Population density and size influence pollen dispersal pattern and mating system of the predominantly outcrossed Banksia nivea (Proteaceae) in a threatened ecological community

被引:13
作者
Thavornkanlapachai, R. [1 ]
Ladd, P. G. [1 ]
Byrne, M. [1 ,2 ]
机构
[1] Murdoch Univ, Sch Vet & Life Sci, Murdoch, WA 6150, Australia
[2] Dept Biodivers Conservat & Attract, Biodivers & Conservat Sci, Locked Bag 104,Bentley Delivery Ctr, Bentley, WA 6983, Australia
关键词
gene flow; fragmentation; microsatellite; paternity analysis; pollinator movement; SPATIAL GENETIC-STRUCTURE; BIRD-POLLINATED SHRUB; SPHAEROCARPA VAR. CAESIA; HABITAT FRAGMENTATION; WESTERN-AUSTRALIA; LANDSCAPE; FLOW; DIVERSITY; PLANTS; RARE;
D O I
10.1093/biolinnean/bly050
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Gene flow is a critical component of plant mating systems and influences population fitness. However, pollen dispersal can be highly variable and influenced by natural and anthropogenic fragmentation. Gene flow through pollen dispersal was investigated in two populations of contrasting size and habitat context in Banksia nivea ssp. uliginosa, a rare species in the Busselton ironstone threatened ecological community of Western Australia with a naturally fragmented distribution. Paternity analysis was conducted with seven microsatellite loci to determine mating system parameters and patterns of pollen dispersal. Outcrossing was high in both populations with a similar level of selfing for both populations despite differences in population size, density and vegetation matrix. Most mating occurred within 10 m of a mother plant in the small, clumped population, while more dispersed mating, up to 50 m from a mother plant, was recorded in the large, less dense population. Our results show that population density and size are important influences on mating system parameters and level of pollen dispersal.
引用
收藏
页码:492 / 503
页数:12
相关论文
共 68 条
  • [21] High levels of gene flow in bur oak revealed by paternity analysis using microsatellites
    Dow, BD
    Ashley, MV
    [J]. JOURNAL OF HEREDITY, 1998, 89 (01) : 62 - 70
  • [22] Dudash MR, 2000, CONSERV BIOL SER, V4, P35
  • [23] Plant mating systems in a changing world
    Eckert, Christopher G.
    Kalisz, Susan
    Geber, Monica A.
    Sargent, Risa
    Elle, Elizabeth
    Cheptou, Pierre-Olivier
    Goodwillie, Carol
    Johnston, Mark O.
    Kelly, John K.
    Moeller, David A.
    Porcher, Emmanuelle
    Ree, Richard H.
    Vallejo-Marin, Mario
    Winn, Alice A.
    [J]. TRENDS IN ECOLOGY & EVOLUTION, 2010, 25 (01) : 35 - 43
  • [24] IS GENE FLOW THE MOST IMPORTANT EVOLUTIONARY FORCE IN PLANTS?
    Ellstrand, Norman C.
    [J]. AMERICAN JOURNAL OF BOTANY, 2014, 101 (05) : 737 - 753
  • [25] English V., 1999, INTERIM RECOVERY PLA
  • [26] EXCOFFIER L, 1992, GENETICS, V131, P479
  • [27] Frankham R., 2010, Introduction to Conservation Genetics
  • [28] Movement patterns of honey possums, Tarsipes rostratus, in the Fitzgerald River National Park, Western Australia
    Garavanta, CAM
    Wooller, RD
    Richardson, KC
    [J]. WILDLIFE RESEARCH, 2000, 27 (02) : 179 - 183
  • [29] George A. S., 1996, Nuytsia, V10, P313
  • [30] Habitat fragmentation and its lasting impact on Earth's ecosystems
    Haddad, Nick M.
    Brudvig, Lars A.
    Clobert, Jean
    Davies, Kendi F.
    Gonzalez, Andrew
    Holt, Robert D.
    Lovejoy, Thomas E.
    Sexton, Joseph O.
    Austin, Mike P.
    Collins, Cathy D.
    Cook, William M.
    Damschen, Ellen I.
    Ewers, Robert M.
    Foster, Bryan L.
    Jenkins, Clinton N.
    King, Andrew J.
    Laurance, William F.
    Levey, Douglas J.
    Margules, Chris R.
    Melbourne, Brett A.
    Nicholls, A. O.
    Orrock, John L.
    Song, Dan-Xia
    Townshend, John R.
    [J]. SCIENCE ADVANCES, 2015, 1 (02):