scholarly journals The effects of low pH on the taste and amino acid composition of tiger shrimp

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Hsueh-Han Hsieh ◽  
Veran Weerathunga ◽  
W. Sanjaya Weerakkody ◽  
Wei-Jen Huang ◽  
François L. L. Muller ◽  
...  

AbstractRecent research has revealed that shrimp sensory quality may be affected by ocean acidification but we do not exactly know why. Here we conducted controlled pH exposure experiments on adult tiger shrimp, which were kept in 1000-L tanks continuously supplied with coastal seawater. We compared survival rate, carapace properties and flesh sensory properties and amino acid composition of shrimp exposed to pH 7.5 and pH 8.0 treatments for 28 days. Shrimp reared at pH 7.5 had a lower amino acid content (17.6% w/w) than those reared at pH 8.0 (19.5% w/w). Interestingly, the amino acids responsible for the umami taste, i.e. glutamate and aspartic acid, were present at significantly lower levels in the pH 7.5 than the pH 8.0 shrimp, and the pH 7.5 shrimp were also rated as less desirable in a blind quality test by 40 volunteer assessors. These results indicate that tiger shrimp may become less palatable in the future due to a lower production of some amino acids. Finally, tiger shrimp also had a lower survival rate over 28 days at pH 7.5 than at pH 8.0 (73% vs. 81%) suggesting that ocean acidification may affect both the quality and quantity of future shrimp resources.

2018 ◽  
Vol 8 (1) ◽  
pp. 637-643
Author(s):  
T.L. Holubenko

<p><span lang="EN-US">The aim of the research is to assess the amino acid composition of veal from different genotype bull-calves concerning the usage in baby food production. A comparative analysis of the essential amino acids content in meat of calves of <span>black-and-white motley breed,</span> Aberdeen Angus breed and black and white crossbreeds grown according to the traditional technology of dairy cattle breeding hasn’t showed any significant differences. However, some differences were observed for each separate amino acid. Although the difference in amino acids was 2. 9% in favor of <span>black-and-white motley breed</span>. According to the amino acid composition, the calves meat of Charolais breed is biologically more complete than the Aberdeen Angus calves meat of the first generation in the valine content by 7.4%, isoleucine by 45.3% (P &lt;0.001), leucine by 15.2% (P &lt;0.001), lysine by 7.8%, threonine and phenylalanine + tyrosine by 6.5% (P &lt;0.05) and 7.5% (P &lt;0.01), respectively. Amino acid content was limited by the sum of amino acids phenylalanine + tyrosine (80.2%) in purebreds and methionine + cystine (83.4%) in <span>crossbreeds</span>. The other amino acids content was more than 100%; it indicates a high biological and nutritional value of veal. In the first experiment, the degree of compliance with the norms of a balanced diet is 37.4-38.2%. The human body's need for such essential amino acids as valine, isoleucine, phenylalanine + tyrosine is satisfied for more than 20%; the human body's need for leucine, lysine, and threoni9ne is satisfied for more than 30%. Veal of the Charolaise young is distinguished by higher indicators. The degree of its compliance with the norms of a balanced diet is 43.8% against 37.6% in hybrid calves. It is proved that veal obtained from young animals of different breeds in ecologically clean zones has a high biological and nutritional value, it corresponds to the indices for meat raw materials for baby food in accordance with Sanitary Norms 11-63 RB98.</span></p>


2019 ◽  
pp. 135-143
Author(s):  
Evgeniy Nikolaevich Sechin ◽  
Oleg Anatolyevich Marakaev ◽  
Gavriil Borisovich Gavrilov

Amino acid composition of aboveground and underground vegetative organs of Dactylorhiza maculata (L.) Soó (Orchidaceae), one of the representatives of the tuberoid species of orchids growing under the natural conditions of the center of European Russia, was detected using the method of zone capillary electrophoresis. The presence of 15 amino acids in the plant material, nine of them are «essential» (lysine, phenylalanine, histidine, leucine, isoleucine, methionine, valine, threonine, tryptophan) was established. The highest total amino acid content is characteristic of the leaves, the smallest for the old (wintered) caulorrhizous tuberoids. Among the identified amino acids in the plant material of D. maculata, the maximum total content is of leucine, the minimum are of tryptophan and methionine. The vegetative organs are also rich in alanine, arginine, valine and phenylalanine. The total content of amino acids in young caulorrhizous tuberoids is 38% higher than that in old storage organs. These differences are most pronounced for arginine, which is probably due to the spare function of this amino acid, containing more than 30% nitrogen. The got data indicate the promise of further studies of the amino acid composition of D. maculata and can characterize this species as a source of medicinal valuable substances with a broad spectrum of pharmacological activity.


