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Isolation of Efficient Trimethylamine-Removing Strains and Optimization of Growth Conditions
Scientia Agricultura Sinica 2026, 59(8): 1797-1808
Published: 16 April 2026
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Background

Trimethylamine (TMA) is a typical nitrogen-containing amine organic pollutant, and one of the main malodorous gases causing odor pollution in animal husbandry. This gas is a harmful gas with a strong fishy odor. It not only causes point-source pollution in farming areas, but also its long-term exposure poses potential health risks to humans, attracting people's attention in recent years.

Objective

This study aimed to screen high-efficiency TMA-removing strains with strong degradation ability by collecting large amounts of animal manure, for providing excellent strains for the prevention and control of TMA pollution in livestock farming.

Method

In this study, efficient TMA-removing strains were screened from the manures of pigs and cows by the methods of enrichment culture, isolation, purification, and deodorization ability measurement. Then the strains were identified using morphological observation and 16S rRNA gene analysis to determine their taxonomic characteristics. On this basis, the effects of different pH values (5.0, 6.0, 7.0, 8.0, and 9.0), carbon sources (glucose, sucrose, fructose, maltose, and xylose), salinities (0, 0.5%, 1.0%, 1.5%, and 2.0%), and inoculum concentrations (1%, 5%, 10%, 15%, and 20%) on bacterial biomass were further investigated to define the optimal growth conditions for the strains. Moreover, the actual deodorization effect of the efficient strains was verified by investigating the release concentration and removal rate of TMA during the initial stage of feces fermentation.

Result

(1) A total of 10 TMA-removing strains, named T1 to T10, were isolated from livestock manure, among which strain T2 (Bacillus subtilis) and strain T3 (Acinetobacter sp.) exhibited the highest removal abilities of TMA. The TMA-removing rates after 48 h of incubation reached 26.91% for T2 and 29.59% for T3, which were higher than those of the other eight strains (P < 0.05). (2) Different pH values, carbon sources, salinities, and inoculum concentrations exerted varying effects on the growth of strains T2 and T3. Optimal growth conditions for T2 were as follows: pH=6.0, glucose as carbon source, 0.5% NaCl, and inoculum concentration of 1%; for T3, pH=8.0, sucrose as carbon source, 0.5% NaCl, and inoculum concentration of 1%. Under these optimal conditions above, the strains exhibited the fastest growth rate and achieved the maximum biomass. (3) The verification test of deodorization effect showed that when the feces were supplemented with T2 or T3, the average release amounts of TMA were lower than those in the control group (P < 0.01), and the highest removal rates reached 42.65% for T1 and 39.63% for T2.

Conclusion

Bacillus subtilis (T2) and Acinetobacter sp. (T3) isolated in this study had a high-efficiency ability to remove TMA, and would possess potential utilization value in the field of livestock manure treatment and control of pollution in animal husbandry.

