Instituto de Biología Molecular y Celular de Plantas (CSIC-UPV), Universidad Politécnica de Valencia, 46022 Valencia, Spain.
Planta. 2010 May;231(6):1401-11. doi: 10.1007/s00425-010-1141-x. Epub 2010 Mar 25.
Polyamines have been attributed a general role in fruit development in several plants like pea and tomato. To investigate the involvement of these compounds in parthenocarpic fruit development in Citrus clementina, we have isolated three genes encoding aminopropyl transferases in this species: CcSPDS, CcSPM1 and CcACL5. The unambiguous identity of the proteins encoded by these genes was confirmed by phylogenetic analysis and by heterologous expression in yeast mutants deficient in aminopropyl transferase activity. The expression of these genes in C. clementina is not restricted to ovaries and fruits, but it is also detectable all throughout the plant. More importantly, gibberellin-induced parthenocarpic fruit set caused a decrease in CcSPDS expression in ovaries, paralleled by a decrease in spermidine; while the expression of CcSPM1 and CcACL5 was basically unaffected, resulting in the maintenance of spermine concentration during early fruit development. In addition, the variation in putrescine content was paralleled by changes in the expression of one of the two putative CcODC paralogs.
多胺在豌豆和番茄等几种植物的果实发育中被赋予了普遍的作用。为了研究这些化合物在柑橘无核果实发育中的作用,我们在该物种中分离到了三个编码氨基丙基转移酶的基因:CcSPDS、CcSPM1 和 CcACL5。这些基因编码的蛋白质的明确身份通过系统发育分析和在缺乏氨基丙基转移酶活性的酵母突变体中的异源表达得到了证实。这些基因在柑橘中的表达不仅局限于卵巢和果实,而且在整个植物中都能检测到。更重要的是,赤霉素诱导的柑橘无核果实结实导致卵巢中 CcSPDS 的表达下降,伴随着亚精胺的下降;而 CcSPM1 和 CcACL5 的表达基本不受影响,导致在早期果实发育过程中保持了精胺的浓度。此外,腐胺含量的变化与两个假定的 CcODC 同源物之一的表达变化相平行。