Huijser C, Kortstee A, Pego J, Weisbeek P, Wisman E, Smeekens S
Department of Molecular Plant Physiology and; Department of Molecular Genetics, University of Utrecht, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Plant J. 2000 Sep;23(5):577-85. doi: 10.1046/j.1365-313x.2000.00822.x.
In plants, sugars act as signalling molecules that control many aspects of metabolism and development. Arabidopsis plants homozygous for the recessive sucrose uncoupled-6 (sun6) mutation show a reduced sensitivity to sugars for processes such as photosynthesis, gene expression and germination. The sun6 mutant is insensitive to sugars that are substrates for hexokinase, suggesting that SUN6 might play a role in hexokinase-dependent sugar responses. The SUN6 gene was cloned by transposon tagging and analysis showed it to be identical to the previously described ABSCISIC ACID INSENSITIVE-4 (ABI4) gene. Our analysis suggests the involvement of abscisic acid and components of the abscisic acid signal transduction cascade in a hexokinase-dependent sugar response pathway. During the plant life cycle, SUN6/ABI4 may be involved in controlling metabolite availability in an abscisic acid- and sugar-dependent way.
在植物中,糖类作为信号分子,控制着新陈代谢和发育的许多方面。隐性蔗糖解偶联-6(sun6)突变的纯合拟南芥植株在光合作用、基因表达和萌发等过程中对糖类的敏感性降低。sun6突变体对己糖激酶底物糖类不敏感,这表明SUN6可能在己糖激酶依赖性糖类反应中发挥作用。通过转座子标签法克隆了SUN6基因,分析表明它与先前描述的脱落酸不敏感-4(ABI4)基因相同。我们的分析表明,脱落酸和脱落酸信号转导级联的组分参与了己糖激酶依赖性糖类反应途径。在植物生命周期中,SUN6/ABI4可能以脱落酸和糖类依赖的方式参与控制代谢物的可利用性。