Enhancing methanotrophic activity in rice cultivation : (Record no. 38461)

MARC details
000 -LEADER
fixed length control field 05690nas a2200409 a 4500
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20260818100108.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 260616s20269999th u ms t 000 eng d
035 ## - SYSTEM CONTROL NUMBER
System control number .b12507878
099 #9 - LOCAL FREE-TEXT CALL NUMBER (OCLC)
Classification number AIT Thesis no.EV-26-05
100 1# - MAIN ENTRY--PERSONAL NAME
Personal name Kulrat Wongsuratkul
245 10 - TITLE STATEMENT
Title Enhancing methanotrophic activity in rice cultivation :
Remainder of title integrating metal micronutrients and synthetic methanotrophic consortia strategy for climate-smart agriculture
260 ## - PUBLICATION, DISTRIBUTION, ETC.
Place of publication, distribution, etc. Pathum Thani, Thailand :
Name of publisher, distributor, etc. Asian Institute of Technology,
Date of publication, distribution, etc. 2026
300 ## - PHYSICAL DESCRIPTION
Extent 130 leaves :
Other physical details ill.+
Accompanying material 1 online resource
490 1# - SERIES STATEMENT
Series statement Thesis ;
Volume/sequential designation no. EV-26-05
500 ## - GENERAL NOTE
General note A thesis submitted in partial fulfillment of the requirements for the degree of Master of Science in Environmental Engineering and Management
502 ## - DISSERTATION NOTE
Dissertation note Thesis (M. Sc.) - Asian Institute of Technology, 2026
520 ## - SUMMARY, ETC.
Summary, etc. Methane (CH4) emissions from flooded rice cultivation are a major contributor to global climate change, accounting for approximately 18% of total agricultural CH4 emissions worldwide. The net methane flux from rice paddies is governed by the balance between methane production by methanogenic archaea under anaerobic conditions and methane oxidation by aerobic methanotrophs residing in the rice rhizosphere. The activity of methanotrophs is critically regulated by metal cofactors, particularly copper (Cu) for particulate methane monooxygenase (pMMO) and cerium (Ce) for the rare earth element dependent methanol dehydrogenase (XoxF-MDH). In parallel, synthetic microbial communities (SynComs) assembled from functionally complementary plant growth promoting (PGP) bacterial strains have demonstrated potential to simultaneously mitigate methane emissions and enhance rice productivity through metabolic division of labor.This study compared two scalable methane mitigation strategies in a pilot-scale greenhouse rice mesocosm experiment using century-cultivated paddy soils from Surin Province, Thailand, over a 100-day rice growth cycle (November 2025 to March 2026): (1) synergistic application of mixed metal micronutrients (Cu at 17 mg/kg soil and Ce at 50 mg/kg soil), and (2) a designed SynCom assembled from ten functionally selected PGP bacterial isolates from rice rhizosphere soils, including Azonexus, Hydrogenophaga, Thauera, Pseudomonas, and Methylocystis-associated strains. A continuous flooding control was maintained as the reference baseline. Methane flux was quantified using the closed-chamber method every ten days, and soil and water physicochemical parameters including nitrogen species and total organic carbon (TOC) were characterized at pre- and post-experiment time points.Results showed that all treatments followed the characteristic seasonal methane trajectory, with flux peaking during the reproductive phase (DAT 60-80) and declining through ripening. The SynCom treatment (MC) achieved a statistically significant reduction of 65.08% in seasonal methane flux relative to the control (p < 0.05), and near-complete methane depletion within 72 hours in closed-chamber incubation assays. In contrast, the metal micronutrient treatment (M) resulted in a statistically significant net increase of +181.92% in mean seasonal methane flux (p < 0.05), attributed to supraoptimal copper concentrations generating reactive oxygen species that impaired methanotroph community integrity and elevated the available carbon pool for methanogens. Correlation analysis revealed a stratified biogeochemical control structure: median methane flux was strongly correlated with soil nitrite (r = 1.0, p = 0.009), peak flux with water TKN (r = 0.999, p = 0.029), and cumulative flux with soil TOC (r = 0.9998, p = 0.013). For rice yield, the SynCom treatment increased grain dry weight by 108% above the control, while the metal treatment caused a marginal yield suppression of 4.36%.In conclusion, the SynCom-based biofertilizer strategy proved superior by simultaneously achieving significant methane mitigation and enhanced rice grain productivity, establishing it as a scientifically valid dual-benefit tool for climate-smart rice agriculture. The metal micronutrient strategy underscored the critical importance of precise dose calibration, as copper toxicity to methanotrophs at the applied levels outweighed the intended enzymatic benefits. These findings support the development of SynCom biofertilizers as a scalable, field deployable approach to converting rice cultivation systems into climate-resilient operations contributing to both greenhouse gas reduction and global food security goals.
