Adaptation and ecological differentiation in wheat with special reference to geographical variation of growth habit and Vrn genotype
- 1 April 2001
- journal article
- research article
- Published by Wiley in Plant Breeding
- Vol. 120 (2) , 107-114
- https://doi.org/10.1046/j.1439-0523.2001.00574.x
Abstract
Geographical variation of growth habit was studied for 749 landraces from various parts of the world, with special reference to their adaptation and ecogeographical differentiation. The total frequency of spring‐type landraces was 49.9%, and varied between localities. Spring‐type landraces were frequent in two distinct areas where the average January temperature was either below ‐7°C or above 4°C, with winter‐type landraces in areas from ‐7°C to 4°C. These results indicated that geographical variation of growth habit is closely related to the degree of winter coldness. An analysis of the Vrn genotype for 216 spring‐type landraces demonstrated the uneven distribution of four Vrn genes, with Vrn4 being the least frequent. The adaptive Vrn genotype was different between localities. Genotypes carrying Vrn‐A1 and additional Vrn gene(s) were frequent in two distinct areas where the average January temperature was either below ‐7°C or over 10°C, while genotypes with any of three Vrn genes, except Vrn‐A1, adapted to areas with temperatures from 4°C to 10°C. Therefore, it was concluded that the adaptability of wheat landraces differed depending on their growth habit and Vrn genotype, and that ecotypes with different Vrn genotypes were allopatrically distributed as a result of adaptation to different winter temperature. However, the differential distribution of Vrn‐B1, Vrn‐D1 and Vrn4 could not be explained by their adaptability, and might reflect the polyphyletic origin of common wheat.Keywords
This publication has 26 references indexed in Scilit:
- Testing method of pre-harvest sprouting and genealogical pedigree of pre-harvest sprouting resistant cultivars in wheat.Ikushugaku zasshi, 1989
- Method for evaluation of chilling requirement and narrow-sense earliness of wheat cultivars.Ikushugaku zasshi, 1988
- Genetic Studies on Growth Habit of some Important Spring Wheat Cultivars in Japan, with Special Reference to the Identification of the Spring Genes InvolvedIkushugaku zasshi, 1979
- Genetic adaptation for vernalization requirement in Nepalese wheat and barleyAnnals of Applied Biology, 1977
- Chromosome variation for loci controlling ear emergence time on chromosome 5A of wheatHeredity, 1976
- The genetic control of ear-emergence time by chromosomes 5A and 5D of wheatHeredity, 1976
- Responses of Spring Wheats to Vernalization and Photoperiod 1Crop Science, 1972
- A genetic analysis of the spring-winter habit of growth in wheatAustralian Journal of Agricultural Research, 1971
- Monosomic Analysis of Synthesized Hexaploid WheatsThe Japanese Journal of Genetics, 1962
- Relatious of the Adaptability of Wheat Varieties for Spring-Sowing to their Geographical Distribution and their Significance in BreedingJapanese Journal of Crop Science, 1934