Issue
The threshold of occurrence of heat stress in weaned lambs based on physiological and growth performance
Transactions of the Chinese Society of Agricultural Engineering 2023, 39(23): 212-219
Published: 15 December 2023
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The object of this study was to evaluate the effects of ambient temperature and humidity on physiological indexes and growth performance in weaned lambs. The threshold for heat stress (HS) occurrence was also predicted to prevent the HS in weaned lambs. Environmental control cabins were used to control the indoor temperature and humidity. 12 healthy weaned lambs [Small-tailed Han sheep × Dupo sheep, 2 months, (18±2.1) kg] were assigned into two treated groups, and fed in the individual cabin with relative humidity of 60% and 80%, respectively. The ambient temperature in the cabin gradually increased from 21.5 to 35.5 ℃ with a gradient of 2 ℃. The temperature in each gradient was kept for 3 days, and the entire experiment lasted for 24 days. The physiological indexes included the body surface temperature (BT), respiratory rate (RR), and rectal temperature (RT). The growth performance was represented by the dry matter intake (DMI) and average daily water intake (ADW) of weaned lambs under temperatures from 21.5 to 35.5 ℃ at two humidity conditions of 60% and 80%. The threshold of inflection point ambient temperature and temperature-humidity index (THI) were predicted for each parameter using nonlinear regression. The results showed that: 1) RR ranged from 28 to 211 times/min, BT from 29.90 to 35.65 ℃, and RT from 38.38 to 41.42 ℃ under present experimental conditions. 2) Three physiological indexes (BT, RR, and RT) were relatively stable in the early period of the trial, and then increased linearly with increasing temperature under two humidity conditions. At the humidity of 60%, the threshold value of BT, RR, and RT were 22.99 ℃ (R2=0.98), 23.25 ℃ (R2=0.99), and 26.69 ℃ (R2=0.99), respectively. At the humidity of 80%, the three physiological parameters inflection point ambient temperature were as follows: 22.33 (R2=0.97), 23.02 ℃ (R2=0.99), and 25.41 ℃ (R2=0.98). 3) The threshold values of two growth parameters (DMI and ADW) were: the inflection point ambient temperature of DMI was 24.95 ℃ (R2=0.94) at humidity of 60% and 23.21 ℃ (R2=0.89) at humidity of 80%; the inflection point ambient temperature of ADW was 23.02 ℃ (R2=0.92) at 60% and 22.43 ℃ (R2=0.92) at 80%. Furthermore, the DMI decreased and ADW increased linearly when the ambient temperature exceeded inflection point ambient temperature. 4) With the increase in THI, each index of inflection was ranked in the order of: BT (69.84) <ADW (70.12) <RR (71.46) <DMI (72.11) <RT (74.83). According to the nonlinear regression between various parameters and THI, it was found that: with every 1 increase in THI, BB, RR, and RT increased by 0.30 ℃, 9.30 times/min, and 0.19 ℃, respectively. DMI decreased by 18.04 g, while ADW increased by 203.80 mL, as the THI increased by 1. The optimal threshold values were achieved by temperature, where the 21.5-22.99 ℃ at 60% or 21.5-22.33 ℃ at 80% was as a comfortable zone; 22.99-23.25 ℃ at 60% or 22.33-23.02 ℃ at 80% was as a non-HS zone; 23.25-24.95 ℃ at 60% or 23.02-23.21 ℃ at 80% was as an early-warning zone, 24.95-26.69 ℃ at 60% or 23.21-25.41 ℃ at 80% was as a HS zone, and above 26.69 ℃ at 60% or 25.41 ℃ at 80% was as alert zone. Besides, below 71.46 was defined as non-HS, 71.46-72.11 was as a critical HS zone, 72.11-74.83 was as an HS zone, and above 74.83 was as an alert zone. The findings can provide a strong reference for the HS evaluation in weaned lambs.

