Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime

There is limited evidence that Enterobacter hormaechei can improve plant physiology and yield through soil phosphate (P) and potassium (K) amelioration. This study unraveled the effect of different soil inoculation methods i.e., free-cell and encapsulated (alginate bead containing sugar-protein hydr...

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Main Authors: Mohamad Roslan, Muhamad Aidilfitri, M. Sobri, Zulfazli, Tan, Ali Kee Zuan, Abdul Rahman, Nor Aini
Format: Article
Published: MDPI AG 2022
Online Access:http://psasir.upm.edu.my/id/eprint/102369/
https://www.mdpi.com/2079-7737/11/8/1107
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spelling my.upm.eprints.1023692023-05-22T02:45:15Z http://psasir.upm.edu.my/id/eprint/102369/ Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime Mohamad Roslan, Muhamad Aidilfitri M. Sobri, Zulfazli Tan, Ali Kee Zuan Abdul Rahman, Nor Aini There is limited evidence that Enterobacter hormaechei can improve plant physiology and yield through soil phosphate (P) and potassium (K) amelioration. This study unraveled the effect of different soil inoculation methods i.e., free-cell and encapsulated (alginate bead containing sugar-protein hydrolysate and molasses) E. hormaechei 40a with different rates of PK-fertilization on okra P and K uptake, and soil rhizosphere bacterial community. The results revealed that 3HB (half-dose PK-fertilizer + encapsulated strain 40a) had the highest soil available P (SAP) and K (SAK), as well as P and K uptake for all plant organs, followed by 3F (full-dose PK-fertilizer), 3HI (half-dose PK-fertilizer + free-cell strain 40a), and 3H (half-dose PK-fertilizer), and improved yield by up to 75.6%. Both inoculated and full-dose fertilizer treatments produced larger pods (>15 cm) compared to 3H. We discovered increased bacterial richness and diversity in both 3HB and 3HI samples compared to uninoculated treatments. Both 3HB and 3F treatments were positively correlated with the increasing abundance of Acidobacteriales, Burkholderia caballeronia paraburkholderia, Gemmataceae, and Sphingomonas along with the SAP and SAK. The plant-beneficial effect of one-time 3HB treatment on okra growth and yield was comparable to biweekly inoculation in 3HI, suggesting a new cost-effective farming approach in precision agriculture. MDPI AG 2022-07-25 Article PeerReviewed Mohamad Roslan, Muhamad Aidilfitri and M. Sobri, Zulfazli and Tan, Ali Kee Zuan and Abdul Rahman, Nor Aini (2022) Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime. Biology, 11 (8). art. no. 1107. pp. 1-18. ISSN 2079-7737 https://www.mdpi.com/2079-7737/11/8/1107 10.3390/biology11081107
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description There is limited evidence that Enterobacter hormaechei can improve plant physiology and yield through soil phosphate (P) and potassium (K) amelioration. This study unraveled the effect of different soil inoculation methods i.e., free-cell and encapsulated (alginate bead containing sugar-protein hydrolysate and molasses) E. hormaechei 40a with different rates of PK-fertilization on okra P and K uptake, and soil rhizosphere bacterial community. The results revealed that 3HB (half-dose PK-fertilizer + encapsulated strain 40a) had the highest soil available P (SAP) and K (SAK), as well as P and K uptake for all plant organs, followed by 3F (full-dose PK-fertilizer), 3HI (half-dose PK-fertilizer + free-cell strain 40a), and 3H (half-dose PK-fertilizer), and improved yield by up to 75.6%. Both inoculated and full-dose fertilizer treatments produced larger pods (>15 cm) compared to 3H. We discovered increased bacterial richness and diversity in both 3HB and 3HI samples compared to uninoculated treatments. Both 3HB and 3F treatments were positively correlated with the increasing abundance of Acidobacteriales, Burkholderia caballeronia paraburkholderia, Gemmataceae, and Sphingomonas along with the SAP and SAK. The plant-beneficial effect of one-time 3HB treatment on okra growth and yield was comparable to biweekly inoculation in 3HI, suggesting a new cost-effective farming approach in precision agriculture.
format Article
author Mohamad Roslan, Muhamad Aidilfitri
M. Sobri, Zulfazli
Tan, Ali Kee Zuan
Abdul Rahman, Nor Aini
spellingShingle Mohamad Roslan, Muhamad Aidilfitri
M. Sobri, Zulfazli
Tan, Ali Kee Zuan
Abdul Rahman, Nor Aini
Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime
author_facet Mohamad Roslan, Muhamad Aidilfitri
M. Sobri, Zulfazli
Tan, Ali Kee Zuan
Abdul Rahman, Nor Aini
author_sort Mohamad Roslan, Muhamad Aidilfitri
title Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime
title_short Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime
title_full Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime
title_fullStr Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime
title_full_unstemmed Okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime
title_sort okra growth, yield and rhizosphere microbiome responses to the encapsulated bioinoculant application under reduced fertilization regime
publisher MDPI AG
publishDate 2022
url http://psasir.upm.edu.my/id/eprint/102369/
https://www.mdpi.com/2079-7737/11/8/1107
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