THE USE OF TRANSGENIC AND NATURALLY-OCCURRING MUTANTS TO UNDERSTAND AND MANIPULATE TOMATO FRUIT RIPENING

被引:97
作者
GRAY, JE
PICTON, S
GIOVANNONI, JJ
GRIERSON, D
机构
[1] UNIV NOTTINGHAM, AFRC, DEPT PHYSIOL & ENVIRONM SCI, PLANT GENE REGULAT RES GRP, LOUGHBOROUGH LE12 5RD, LEICS, ENGLAND
[2] APPL BIOSYST INC, N WARRINGTON WA3 7BP, CHESHIRE, ENGLAND
[3] TEXAS A&M UNIV, COLL AGR & LIFE SCI, DEPT HORT SCI, COLLEGE STN, TX 77843 USA
关键词
LYCOPERSICON ESCULENTUM; TOMATO; ANTISENSE; CAROTENOIDS; ETHYLENE; GENE EXPRESSION; RFLPS; RIPENING INHIBITOR; YELLOW FLESH;
D O I
10.1111/j.1365-3040.1994.tb00149.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In the years since we last reviewed the use of mutants to study tomato fruit ripening (Grierson et al. 1987), considerable information has been gained by the cloning, sequencing and identification of many mRNAs implicated in this developmental process. Genes involved in cell wall degradation, colour change and ethylene synthesis have been cloned, and antisense techniques have been developed and used to produce genetically engineered mutant fruit deficient in these aspects of ripening (see Gray et al. 1992). Recently, a previously cloned ripening gene has been used to complement a naturally occurring fruit colour mutant, yellow flesh (Fray and Grierson 1993a), and a ripening impaired mutant, ripening inhibitor, has been used to identify several new ripening-related mRNAs (Picton et al. 1993b). The chromosomal region bearing the ripening inhibitor mutation has been subjected to high-resolution mapping (Churchill, Giovannoni and Tanksley 1993) and chromosome walking experiments are in progress to identify this gene.
引用
收藏
页码:557 / 571
页数:15
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