADI PUTRA  WIRABUANA, P. Y. (2021). A comparison of stand structure, species diversity and aboveground biomass between natural and planted mangroves in Sikka, East Nusa Tenggara, Indonesia. Biodiversitas: Journal of Biological Diversity, 22(3).
  66. McLeod, E., & Salm, R. V. (2006). Managing           mangroves for resilience to climate change (Vol. 64). Gland: World Conservation Union (IUCN).
  67. Melana, D. M., Melana, E. E., & Mapalo, A. M. (2000, February). Mangrove management and development in the Philippines. In meeting on Mangrove and Aquaculture Management held at Kasetsart University, Bangkok, Thailand on              February (pp. 14-16).
  68. Moore, R. T., Miller, P. C., Ehleringer, J., &                  Laurence, W. (1973). Seasonal trends in gas        exchange characteristics of three mangrove species.
  69. Murugan, S., & Anandhi, U. (2017, December). An assessment of Mangrove Diversity, Mangalore, Karnataka. In Proceedings of the national                    conference on ecology, sustainable development and wildlife conservation, December (Vol. 166).
  70. Nagelkerken, I. S. J. M., Blaber, S. J. M., Bouillon, S., Green, P., Haywood, M., Kirton, L. G., ... &      Somerfield, P. J. (2008). The habitat function of mangroves for terrestrial and marine fauna: a review. Aquatic botany, 89(2), 155-185.
  71. Naidoo, G. (2016). The mangroves of South Africa: An ecophysiological review. South African Journal of Botany, 107, 101-113.
  72. Naylor, L. A., Viles, H. A., & Carter, N. E. A. (2002).  Biogeomorphology revisited: looking towards the   future. Geomorphology, 47(1), 3-14.
  73. Natividad, E. M. C., Hingabay, V. S., Lipae, H. B., Requieron, E. A., Abalunan, A. J., Tagaloguin, P. M., ... & Jumawan, J. C. (2015). Vegetation       analysis and community structure of mangroves in Alabel and Maasim Sarangani Province, Philippines. ARPN Journal of Agricultural and Biological Science, 10(3), 97-102.
  74. Noor, T., Batool, N., Mazhar, R., & Ilyas, N. (2015).            Effects of siltation, temperature and salinity on mangrove plants. European Academic Research, 2(11), 14172-14179.
  75. Octavina, C., Ulfah, M., Sakinah, R., Azis, S. A.,        Razi, N. M., Fazillah, M. R., & Agustiar, M. (2022). Community structure of mangrove in Lambadeuk village, Aceh Besar regency, Indonesia. In E3S Web of Conferences (Vol. 339, p. 03005). EDP Sciences.
  76. Pada, A. V., Silapan, J., Cabanlit, M. A., Campomanes, F., & Garcia, J. J. (2016).            Mangrove forest cover extraction of the coastal areas of Negros Occidental, Western Visayas, Philippines using LiDAR data. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 41, 73-79.
  77. Pada, A. V., Silapan, J., Cabanlit, M. A., Campomanes, F., & Garcia, J. J. (2016).               Mangrove forest cover extraction of the coastal areas of Negros Occidental, Western Visayas, Philippines using LiDAR data. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 41, 73-79.
  78. Padilla, K. G. V., Martizano, J. G., & Santos, J. A. A. (2021). Diversity and species composition of mangroves species in Pilar, Siargao Island, Surigao del Norte. International Journal of Ecosystems & Ecology Sciences, 11(1).
  79. Palit, K., Rath, S., Chatterjee, S., & Das, S. (2022). Microbial diversity and ecological interactions of microorganisms in the mangrove ecosystem: Threats, vulnerability, and adaptations. Environmental Science and Pollution Research, 29(22), 32467-32512.
  80. PANLUNGSOD LUNGSOD NG BAKOLOD -oOo- CITY ORDINANCE NO. 967 COASTAL LANDSCAPE DEVELOPMENT AND PROTECTION OF MANGROVES FORESTS AND MARICUL TURE AREAS ORDINANCE. https://bacolodcity.gov.ph/wp-content/uploads/2022/07/CO-967-2021.pdf.
  81. Paquit, J. C., & Vergara, E. C. (2024). Pattern of Species Diversity and Carbon Stocks along the Intertidal Zones of Protected Mangrove Forest in Southern Philippines A. Indian Journal of Ecology, 51(4), 765-771.
