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Titlebook: Adaptation in Plant Breeding; Selected Papers from Peter M. A. Tigerstedt Book 1997 Springer Science+Business Media Dordrecht 1997 Coevolut

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期刊全稱Adaptation in Plant Breeding
期刊簡(jiǎn)稱Selected Papers from
影響因子2023Peter M. A. Tigerstedt
視頻videohttp://file.papertrans.cn/145/144534/144534.mp4
學(xué)科分類Developments in Plant Breeding
圖書封面Titlebook: Adaptation in Plant Breeding; Selected Papers from Peter M. A. Tigerstedt Book 1997 Springer Science+Business Media Dordrecht 1997 Coevolut
影響因子Plant adaptation is a fundamental process in plant breeding. Itwas the first criterion in the initial domestication of plantsthousands of years ago. Adaptedness is generally a quantitativecomplex feature of the plant, involving many traits, many of which arequantitative. Adaptation to stresses like cold, drought or diseasesare among the most central problems in a world grappling with globalfood security. Modern plant breeding, based on mendelian genetics, hasmade plant improvement more effective and more precise and selective.Molecular genetics and genetic engineering has considerably increasedthis selectivity down to single genes affecting single traits. Thetime has come when plant breeding efficiency may cause loss of geneticresources and adaptation. In these proceedings an effort is made tomerge modern plant breeding efficiency with ecological aspects ofplant breeding, reflected in adaptation. It is hoped that this mergerresults in more sustainable use ofgenetic resources and physicalenvironments. .The book is based on 10 keynotes addressing a wide spectrum of themesrelated to adaptation. In addition each subject is further elaboratedin up to three case studies on particular pla
Pindex Book 1997
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,Commentary on Dr. Cusset’s Paper,regating isolines of cv Hannes and of cv Kyr? were raised at two plant densities and the grain yield of heterozygotes and nonmutant homozygotes were evaluated. The heterozygotes in mean outyielded the homozygotes. The overdominance of grain number explains the persistance of this mutant at a relativ
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,Commentary on Professor Tomlinson’s Paper, land environment are climate and soil, both of which determine much of the evolutionary adaptedness of plants as, besides representing a set of surrounding physical, chemical and sometimes limiting traits, they determine the availability of nutrients and energy, of which they are the immediate sour
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https://doi.org/10.1007/978-94-009-7636-8vival over seasons. In natural populations, plant characteristics influencing seed setting and formation of seed reserves in the soil are expected to be ‘a(chǎn)djusted’ to the prevailing environmental conditions of the sites of origin. Knowledge on plant/environment relationships may provide information
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https://doi.org/10.1007/978-3-540-73518-2rganization of quantitative characters was developed. This model differs from the classical G. Mendel one and from K. Mather’s model of polygenic inheritance by the following major attributes: (1) redetermination of the spectrum, genes determining genetical variability of a character, when the limit
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