1981 ◽  
Vol 8 (2) ◽  
pp. 131-133 ◽  
Author(s):  
David C. H. Hsi ◽  
Clyde T. Young ◽  
Melchor Ortiz

Abstract Two Valencia peanut (Arachis hypogaea L.) cultivars, New Mexico Valencia A and New Mexico Valencia C, were grown at Arch and Los Lunas, N. M. All peanuts were grown under either sprinkler or furrow irrigation. Samples were obtained following harvest, hydrolyzed and analyzed in Raleigh, N. C. for amino acid content. With samples from Arch, no variety by planting date effects were noted for amino acid composition. With samples from Los Lunas, however, significant variety by planting date effects were noted for glutamic acid, glycine, methionine, isoleucine, and leucine. Planting date effects were found only for glycine at the Los Lunas location and phenylalanine at both locations. Significant variety differences were found for methionine, tyrosine, phenylalanine, and lysine at the Arch location and for glycine, methionine, phenylalanine, and lysine at the Los Lunas location. A significant year effect, although small, was noted for about half of the amino acids (aspartic acid, serine, glutamic acid, proline, glycine, tyrosine, phenylalanine, arginine, and the sum of all amino acids) studied at the Arch location. Data at Los Lunas were observed only during the second year. The amino acid content agrees closely with that previously reported for other types of peanuts except for a 100% higher level of cystine found in this study.


2017 ◽  
Vol 43 (3) ◽  
pp. 268-276 ◽  
Author(s):  
Semih Yilmaz ◽  
Ali İrfan İlbaş ◽  
Mikail Akbulut ◽  
Aysun Çetin

Abstract Background: Selenium (Se34) is an essential micronutrient for humans and animals and has growth promoting and antioxidative effects at low concentrations. Methods: Effects of various sodium selenite (Na2SeO3) doses on grain amino acid content of barley cultivars (Bülbül 89 and Çetin 2000) was investigated using ion exchange liquid chromatography. Results: Majority of the amino acids could be altered with Selenium (Se) fertilization. Grain Se content of Bülbül 89 (0.175 mg kg−1) and Çetin 2000 (0.171 mg kg−1) were similar and both displayed an increase in proteinogenic, essential, and sulfur amino acids. The response of cultivars was more pronounced for Se accumulation and amino acid content at mid dose (12.5 mg ha−1). The quantities of proteinogenic, essential and sulfur amino acids increased considerably at that dose. Se induced increase in nitrogen content might cause an increase in some of the proteins of grain and consequently can alter amino acid composition. An obvious increase in the limiting amino acids (lysine and threonine) were prominent in response to Se fertilization. Conclusion: Se treatment influence amino acid composition of barley grains; especially improve the quantity of limiting amino acids and consequently nutritional value of the grain.


2021 ◽  
Vol 33 ◽  
pp. 25-32
Author(s):  
Kots S. Ya. ◽  
Vorobei N. A. ◽  
Mykhalkiv L. M. ◽  
Karaushu O. V.

Objective. To study the amino acid composition in the tops of alfalfa under different water supply (60 % MVC (maximum water capacity) and 30 % MVC) depending on the inoculum strain (Sinorhizobium meliloti 425a, T17, AC08). Methods. Microbiological (bacterial cultivation), physiological (vegetation experiment), biochemical (determination of amino acid content in the tops of plants). Results. It was established that the qualitative amino acid composition in the tops of ALFALFA was identical in all variants. However, quantitative content of the studied samples differed depending on the inoculum strain and water supply. It was found that aspartic and glutamic acids, leucine and lysine are dominant in the tops of alfalfa under different water supply. In the absence of moisture, an increase in the content of individual amino acids was reported at the background of Sinorhizobium meliloti AC08 and T17, while inoculation with Sinorhizobium meliloti 425a resulted in a decrease in the content of all amino acids except tyrosine. In plants exposed to water stress, a tendency towards decrease in the content of glutamic acid at the background of bacterization with Sinorhizobium meliloti 425a and increase — under inoculation with Sinorhizobium meliloti T17 and AC08 was reported, which may support the use of the latter to increase the ability of symbiotic systems to recover during a post-stress period. Conclusion. Pre-sowing inoculation of alfalfa of the variety Laska with new active strains of Sinorhizobium meliloti AC08 and T17 helps to increase the content of amino acids, in particular essential, in the tops of plants, both under optimal conditions of moisture and insufficient water supply. The prospects of using new strains of rhizobia in the cultivation of alfalfa for green mass under the conditions of optimal water supply and drought has been verified.


