首页> 外文期刊>The Journal of General and Applied Microbiology >Effect of soil salinity and nutrient levels on the community structure of the root-associated bacteria of the facultative halophyte, Tamarix ramosissima, in southwestern United States
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Effect of soil salinity and nutrient levels on the community structure of the root-associated bacteria of the facultative halophyte, Tamarix ramosissima, in southwestern United States

机译:土壤盐分和养分水平对美国西南部兼生盐生植物Tamarix ramosissima根系相关细菌群落结构的影响

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摘要

Tamarix ramosissima is a tree species that is highly resistant to salt and drought. The Tamarix species survives in a broad range of environmental salt levels, and invades major river systems in southwestern United States. It may affect root-associated bacteria (RB) by increasing soil salts and nutrients. The effects of RB on host plants may vary even under saline conditions, and the relationship may be important for T. ramosissima. However, to the best of our knowledge, there have been no reports relating to T. ramosissima RB and its association with salinity and nutrient levels. In this study, we have examined this association and the effect of arbuscular mycorrhizal colonization of T. ramosissima on RB because a previous study has reported that colonization of arbuscular mycorrhizal fungi affected the rhizobacterial community (Marschner et al., 2001). T. ramosissima roots were collected from five locations with varying soil salinity and nutrient levels. RB community structures were examined by terminal restriction fragment (T-RF) length polymorphism, cloning, and sequencing analyses. The results suggest that RB richness, or the diversity of T. ramosissima, have significant negative relationships with electrical conductivity (EC), sodium concentration (Na), and the colonization of arbuscular mycorrhizal fungi, but have a significant positive relationship with phosphorus in the soil. However, at each T-RF level, positive correlations between the emergence of some T-RFs and EC or Na were observed. These results indicate that high salinity decreased the to-tal number of RB species, but some saline-tolerant RB species multiplied with increasing salinity levels. The ordination scores of nonmetric multidimensional scale analysis of RB community composition show significant relationships with water content, calcium concentration, available phosphorus, and total nitrogen. These results indicate that the RB diversity and community composition of T. ramosissima are affected by soil salinity and nutrient levels. Sequence analysis detected one Bacteroidetes and eight Proteobacteria species. Most 16S rRNA gene sequences had high similarities with the bacteria isolated from saline conditions, indicating that at least a portion of the RB species observed in T. ramosissima was halotolerant.
机译:mari柳(Tamarix ramosissima)是对盐和干旱具有高度抵抗力的树种。 Tamarix物种可在各种环境盐含量范围内生存,并入侵美国西南部的主要河流系统。它可能通过增加土壤盐分和养分来影响与根相关的细菌(RB)。 RB对寄主植物的影响甚至在盐分条件下也可能有所不同,并且这种关系对于T. ramosissima可能很重要。然而,据我们所知,尚无关于T. ramosissima RB及其与盐度和营养水平的关系的报道。在这项研究中,我们已经检查了这种关联性以及ramosissima的丛枝菌根定植对RB的影响,因为先前的研究已经报道了丛枝菌根真菌的定植影响了根瘤菌群落(Marschner等,2001)。从五个不同土壤盐分和养分含量的地方收集了T. ramosissima根。通过末端限制性片段(T-RF)长度多态性,克隆和测序分析来检查RB社区结构。结果表明,RB丰富度或T. ramosissima的多样性与电导率(EC),钠浓度(Na)和丛枝菌根真菌的定殖有显着的负相关关系,而与磷的显着正相关。泥。然而,在每个T-RF水平,观察到一些T-RF的出现与EC或Na之间存在正相关。这些结果表明高盐度降低了RB种类的总数,但是一些耐盐碱的RB种类随着盐度的增加而增加。 RB群落组成的非度量多维尺度分析的排序分数显示出与水含量,钙浓度,有效磷和总氮的显着关系。这些结果表明,土壤盐分和养分水平影响了毛T虫的RB多样性和群落组成。序列分析检测到一种拟杆菌属和八种变形杆菌属。大多数16S rRNA基因序列与从盐水条件下分离出的细菌具有高度相似性,这表明在T. ramosissima中观察到的至少一部分RB物种具有耐盐性。

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