蜡样芽孢杆菌:盐碱土壤条件下促进水稻秧苗耐盐胁迫的有效生物接种剂

IF 0.7 Q4 PLANT SCIENCES Plant Science Today Pub Date : 2024-02-19 DOI:10.14719/pst.3096
D. Choudhury, Shinjan Dey, Chandrama Mukherjee, Sayani Datta, Sikha Dutta
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摘要

植物生长促进根瘤菌(PGPR)是保持农业可持续发展和促进植物抵抗生物和非生物类型胁迫的有力工具。盐度是一种主要的非生物胁迫,会阻碍植物的生长、发育和产量。耐盐 PGPR 是改善盐分对水稻植物影响的有效药物。本研究旨在分离、测定耐盐能力,鉴定植物生长促进(PGP)性状,并观察 PGPR 菌株在盐碱和非盐碱条件下对水稻植株生长的促进作用。根据 16S rRNA 基因测序技术,DB2 根瘤菌株被鉴定为枯草芽孢杆菌 ATCC 14579(T),产自 NCMR、NCCS Pune。为了检测该菌株的生长促进能力,在多室条件下将其接种到两种水稻基因型上,分别为 Chinsurah Nona I(耐盐-非芳香)和 Badshabhog(芳香)。结果表明,在盐碱和非盐碱条件下,接种 DB2 的两种水稻基因型的相对含水量(RWC)、总叶绿素含量(TCC)、根长(RL)和芽长(SL)都有明显增加。在非盐碱条件下,接种 DB2 的 Chinsurah Nona I 的 RWC、TCC、RL 和 SL 的提高幅度比接种 DB2 的 Badshabhog 更好。而在盐碱条件下,接种 DB2 的 Badshabhog 比接种 DB2 的 Chinsurah Nona I 的 RWC、TCC、RL 和 SL 恢复得更快。在盐胁迫条件下,接种该根瘤菌株后,接种两种水稻基因型的根瘤菌的电解渗漏(EL)显著减少。此外,接种 DB2 后,Chinsurah Nona I(44.6%)和 Badshabhog(24.5%)水稻基因型根中的 Na+ 含量明显减少。本研究表明,在盐胁迫条件下,应用耐盐 PGPR 可能是一种有效且可持续的水稻种植解决方案。
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Bacillus cereus: an effective bio-inoculant for promoting salt stress tolerance of rice seedlings under saline soil conditions
Plant growth-promoting rhizobacteria (PGPR) are a powerful tool to maintain sustainable agriculture and promote plant resistance to biotic and abiotic types of stress. Salinity, a major abiotic stress hampers plant growth, development, and yield. Salt-tolerant PGPR are effective agents for ameliorating salinity effects on rice plants. The present study endeavored to isolate, determine halotolerant ability, characterize Plant Growth Promoting (PGP) traits, and finally observe the effect of PGPR strain on plant growth promotion of rice plants under saline and non-saline conditions. Based on the 16S rRNA gene sequencing technique, the rhizobacterial strain DB2 was identified as Bacillus cereus ATCC 14579(T) from NCMR, NCCS Pune. To check the growth-promoting ability, the strain was inoculated with two rice genotypes named Chinsurah Nona I (salt tolerant-non aromatic) and Badshabhog (aromatic) under polyhouse conditions. Results showed a significant increment in relative water content (RWC), total chlorophyll content (TCC), root length (RL), and shoot length (SL) in both rice genotypes inoculated with DB2 under both saline and non-saline conditions. Under non-saline conditions enhancement of RWC, TCC, RL, and SL was better in DB2 inoculated Chinsurah Nona I than in Badshabhog inoculated with DB2. Whereas, DB2-inoculated Badshabhog showed more recovery of RWC, TCC, RL, and SL than DB2-inoculated Chinsurah Nona I under saline conditions. Under salt stress conditions, inoculation with the rhizobacterial strain showed a significant reduction in electrolytic leakage (EL) in rhizobacteria inoculated with both rice genotypes. Moreover, DB2 inoculation showed a significant reduction in Na+ content in the roots of Chinsurah Nona I (44.6%) and Badshabhog (24.5%) rice genotypes. The present study has indicated that the application of salt-tolerant PGPR may be an effective and sustainable solution for rice cultivation under salt-stress conditions.
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来源期刊
Plant Science Today
Plant Science Today PLANT SCIENCES-
CiteScore
1.50
自引率
11.10%
发文量
177
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