Cite

1. Barrows E. M., 2011 ‒ Animal behavior desk reference, A dictionary of animal behavior, Ecology and Evolution, CRC Press, Second edition, LCC, Boca Raton, FL, 794, ISBN-13: 978-0849320057, 936.10.1201/b10864Search in Google Scholar

2. Brown E. M., Burbridge A. H., Dell J., Edinger D., Hopper S. D. and Wills R. T., 1997 ‒ Pollination in Western Australia: a database of animals visiting flowers, Handbook no. 15, Western Australia Naturalists’ Club, Perth, Western Australia, 450.Search in Google Scholar

3. Buttrose M. S., Grant W. J. R. and Lott J. N. A., 1977 ‒ Reversible curvature of style branches of Hibiscus trionum L., a pollination mechanism, Australian Journal of Botany, 25, 567-570.10.1071/BT9770567Search in Google Scholar

4. Chin H. F. and Enoch I. C., 1988 ‒ Malaysian trees in colour, Tropical Press, Kuala Lumpur, 180.Search in Google Scholar

5. Dafni A., Kevan P. G. and Husband B. C., 2005 ‒ Practical Pollination Biology, Enviroquest Limited., Ontario, 590.Search in Google Scholar

6. Hamrick J. L. and Godt M. J. W., 1990 ‒ Allozyme diversity in plant species, in Plant population genetics, breeding and genetic resources, Brown A. H. D., Clegg M. T., Kahler A. L. and Wier B. S. (eds), Sinauer Associates, Sunderland, 43-63.Search in Google Scholar

7. Hopper S. D. and Burbidge A. H., 1986 – Speciation of bird-pollinated plants in south-western Australia, The Dynamic Partnership: Bird and plans in Southern Australia, (eds) Ford H. A. and Paton D. C., Government Printer, Adelaide, Southern Australia, 20-31.Search in Google Scholar

8. Klips R. A. and Snow A. A., 1997 ‒ Delayed autonomous self-pollination in Hibiscus laevis (Malvaceae), American Journal of Botany, 84, 48-53.10.2307/2445882Search in Google Scholar

9. Kodoh H. and Wigham T., 1998 ‒ The effect of petal size manipulation on pollinator/seed predator mediated female reproductive success of Hibiscus moscheutos, Oecologia, 117, 70-79.10.1007/s00442005063328308508Search in Google Scholar

10. Kudoh H., Shimamura R., Takayama K. and Whigham D. F., 2006 ‒ Consequences of hydrochory in Hibiscus, Plant Species Biology, 21, 127-133.10.1111/j.1442-1984.2006.00158.xSearch in Google Scholar

11. Kumar G., Kadam G. B., Saha T. N., Girish K. S., Tiwari A. K. and Kumar R., 2014 ‒ Studies on floral biology of Malva sylvestris L., Indian Journal of Horticulture, 71, 295-297.Search in Google Scholar

12. Maddala S. and Aluri J. S. R., 2019 ‒ Pollination ecology of the species Mollugo cerviana (L.) Ser. (Molluginaceae), Transylvanian Review of Systematical and Ecological Research, The Wetlands Diversity, 21.2, 13-22.10.2478/trser-2019-0009Search in Google Scholar

13. McMullen C. K., 1989 ‒ The Galapagos carpenter bee, just how important is it? Noticias De Galapagos, 48, 16-18.Search in Google Scholar

14. Nakanishi H., 1988 ‒ Dispersal ecology of the maritime plants in the Ryukyku Islands, Japan Ecological Research, 3, 163-173.10.1007/BF02346937Search in Google Scholar

15. Pfeil B. E., Brubaker C. L., Craven L. E. and Crips M. D., 2002 ‒ Phylogeny of Hibiscus and the tribe Hibiscaceae (Malvaceae) using chloroplast DNA sequences of ndhF and the rpl16 intron, Systematic Botany, 27, 333-350.Search in Google Scholar

16. Ruan C. J., 2010 ‒ Review and advances in style curvature for the Malvaceae, International Journal of Plant Developmental Biology, 4, 98-111.Search in Google Scholar

17. Ruan C. J., Chen S. C., Qun L. and Texeira Da Silva J. A., 2011 ‒ Adaptive evolution of context-dependent style curvature in some species of the Malvaceae: a molecular phylogenetic approach, Plant Systematics and Evolution, 297, 57-74.10.1007/s00606-011-0499-ySearch in Google Scholar

18. Santiago L. S., Lau T. S., Melcher P. J., Steele O. C. and Goldstein G., 2000 ‒ Morphological and physiological responses of Hawaiian Hibiscus tiliaceus populations to light and salinity, International Journal of Plant Science, 161, 99-106.10.1086/31423610648199Search in Google Scholar

19. Snow A. A. and Spira T. P., 1993 ‒ Individual variation in the vigor of self pollen and selfed progeny in Hibiscus moscheutos (Malvaceae), American Journal of Botany, 80, 160-164.10.1002/j.1537-2197.1993.tb13784.xSearch in Google Scholar

20. Spira T. P., 1989 ‒ Reproductive biology of Hibiscus moscheutos (Malvaceae), in The evolutionary ecology of plants, Bock J. and Linhart Y. (eds), Westview Press, Boulder, Colorado, 247-255.10.1201/9780429310720-15Search in Google Scholar

21. Stephens W. C., 1948 ‒ Kansas wild flowers, University of Kansas Press, Lawrence, Kansas, 125.Search in Google Scholar

22. Tang T., He L., Peng F. and Shi S., 2011 ‒ Habitat differentiation between estuarine and inland Hibiscus tiliaceus L. (Malvaceae) as revealed by retrotransposon-based SSAP marker, Australian Journal of Botany, 59, 515-522.10.1071/BT11041Search in Google Scholar

23. Tang T., Zhong Y., Jian S. and Shi S., 2003 ‒ Genetic diversity of Hibiscus tiliaceus (Malvaceae) in China assessed using AFLP markers, Annals of Botany, 92, 409-414.10.1093/aob/mcg156440844412930729Search in Google Scholar

24. Tang Y., Gilbert M. G. and Dorr M. J. 2007 ‒ Flora of China, 12, Science Press and Missouri Botanical Garden Press, Beijing, 264-298.Search in Google Scholar

25. Tomlinson P. B., 1986 ‒ The botany of mangroves, Cambridge University Press, Cambridge, 413.Search in Google Scholar

26. Wang R.-Q. and Wang W.-Q., 1999 ‒ Salt-tolerant Hibiscus species, Plants, 4, 21.Search in Google Scholar

27. Willemstein S. C., 1987 ‒ An evolutionary basis for pollination ecology, Leiden University Press, Leiden, 425.Search in Google Scholar

28. Williams F. X., 1926 ‒ Expedition of the California Academy of Sciences to the Galapagos Islands, 1905-1906, The bees and aculeate wasps of the Galapagos Islands, Proceedings of the California Academy of Sciences, Fourth Series, 2, 347-357.Search in Google Scholar

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