Volume 9, Issue 2 ((Autumn & Winter) 2023)                   Iranian J. Seed Res. 2023, 9(2): 99-112 | Back to browse issues page


XML Persian Abstract Print


Download citation:
BibTeX | RIS | EndNote | Medlars | ProCite | Reference Manager | RefWorks
Send citation to:

Rahimi I, Asadi I, Tahmasebi P, monfared A, Abbasi Suraki A. (2023). The effects of pre-dispersal seed predation on rare and common astragalus species in the Karsanak area in Chaharmahal and Bakhtiari province. Iranian J. Seed Res.. 9(2), : 7 doi:10.61186/yujs.9.2.99
URL: http://yujs.yu.ac.ir/jisr/article-1-545-en.html
Shahrekord University , irajrahimi93@gmail.com
Abstract:   (1377 Views)
Extended Abstract:
Introduction: Predation is the common fate of most seeds produced by plants. Loss of seeds due to predation can be harmful to plants and causes such species to become rare, as rare species are vulnerable to extinction through processes that disrupt the mechanisms of plant dispersal. Therefore, the purpose of this study was to investigate the effects of pre-dispersal seed predation on rare astragalus species and their common counterparts.
Materials and Methods: In order to investigate the effects of pre-dispersal seed predation, 12 species including 6 species with herbaceous life form (including three rare species (A. Caraganae, A. Heterophyllus and A. Holopsilus) and three common species (A. Angustiflorus, A. Curvirostris and A. Effusus) and 6 species with shrub life form (including three rare species (A. Cephalanthus, A. Camphylanthus and A. Cemerinus) and three common species (A. Verus, A. Susianus and A. Rhodosemius) were compared in 2018 and 2019. From each plant type, 20 and from each plant type 10 pods (for each plant type 200 pods), randomly selected and the parameters of area size, perimeter length, length, width, length-to-width ratio, circularity, and distance between IS and CG from the seed center were measured and compared for both pods and seeds of these species. Also, pod mass and seed mass, number of pods and seeds attacked by predators, number of healthy seeds, pod shape and seed shape of species were compared.
Results: The results of comparing the mean morphological characteristics of seeds between herbaceous and shrub astragalus species showed the highest and lowest area size, perimeter length, length, width, length-to-width ratio, circularity, and distance between IS and CG from the seed center, was related to common astragalus species. in the case of shrub species, most of the characteristics were related to common astragalus species, and the lowest characteristics were related to rare astragalus species. The results of morphological characteristics of pods between herbaceous and shrub species showed that the highest and lowest characteristics belonged to both groups of common and rare species. The results showed that the highest and lowest means of seed mass, number of damaged seeds, number of healthy seeds, and seed shape under the influence of pre-dispersal seed predation among herbaceous species showed that the highest and lowest means of seed mass, number of damaged seeds, belonged to common species. the highest and lowest numbers of healthy seeds and seed shapes belonged to rare species. Among the shrub astragalus species, the highest seed mass, the number of damaged seeds, the number of healthy seeds, and the seed shape were related to common astragalus species, and the lowest of these characteristics were related to rare astragalus species.
Conclusion: The overall results showed that the more species that can produce seeds of larger and smaller sizes, the better the distribution status. And the larger the seed and pod mass of the plant and the larger the shape, the more predators attack those species, but the amount of predator attacks does not lead to the rarity of the species.

Highlights:
  1. The role of pre-dispersal seed predation on rare and common astragalus species was investigated.
  2. Morphological characteristics of seeds and life forms of rare and common astragalus species were compared.
Article number: 7
Full-Text [PDF 467 kb]   (354 Downloads)    
Type of Study: Research | Subject: Seed Ecology
Received: 2022/03/13 | Revised: 2024/02/21 | Accepted: 2022/10/12 | ePublished: 2023/06/14

