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在中华根瘤菌中诱导适应性耐酸反应(ATR)所需的文化条件,以及 ATR 是否有助于根瘤菌在低 pH 值下改善与紫花苜蓿的共生关系的问题。

Cultural conditions required for the induction of an adaptive acid-tolerance response (ATR) in Sinorhizobium meliloti and the question as to whether or not the ATR helps rhizobia improve their symbiosis with alfalfa at low pH.

机构信息

IBBM - Instituto de Biotecnología y Biología Molecular, Departamento de Ciencias Biológicas, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, CCT-CONICET-La Plata, Buenos Aires, Argentina.

出版信息

FEMS Microbiol Lett. 2010 Jan;302(2):123-30. doi: 10.1111/j.1574-6968.2009.01846.x. Epub 2009 Nov 6.

Abstract

Sinorhizobium meliloti associates with Medicago and Melilotus species to develop nitrogen-fixing symbioses. The agricultural relevance of these associations, the worldwide distribution of acid soils, and the remarkable acid sensitivity of the microsymbiont have all stimulated research on the responses of the symbionts to acid environments. We show here that an adaptive acid-tolerance response (ATR) can be induced in S. meliloti, as shown previously for Sinorhizobium medicae, when the bacteria are grown in batch cultures at the slightly acid pH of 6.1. In marked contrast, no increased tolerance to hydrogen ions is obtained if rhizobia are grown in a chemostat under continuous cultivation at the same pH. The adaptive ATR appears as a complex process triggered by an increased hydrogen-ion concentration, but operative only if other--as yet unknown--concomitant factors that depend on the culture conditions are present (although not provided under continuous cultivation). Although the stability of the ATR and its influence on acid tolerance has been characterized in rhizobia, no data have been available on the effect of the adapted state on symbiosis. Coinoculation experiments showed that acid-adapted indicator rhizobia (ATR+) were present in >90% of the nodules when nodulation was performed at pH 5.6, representing a >30% increase in occupancy compared with a control test. We show that the ATR represents a clear advantage in competing for nodulation at low pH. It is not yet clear whether such an effect results from an improved performance in the acid environment during preinfection, an enhanced ability to initiate infections, or both conditions. The practical use of ATR+ rhizobia will depend on validation experiments with soil microcosms and on field testing, as well as on the possibility of preserving the physiology of ATR+ bacteria in inoculant formulations.

摘要

根瘤菌属与紫花苜蓿和草木樨属共生形成固氮共生体。这些共生体具有农业相关性,酸性土壤在世界范围内广泛分布,而微共生体对酸的敏感性非常显著,这些都刺激了对共生体对酸性环境的响应的研究。我们在这里表明,当细菌在批式培养中在略酸性 pH 值 6.1 下生长时,可以诱导根瘤菌属产生适应性耐酸反应 (ATR),就像以前在中华根瘤菌中所观察到的那样。相比之下,如果根瘤菌在同一 pH 值下连续培养的恒化器中生长,则不会获得对氢离子的耐受性增加。适应性 ATR 似乎是由氢离子浓度增加引发的复杂过程,但只有在存在其他(尽管在连续培养下未提供)依赖于培养条件的未知伴随因素时才起作用。尽管已经在根瘤菌中对 ATR 的稳定性及其对酸性耐受性的影响进行了表征,但关于适应状态对共生体的影响的数据尚不可用。共接种实验表明,在 pH 5.6 下进行结瘤时,适应性强的指示根瘤菌 (ATR+)存在于>90%的根瘤中,与对照试验相比,占据率增加了>30%。我们表明,ATR 在低 pH 下竞争结瘤具有明显优势。目前尚不清楚这种效果是否是由于在感染前的酸性环境中性能提高、感染起始能力增强,或者这两种情况都有。ATR+根瘤菌的实际应用将取决于与土壤微宇宙的验证实验以及野外测试,以及在接种剂配方中保留 ATR+细菌的生理学的可能性。

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