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著者 Rutger J.N., Mackill D.J.
タイトル Application of Mendelian genetics in rice breeding
Abstract:
The application of Mendelian genetics has clearly led to many breeding advances in rice as well as in other crops. In this chapter, we emphasize economically important traits for which segregation ratios can be distinguished without elaborate progeny testing or molecular markers. Four general groups of traits are reviewed: agronomic and physiological traits, grain quality, pest resistance, and resistance to abiotic stresses. The single most important trait has been semidwarfism, conferred by the sd1 gene. Other important agronomic and physiological traits are photoperiod sensitivity, glabrous hulls, gold hull color, and purple leaf. Among grain quality characters, amylose content is the most important, ranging from waxy types with essentially no amylose to temperate japonica short- and medium-grain types with 16–18% amylose, to tropical japonica long grains with 21–24% amylose, and to many indica types with up to 28% amylose. Another significant grain quality trait is aroma, which often appears to be under simple genetic control but which is difficult to recover in high-yielding backgrounds. Breeding for pest resistance, including both diseases and insects, has been one of the most successful examples of the use of major genes in crops, and yet it is a recurring challenge. The most important disease example is blast resistance, which has been a focus of breeding efforts for decades. The exploitation of major genes for bacterial blight resistance has been more successful than for blast. Many successful cases of major gene resistance for brown planthopper, green leafhopper, and gall midge have been reported in the past three decades. In general, resistance to abiotic stresses has been polygenic. Exceptions have been low-temperature-induced chlorosis at the seedling stage and submergence tolerance.
掲載誌 Rice Genetics, IV. IRRI, Manila, Philippines
Country USA
刊数
ページ 27-38
発刊年 2001
PubMed ID -
PubMed Central ID -
DOI -
URL -
関連情報
遺伝子 BPH1 BPH2 EUI1 PITA PL SD1 SE1 SE3 SUB1 XA4
INSD -
系統 野生イネ
コアコレクション
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突然変異系統(遺伝研 Collection) -
種子不稔系統 -
致死変異体系統 -
組織別発生段階
- 突然変異系統(遺伝子)
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栽培イネ品種(遺伝研 Collection) -
組織別発生段階 -
/rice/oryzabase