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用于冬小麦适应缺氮QTL分析的碳/氮功能简化概念模型。

A simplified conceptual model of carbon/nitrogen functioning for QTL analysis of winter wheat adaptation to nitrogen deficiency.

作者信息

Laperche A, Devienne-Barret F, Maury O, Le Gouis J, Ney B

机构信息

UMR INRA-INA PG Environnement et Grandes Cultures, 78850 Thiverval Grignon, France.

出版信息

Theor Appl Genet. 2006 Oct;113(6):1131-46. doi: 10.1007/s00122-006-0373-4. Epub 2006 Aug 15.

Abstract

Breeding new varieties adapted to low-input agricultural practices is of particular interest in light of current economical and environmental concerns. Improving nitrogen (N) uptake and N utilization efficiency (NUE) are two ways of producing varieties tolerant to low N input. To offer new possibilities to breeders, it is necessary to acquire more knowledge about these two processes. Knowing C and N metabolisms are linked and knowing N uptake is partly explained by root characteristics, we carried out a QTL analysis for traits associated with N uptake and NUE by using both a conceptual model of C/N plant functioning and a root architecture description. A total of 120 lines were selected according to their genotype among 241 doubled haploids derived from two varieties, one N stress tolerant and the other N stress sensitive. They were grown in hydroponic rhizotrons under N-limited nutritional conditions. Initial conditions varied among genotypes; therefore, total root length on day 1 was used to correct traits. Heritabilities ranged from 13 to 84%. Thirty-two QTL were located: 6 associated with root architecture (on chromosomes 4B, 5A, 5D and 7B), 6 associated with model efficiencies (1B, 2B, 6A, 6B, 7A, 7B and 7D) and 20 associated with state variables (1A, 1B, 2B, 4B, 5A, 5B and 6B). The effects of the dwarfing gene Rht-B1 on root traits are discussed, as well as the features of a conceptual plant functioning model, as a useful tool to assess pertinent traits for QTL detection. It is suggested that further studies that couple QTL with a functioning model and a root architecture description could serve in the search for ideotypes.

摘要

鉴于当前的经济和环境问题,培育适应低投入农业生产方式的新品种备受关注。提高氮素吸收和氮素利用效率是培育耐低氮品种的两种途径。为育种者提供新的可能性,有必要获取更多关于这两个过程的知识。鉴于碳代谢和氮代谢相互关联,且氮素吸收部分可由根系特征解释,我们利用碳/氮植物功能概念模型和根系结构描述,对与氮素吸收和氮素利用效率相关的性状进行了QTL分析。从两个品种衍生的241个双单倍体中,根据基因型选择了120个株系,其中一个耐氮胁迫,另一个对氮胁迫敏感。它们在氮素受限的营养条件下,种植于水培根箱中。初始条件因基因型而异;因此,第1天的总根长用于校正性状。遗传力范围为13%至84%。定位了32个QTL:6个与根系结构相关(位于4B、5A、5D和7B染色体上),6个与模型效率相关(1B、2B、6A、6B、7A、7B和7D),20个与状态变量相关(1A、1B、2B、4B、5A、5B和6B)。讨论了矮化基因Rht - B1对根系性状的影响,以及概念性植物功能模型的特点,该模型是评估QTL检测相关性状的有用工具。建议将QTL与功能模型和根系结构描述相结合的进一步研究可用于寻找理想型。

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