Issue
Effects of spoiler fan cooling on lactation performance and immune function in dairy cows
Transactions of the Chinese Society of Agricultural Engineering 2024, 40(9): 209-218
Published: 01 May 2024
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Heat stress has been one of the most important factors in the dairy industry against global warming in recent years. The milk performance of dairy cows can be confined to long-term heat stress. The purpose of this experiment was to investigate the effects of spoiler fans cooling on milk performance and immune function in dairy cows. Two cowsheds were used with the same building structure and system. The spoiler fan were installed, while the control cowshed was uninstalled any fans. The lactation performance (including milk yield, 4% fat-corrected milk, milk protein rate, milk fat rate and lactose rate) and lymphocyte apoptosis rate were detected in different experimental periods; Meanwhile, blood biochemical parameters and their mRNA expression were also investigated, including four kinds of cytokines (Interleukin-1 (IL-1), Interleukin-2 (IL-2), Interleukin-6 (IL-12), and Interleukin-12 (IL-12)), six kinds of apoptotic factors (BAK, Mcl-1, Bax, Bcl-2, Bcl-xl, and P53), and three kinds of immunoglobulins (Immunoglobulin A (Ig A), Immunoglobulin G (IgG), Immunoglobulin M (IgM)). Besides, Spearman correlation analysis was carried out between milk performance or immune parameters and equivalent temperature index for cattle (ETIC). Approximately 200 Holstein lactating dairy cows were kept in each cowshed. The whole experiment period was 42 days from June to August, including four stages: initial (0 d), early (1-14 d), middle (15-28 d) and late stage (29-42 d). The results showed that: 1) The installed fans improved the cowshed environment, where the ETIC was reduced by 3.52 ℃ during the entire period, compared with the control cowshed. Cows in the control shed were in the moderate heat stress, while cows in the fan-installed shed were in the mild heat stress. Thus, the fans significantly alleviated the heat stress in cows. 2) Installation of fans improved the production performance of dairy cows exposure to heat stress. The milk yield, 4% fat-corrected milk, and milk fat increased in the fan-installed shed during the middle and late periods of experiments, compared with the control shed (P<0.05). Particularly, the 4% fat-corrected milk increased by 39.1% during the middle period and by 35.2% during the late period, respectively. 3) Installed fans improved the immune function of dairy cows under heat stress. Blood lymphocyte counts during the middle and late periods were greater in the fan-installed shed than those in the control group (P<0.05), and their early apoptosis rates of lymphocytes decreased (P<0.05). Moreover, there was a reduction in the mRNA expression of pro-apoptotic factor Bax in lymphocytes and its serum level (P<0.05) during the late period. An increase was found in the mRNA levels of anti-apoptotic factor Bcl-xl in lymphocytes and its serum level was demonstrated during the middle and late periods. Besides, the installed fans increased the serum levels of IL-12 and IgG (P<0.05). 4) The correlation analysis showed that the milk protein rate and the lymphocyte count demonstrated a negative correlation with ETIC (P<0.05), and the BAK mRNA expression in lymphocyte and serum IL-6 level exhibited a positive correlation with ETIC (P<0.05). In conclusion, the spoiler fans in the shed can be expected to effectively relieve the heat stress in cows in summer, thus promoting the thermal environment and blood biochemical indicators in cows for better production performance and immune function.

Issue
Effect of Litter Bed on Growth Performance and Odor Emission in Fattening Lamb
Scientia Agricultura Sinica 2022, 55(24): 4943-4956
Published: 16 December 2022
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Downloads:10
【Objective】

In view of the problem of odor non-point source pollution in fattening area of mutton sheep in recent years, the effects of bedding bed on growth performance of fattening lambs and odor components in the house were discussed, so as to provide technical path for odor emission reduction in fattening sheep house.

【Method】

Two-hundred fifty healthy fattening lambs with similar weight and age were used and randomly divided into 5 groups according to different bedding materials, which were control group (plain soil), group A (full-sawdust), group B (furfural + sawdust), group C (rice husk + sawdust), and group D (corn cob + sawdust). The trial period was 90 days (d 1-45 in early period; d 46-90 in late period). The odor components in environment above and inside the litter bed were detected by using GC-MS method during different periods, and the effect of litter bed on production performance in fattening lambs was also analyzed.

【Result】

(1) Compared with the control group, the four groups with litter bed demonstrated an increase in daily feed intake (P<0.05), which was increased by 7.7% in group A and 8.7% in Group B, 12.1% in Group C, and 7.8% in Group D. However, the daily gain and ratio of feed to gain exhibited no difference (P>0.05). (2) Nine kinds and eight kinds of odor components were detected throughout test period above litter bed and inside litter bed, respectively, and the components consisted of 31 kinds of volatile organic compounds (VOCs), including 4 alcohols, 10 alkanes, 3 amines, 1 phenol, 7 esters, 4 ketones, 2 aldehydes, 3 acids, and 1 thiol. The odor kinds detected in 4 litter groups were basically same as the control group. (3) From content analysis of odor components, the alkane content was the highest with 52.0%-77.5% among all odor components, no matter experimental period or detected space; however, no difference was observed among all groups (P>0.05). Also, the content of phenol or amine in litter groups demonstrated a decrease (P<0.05) in two detected spaces in early and late periods, compared with the control, exhibiting the decrease in group C was obvious. Besides, the content of alcohol, amine, or phenol was higher (P<0.05) in early period than that in late period both upper and inner spaces of litter bed; however, the ester content in late period was higher (P<0.05) than that in early period. (4) During entire experimental period, four kinds of key odor-causing substances were detected both in upper and inner of litter bed, including 2-ethylhexanol, N,N-dimethylacetamide, phenol, and 1 H-indole-3-thiol. For the contents of the four odor-causing components, each litter group showed a decreasing trend, compared with the control group, and the decrease in group C was the most obvious (P<0.05).

