Aly Radi, Cholakh Hila, Joel Daniel M, Leibman Diana, Steinitz Benjamin, Zelcer Aaron, Naglis Anna, Yarden Oded, Gal-On Amit
Department of Plant Pathology and Weed Research, ARO, The Volcani Center, Newe-Yaar Research Center, Ramat Yishay, Israel.
Plant Biotechnol J. 2009 Aug;7(6):487-98. doi: 10.1111/j.1467-7652.2009.00418.x. Epub 2009 May 21.
Orobanche spp. (broomrape) are parasitic plants which subsist on the roots of a wide range of hosts, including tomato, causing severe losses in yield quality and quantity. Large amounts of mannitol accumulate in this parasitic weed during development. Mannose 6-phosphate reductase (M6PR) is a key enzyme in mannitol biosynthesis, and it has been suggested that mannitol accumulation may be very important for Orobanche development. Therefore, the Orobanche M6PR gene is a potential target for efforts to control this parasite. Transgenic tomato plants were produced bearing a gene construct containing a specific 277-bp fragment from Orobanche aegyptiaca M6PR-mRNA, in an inverted-repeat configuration. M6PR-siRNA was detected in three independent transgenic tomato lines in the R1 generation, but was not detected in the parasite. Quantitative RT-PCR analysis showed that the amount of endogenous M6PR mRNA in the tubercles and underground shoots of O. aegyptiaca grown on transgenic host plants was reduced by 60%-80%. Concomitant with M6PR mRNA suppression, there was a significant decrease in mannitol level and a significant increase in the percentage of dead O. aegyptiaca tubercles on the transgenic host plants. The detection of mir390, which is involved with cytoplasmic dsRNA processing, is the first indication of the existence of gene-silencing mechanisms in Orobanche spp. Gene silencing mechanisms are probably involved with the production of decreased levels of M6PR mRNA in the parasites grown on the transformed tomato lines.
列当属植物(列当)是寄生植物,寄生于包括番茄在内的多种寄主植物根部,会导致产量和品质严重下降。在这种寄生性杂草的生长过程中会积累大量甘露醇。甘露糖6-磷酸还原酶(M6PR)是甘露醇生物合成中的关键酶,有人认为甘露醇的积累可能对列当的生长非常重要。因此,列当M6PR基因是控制这种寄生虫的潜在靶点。构建了一个基因载体,其中包含来自埃及列当M6PR - mRNA的一段277 bp的特定片段,呈反向重复结构,并培育出了携带该载体的转基因番茄植株。在R1代的三个独立转基因番茄品系中检测到了M6PR - siRNA,但在寄生物中未检测到。定量RT - PCR分析表明,在转基因寄主植物上生长的埃及列当的瘤和地下芽中,内源性M6PR mRNA的量减少了60% - 80%。与M6PR mRNA抑制相伴的是,转基因寄主植物上埃及列当瘤的甘露醇水平显著降低,死亡瘤的百分比显著增加。对参与细胞质双链RNA加工的mir390的检测,首次表明列当属植物中存在基因沉默机制。基因沉默机制可能与在转基因番茄品系上生长的寄生物中M6PR mRNA水平降低的产生有关。