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IALR632在水培生菜生长促进中的潜在应用

A Potential Application of IALR632 for Lettuce Growth Promotion in Hydroponics.

作者信息

Mei Chuansheng, Zhou Dongfang, Chretien Robert L, Turner Amy, Hou Guichuan, Evans Michael R, Lowman Scott

机构信息

Plant Endophyte Research Center, Institute for Advanced Learning and Research, Danville, VA 24540, USA.

School of Plant and Environmental Sciences, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Microorganisms. 2023 Feb 2;11(2):376. doi: 10.3390/microorganisms11020376.

Abstract

Controlled environment agriculture hydroponic systems grow plants year-round without restriction from outside environmental conditions. In order to further improve crop yield, plant growth-promoting bacteria were tested on hydroponically grown lettuce () plants. From our bacterial endophyte library, we found one bacterium, IALR632, that is promising in promoting lettuce growth in multiple hydroponic systems. When Green Oakleaf lettuce seeds were inoculated with IALR632 during germination, IALR632 significantly increased lateral root development by 164%. When germinated seedlings were inoculated with IALR632 and then transplanted to different hydroponic systems, shoot and root fresh weights of Green Oakleaf increased by 55.3% and 17.2% in a nutrient film technique (NFT) system in the greenhouse, 13.5% and 13.8% in an indoor vertical NFT system, and 15.3% and 13.6% in a deep water cultivation (DWC) system, respectively. IALR632 also significantly increased shoot fresh weights of Rex by 33.9%, Red Oakleaf by 21.0%, Red Sweet Crisp by 15.2%, and Nancy by 29.9%, as well as Red Rosie by 8.6% (no significant difference). Inoculation of IALR632-GFP and subsequent analysis by confocal microscopy demonstrated the endophytic nature and translocation from roots to shoots. The results indicate that IALR632 has a potential application in hydroponically grown lettuce plants.

摘要

可控环境农业水培系统可以全年种植植物,不受外界环境条件的限制。为了进一步提高作物产量,对水培生菜植株进行了促植物生长细菌的测试。从我们的细菌内生菌库中,我们发现了一种细菌IALR632,它在多种水培系统中对促进生菜生长很有前景。当绿橡叶生菜种子在萌发期间用IALR632接种时,IALR632显著增加了侧根发育,增幅达164%。当将萌发的幼苗用IALR632接种后再移植到不同的水培系统中时,在温室中的营养液膜技术(NFT)系统中,绿橡叶生菜的地上部和根部鲜重分别增加了55.3%和17.2%;在室内垂直NFT系统中分别增加了13.5%和13.8%;在深水栽培(DWC)系统中分别增加了15.3%和13.6%。IALR632还显著增加了皇后生菜地上部鲜重33.9%、红橡叶生菜21.0%、红甜脆生菜15.2%、南希生菜29.9%,以及红玫瑰生菜8.6%(无显著差异)。接种IALR632-GFP并随后通过共聚焦显微镜分析证明了其内生性质以及从根到地上部的转移。结果表明IALR632在水培生菜植株中有潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b99/9962264/85176eca3b44/microorganisms-11-00376-g001.jpg

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