Bolaños Luis, Redondo-Nieto Miguel, Bonilla Ildefonso, Wall Luis G
Dpto. de Biología, Facultad de Ciencias, Universidad Autónoma de Madrid, 28049-Madrid, Spain Dpto. de Ciencia y Tecnología, Universidad Nacional de Quilmes, R. Sáenz Peña 180, 1876-Bernal, Argentina.
Physiol Plant. 2002 Aug;115(4):563-570. doi: 10.1034/j.1399-3054.2002.1150410.x.
The essentiality of boron (B) for nitrogen fixation in heterocystous cyanobacteria and rhizobial symbioses has been widely established. However, nothing is known about the possible involvement of the micronutrient in actinorhizal symbioses. Therefore, the effect of boron (B) deficiency on the establishment of the Discaria trinervis-Frankia BCU110501 symbiosis was investigated. Nodulation was diminished in B-deficient D. trinervis or in plants inoculated with Frankia grown in the absence of B. These poorly nodulated plants showed a reduction of shoot and root weight and small size. Because depletion of the micronutrient during growth of the actinomycete altered the infection capacity of Frankia, we also studied growth, structure and nitrogen fixation of free-living Frankia BCU110501. Growth was delayed in B-deficient BAP media (+N cultures), and completely inhibited in B-deprived N-free BAP media (-N cultures), suggesting that B is required to enhance growth of Frankia and essential for the development of nitrogen fixing activity. Ultrastructural study of B-deficient cells showed an alteration of filament walls both in +N and especially in -N cultures, indicating a possible role of the microelement in the maintenance of these structures. Moreover, the stability of vesicle envelopes was impaired in the absence of B and, hence, nitrogenase occurrence and nitrogen fixation were totally absent. The results show that B is required for both partners to establish an effective symbiosis.
硼(B)对异形胞蓝细菌和根瘤菌共生固氮的必要性已得到广泛证实。然而,关于这种微量元素在放线菌根瘤共生中可能发挥的作用却一无所知。因此,研究了缺硼对三叉 Discaria - 弗兰克氏菌 BCU110501 共生关系建立的影响。在缺硼的三叉 Discaria 中或接种在无硼环境下培养的弗兰克氏菌的植物中,结瘤减少。这些结瘤不良的植物地上部和根部重量减轻且植株矮小。由于在放线菌生长过程中这种微量元素的耗尽改变了弗兰克氏菌的感染能力,我们还研究了自由生活的弗兰克氏菌 BCU110501 的生长、结构和固氮情况。在缺硼的 BAP 培养基(+N 培养物)中生长延迟,而在无硼的无氮 BAP 培养基(-N 培养物)中生长完全受到抑制,这表明硼是增强弗兰克氏菌生长所必需的,并且对固氮活性的发展至关重要。对缺硼细胞的超微结构研究表明,在 +N 培养物尤其是 -N 培养物中,丝状细胞壁发生了改变,这表明这种微量元素在维持这些结构方面可能发挥作用。此外,在无硼的情况下泡囊包膜的稳定性受损,因此,完全不存在固氮酶的产生和固氮作用。结果表明,硼是共生双方建立有效共生关系所必需的。