Pagano E A, Chueca A, López-Gorgé J
Faculty of Agronomy, Universidad de Buenos Aires, Argentina.
J Exp Bot. 2000 Jul;51(348):1299-307.
Thioredoxins (Trxs) f and m, as well as their targets chloroplast fructose-1,6-bisphosphatase (FBPase) and NADP+-malate dehydrogenase (NADP-MDH), displayed transcriptional expression in both photosynthetic and non-photosynthetic organs of pea plants (Pisum sativum L. cv. Lincoln) grown for 50 d under normal irradiance. However, whereas Trx m and both target enzymes were poorly expressed in non-photosynthetic tissues, the content of the precursor form of the Trx f-specific mRNA was high in pea roots. In contrast, the translational expression of Trx f was low in this organ. The high FBPase activity in immature seeds, and the low activity of leaves, must be related to high starch synthesis in the first, and with high sucrose formation in the second. The transcriptional expression of FBPase and NADP+-MDH, and to a lesser extent that of Trxs f and m, was inhibited under low irradiance in plants grown under both normal and high temperatures. Pea plants grown at low temperature displayed a high level of mRNAs for Trxs and their targets, especially when the growth was carried out at low light. To a lesser extent, similar behaviour was observed at the protein level. Chloroplasts of mesophyll leaf cells of pea plants grown under saturating light, or under sub-saturating continuous irradiance, showed broken envelopes, distorted structural elements and disorganized starch grains, as a consequence of a photobleaching process and high starch accumulation.
硫氧还蛋白(Trxs)f和m,以及它们的作用靶点叶绿体果糖-1,6-二磷酸酶(FBPase)和NADP⁺-苹果酸脱氢酶(NADP-MDH),在正常光照下生长50天的豌豆植株(Pisum sativum L. cv. Lincoln)的光合和非光合器官中均有转录表达。然而,尽管Trx m和两个作用靶点酶在非光合组织中表达较差,但Trx f特异性mRNA前体形式在豌豆根中的含量却很高。相反,Trx f在该器官中的翻译表达较低。未成熟种子中较高的FBPase活性以及叶片中较低的活性,必定分别与前者中较高的淀粉合成以及后者中较高的蔗糖形成有关。在正常温度和高温下生长的植株,在低光照条件下,FBPase和NADP⁺-MDH的转录表达,以及Trxs f和m的转录表达在较小程度上受到抑制。在低温下生长的豌豆植株,Trxs及其作用靶点的mRNA水平较高,尤其是在弱光条件下生长时。在较小程度上,在蛋白质水平也观察到类似的情况。由于光漂白过程和高淀粉积累,在饱和光或亚饱和连续光照下生长的豌豆植株叶肉细胞叶绿体显示出包膜破裂、结构元件扭曲和淀粉粒紊乱。