Matvienko M, Torres M J, Yoder J I
Department of Vegetable Crops, University of California, Davis, California 95616, USA.
Plant Physiol. 2001 Sep;127(1):272-82. doi: 10.1104/pp.127.1.272.
Parasitic plants in the Scrophulariaceae use chemicals released by host plant roots to signal developmental processes critical for heterotrophy. Haustoria, parasitic plant structures that attach to and invade host roots, develop on roots of the hemiparasitic plant Triphysaria versicolor within a few hours of exposure to either maize (Zea mays) root exudate or purified haustoria-inducing factors. We prepared a normalized, subtractive cDNA library enriched for transcripts differentially abundant in T. versicolor root tips treated with the allelopathic quinone 2,6-dimethoxybenzoquinone (DMBQ). Northern analyses estimated that about 10% of the cDNAs represent transcripts strongly up-regulated in roots exposed to DMBQ. Northern and reverse northern analyses demonstrated that most DMBQ-responsive messages were similarly up-regulated in T. versicolor roots exposed to maize root exudates. From the cDNA sequences we assembled a unigene set of 137 distinct transcripts and assigned functions by homology comparisons. Many of the proteins encoded by the transcripts are predicted to function in quinone detoxification, whereas others are more likely associated with haustorium development. The identification of genes transcriptionally regulated by haustorium-inducing factors provides a framework for dissecting genetic pathways recruited by parasitic plants during the transition to heterotrophic growth.
玄参科的寄生植物利用宿主植物根系释放的化学物质来为异养所必需的发育过程发出信号。吸器是寄生植物附着并侵入宿主根系的结构,在半寄生植物三色鳞叶草接触玉米(Zea mays)根系分泌物或纯化的吸器诱导因子后的几小时内,其根系上就会发育出吸器。我们制备了一个标准化的消减cDNA文库,该文库富含在经化感醌2,6 -二甲氧基苯醌(DMBQ)处理的三色鳞叶草根尖中差异丰富的转录本。Northern分析估计,约10%的cDNA代表在暴露于DMBQ的根中强烈上调的转录本。Northern分析和反向Northern分析表明,大多数对DMBQ有反应的信息在接触玉米根系分泌物的三色鳞叶草根中同样上调。根据cDNA序列,我们组装了一个包含137个不同转录本的单基因集,并通过同源性比较确定其功能。许多转录本编码的蛋白质预计在醌解毒中发挥作用,而其他蛋白质更可能与吸器发育相关。对受吸器诱导因子转录调控的基因的鉴定为剖析寄生植物向异养生长转变过程中所利用的遗传途径提供了一个框架。