  82. Pati, P. K., Kaushik, P., Khan, M. L., & Khare, P. K. (2022). Allometric equations for biomass and       carbon stock estimation of small diameter woody species from tropical dry deciduous forests: Support to REDD+. Trees, Forests and People, 9, 100289.
  83. Patra, J. K., & Thatoi, H. N. (2011). Metabolic diversity and bioactivity screening of mangrove plants: a review. Acta Physiologiae Plantarum, 33, 1051-1061.
  84. Perri, S., Viola, F., Valerio Noto, L., & Molini, A. (2015, April). Understanding the Ecoydrology of Mangroves: A Simple SPAC Model for Avicennia Marina. In EGU General Assembly Conference Abstracts (p. 11126).
  85. Picardal, J. P., Avila, S. T. R., Tano, M. F., & Marababol, M. S. (2011). The species                         composition and associated fauna of the mangrove forest in Tabuk and Cabgan Islets,             Palompon Leyte, Philippines. CNU Journal of Higher Education, 5, 1-18.
  86. Pototan, B., Capin, N., Delima, A. G., & Novero, A. (2021). Assessment of mangrove species diversity in Banaybanay, Davao Oriental, Philippines.                            Biodiversitas Journal of Biological Diversity, 22(1).
  87.  Primavera, J. H. (2000). Development and conservation of Philippine mangroves: institutional issues. Ecological Economics, 35(1), 91-106.
  88. Primavera, J. H. (2009). Field Guide to Philippine Mangroves. Philippine Tropical Forest                        Conservation Foundation. Inc. and Zoological Society of London.
  89. Primavera, J. H., & Esteban, J. M. A. (2008). A review of mangrove rehabilitation in the  Philippines: successes, failures and future  prospects. Wetlands Ecology and Management, 16, 345-358.
  90. Primavera, J. H., Sadaba, R. B., Lebata, M. J. H., & Altamirano, J. P. (2004). Handbook of mangroves in the Philippines.
  91. Puzon, P. M. H., Econar, C. D. I., Sarmiento, R. T., Jandug, C. M. B., & Palaso, R. L. (2022). Species Diversity And Above-ground Biomass Of Mangrove Species In The Intertidal Zone Of Magallanes, Agusan Del Norte, Philippines. Journal of Biodiversity and Environmental   Sciences (JBES) Vol, 21, 129-135.
  92. Quadros, A. F., & Zimmer, M. (2017). Dataset of” true mangroves” plant species traits. Biodiversity Data Journal, (5), e22089.
  93. Rahim, A., Soeprobowati, T. R., & Putranto, T. T. (2023). Assessment of mangrove biodiversity and community structure as a basis for sustainable conservation and management plan in Tambakbulusan, Demak, Central Java. Aquaculture, Aquarium, Conservation & Legislation, 16(2), 753-767.
  94. Reef, R., & Lovelock, C. E. (2015). Regulation of water balance in mangroves. Annals of botany, 115(3), 385-395.
  95. Reef, R., Feller, I. C., & Lovelock, C. E. (2010). Nutrition of mangroves. Tree physiology, 30(9), 1148-1160.
  96. Rosario, G., De Guzman, R., Tamayo, K. E., Dela Peña, R. V., & Abalos, R. S. (2022, January 25). Species composition and diversity of mangroves in the riverbanks of Barangay Basing, Binmaley, Pangasinan. ResearchGate.
  97. Salsabilli, R. C. P. S., Widiastuti, E. L., & Wahyuningsih, S. (2021, June). Carbon stock     estimation due to changes in mangrove Labuhan Maringgai District, East Lampung Regency. In International Conference on Sustainable Biomass (ICSB 2019) (pp. 6-10). Atlantis Press.
  98. Samson, M. B., De La Cruz, M., Gonzaga, L. T., Gomez, E. J., & Barbosa, R. (2022). Diversity assessment and geospatial mapping of mangroves in Matalom, Leyte, Philippines. Aswan University Journal of Environmental Studies, 3(3), 324-336.
  99. Samson, M. S., & Rollon, R. N. (2008). Growth performance of planted mangroves in the                    Philippines: revisiting forest management strategies. AMBIO: A Journal of the Human            Environment, 37(4), 234-240.
