Published 1989 | Version v1
Book

Major gene mutations in fruit tree domestication

  • 1. Volcani Centre, Bet Dagan (Israel). Dept. of Fruit Breeding and Genetics

Description

Though fruit gathering from the wild began long before domestication, fruit tree domestication started only after the establishment of grain agriculture. Banana, fig, date, grape and olive were among the first fruit trees domesticated. Most fruit trees are outbreeders, highly heterozygous and vegetatively propagated. Knowledge of genetics and economic traits controlled by major genes is limited. Ease of vegetative propagation has played a prominent part in domestication; advances in propagation technology will play a role in domestication of new crops. Changes toward domestication affected by major genes include self-fertility in peach, apricot and sour cherry, while the emergence of self-fertile almond populations is more recent and due probably to introgression from Amygdalus webbii. Self-compatibility in the sweet cherry has been attained only by pollen irradiation. A single gene controls sex in Vitis. Wild grapes are dioecious, with most domesticated cultivars hermaphrodite, and only a few females. In the papaya changes from dioecism to hermaphroditism have also occurred. Self-compatible systems have also been selected during domestication in Rubus. Changes towards parthenocarpy and seedlessness during domestication occurred in the banana, citrus, grape, fig and pineapple. In the banana, parthenocarpy is due to three complementary dominant genes; stenospermocarpy in the grape depends on two complementary recessive genes; parthenocarpy and sterility in citrus seems more complicated; however, it can be induced in genetic material of suitable background with ease by irradiation. Presence of persistent syconia in the fig is controlled by a mutant allele P dominant to wild +. Thornlessness in blackberry is recessive, while in the pineapple spineless forms are dominant. Changes affecting fruit composition owing to major genes include the disappearance of amygdalin present in bitter almonds (bitter kernel recessive to sweet), shell hardness in almond, and a recessive controlling low acid fruit in apple. (author). 55 refs

Part of:
Plant domestication by induced mutation

Additional details

Publishing Information

Publisher
IAEA.
Imprint Place
Vienna (Austria)
ISBN
92-0-111089-8
Imprint Title
Plant domestication by induced mutation
Imprint Pagination
199 p.
Series
Panel proceedings series.
Journal Page Range
p. 153-161.

Conference

Title
Advisory group meeting on the possible use of mutation breeding for rapid domestication of new crop plants.
Dates
17-21 Nov 1986.
Place
Vienna (Austria).

INIS

Country of Publication
Austria
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
20056133
Subject category
S60: APPLIED LIFE SCIENCES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
BIOLOGICAL EVOLUTION; CLIMATES; FRUIT TREES; FRUITS; GENE MUTATIONS; GENETICS; MORPHOLOGICAL CHANGES; PLANT BREEDING; PRODUCTIVITY
Descriptors DEC
BIOLOGY; FOOD; MUTATIONS; PLANTS; TREES

Optional Information