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从野生番茄中获得的产量数量性状基因座主要由茎表达。

Yield quantitative trait loci from wild tomato are predominately expressed by the shoot.

机构信息

The Institute of Plant Sciences and Genetics in Agriculture, Faculty of Agriculture, The Hebrew University of Jerusalem, P.O. Box 12, 76100, Rehovot, Israel.

出版信息

Theor Appl Genet. 2011 Feb;122(2):405-20. doi: 10.1007/s00122-010-1456-9. Epub 2010 Sep 26.

Abstract

Plant yield is the integrated outcome of processes taking place above and below ground. To explore genetic, environmental and developmental aspects of fruit yield in tomato, we phenotyped an introgression line (IL) population derived from a cross between the cultivated tomato (Solanum lycopersicum) and a wild species (Solanum pennellii). Both homozygous and heterozygous ILs were grown in irrigated and non-irrigated fields and evaluated for six yield components. Thirteen lines displayed transgressive segregation that increased agronomic yield consistently over 2 years and defined at least 11 independent yield-improving QTL. To determine if these QTL were expressed in the shoots or the roots of the plants, we conducted field trials of reciprocally grafted ILs; out of 13 lines with an effect on yield, 10 QTL were active in the shoot and only IL8-3 showed a consistent root effect. To further examine this unusual case, we evaluated the metabolic profiles of fruits from both the homo- and heterozygous lines for IL8-3 and compared these to those obtained from the fruit of their equivalent genotypes in the root effect population. We observed that several of these metabolic QTL, like the yield QTL, were root determined; however, further studies will be required to delineate the exact mechanism mediating this effect in this specific line. The results presented here suggest that genetic variation for root traits, in comparison to that present in the shoot, represents only a minor component in the determination of tomato fruit yield.

摘要

植物的产量是地上和地下过程综合作用的结果。为了探索番茄果实产量的遗传、环境和发育方面的问题,我们对来自栽培番茄(Solanum lycopersicum)和野生种(Solanum pennellii)杂交的导入系(IL)群体进行了表型分析。在灌溉和非灌溉条件下种植纯合和杂合的 IL,并对六个产量构成因素进行了评估。13 条 IL 表现出超亲分离,在 2 年的时间里持续提高了农艺产量,并确定了至少 11 个独立的产量提高 QTL。为了确定这些 QTL 是否在植物的地上部分或地下部分表达,我们对 IL 进行了互接嫁接的田间试验;在对产量有影响的 13 条 IL 中,有 10 个 QTL 在地上部分活跃,只有 IL8-3 表现出一致的根效应。为了进一步研究这种不寻常的情况,我们评估了来自 IL8-3 的同质和杂合系的果实的代谢谱,并将其与根效应群体中相应基因型的果实的代谢谱进行了比较。我们观察到,其中一些代谢 QTL 与产量 QTL 一样,是由根决定的;然而,需要进一步的研究来阐明这种特殊情况下的具体机制。本文的研究结果表明,与地上部分相比,根特性的遗传变异在决定番茄果实产量方面只占很小的一部分。

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