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在温室和田间条件下,应用水稻(Oryza sativa L.)根内共生固氮菌 Azotobacter sp. 菌株 Avi2(MCC 3432)可以提高水稻产量。

Application of rice (Oryza sativa L.) root endophytic diazotrophic Azotobacter sp. strain Avi2 (MCC 3432) can increase rice yield under green house and field condition.

机构信息

Microbiology Department, School Of Science, RK University, Rajkot, 360020, Gujarat, India.

Crop Physiology and Biochemistry Division, ICAR-National Rice Research Institute, Cuttack, India.

出版信息

Microbiol Res. 2019 Feb;219:56-65. doi: 10.1016/j.micres.2018.11.004. Epub 2018 Nov 23.

Abstract

Use of plant-associated beneficial microbes, especially endophytes are getting popular day by day as they occupy a relatively privileged niche inside different plant tissues with lesser competition for food and shelter than rhizosphere. The effects of different physical factors like temperature, rainfall, and seasonal variation and UV radiation on plant growth promoting endophytic communities are less pronounced than those on the rhizospheric and phylloplane microbes. This present work has been compromised with further utilization of an indigenous rice (Oryza sativa L.) root endophytic Azotobacter sp. strain Avi2 (MCC 3432) (AzA) as a bio-formulation for sustainable rice production based on several physiological parameters (plant height, root length/weight, leaf area, yield, chlorophyll contain), in-vitro comparative plant growth promoting assays, greenhouse and field experiments (dry and wet season). Treatments with AzA exhibited higher yield as well as maximal chlorophyll fluorescence (Fm) of flag leaves in flowering and grain filling stages indicating higher photosynthetic rates. Scanning electron microscopic image of rice roots demonstrated accumulation of bacterial biofilm at the junction of primary and lateral root confirming the root-colonizing ability of the bacterium. The results of the study were quite encouraging as AzA exhibited better vegetative and reproductive growth of rice in pot and field experiment compared to formulated rhizospheric Azotobacter sp. (commercial product). Apart from that plants treated with AzA (supplemented 50% nitrogenous fertilizer of recommended dose) exhibited similar yield parameters when it was compared with the recommended dose of fertilizer (RDF; 120:60:60 mg N:P:K kg soil/ without any bacterial). Therefore, it can be concluded that application of this plant growth promoting endophyte can reduce a substantial amount of N-fertilizer for field application.

摘要

利用植物相关的有益微生物,特别是内生菌,由于它们在不同植物组织内占据相对有利的位置,与根际相比,它们对食物和住所的竞争较少,因此日益受到关注。与根际和叶际微生物相比,不同物理因素(如温度、降雨、季节性变化和紫外线辐射)对促进植物生长的内生微生物群落的影响不太明显。本工作进一步利用一种本土水稻(Oryza sativa L.)根内生固氮菌 Azotobacter sp. 菌株 Avi2(MCC 3432)(AzA)作为生物制剂,基于几个生理参数(株高、根长/重、叶面积、产量、叶绿素含量),进行了体外比较植物生长促进试验、温室和田间试验(旱季和雨季)。用 AzA 处理的水稻表现出更高的产量和开花及灌浆期旗叶的最大叶绿素荧光(Fm),表明具有更高的光合速率。水稻根的扫描电子显微镜图像显示,在初生根和侧根的交界处有细菌生物膜的积累,证实了细菌的根定植能力。研究结果令人鼓舞,因为与根际固氮菌(商业产品)相比,AzA 在盆栽和田间试验中表现出更好的水稻营养和生殖生长。此外,与推荐施肥量(RDF;120:60:60mg N:P:K kg 土壤/无任何细菌)相比,用 AzA 处理的植物(补充推荐施肥量的 50%氮素肥料)在产量参数上表现出相似的结果。因此,可以得出结论,施用这种促进植物生长的内生菌可以减少田间应用中大量的氮肥。

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