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Bud Dormancy and Growth

2009
Nearly all land plants produce ancillary meristems in the form of axillary or adventitious buds in addition to the shoot apical meristem. Outgrowth of these buds has a significant impact on plant architecture and the ability of plants to compete with neighboring plants, as well as to respond to and survive environmental hardships.
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Dormancy of Seeds and Buds

2000
In previous chapters, we discussed plant growth and development as a continuous process that proceeds without interruption from the germination of seed to the formation of the adult plant bearing flowers, fruits, and seeds. In most species, growth is not necessarily a continuous process as it may be suspended for varying periods of time in the life ...
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Dormancy in Seeds and Buds II.

Madras Agricultural Journal, 1968
In an attempt to understand the physiological causes underlying dormancy, detailed investigations were carried out during the current century to correlate dormancy with biochemical changes occurring in the dormant organs. In recent years, the emphasis has passed over to a study of the role of endogenous growth regulators in controlling dormancy and a ...
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Dormancy and bud burst in Sultana vines

2017
Dormancy and bud burst have been studied for sultana vines in the Murray Valley, Australia. The vines are in deep dormancy at the beginning of autumn and the intensity of dormancy decreases gradually during autumn and winter. Bud burst of cuttings taken during the dormant period occurs the more rapidly the higher the temperature at which they are held.
Antcliff, A. J., May, P.
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Modelling compensatory regrowth with bud dormancy and gradual activation of buds

Evolutionary Ecology, 2000
Many plants show compensatory regrowth after herbivory and dormant buds often have an important role in compensatory responses. Theoretical models have shown that herbivore damage may select for a bud bank, i.e., a pool of dormant buds that are protected from herbivory and that are activated after herbivore damage. Earlier models assumed that undamaged
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Mechanism of seed dormancy and its relationship to bud dormancy in Persian walnut

Environmental and Experimental Botany, 2012
Abstract Stratification, chilling, and heat requirements for both seeds and buds of five Persian walnut genotypes were compared. In experiments carried out between November 2006 and March 2008, 1-year-old twigs were collected after leaf-fall, placed in plastic bags, and kept at 4 ± 1 °C to provide chilling periods ranging from 400 to 1500 h.
Kourosh Vahdati   +4 more
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Potato minituber bud dormancy release

2005
Potato minitubers are small pathogen and disease-free seed tubers that are field planted to produce basic seed potatoes. Minitubers have a longer dormancy period than regular tubers. Predictable and consistent dormancy release of potato minitubers is necessary to ensure uniform sprouting and vigorous plant development.
Külen, Oktay   +4 more
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Knowing when to grow: signals regulating bud dormancy

Trends in Plant Science, 2003
Dormancy regulation in vegetative buds is a complex process necessary for plant survival, development and architecture. Our understanding of and ability to manipulate these processes are crucial for increasing the yield and availability of much of the world's food.
David P, Horvath   +3 more
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Dormancy Induction and Release in Buds and Seeds

2015
Dormancy is a complex trait in both buds and seeds, which is an important mechanism for survival during the life cycle of plants. Over the years, a vast wealth of information has been generated on how environmental and developmental signals impact dormancy in buds and seeds.
Wun S. Chao   +4 more
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Chemical Breaking and Induction of Bud Dormancy

1974
Temporary suspension of growth, or deceleration to barely perceptible rates, called dormancy, is a common feature of the ontogeny of seed plants. Dormancy is a phenomenon of profound biological significance, because it provides a means by which plants are enabled to survive periods of environmental conditions which would be adverse or lethal to plants ...
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