  100. Satyanarayana, B., Bhanderi, P., Debry, M., Maniatis, D., Foré, F., Badgie, D., ... & Dahdouh-Guebas, F. (2012). A socio-ecological assessment aiming at improved forest resource management and             sustainable ecotourism development in the               mangroves of Tanbi Wetland National Park, The Gambia, West Africa. Ambio, 41, 513-526.
  101. Sawairnathan, M. I., & Halimoon, N. (2017). Assessment of the local communities’ knowledge on mangrove ecology. International Journal of Human Capital in Urban Management, 2(2), 125-138.
  102.  Setyadi, G., Pribadi, R., Wijayanti, D. P., & Sugianto, D. N. (2021). Mangrove diversity and community structure of Mimika District, Papua, Indonesia. Biodiversitas Journal of Biological Diversity, 22(8).
  103. Skagias, K., Vasiliadis, L., Belias, D., & Christos, P. (2021, June). From mass tourism and mass culture to sustainable tourism in the post-covid19 Era: The case of Mykonos. In Culture and Tourism in a Smart, Globalized, and Sustainable World: 7th International Conference of IACuDiT, Hydra, Greece, 2020 (pp. 347-358). Cham: Springer        International Publishing.
  104. Srikanth, S., Lum, S. K. Y., & Chen, Z. (2016). Mangrove root: adaptations and ecological importance. Trees, 30, 451-465.
  105. Sudhir, S., Arunprasath, A., & Vel, V. S. (2022). A critical review on adaptations, and biological activities of the mangroves. Journal of Natural Pesticide Research, 1, 100006.
  106. Sukardjo, S., Alongi, D. M., & Ulumuddin, Y. I. (2014). Mangrove community structure and regeneration potential on a rapidly expanding, river delta in Java. Trees, 28, 1105-1113.
  107. Tampus, A. D., Bungcasan, A. S. G., Inte, S. B., Inotao, P. R. V., Longcob, D. J. H. E., Salise, P. C. K. G., ... & Sinco, A. L. (2023). Abundance and diversity of mangroves in Kinoguitan, Misamis Oriental, Philippines.
  108. TANEO, L. E. (2021). Inventory of mangrove in Molugan, El Salvador City, Misamis Oriental. environment (Donoso 2018), 1(3).
  109. Tobias, A., Umali, A. G. A., Malabrigo, P., & Galang, M. A. (2017). Mangrove Forest Inventory and Estimation of Carbon Storage and Sedimentation in Pagbilao. Wealth Account. Valuat. Ecosyst. Serv, 1-95.
  110. Triest, L., Del Socorro, A., Gado, V. J., Mazo, A. M., & Sierens, T. (2021). Avicennia genetic diversity and fine-scaled structure influenced by coastal proximity of mangrove fragments. Frontiers in Marine Science, 8, 643982.
  111. Upadhyay, V. P., & Mishra, P. K. (2014, September). An ecological analysis of mangroves ecosystem of Odisha on the Eastern Coast of India. In Proc Indian Natl Sci Acad (Vol. 80, No. 3, pp. 647-661).
  112. Venturillo, R. M. (2016). Spatio-temporal mapping, biomass, and carbon stock assessment of mangrove forest in Aborlan, Palawan, Philippines. J Nat Stud, 15, 90-103.
  113. Wagner, G. M., Akwilapo, F. D., Mrosso, S., Ulomi, S., & Masinde, R. (2004). Assessment of Marine Biodiversity, Ecosystem Health, and Resource Status in Mangrove Forests in Mnazi Bay Ruvuma Estuary Marine Park, viii+ 106pp.     UNDP/GEF and FFEM.
  114. Wang, W., Yan, Z., You, S., Zhang, Y., Chen, L., & Lin, G. (2011). Mangroves: obligate or facultative halophytes? A review. Trees, 25, 953-963.
  115. Wang, Z., Wang, G., Li, Y., & Zhang, Z. (2024). Determinants of carbon sequestration in thinned forests. Science of The Total Environment, 951, 175540.
  116. ZULHALIFAH, Z., Syukur, A., Santoso, D., &       KARNAN, K. (2021). Species diversity and               composition, and above-ground carbon of              mangrove vegetation in Jor Bay, East Lombok, Indonesia. Biodiversitas Journal of Biological Diversity, 22(4).