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J. Tuomi, P. Nilsson, M. Astrom (1994)
Plant Compensatory Responses: Bud Dormancy as an Adaptation to HerbivoryEcology, 75
B. Olson, J. Richards (1988)
Tussock regrowth after grazing: Intercalary meristem and axillary bud activity of tillers of Agropyron desertorumOikos, 51
(1977)
Developmental morphology and management implications. In: Sosebee RE (ed) Rangeland plant physiology
R. Kinucan, F. Smeins (1992)
Soil Seed Bank of a Semiarid Texas Grassland Under Three Long-Term (36- Years) Grazing RegimesAmerican Midland Naturalist, 128
D. Harris, A. Davy (1986)
Regenerative potential of Elymus farctus from rhizome fragments and seedJournal of Ecology, 74
M. Fuller, W. Conover, J. Gibbons (1973)
Practical Nonparametric Statistics; Nonparametric Statistical InferenceThe Statistician, 22
(1963)
Tillering in herbage grasses
T. Weaver, J. Grime (1980)
Plant Strategies and Vegetation Processes.Journal of Ecology, 68
C. Busso, R. Mueller, J. Richards (1989)
Effects of Drought and Defoliation on Bud Viability in Two Caespitose GrassesAnnals of Botany, 63
M. Hay, P. Newton (1996)
EFFECT OF SEVERITY OF DEFOLIATION ON THE VIABILITY OF REPRODUCTIVE AND VEGETATIVE AXILLARY BUDS OF TRIFOLIUM REPENS L.Annals of Botany, 78
(1996)
Eect of severity of defoliation on the viability of reproductive and vegetative axillary buds of Trifolium repens L
K. Mitchell (1953)
Influence of Light and Temperature on the Growth of Ryegrass (Lolium spp.) II. The Control of Lateral Bud DevelopmentPhysiologia Plantarum, 6
R. Leakey, R. Chancellor, D. Vince‐Prue (1977)
Regeneration from rhizome fragments of Agropyron repensAnnals of Applied Biology, 87
J. Welker, D. Briske, R. Weaver (1991)
Intraclonal nitrogen allocation in the bunchgrass Schizachyrium scoparium Hubb. : an assessment of the physiological individualFunctional Ecology, 5
D. Cable (1971)
Growth and Development of Arizona Cottontop (Trichachne Californica [Benth.] Chase)Botanical Gazette, 132
E. Barlow, R. Munns, C. Brady (1980)
Drought responses of apical meristems.
B. Sharman (1945)
Leaf and Bud Initiation in the GramineaeBotanical Gazette, 106
J. Silsbury (1964)
Tiller dynamics, growth, and persistency of Lolium perenne L. and of Lolium rigidum Gaud.Crop & Pasture Science, 15
G. Mcintyre (1970)
Studies on bud development in the rhizome of Agropyron repens. 1. The influence of temperature, light intensity, and bud position on the pattern of developmentBotany, 48
L. Vleeshouwers, H. Bouwmeester, C. Karssen (1995)
Redefining seed dormancy: an attempt to integrate physiology and ecologyJournal of Ecology, 83
D. Hume (1991)
Leaf and Tiller Production of Prairie Grass (Bromus willdenowii Kunth) and Two Ryegrass (Lolium) SpeciesAnnals of Botany, 67
B. Trenbath, J. Harper (1978)
Population Biology of Plants.Journal of Applied Ecology, 15
J. Murphy, D. Briske (1992)
Regulation of tillering by apical dominance: chronology, interpretive value, and current perspectivesJournal of Range Management, 45
D. Gaff, O. Okong'o-Ogola (1971)
The Use of Non-permeating Pigments for Testing the Survival of CellsJournal of Experimental Botany, 22
J. McKendrick, C. Owensby, R. Hyde (1975)
Big bluestem and indiangrass vegetative reproduction and annual reserve carbohydrate and nitrogen cyclesAgro-ecosystems, 2
J. Noble (1979)
Population biology of plants with clonal growth : I. Morphology and structural demography of Carex arenariaJournal of Ecology, 67
A. Vegis (1964)
Dormancy in Higher PlantsAnnual Review of Plant Biology, 15
(1980)
Drought responses of apical meristems. In:Turner NC, Kramer PJ (eds) Adaptation of plants to water and high temperature stress
(1988)
Long - term change in a semiarid grassland
(1972)
Seed dormancy. In: Kozlowski TT (ed) Seed biology
D. Briske, J. Butler (1989)
DENSITY-DEPENDENT REGULATION OF RAMET POPULATIONS WITHIN THE BUNCHGRASS SCHIZACHYRIUM SCOPARIUM: INTERCLONAL VERSUS INTRACLONAL INTERFERENCEJournal of Ecology, 77
D. Briske, A. Wilson (1980)
Drought effects on adventitious root development in blue grama seedlings.Journal of Range Management, 33
J. Mullahey, S. Waller, L. Moser (1991)
Defoliation Effects on Yield and Bud and Tiller Numbers of Two Sandhills GrassesJournal of Range Management, 44
E. Loo (1992)
Tillering, Leaf Expansion and Growth of Plants of Two Cultivars of Perennial Ryegrass Grown using Hydroponics at Two Water PotentialsAnnals of Botany, 70
(1971)
Growth and development of Arizona cottontop ( Trichachne californica [ Benth . ]
R. Mueller, J. Richards (1986)
Morphological Analysis of Tillering in Agropyron spicatum and Agropyron desertorumAnnals of Botany, 58
K. Thompson, J. Grime (1979)
SEASONAL VARIATION IN THE SEED BANKS OF HERBACEOUS SPECIES IN TEN CONTRASTING HABITATSJournal of Ecology, 67
F. Smeins, T. Taylor, L. Merrill (1976)
Vegetation of a 25-year exclosure on the Edwards Plateau, Texas.Journal of Range Management, 29
T. Fulbright, Bonnie Amos, F. Gehlbach (1991)
Edwards Plateau Vegetation: Plant Ecological Studies in Central TexasJournal of Range Management, 44
J. White, O. Solbrig (1980)
Demographic factors in populations of plants.
