Phenological pattern, breeding behaviour, and estimation of outcrossing rate in Grevillea robusta (Proteaceae)

Adams WT. Application of isozymes in tree breeding. In: Isozymes - in plant genetics and breeding, part A. Elsevier; 1983. https://doi.org/10.1016/B978-0-444-42226-2.50026-8.

Chapter  Google Scholar 

Ahmad M, Uniyal SK, Batish DR, Rathee S, Sharma P, Singh HP. Flower phenological events and duration pattern is influenced by temperature and elevation in Dhauladhar mountain range of Lesser Himalaya. Ecol Indic. 2021;1(129): 107902.

Article  Google Scholar 

Aronne G. Effects of relative humidity and temperature stress on pollen viability of Cistus incanus and Myrtus communis. Grana. 1999;38(6):364–7.

Article  Google Scholar 

Augspurger CK. Mass-flowering of a tropical shrub (Hybanthus prunifolius): influence on pollinator attraction and movement. Evol. 1980;6(1):475–88.

Google Scholar 

Augspurger CK. Seed dispersal of the tropical tree, Platypodium elegans, and the escape of its seedlings from fungal pathogens. J Ecol. 1983;71(3):759–71.

Article  Google Scholar 

Ayre DJ, Whelan RJ, Reid A. Unexpectedly high levels of selfing in the Australian shrub Grevillea barklyana (Proteaceae). Hered. 1994;72(2):168–74.

Article  Google Scholar 

Bai WN, Zeng YF, Liao WJ, Zhang DY. Flowering phenology and wind-pollination efficacy of heterodichogamous Juglans mandshurica (Juglandaceae). Ann Bot. 2006;98(2):397–402.

Article  PubMed  PubMed Central  Google Scholar 

Barman C, Singh V, Das S, Tandon R. Floral contrivances and specialised pollination mechanism strongly influence mixed mating in Wrightia tomentosa (Apocynaceae). Plant Biol. 2018;20(3):546–54.

Article  CAS  PubMed  Google Scholar 

Bergh BO. Avocado (Persea americana Mill). In: Ferwerda FP, Wit F, editors. Outlines of perennial crop breedings in the tropics. Netherlands: Wageningen; 1969.

Google Scholar 

Bertin RI. Incidence of monoecy and dichogamy in relation to self-fertilization in angiosperms. Am J Bot. 1993;80(5):557–60.

PubMed  Google Scholar 

Bierzychudek P. Pollen limitation of plant reproductive success. Am Na. 1981;107:360–9.

Google Scholar 

Brough P. The life history of Grevillea robusta (Cunn). Proc Linn Soc NSW. 1933;58:33–73.

Google Scholar 

Brunet J, Sweet HR. Impact of insect pollinator group and floral display size on outcrossing rate. Evol. 2006;60(2):234–46.

Google Scholar 

Carrington ME, Gottfried TD, Mullahey JJ. Pollination biology of saw palmetto (Serenoa repens) in Southwestern Florida. Palms. 2003;47:95–103.

Google Scholar 

Castro-Díez P, Alonso Á, Saldaña-López A, Granda E. Effects of widespread non-native trees on regulating ecosystem services. Sci Total Environ. 2021;778:146141.

Article  PubMed  Google Scholar 

Charlesworth D, Charlesworth B. Inbreeding depression and its evolutionary consequences. Ann Rev Ecol Evol Syst. 1987;1987(18):237–68.

Article  Google Scholar 

Collins BG, Rebelo T. Pollination biology of the Proteaceae in Australia and southern Africa. Aust J Ecol. 1987;12:387–421.

Article  Google Scholar 

Coutellec-Vreto MA, Madec L, Guiller A. Selfing and biparental inbreeding: a mating system analysis in Lymnaea peregra (Gastropoda: Lymnaeidae). Hered. 1997;79(3):277–85.

Article  Google Scholar 

Dabral A, Shamoon A, Meena RK, Kant R, Pandey S, Ginwal HS, Bhandari MS. Genome skimming-based simple sequence repeat (SSR) marker discovery and characterization in Grevillea robusta. Physiol Mol Biol Plants. 2021;27(7):1623–38.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Dabral A, Meena RK, Shankhwar R, Kant R, Pandey S, Ginwal HS, Bhandari MS. Spatial population structuring and genetic analysis of exotic Grevillea robusta in Northwestern India. Forest Science. 2024;70(2):132–43. https://doi.org/10.1093/forsci/fxae003.

Article  Google Scholar 

Damerval C, Citerne H, Conde e Silva N, Deveaux Y, Delannoy E, Joets J, Simonnet F, Staedler Y, Schönenberger J, Yansouni J, Le Guilloux M. Unravelling the developmental and genetic mechanisms underpinning floral architecture in Proteaceae. Front Plant Sci. 2019;10:18.

Article  PubMed  PubMed Central  Google Scholar 

Dominguez CA, Dirzo R. Rainfall and flowering synchrony in a tropical variable selection on the flowering time of Erythroxylum havanense shrub. Evol Ecol. 1995;9:204–16.

Article  Google Scholar 

Doyle JJ, Doyle JL. Isolation of plant DNA from fresh tissue. Focus. 1990;12:13–5.

