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内生细菌枯草芽孢杆菌 181-22 可促进水稻生长并缓解镉暴露下的镉胁迫。

The endophytic bacterium Bacillus koreensis 181-22 promotes rice growth and alleviates cadmium stress under cadmium exposure.

机构信息

Biotechnology Research Institute, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.

Institute of Microbial Biotechnology, Guangdong Province, Jinan University, Guangzhou City, 510632, China.

出版信息

Appl Microbiol Biotechnol. 2021 Nov;105(21-22):8517-8529. doi: 10.1007/s00253-021-11613-3. Epub 2021 Oct 5.

Abstract

Recently, cadmium (Cd) contamination in paddy soils has become a highly concerning pollution problem. Endophytic microbes in rice not only affect the plant growth but also contribute to ion absorption by the roots. Therefore, they are a promising, ecologically sound means of reducing the Cd transport from soils to shoots and grains of the plant. In this study, a Cd-resistant endophytic bacterium, named 181-22, with high Cd absorption capacity (90.8%) was isolated from the roots of rice planting in heavily Cd-contaminated paddy soils and was identified as Bacillus koreensis CGMCC 19,468. The strain significantly increased fresh weight of roots and shoots (44.4% and 42.7%) and dry weight of roots and shoots (71.3% and 39.9%) and decreased Cd content in the rice roots (12.8%), shoots (34.3%), and grains (39.1%) under Cd stress compared to uninoculated plant by colonizing rice roots via seed inoculation. Moreover, colonization of 181-22 reprogrammed rice physiology to alleviate Cd stress by increasing pigment and total protein content, regulating Cd-induced oxidative stress enzymes such as superoxide dismutase and catalase and reducing malondialdehyde. Thus, B. koreensis 181-22 has the potential to protect rice against Cd stress and can be used as a biofertilizer to bioremediate paddy soils contaminated with Cd. KEY POINTS: • Bacillus koreensis 181-22 colonized the inside of rice roots at high numbers via seed inoculation. • B. koreensis 181-22 promoted rice growth and decreased Cd accumulation in grains. • B. koreensis 181-22 regulated the physiological response to alleviated Cd stress in rice.

摘要

最近,稻田中的镉(Cd)污染已成为一个备受关注的污染问题。水稻内生微生物不仅影响植物生长,还促进根部离子吸收。因此,它们是一种很有前途的、生态友好的方法,可以减少 Cd 从土壤向植物地上部分和籽粒的转运。在这项研究中,从 Cd 污染严重的稻田种植的水稻根部分离到一株具有高 Cd 吸收能力(90.8%)的 Cd 抗性内生细菌,命名为 181-22,被鉴定为解淀粉芽孢杆菌 CGMCC 19468。与未接种的植物相比,该菌株通过种子接种定植于水稻根部,显著增加了根和地上部分的鲜重(44.4%和 42.7%)和干重(71.3%和 39.9%),并降低了 Cd 在水稻根部(12.8%)、地上部分(34.3%)和籽粒(39.1%)中的含量。此外,181-22 的定植通过增加色素和总蛋白含量、调节 Cd 诱导的超氧化物歧化酶和过氧化氢酶等氧化应激酶,以及降低丙二醛来重新编程水稻的生理机能,从而缓解 Cd 胁迫。因此,解淀粉芽孢杆菌 181-22 具有保护水稻免受 Cd 胁迫的潜力,可作为生物肥料用于修复 Cd 污染的稻田。

关键点

  • 解淀粉芽孢杆菌 181-22 通过种子接种大量定植于水稻根部。

  • 解淀粉芽孢杆菌 181-22 促进了水稻的生长,降低了籽粒中 Cd 的积累。

  • 解淀粉芽孢杆菌 181-22 调节了水稻对缓解 Cd 胁迫的生理响应。

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