【Conclusion】

In summary, four combined litter beds in this study could improve growth performance in fattening lambs, and decrease odor content in environment. The results would provide a technical pathway for reduction of odor emission in sheep barn.

Issue
Isolation of High-Efficient Ammonia-Removing Strains and Its Cultivated Condition Optimization
Scientia Agricultura Sinica 2024, 57(21): 4367-4375
Published: 01 November 2024
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Downloads:11
【Objective】

Odor pollution from animal industry has become a pain point and a difficulty in recent years. Ammonia (NH3) is an important harmful gas with great contribution rate to odor pollution, and its cutting emission becomes an urgent task. The objective of this study was to isolate the efficient NH3-removing strains and to optimize its cultivated conditions, which would provide excellent strains for developing deodorizers.

【Method】

Manure deposited in the sewage outlet of the farm was collected as the source of strain isolation. The NH3-removing strains were enriched, separated, and purified using NH3 enrichment culture medium. Then, the degradation ability of purified bacteria above was determined using NH3-degradating culture medium, and the efficient NH3-removing strains were screened. The isolated strains were identified by morphology (colony morphology and Gram staining) and 16S rRNA sequencing method. Further, the effects of various cultivated conditions on biomass of the strains, including pH (5.0, 6.0, 7.0, 8.0, and 9.0), carbon sources (xylose, sucrose, fructose, maltose, and glucose), salt contents (0%, 0.5%, 1.0%, 1.5%, and 2.0%), and inoculum amounts (1.0%, 5.0%, 10%, 15%, and 20%), were performed, and the optimal conditions were determined.

【Result】

(1) A total of 12 suspected NH3-degrading strains were isolated by enrichment culture (named as C1-C12), among of which, the strain named C5 had efficient NH3-removing ability. The logarithmic growth period of the strain C5 was 2 to 20 h. During the period, the degradation rate of C5 increased with the growing bacteria biomass, reaching 60.70% at 24 h and 75.49% at 48 h of culture, respectively, which was greater than that of the other 11 strains in the same time (P<0.05). From morphology and 16S rRNA identification, the C5 was characterized by stubby- and rod-shaded, pointless round at both ends, and no capsule, as well as Gram-negative bacteria. Combined with gene sequencing results and phylogenetic tree, the C5 was determined to be Klebsiella pneumoniae. (2) Various pH values, carbon sources, salt content, and inoculation amount showed different effects on the concentration of C5 after 48 h of culture. The C5 concentration at pH 7.0 was greater than that at pH 5.0, pH 6.0 and pH 9.0 (P<0.05). Compared with other carbon sources, the C5 concentration for glucose as carbon source was the greatest during the culture period of 8 to 48 h. Under different salt content and inoculation amount, there were differences (P<0.01) in bacterial concentration between groups, exhibiting the greatest concentration of bacterial solution at 1.5% salt and a peak value at 40 h of culture. Besides, the fast growth of bacteria was observed for 1.0% of inoculation amount and bacterial concentration increased, compared with other inoculation amounts. Therefore, the optimal growing conditions of the C5 were as follows: pH=7.0, carbon source of glucose, 1.5% salt content, and 1.0% of inoculum amount, where the growth rate and biomass of the C5 were optimal.

【Conclusion】

Klebsiella pneumoniae (strain C5) isolated from manure possessed the ability to remove NH3 efficiently, which would have potential utilization value in livestock manure treatment.

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