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Coregulation of Soybean Vegetative Storage Protein Gene Expression by Methyl Jasmonate and Soluble Sugars

机译:茉莉酸甲酯和可溶性糖对大豆营养贮藏蛋白基因表达的调控

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摘要

The soybean vegetative storage protein genes vspA and vspB are highly expressed in developing leaves, stems, flowers, and pods as compared with roots, seeds, and mature leaves and stems. In this paper, we report that physiological levels of methyl jasmonate (MeJA) and soluble sugars synergistically stimulate accumulation of vsp mRNAs. Treatment of excised mature soybean (Glycine max Merr. cv Williams) leaves with 0.2 molar sucrose and 10 micromolar MeJA caused a large accumulation of vsp mRNAs, whereas little accumulation occurred when these compounds were supplied separately. In soybean cell suspension cultures, the synergistic effect of sucrose and MeJA on the accumulation of vspB mRNA was maximal at 58 millimolar sucrose and was observed with fructose or glucose substituted for sucrose. In dark-grown soybean seedlings, the highest levels of vsp mRNAs occurred in the hypocotyl hook, which also contained high levels of MeJA and soluble sugars. Lower levels of vsp mRNAs, MeJA, and soluble sugars were found in the cotyledons, roots, and nongrowing regions of the stem. Wounding of mature soybean leaves induced a large accumulation of vsp mRNAs when wounded plants were incubated in the light. Wounded plants kept in the dark or illuminated plants sprayed with dichlorophenyldimethylurea, an inhibitor of photosynthetic electron transport, showed a greatly reduced accumulation of vsp mRNAs. The time courses for the accumulation of vsp mRNAs induced by wounding or sucrose/MeJA treatment were similar. These results strongly suggest that vsp expression is coregulated by endogenous levels of MeJA (or jasmonic acid) and soluble carbohydrate during normal vegetative development and in wounded leaves.
机译:与根,种子和成熟的叶和茎相比,大豆营养贮藏蛋白基因vspA和vspB在发育中的叶,茎,花和豆荚中高表达。在本文中,我们报道了茉莉酸甲酯(MeJA)和可溶性糖的生理水平协同刺激vsp mRNA的积累。用0.2摩尔蔗糖和10微摩尔MeJA处理切离的成熟大豆叶片(Glycine max Merr。cv Williams)导致vsp mRNA大量积累,而单独提供这些化合物时,则很少积累。在大豆细胞悬浮培养物中,蔗糖和MeJA对vspB mRNA积累的协同作用在58毫摩尔蔗糖时最大,在果糖或葡萄糖替代蔗糖时观察到。在深色生长的大豆幼苗中,vsp mRNA的最高水平出现在下胚轴钩中,其中也含有高水平的MeJA和可溶性糖。在子叶,根和茎的非生长区域发现较低水平的vsp mRNA,MeJA和可溶性糖。当将受伤的植物在光照下孵育时,成熟大豆叶片的伤口会诱导大量vsp mRNA的积累。保存在黑暗中的受伤植物或用二氯苯基二甲基脲(光合作用电子传递抑制剂)喷洒的光照植物显示,vsp mRNA的积累大大减少。伤口或蔗糖/ MeJA处理诱导的vsp mRNA积累的时间过程相似。这些结果有力地表明,在正常的营养发育过程中以及在受伤的叶子中,内源性的MeJA(或茉莉酸)和可溶性碳水化合物对vsp的表达具有调节作用。

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