Google Scholar 

Furnier GR, Adams WT. Mating system in natural populations of Jeffrey pine. Am J Bot. 1986;73(7):1002–8.

Article  Google Scholar 

Goldingay RL, Carthew SM. Breeding and mating systems of Australian Proteaceae. Aust J Bot. 1998;46(4):421–37.

Article  Google Scholar 

Goodwillie C, Sargent RD, Eckert CG, Elle E, Geber MA, Johnston MO, Kalisz S, Moeller DA, Ree RH, Vallejo-Marin M, Winn AA. Correlated evolution of mating system and floral display traits in flowering plants and its implications for the distribution of mating system variation. New Phytol. 2009;185(1):311–21.

Article  PubMed  Google Scholar 

Guilengue N, Alves S, Talhinhas P, Neves-Martins J. Genetic and genomic diversity in a tarwi (Lupinus mutabilis Sweet) germplasm collection and adaptability to Mediterranean climate conditions. Agro. 2019;10(1):21.

Google Scholar 

Hammer Ø, Harper DA, Ryan PD. PAST: paleontological statistics software package for education and data analysis. Palaeontol Electron. 2001;4(1):9.

Google Scholar 

Harris F, Whelan RJ. Selective fruit abortion in Grevillea barklyana (Proteaceae). Aust J Bot. 1993;41:499–509.

Article  Google Scholar 

Harwood CE. Grevillea robusta: an annotated bibliography. Nairobi, Kenya: International Council for Research in Agroforestry (ICRAF). 1989;123.

Hermanutz L, Innes D, Denham A, Whelan R. Very low fruit: flower ratios in Grevillea (Proteaceae) are independent of breeding system. Aust J Bot. 1998;46(4):465–78.

Article  Google Scholar 

Herscovitch JC, Martin AR. Pollen-pistil interactions in Grevillea banksii: II. Pollen tube ultrastructure and interactions, and results of field experiment. Grana. 1990;29(1):5–17.

Article  Google Scholar 

Hoebee SE, Young AG. Low neighbourhood size and high interpopulation differentiation in the endangered shrub Grevillea iaspicula McGill (Proteaceae). Hered. 2001;86(4):489–96.

Article  CAS  Google Scholar 

Hogbin PM, Ayre DJ, Whelan RJ. Genetic variation and reproductive success of road verge populations of the rare shrub Grevillea barklyana (Proteaceae). Hered. 1998;80:180–6.

Article  Google Scholar 

Howell GJ, Slater AT, Knox RB. Secondary pollen presentation in angiosperms and its biological significance. Aust J Bot. 1993;41(5):417–38.

Article  Google Scholar 

Iwaizumi MG, Sakai S. Variation in flower biomass among nearby populations of Impatiens textori (Balsaminaceae): effects of population plant densities. Can J Bot. 2004;82(5):563–72.

Article  Google Scholar 

Iwata T, Nagasaki O, Ishii HS, Ushimaru A. Inflorescence architecture affects pollinator behaviour and mating success in Spiranthes sinensis (Orchidaceae). New Phytol. 2012;193(1):196–203.

Article  PubMed  Google Scholar 

Kalinganire A, Harwood CE, Slee MU, Simons AJ. Floral structure, stigma receptivity and pollen viability in relation to protandry and self-incompatibility in silky oak (Grevillea robusta A. Cunn.). Ann Bot. 2000;86(1):133–48.

Article  Google Scholar 

Kalinganire A, Harwood CE, Slee MU, Simons AJ. Pollination and fruit-set of Grevillea robusta in western Kenya. Austral Ecol. 2001;26(6):637–48.

Article  Google Scholar 

Kehlenbeck K, Kindt R, Sinclair FL, Simons AJ, Jamnadass R. Exotic tree species displace indigenous ones on farms at intermediate altitudes around Mount Kenya. Agrofor Syst. 2011;83:133–47.

Article  Google Scholar 

Khanduri VP. Temporal and spatial variation of pollen yield in natural populations of Pinus roxburghii. For Stu Chi. 2012;14(1):20–9.

Article  Google Scholar 

Lloyd DG, Webb CJ. The avoidance of interference between the presentation of pollen and stigmas in angiosperms. I Dichogamy NZ J Bot. 1986;24:135–62.

Article  Google Scholar 

Molleman F, Ding J, Carey JR, Wang JL. Nutrients in fruit increase fertility in wild-caught females of large and long-lived Euphaedra species (Lepidoptera, Nymphalidae). J Insect Physiol. 2009;55(4):375–83.

Article  CAS  PubMed  PubMed Central  Google Scholar 

Montemurro C, Dambruoso G, Bottalico G, Sabetta W. Self-incompatibility assessment of some Italian olive genotypes (Olea europaea L.) and cross-derived seedling selection by SSR markers on seed endosperms. Fron Pla Sci. 2019;12(10):451.

Article  Google Scholar 

Moquet L, Lateur L, Jacquemart AL, De Cauwer I, Dufay M. Temporal dynamics of sexual dimorphism in a dioecious species. Ann Bot. 2020;126(3):471–80.

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