Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)

Phytase plays an important role in crop seed germination and plant growth. In order to fully understand the plant growth-promoting mechanism by <i>Rahnella</i> <i>aquatilis</i> JZ-GX1, the effect of this strain on germination of maize seeds was determined in vitro, and the co...

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Main Authors: Gui-E Li, Wei-Liang Kong, Xiao-Qin Wu, Shi-Bo Ma
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Microorganisms
Subjects:
Online Access:https://www.mdpi.com/2076-2607/9/8/1647
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spelling doaj-42b1a5cad316405a9f8264d895d87d892021-08-26T14:05:40ZengMDPI AGMicroorganisms2076-26072021-07-0191647164710.3390/microorganisms9081647Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)Gui-E Li0Wei-Liang Kong1Xiao-Qin Wu2Shi-Bo Ma3Co-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing 210037, ChinaCo-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing 210037, ChinaCo-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing 210037, ChinaCo-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing 210037, ChinaPhytase plays an important role in crop seed germination and plant growth. In order to fully understand the plant growth-promoting mechanism by <i>Rahnella</i> <i>aquatilis</i> JZ-GX1, the effect of this strain on germination of maize seeds was determined in vitro, and the colonization of maize root by <i>R. aquatilis</i> JZ-GX1 was observed by scanning electron microscope. Different inoculum concentrations and Phytate-related soil properties were applied to investigate the effect of <i>R. aquatilis</i> JZ-GX1 on the growth of maize seedlings. The results showed that <i>R. aquatilis</i> JZ-GX1 could effectively secrete indole acetic acid and had significantly promoted seed germination and root length of maize. A large number of <i>R. aquatilis</i> JZ-GX1 cells colonized on the root surface, root hair and the root interior of maize. When the inoculation concentration was 10<sup>7</sup> cfu/mL and the insoluble organophosphorus compound phytate existed in the soil, the net photosynthetic rate, chlorophyll content, phytase activity secreted by roots, total phosphorus concentration and biomass accumulation of maize seedlings were the highest. In contrast, no significant effect of inoculation was found when the total P content was low or when inorganic P was sufficient in the soil. <i>R. aquatilis</i> JZ-GX1 promotes the growth of maize directly by secreting IAA and indirectly by secreting phytase. This work provides beneficial information for the development and application of <i>R. aquatilis</i> JZ-GX1 as a microbial fertilizer in the future.https://www.mdpi.com/2076-2607/9/8/1647<i>Rahnella aquatilis</i>indole acetic acidphytase-related soil propertiesphytase activitygrowth-promotion
collection DOAJ
language English
format Article
sources DOAJ
author Gui-E Li
Wei-Liang Kong
Xiao-Qin Wu
Shi-Bo Ma
spellingShingle Gui-E Li
Wei-Liang Kong
Xiao-Qin Wu
Shi-Bo Ma
Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)
Microorganisms
<i>Rahnella aquatilis</i>
indole acetic acid
phytase-related soil properties
phytase activity
growth-promotion
author_facet Gui-E Li
Wei-Liang Kong
Xiao-Qin Wu
Shi-Bo Ma
author_sort Gui-E Li
title Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)
title_short Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)
title_full Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)
title_fullStr Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)
title_full_unstemmed Phytase-Producing <i>Rahnella aquatilis</i> JZ-GX1 Promotes Seed Germination and Growth in Corn (<i>Zea mays</i> L.)
title_sort phytase-producing <i>rahnella aquatilis</i> jz-gx1 promotes seed germination and growth in corn (<i>zea mays</i> l.)
publisher MDPI AG
series Microorganisms
issn 2076-2607
publishDate 2021-07-01
description Phytase plays an important role in crop seed germination and plant growth. In order to fully understand the plant growth-promoting mechanism by <i>Rahnella</i> <i>aquatilis</i> JZ-GX1, the effect of this strain on germination of maize seeds was determined in vitro, and the colonization of maize root by <i>R. aquatilis</i> JZ-GX1 was observed by scanning electron microscope. Different inoculum concentrations and Phytate-related soil properties were applied to investigate the effect of <i>R. aquatilis</i> JZ-GX1 on the growth of maize seedlings. The results showed that <i>R. aquatilis</i> JZ-GX1 could effectively secrete indole acetic acid and had significantly promoted seed germination and root length of maize. A large number of <i>R. aquatilis</i> JZ-GX1 cells colonized on the root surface, root hair and the root interior of maize. When the inoculation concentration was 10<sup>7</sup> cfu/mL and the insoluble organophosphorus compound phytate existed in the soil, the net photosynthetic rate, chlorophyll content, phytase activity secreted by roots, total phosphorus concentration and biomass accumulation of maize seedlings were the highest. In contrast, no significant effect of inoculation was found when the total P content was low or when inorganic P was sufficient in the soil. <i>R. aquatilis</i> JZ-GX1 promotes the growth of maize directly by secreting IAA and indirectly by secreting phytase. This work provides beneficial information for the development and application of <i>R. aquatilis</i> JZ-GX1 as a microbial fertilizer in the future.
topic <i>Rahnella aquatilis</i>
indole acetic acid
phytase-related soil properties
phytase activity
growth-promotion
url https://www.mdpi.com/2076-2607/9/8/1647
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AT xiaoqinwu phytaseproducingirahnellaaquatilisijzgx1promotesseedgerminationandgrowthincornizeamaysil
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