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Crops and climate
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Methane
General subdivision Environmental aspects
700 1# - ADDED ENTRY--PERSONAL NAME
Personal name Cruz, Simon Guerrero,
Relator term Chairperson
700 0# - ADDED ENTRY--PERSONAL NAME
Personal name Ekbordin Winijkul,
Relator term Examination Committee
700 1# - ADDED ENTRY--PERSONAL NAME
Personal name Shanmugam, Mohana Sundaram,
Relator term Examination Committee
710 1# - ADDED ENTRY--CORPORATE NAME
Corporate name or jurisdiction name as entry element Ghimire, Anish,
Relator term Co-chairperson
710 2# - ADDED ENTRY--CORPORATE NAME
Corporate name or jurisdiction name as entry element Her Majesty the Queen{u2019}s Scholarships (Thailand),
Relator term Scholarship Donor
810 2# - SERIES ADDED ENTRY--CORPORATE NAME
Corporate name or jurisdiction name as entry element Asian Institute of Technology.
Title of a work Thesis ;
Volume/sequential designation no. EV-26-05
856 40 - ELECTRONIC LOCATION AND ACCESS
Materials specified Full-Text
Uniform Resource Identifier <a href="http://203.159.5.9/ait-thesis/detail.php?q=B24440">http://203.159.5.9/ait-thesis/detail.php?q=B24440</a>
907 ## - LOCAL DATA ELEMENT G, LDG (RLIN)
a .b12507878
b mnarc
c a
902 ## - LOCAL DATA ELEMENT B, LDB (RLIN)
a 260622
998 ## - LOCAL CONTROL INFORMATION (RLIN)
Operator's initials, OID (RLIN) 0
Cataloger's initials, CIN (RLIN) 260617
First date, FD (RLIN) m
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945 ## - LOCAL PROCESSING INFORMATION (OCLC)
l mnarc
945 ## - LOCAL PROCESSING INFORMATION (OCLC)
l mnarc
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Koha item type 67-Electronic Resource
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Koha item type 40-Archives
909 ## - LOCAL ITEMS USED
Barcode Barcode : -
CREATED CREATED : 2026-06-16
RECORD Id RECORD # : i13605124
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909 ## - LOCAL ITEMS USED
Barcode Barcode : 30050120421051
CREATED CREATED : 2026-06-17
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Holdings
Withdrawn status Lost status Damaged status Not for loan Home library Current library Shelving location Date acquired Total checkouts Full call number Date last seen Copy number Price effective from Koha item type Barcode
      Available for Loans Asian Institute of Technology Library Asian Institute of Technology Library Archives 18/08/2026   AIT Thesis no.EV-26-05 18/08/2026 1 18/08/2026 67-Electronic Resource  
      Available for Loans Asian Institute of Technology Library Asian Institute of Technology Library Archives 18/08/2026   AIT Thesis no.EV-26-05 18/08/2026 1 18/08/2026 40-Archives 30050120421051
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