印度尼西亚沿海土壤水稻根瘤菌种类及功能多样性

Q4 Agricultural and Biological Sciences
D. Susilowati, I. Sudiana, N. R. Mubarik, A. Suwanto
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引用次数: 31

摘要

根杆菌是土壤的重要组成部分,直接或间接地影响土壤质量和植物生长,维持植物充足的营养,减少肥料对环境的负面影响。沿海地区大部分稻田长期施用高剂量化肥会导致土壤质量下降。沿海土壤中与水稻有关的可栽培根瘤菌种类和功能多样性的研究很少。本研究的目的是验证从西爪哇苏邦和因德拉马尤两个水稻产区沿海土壤中分离的根细菌的种类和功能多样性。对从沿海水田分离的78株水稻根瘤菌进行了磷酸盐增溶、固氮、IAA和纤维素酶生产的验证,并进行了基于16S rRNA的分类分析。结果表明,78株滨海水田分离菌株中,产IAA的菌株75株,产固定氮的菌株32株,产可溶性磷酸盐的菌株37株,产纤维素酶的菌株33株,以厚壁菌门细菌为主,多隶属于芽孢杆菌属。一些根菌能够单独或联合产生植物生长促进物质(PGPR),如IAA,固定氮,溶解磷酸盐和产生纤维素酶。考虑到所有这些不同的PGPR特征,很明显,已鉴定的78个分离株具有改善印度尼西亚沿海水田盐碱地的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SPECIES AND FUNCTIONAL DIVERSITY OF RHIZOBACTERIA OF RICE PLANT IN THE COASTAL SOILS OF INDONESIA
Rhizobacteria are important components of soil and directly or indirectly influence the soils quality and plant growth for maintaining adequate plant nutrition and reducing the negative environmental effects of fertilizers. Applying high dose of chemical fertilizers in most of rice fields in the coastal areas could reduce the quality of the soil in the long time. There are few studies addressed to verify the species and functional diversity of cultivable rhizobacteria associated with rice plant in the coastal soils. The objective of the study was to verify the species and functional diversity of rhizobacteria isolated from the coastal soils of two rice production areas of Subang and Indramayu, West Java. Special focus was given to verify phosphate solubilization, nitrogen fixation, IAA and cellulase production of the selected 78 strains of rice rhizobacteria isolated from the coastal paddy field, as well as taxonomical analyses based on 16S rRNA. The results showed that among 78 bacterial isolates from the coastal paddy field, mostly were belonging to the Firmicutes, most of them affiliated with genera Bacillus, 75 strains produced IAA, 32 strains fixed nitrogen, 37 strains solubilized phosphate and 33 strains produced cellulase. Several strains of the rhizobacteria were capable of producing plant growth promoting substances (PGPR), alone or in combination, such as IAA, fixing nitrogen,  solubilizing phosphate, and producing cellulase. Taking all of these diverse PGPR characteristics into account, it is clear that the 78 identified isolates have great potential for improving saline soils of the coastal paddy fields in Indonesia.
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来源期刊
Indonesian Journal of Agricultural Science
Indonesian Journal of Agricultural Science Agricultural and Biological Sciences-Soil Science
CiteScore
1.00
自引率
0.00%
发文量
5
审稿时长
12 weeks
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