首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Effect of NaC1 on growth, nitrate uptake and reduction and nitrogenase activity of Azolla pinnata-Anabaena azollae
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Effect of NaC1 on growth, nitrate uptake and reduction and nitrogenase activity of Azolla pinnata-Anabaena azollae

机译:NaCl对满江红生长,硝酸盐吸收和还原及固氮酶活性的影响。

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摘要

Azolla pinnata -Anabaena azollae, fertilised with 5 mM nitrate in presence or absence of NaCl could utilise both forms of nitrogen, nitrate as well as symbiotically fixed nitrogen; nitrate in the nutrient solution did not reduce the nitrogenase activity albeit protected it against NaCl-toxicity. Dry weight (DW) and chlorophyll content of the nitrate fertilised association increased by 1.4-fold to that of association relying solely on the symbiotically fixed nitrogen. Addition of 20 mM NaCl in the medium reduced the DW and chlorophyll content of the association but enhanced the protein level. NaCl-induced reduction of nitrogenase activity was lessened in the association fertilised with nitrate. A. pinnata could take up NO3- immediately after incubation in the nitrate medium, whereas the freshly isolated cyanobiont required a lag of 60 min. NO3- uptake by A. pinnata involved the carrier mediated biphasic system, the one exhibited high affinity for nitrate (K-s = 94 muM) and the other with low affinity (K-s = 517 muM). In NaCl-stressed association high- and low-affinity systems showed 3.6 and 2.5 times increased affinity for nitrate, respectively. Salinity also increased the affinity of nitrate reductase for nitrate.
机译:在有或没有NaCl的情况下,用5 mM硝酸盐施肥的北美叠氮-Anabaena azollae可以利用两种形式的氮,硝酸盐和共生固氮。营养液中的硝酸盐虽然可以保护其免受NaCl毒性的影响,但并未降低固氮酶的活性。硝酸盐受精结合的干重(DW)和叶绿素含量比仅依靠共生固定氮的结合增加了1.4倍。在培养基中添加20 mM NaCl可以降低缔合的DW和叶绿素含量,但可以提高蛋白质水平。 NaCl诱导的硝化酶活性降低与硝酸盐施肥有关。在硝酸盐培养基中温育后,pinnata可能立即吸收NO3-,而新鲜分离的氰基苯醌需要60分钟的滞后时间。 Pin。A. pinnata对NO3-的吸收涉及载体介导的双相系统,一个对硝酸盐表现出高亲和力(K-s = 94μM),另一个对低硝酸盐(K-s = 517μM)。在NaCl胁迫的缔合中,高亲和力和低亲和力系统对硝酸盐的亲和力分别提高了3.6倍和2.5倍。盐度还增加了硝酸还原酶对硝酸盐的亲和力。

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