References
1. Auld, T. D. and Denham, A. J. 2001. The impact of seed predation by mammals on post-fire seed accumulation in the endangered shrub Grevillea caleyi (Proteaceae). Biological Conservation, 97(3): 377-385. [DOI:10.1016/S0006-3207(00)00136-1]
2. Bagchi, R., Gallery, R.E., Gripenberg, S., Gurr, S.J., Narayan, L., Addis, C.E., Freckleton, R.P. and Lewis, O.T. 2014. Pathogens and insect herbivores drive rainforest plant diversity and composition. Nature, 506: 85-88. [DOI:10.1038/nature12911] [PMID]
3. Baskin, J.M. and Baskin, C.C. 2000. Taxonomy, anatomy and evolution of physical dormancy in seeds. Plant Species Biology, 15: 139-152. [DOI:10.1046/j.1442-1984.2000.00034.x]
4. Cervantes, E., Martín, J.J. and Saadaoui, E. 2016. Updated methods for seed shape analysis. Scientifica. [DOI:10.1155/2016/5691825] [PMID] [PMCID]
5. Combs, J. K., Lambert, A. M. and Reichard, S. H. 2013. Predispersal seed predation is higher in a rare species than in its widespread sympatric congeners (Astragalus, Fabaceae). American Journal of Botany, 100 (11): 2149-2157. [DOI:10.3732/ajb.1300238] [PMID]
6. Ebrahimi, A., Raufirad, V. A., Arzani, H. and Shojaei Asadeiye, Z. 2016. Secondary compounds as indicator of plant palatability (Case Study: Karsanak Rangelands of Chaharmahal-Va-Bakhtiari Province). Journal of Range and Watershed Management, 69 (2): 297-309. [In Persian with English Summary].
7. Espeland, E.K. and Emam, T. M. 2011. The value of structuring rarity: the seven types and links to reproductive ecology. Biodiversity and Conservation, 20(5): 963-985. [DOI:10.1007/s10531-011-0007-2]
8. Fenner, M.K., Fenner, M. and Thompson, K. 2005. The ecology of seeds. Cambridge University Press. [DOI:10.1017/CBO9780511614101]
9. Gripenberg, S. 2018. Do pre-dispersal insect seed predators contribute to maintaining tropical forest plant diversity? Biotropica, 50(6): 839-845. [DOI:10.1111/btp.12602]
10. Leja, M., Chi, K. and Molano-Flores, B. 2015. Presence and intensity of predispersal seed predation in a rare plant in response to habitat quality and population metrics. Natural Areas Journal, 35(4): 542-549. [DOI:10.3375/043.035.0406]
11. Mathur, M. 2014. Does adaptive strategy for delayed seed dispersion affect extinction probability of a desert species? An assessment using the population viability analysis and glass house experiment. Brazilian Archives of Biology and Technology, 57: 774-781. [DOI:10.1590/S1516-8913201402407]
12. Murray, B.R., Thrall, P.H., Gill, A.M. and Nicotra, A.B. 2002. How plant life-history and ecological traits relate to species rarity and commonness at varying spatial scales. Austral Ecology, 27: 291-310. [DOI:10.1046/j.1442-9993.2002.01181.x]
13. Ooi, M.K. 2019. The importance of fire season when managing threatened plant species: a long-term case-study of a rare Leucopogon species (Ericaceae). Journal of Environmental Management, 236: 17-24. [DOI:10.1016/j.jenvman.2019.01.083] [PMID]
14. Orrock, J.L., Levey, D.J., Danielson, B.J. and Damschen, E.I. 2006. Seed predation, not seed dispersal, explains the landscapelevel abundance of an early‐successional plant. Journal of Ecology, 94(4): 838-845. [DOI:10.1111/j.1365-2745.2006.01125.x]
15. Reilly, L.A.J. 2010. A quantitative approach for defining rarity (Doctoral dissertation, The University of North Carolina at Chapel Hill).
16. Rymer, P.D. 2006. Plant rarity: species distributional patterns, population genetics, pollination biology, and seed dispersal in Persoonia (Proteaceae). Ph.D. thesis. School of Biological Sciences. University of Wollongong.
17. Tanabata, T., Shibaya, T., Hori, K., Ebana, K. and Yano, M. 2012. SmartGrain: high-throughput phenotyping software for measuring seed shape through image analysis. Plant Physiology, 160(4): 1871-1880. [DOI:10.1104/pp.112.205120] [PMID] [PMCID]
18. Vander Wall, S.B., Kuhn, K.M. and Beck, M.J. 2005. Seed removal, seed predation, and secondary dispersal. Ecology, 86: 801-806. [DOI:10.1890/04-0847]
19. Xu, Y., Shen, Z., Li, D. and Guo, Q. 2015. Pre-dispersal seed predation in a species-rich Forest Community: patterns and the interplay with determinants. PloS one, 10(11): e0143040. [DOI:10.1371/journal.pone.0143040] [PMID]

Add your comments about this article : Your username or Email:
CAPTCHA

Send email to the article author


Rights and permissions
Creative Commons License This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

© 2024 CC BY-NC 4.0 | Iranian Journal of Seed Research

Designed & Developed by : Yektaweb


This work is licensed under a Creative Commons Attribution 4.0 International License.