Citation: | ZHOU Qing-Yuan. Effect of Pollen Donor Diversity on Fecundity in Xanthoceras sorbifolium[J]. Plant Science Journal, 2014, 32(3): 259-264. DOI: 10.3724/SP.J.1142.2014.30259 |
[1] |
Marshall DL, Ellstrand NC. Sexual selection in Raphanus sativus: experimental data on the nonrandom fertilization, maternal choice, and consequences of multiple paternity[J]. Amer Nat, 1986, 127: 446-461.
|
[2] |
Willson MF. Sexual selection in plants: perspective and overview[J]. Amer Nat, 1994, 144: S13-S39.
|
[3] |
Shaner MGM, Marshall DL. How robust is nonrandom mating in wild radish: do small pollen loads coupled with more competing pollen donors lead to random mating[J]. Amer J Bot, 2007, 94: 266-273.
|
[4] |
Winsor JA, Davis LE, Stephenson AG. The relationship between pollen load and fruit maturation and its effects on offspring vigor in Cucurbita pepo[J]. Amer Nat, 1987, 129: 643-646.
|
[5] |
Armbruster WS, Rogers DG. Does pollen competition reduce the cost of inbreeding?[J]. Amer J Bot,2004, 91: 1939-1943.
|
[6] |
Mitchell R. Effects of pollen quality on progeny vigor: evidence from Leaquerella fendleri[J].Evo-lution, 1997, 51: 1679-1684.
|
[7] |
Nemeth MB, Smith-Huerta NL. Pollen deposition, pollen tube growth, seed production, and seeding performance in natural populations of Clarkia unguiculata (Onagraceae)[J].Int J Plant Sci, 2003, 164: 153-164.
|
[8] |
Kron P, Husband BC. The effects of pollen diversity on plant reproduction: insights from apple[J].Sex Plant Reprod, 2006, 19: 125-131.
|
[9] |
周庆源,傅德志. 文冠果生殖生物学的初步研究[J]. 林业科学,2010, 44: 158-162.
|
[10] |
Zhou QY, Liu GS. The embryology of Xanthoceras and its phylogenetic implications[J].Plant Syst Evol, 2012, 298: 457-468.
|
[11] |
Snow AA. Effects of pollen load size and number of donors on sporophyte fitness in wild radish (Raphanus raphanistrum)[J]. Amer Nat, 1990, 136: 742-758.
|
[12] |
Paschke M, Abs C,Schmid B. Effects of population size and pollen diversity on reproductive success and offspring size in the narrow endemic Cochlearia bavarica (Brassicaceae)[J].Amer J Bot, 2002, 89: 1250-1259.
|
[13] |
Rezazadeh R, Hassanzadeha H, Hosseinia Y, Karami Y, Williams RR. Influence of pollen source on fruit production of date palm (Phoenix dactylifera L.) cv. Barhi in humid coastal regions of southern Iran[J].Sci Hortic,2013, 160: 182-188.
|
[14] |
Stephenson AG. Flower and fruit abortion: proximate causes and ultimate functions[J].Ann Rev Ecol Systs, 1981, 12: 253-279.
|
[15] |
Sutherland S. Why hermaphroditic plants produce many more flowers than fruits: Experimental tests with Agave mckelveyana[J].Evolution, 1987, 4: 750-759.
|
[16] |
Richards AJ. Plant Breeding Systems[M]. London: George Allen and Unwin, 1986.
|
[17] |
Mitchell RJ, Karron JD, Holmquist KG, Bell JM. Patterns of multiple paternity in fruits of Mimulus ringens (Phrymaceae)[J].Amer J Bot,2005, 5: 885-890.
|
[18] |
Marshall DL, Folsom MW. Mate choice in plants: an anatomical to population perspective[J].Ann Rev Ecol Syst, 1991, 22: 37-63.
|
[19] |
Bertin RI. Paternity and fruit production in trumpet creeper (Campsis radicans)[J].Amer Nat,1982, 119: 694-709.
|
[20] |
Stephenson AG, Bertin RI. Sexual Selection in Plants[M]//Real L ed. Pollination Biology. New York: Academic Press, 1983.
|
[21] |
Waser NM, Price MV, Montalvo AM, Gray RN. Female mate choice in a perennial herbaceous wildflower, Delphinium nelsonii[J].Evol Trends Plants, 1987, 1: 29-33.
|
[22] |
Bertin RI. Nonrandom fruit production in Campsis radicans: between year consistency and effects of prior pollination[J].Amer Nat, 1985, 126: 750-759.
|
[23] |
Marshall DL, Ellstrand NC. Effective mate choice in wild radish: evidence foe selective seed abortion and its mechanism[J].Amer Nat, 1988, 131: 736-759.
|
[24] |
Marshall DL, Fulller OS. Does nonrandom mating among wild radish plants occur in the field as well as in the greenhouse?[J].Amer J Bot, 1994, 81: 439-445.
|
[25] |
Herrero M, Hormaza J I. Pistil strategies controlling pollen tube growth[J].Sex Plant Reprod, 1996, 9: 343-347.
|
[26] |
Ruane L G. Mating system and the hybridization between self-compatible Phlox cuspidate and self-incompatible Phlox drummondii[J].Evol Ecol, 2009, 23: 791-805.
|
[27] |
Zhou QY, Jin XB, Fu DZ. Developmental morpho-logy of obturator and micropyle and pathway of pollen tube growth in ovary in Phellodendron amurense (Rutaceae)[J].Acta Bot Sin, 2004, 46: 1434-1442.
|
[28] |
Skogsmyr I, Lankinen A. Sexual selection: an evolutionary force in plants?[J].Biol Rev, 2002, 77: 537-562.
|
[29] |
Vaughton G. Nonrandom patterns of fruit set in Banksia spimulosa (Proteaceae): Interovary competition within and among inflorescences[J].Int J Plant Sci, 1993, 154: 306-313.
|
[30] |
Korbecka G, Klinkhamer PGL, Vrieling K. Selective embryo abortion hypothesis revisited—a molecular approach[J].Plant Biol, 2002, 4: 298-310.
|
[31] |
Bawa KS, Webb CJ. Flower, fruit and seed abortion in tropical forest trees: implications for the evolution of paternal and maternal reproductive patterns[J].Amer J Bot,1984, 71: 736-751.
|
[32] |
Obeso JR. Selective fruit and seed maturation in Asphodelus albus Miller (Liliaceae)[J].Oecologia, 1993, 93: 564-570.
|
[33] |
Burd M. Offspring quality in relation to excess flowers in Pultenaea gunnii (Fabaceae)[J].Evolution, 2004, 58: 2371-2376.
|
[34] |
Burd M. “Excess” flower production and selective fruit abortion: a model of potential benefits[J].Ecology, 1998,79: 2123-2132.
|
[35] |
Lee TD, Bazzaz FA. Regulation of fruit and seed production in an annual legume, Cassia asciculate[J].Ecology, 1982, 63: 1363-1373.
|
[36] |
Stephenson AG, Devlin B, Horton JB. The effects of seed number and prior fruit dominance on the pattern of fruit production in Cucurbita pepo (zucchini squash)[J].Ann Bot, 1988, 62: 653-661.
|