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在减少化学施肥的条件下,利用植物内生菌粪产碱杆菌和印度甲基杆菌提高水稻的生长和产量。

Enhancing rice growth and yield with weed endophytic bacteria Alcaligenes faecalis and Metabacillus indicus under reduced chemical fertilization.

机构信息

Institute of Biotechnology and Genetic Engineering (IBGE), Bangabandhu Sheikh Mujibur Rahman Agricultural University, Gazipur, Bangladesh.

Department of Biochemistry and Molecular Biology, Bangabandhu Sheikh Mujibur Rahman Agricultural University, Gazipur, Bangladesh.

出版信息

PLoS One. 2024 May 16;19(5):e0296547. doi: 10.1371/journal.pone.0296547. eCollection 2024.

Abstract

Endophytic bacteria, recognized as eco-friendly biofertilizers, have demonstrated the potential to enhance crop growth and yield. While the plant growth-promoting effects of endophytic bacteria have been extensively studied, the impact of weed endophytes remains less explored. In this study, we aimed to isolate endophytic bacteria from native weeds and assess their plant growth-promoting abilities in rice under varying chemical fertilization. The evaluation encompassed measurements of mineral phosphate and potash solubilization, as well as indole-3-acetic acid (IAA) production activity by the selected isolates. Two promising strains, tentatively identified as Alcaligenes faecalis (BTCP01) from Eleusine indica (Goose grass) and Metabacillus indicus (BTDR03) from Cynodon dactylon (Bermuda grass) based on 16S rRNA gene phylogeny, exhibited noteworthy phosphate and potassium solubilization activity, respectively. BTCP01 demonstrated superior phosphate solubilizing activity, while BTDR03 exhibited the highest potassium (K) solubilizing activity. Both isolates synthesized IAA in the presence of L-tryptophan, with the detection of nifH and ipdC genes in their genomes. Application of isolates BTCP01 and BTDR03 through root dipping and spraying at the flowering stage significantly enhanced the agronomic performance of rice variety CV. BRRI dhan29. Notably, combining both strains with 50% of recommended N, P, and K fertilizer doses led to a substantial increase in rice grain yields compared to control plants receiving 100% of recommended doses. Taken together, our results indicate that weed endophytic bacterial strains BTCP01 and BTDR03 hold promise as biofertilizers, potentially reducing the dependency on chemical fertilizers by up to 50%, thereby fostering sustainable rice production.

摘要

内生细菌被认为是环保型生物肥料,已被证明具有促进作物生长和产量的潜力。虽然内生细菌的促生长作用已得到广泛研究,但杂草内生菌的影响仍较少被探索。在这项研究中,我们旨在从本地杂草中分离内生细菌,并评估它们在不同化学施肥条件下对水稻的促生长能力。评估包括测量矿物磷酸盐和钾盐的溶解能力,以及所选分离物产生吲哚-3-乙酸(IAA)的活性。两种有前途的菌株,根据 16S rRNA 基因系统发育学,分别被暂时鉴定为来自 Eleusine indica(Goose grass)的 Alcaligenes faecalis(BTCP01)和来自 Cynodon dactylon(Bermuda grass)的 Metabacillus indicus(BTDR03),表现出显著的磷酸盐和钾盐溶解活性。BTCP01 表现出优异的磷酸盐溶解活性,而 BTDR03 则表现出最高的钾(K)溶解活性。两种分离物在存在 L-色氨酸的情况下合成 IAA,并且在其基因组中检测到 nifH 和 ipdC 基因。通过根部浸泡和开花期喷雾应用分离物 BTCP01 和 BTDR03 显著提高了水稻品种 CV 的农艺性能。BRRI dhan29。值得注意的是,与对照植株(接受 100%推荐剂量的肥料)相比,将两种菌株与 50%的推荐氮、磷和钾肥剂量结合使用,可显著增加水稻籽粒产量。综上所述,我们的结果表明,杂草内生细菌菌株 BTCP01 和 BTDR03 有望成为生物肥料,可将对化学肥料的依赖减少高达 50%,从而促进可持续的水稻生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48fa/11098348/ec3e390ad9d9/pone.0296547.g001.jpg

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