C. Busso, R. Bóo, D. Peláez (1993)
Fire Effects on Bud Viability and Growth of Stipa tenuis in Semiarid ArgentinaAnnals of Botany, 71
(1977)
Developmental morphology and management implications
C. Marshall, R. Langer (1980)
How grasses grow
H. Kroon, J. Knops (1990)
Habitat Exploration through Morphological Plasticity in Two Chalk Grassland PerennialsOikos, 59
O. Eriksson (1989)
Seedling dynamics and life histories in clonal plantsOikos, 55
A. Novoplansky (1996)
Hierarchy establishment among potentially similar budsPlant Cell and Environment, 19
P. Newton, M. Hay (1996)
Clonal Growth of White Clover: Factors Influencing the Viability of Axillary Buds and the Outgrowth of a Viable Bud to Form a BranchAnnals of Botany, 78
S. Hurlbert (1984)
Pseudoreplication and the Design of Ecological Field ExperimentsEcological Monographs, 54
G. Heidemann, G. Riper (1967)
Bud Activity in the Stem, Crown, and Rhizome Tissue of SwitchgrassJournal of Range Management, 20
Sylvia Haslam (1969)
The development and emergence of buds in Phragmites communis., 33
Oecologia Springer-Verlag (1990)
Comparative demography of co-occurring introduced and native tussock grasses: persistence and potential expansion
The occurrence, longevity, and contribution of axillary bud banks to population maintenance were investigated in a late-seral perennial grass, Bouteloua curtipendula, and a mid-seral perennial grass, Hilaria belangeri, in a semiarid oak-juniper savanna. Axillary buds of both species were evaluated over a 2-year period in communities with contrasting histories of grazing by domestic herbivores. A double staining procedure utilizing triphenyl tetrazolium chloride and Evan's blue indicated that both viable and dormant axillary buds remained attached to the base of reproductive parental tillers for 18–24 months which exceeded parental tiller longevity by approximately 12 months. Bud longevity of the late-seral species, B. curtipendula, exceeded bud longevity of the mid-seral species, H. belangeri, by approximately 6 months. Younger buds located on the distal portion of the tiller base were 3.2 and 1.4 times more likely to grow out than older proximal buds of B. curtipendula and H. belangeri, respectively. The percentage of older proximal buds, which included comparable portions of viable and dormant buds, that grew out to produce tillers following mortality of parental tillers was 6.0% for B. curtipendula and 8.4% for H. belangeri. In spite of the occurrence of relative large axillary bud banks for both species, the magnitude of proximal bud growth did not appear sufficient to maintain viable tiller populations. We found no evidence to support the hypothesis of compensatory bud growth on an individual tiller basis for either species. Grazing history of the communities from which the buds were collected did not substantially affect the number, status, longevity, or outgrowth of axillary buds on an individual tiller basis for either species. However, long-term grazing by domestic herbivores influenced axillary bud availability by modifying population structure of these two species. Bud number per square meter for B. curtipendula was 25% lower in the long-term grazed compared to the long-term ungrazed community based on a reduction in both tiller number per plant and plant number per square meter. In contrast, bud number per square meter for H. belangeri was 190% greater in the long-term grazed than in the long-term ungrazed community based on a large increase in plant density per square meter. Minimal contributions of axillary bud banks to annual maintenance of tiller populations in this mid- and late-seral species underscores the ecological importance of consistent tiller recruitment from recently developed axillary buds. Consistent tiller recruitment in grasslands and savannas characterized by intensive grazing and periodic drought implies that (1) bud differentiation and maturation must be remarkably tolerant of adverse environmental conditions and/or (2) tiller recruitment may resume from buds that mature following the cessation of severe drought and/or grazing, rather than from mature buds that survive these disturbances. These scenarios warrant additional research emphasis given the critical importance of this demographic process to tiller replacement in species populations and the maintenance of relative species abundance in grasslands and savannas.
Oecologia – Springer Journals
Published: May 21, 1997
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