Sergeeva Lidiya I, Keurentjes Joost J B, Bentsink Leónie, Vonk Jenneke, van der Plas Linus H W, Koornneef Maarten, Vreugdenhil Dick
Laboratory of Plant Physiology, Wageningen University, Arboretumlaan 4, 6703 BD, Wageningen, The Netherlands.
Proc Natl Acad Sci U S A. 2006 Feb 21;103(8):2994-9. doi: 10.1073/pnas.0511015103. Epub 2006 Feb 15.
The possible role of the sucrose-splitting enzymes sucrose synthase and invertase in elongating roots and hypocotyls of Arabidopsis was tested by using a combination of histochemical methods and quantitative trait locus (QTL) analysis. Lengths of roots and hypocotyls correlated better with invertase activities than with sucrose synthase activities. The highest correlations were observed with activities in the elongating zones of roots. The genetic basis of these correlations was studied by using QTL analysis. Several loci, affecting invertase activity, colocated with loci that had an effect on root or hypocotyl length. Further fine mapping of a major locus for root length, but not for hypocotyl length (top chromosome 1), consistently showed colocation with the locus for invertase activity containing a gene coding for a vacuolar invertase. The analysis of a functional knockout line confirmed the role of this invertase in root elongation, whereas other invertase genes might play a role in hypocotyl elongation. Thus, we show the power of QTL analysis, combined for morphological and biochemical traits, followed by fine-mapping and mutant analysis, in unraveling the function of genes and their role in growth and development.
通过结合组织化学方法和数量性状基因座(QTL)分析,对蔗糖分解酶蔗糖合酶和转化酶在拟南芥根和下胚轴伸长中的可能作用进行了测试。根和下胚轴的长度与转化酶活性的相关性比与蔗糖合酶活性的相关性更好。在根的伸长区观察到与活性的最高相关性。利用QTL分析研究了这些相关性的遗传基础。几个影响转化酶活性的基因座与影响根或下胚轴长度的基因座共定位。对一个主要的根长基因座(而非下胚轴长度基因座,位于1号染色体顶部)进行进一步精细定位,始终显示与含有编码液泡转化酶基因的转化酶活性基因座共定位。对一个功能敲除系的分析证实了这种转化酶在根伸长中的作用,而其他转化酶基因可能在下胚轴伸长中发挥作用。因此,我们展示了QTL分析结合形态学和生化性状,随后进行精细定位和突变体分析,在揭示基因功能及其在生长发育中的作用方面的强大力量。