Esposito Sergio, Guerriero Gea, Vona Vincenza, Di Martino Rigano Vittoria, Carfagna Simona, Rigano Carmelo
Dipartimento di Biologia Vegetale, Università di Napoli Federico II, Via Foria, 223, I-80139 Naples, Italy.
J Exp Bot. 2005 Jan;56(409):55-64. doi: 10.1093/jxb/eri006. Epub 2004 Oct 22.
In barley (Hordeum vulgare L. var. Nure), glutamate synthesis and the production of reducing power by the oxidative pentose phosphate pathway (OPPP) are strictly correlated biochemical processes. NADH-GOGAT was the major root isoform, whose activity increased on a medium supplied with NH4+ or NO3-; by contrast, no noticeable variations could be observed in the leaves of plants supplied with nitrogen. In the leaves, the major isoform is Fd-GOGAT, whose activity increased under nitrogen feeding. G6PDH activity increased in the roots supplied with nitrogen; no variations were observed in the leaves. Moreover, an increase of the P2 isoform in the roots was measured, giving 13.6% G6PDH activity localized in the plastids under ammonium, and 25.2% under nitrate feeding conditions. Western blots confirmed that P2-G6PDH protein was induced in the roots by nitrogen. P1-G6PDH protein was absent in the roots and increased in the leaves by nitrogen supply to the plants. The changes measured in cytosolic G6PDH seem correlated to more general cell growth processes, and do not appear to be directly involved in glutamate synthesis. The effects of light on Fd-GOGAT is discussed, together with the possibility for P2-G6PDH to sustain nitrogen assimilation upon illumination.
在大麦(Hordeum vulgare L. var. Nure)中,谷氨酸合成与氧化戊糖磷酸途径(OPPP)产生还原力是紧密相关的生化过程。NADH - GOGAT是主要的根同工型,其活性在供应NH4+或NO3-的培养基上增加;相比之下,在供应氮的植物叶片中未观察到明显变化。在叶片中,主要同工型是Fd - GOGAT,其活性在供氮条件下增加。G6PDH活性在供应氮的根中增加;在叶片中未观察到变化。此外,测量到根中P2同工型增加,在铵供应下质体中G6PDH活性占13.6%,在硝酸盐供应条件下占25.2%。蛋白质免疫印迹证实,氮诱导根中P2 - G6PDH蛋白表达。根中不存在P1 - G6PDH蛋白,而在给植物供应氮后叶片中该蛋白增加。胞质G6PDH的变化似乎与更普遍的细胞生长过程相关,似乎不直接参与谷氨酸合成。文中讨论了光对Fd - GOGAT的影响,以及P2 - G6PDH在光照下维持氮同化的可能性。