Kirilova Ina, Denev Iliya D, Bineva Rumyana, Gevezova Maria, Alexandrova Milena, Kostov Kaloyan, Batchvarova Rossitza
Department of Plant Physiology and Molecular Biology, Plovdiv University , Plovdiv , Bulgaria.
Agricultural Academy, AgroBioInstitute , Sofia , Bulgaria.
Biotechnol Biotechnol Equip. 2014 Mar 4;28(2):199-207. doi: 10.1080/13102818.2014.911432. Epub 2014 Jul 31.
Germination of seeds of root parasites like broomrapes () is tightly regulated by chemical products exuded from the roots of the host plant, known as germination stimulants (GSs). Changes in the levels of synthesis and emission of GS can allow the development of practical measures for control of the crops-harming parasitic species. However, the genes encoding enzymes responsible for GS biosynthesis are still unknown. We performed a large-scale screening of 62,000 activation-tag mutants for alteration in susceptibility to and to identify lines with altered GS production among them. After five successive screenings we identified 36 lines with altered susceptibility to . Seven of them displayed altered levels of GS production. By using a combination of Southern blot and thermal asymmetric interlaced polymerase chain reaction (TAIL-PCR), we pinpointed the location of activation-tag constructs in these lines. A combination of differential display and quantitative real-time PCR (qRT-PCR) allowed us to identify several affected genes. Two of them are directly involved in isoprenoid biosynthetic pathway in chloroplasts, and we believe that their activation led to increased levels of GS production. We believe that these genes are responsible for increased GS production in five of the lines resistant to .
列当属等根寄生植物种子的萌发受到宿主植物根系分泌的化学物质(即萌发刺激物,GSs)的严格调控。GS合成与释放水平的变化有助于制定控制危害作物的寄生物种的实用措施。然而,负责GS生物合成的酶的编码基因仍不为人知。我们对62000个激活标签突变体进行了大规模筛选,以检测其对列当属植物的易感性变化,并从中鉴定出GS产生量改变的株系。经过连续五次筛选,我们鉴定出36个对列当属植物易感性改变的株系。其中7个株系的GS产生水平发生了变化。通过结合Southern杂交和热不对称交错聚合酶链反应(TAIL-PCR),我们确定了这些株系中激活标签构建体的位置。差异显示和定量实时PCR(qRT-PCR)相结合使我们能够鉴定出几个受影响的基因。其中两个基因直接参与叶绿体中的类异戊二烯生物合成途径,我们认为它们的激活导致了GS产生水平的提高。我们认为这些基因导致了对列当属植物具有抗性的5个株系中GS产量的增加。