2011 ◽  
Vol 46 (12) ◽  
pp. 1579-1587 ◽  
Author(s):  
Constanza Soledad Carrera ◽  
Cora Marcela Reynoso ◽  
Gustavo Javier Funes ◽  
María José Martínez ◽  
Julio Dardanelli ◽  
...  

The objective of this work was to perform a quantitative analysis of the amino acid composition of soybean seeds as affected by climatic variables during seed filling. Amino acids were determined from seed samples taken at harvest in 31 multi-environment field trials carried out in Argentina. Total amino acids ranged from 31.69 to 49.14%, and total essential and nonessential amino acids varied from 12.83 to 19.02% and from 18.86 to 31.15%, respectively. Variance components expressed as the percentage of total variation showed that the environment was the most important source of variation for all traits, followed by the genotype x environment interaction. Significant explanatory linear regressions were detected for amino acid content regarding: average daily mean air temperature and cumulative solar radiation, during seed filling; precipitation minus potential evapotranspiration, during the whole reproductive period; and the combinations of these climatic variables. Each amino acid behaves differently according to environmental conditions, indicating compensatory effects among them.


2019 ◽  
Vol 49 (5) ◽  
pp. 94-97
Author(s):  
В. М. Ludu

The results of the comparative study of yak blood parameters by amino-acid composition depending on the season of the year are presented. The research was conducted in the Republic of Tuva. The object of research were adult female yaks after the fi rst or more calving. The studied animals were at the pasture in the highlands all year round. The material of the research was whole blood stabilized by heparin and yak serum. Blood was taken in spring and autumn from the jugular vein. The determination of blood biochemical parameters and the biometric processing of the results were carried out by generally accepted methods. 14 amino acids were revealed. Of these, seven are non-essential amino acids (asparagine, serine, glutamine, glycine, alanine, histidine, arginine) and seven are essential (threonine, valine, methionine, isoleucine, leucine, phenylalanine, lysine). The amino-acid content in the blood of yaks living in highlands under low partial pressure did not vary signifi cantly during the study period. The content of non-essential and essential amino acids was recorded in the ratio of 50 : 50, regardless of the season of the year. In autumn, compared to spring, serine content increased 2.43 times, asparagine –1.05 times, valine – 1.07, leucine – 1.07 times. An increase in phenylalanine in the autumn period may indicate its suffi cient content in grass eaten by yaks. Features of the interior indicators of yaks, common in the Republic of Tuva, are the result of their long year-round pasture maintenance in extreme climatic conditions of the highlands.


2017 ◽  
Vol 1 (3) ◽  
pp. 68-79 ◽  
Author(s):  
Benjamin D. Fallen ◽  
Catherine N. Hatcher ◽  
Fred L. Allen ◽  
Dean A. Kopsell ◽  
Arnold M. Saxton ◽  
...  

Soybean [Glycine max (L.) Merr.] is the primary source of meal used in animal feed in the U.S. However, few studies have been conducted to evaluate genomic regions controlling amino acid composition is soybean. Designing soybean seed compositions that will benefit animal production is essential. The objective of this study was to identify genomic regions controlling essential and non-essential amino acid composition in soybean seed proteins. To achieve this objective, 282 F5:9 recombinant inbred lines (RILs) developed from a cross of Essex × Williams 82 were used. Ground soybean seed samples were analyzed for amino acids and statistically significant differences (p < 0.05) were found among genotypes in the population for all amino acid concentrations. The Universal Soy Linkage Panel (USLP) 1.0 of 1,536 single nucleotide polymorphism (SNP) DNA markers were used to genotype the 282 RILs and identify 480 useful genetic markers. The software R/qtl was used to identify candidate quantitative trait loci (QTL), which were validated using R/MQM. A total of ten QTL were detected on chromosomes 5, 7, 9, 10, 13 and 20 that explained 5 to 14% of the total phenotypic variation for a particular amino acid. Using SNPs from the USLP 1.0 to detect QTL for amino acids in soybean provides additional information to select genotypes with enhanced amino acid profiles that will benefit animal production.


2013 ◽  
Vol 41 (1) ◽  
pp. 69-75
Author(s):  
Ryszard Kosson

The contribution of cotyledons, embryo and testa to the whole seed, was analyzed in the bean cultivar, Wiejska. The total nitrogen content and amino acid composition of morphological parts of the seed were determined. The average amino acid composition of globulins and albumins and the content of free amino acids in seeds of six Polish cultivars were estimated as well. It was found that the embryo contained the highest quantity of total nitrogen and the lowest of protein nitrogen. The exogenous amino acid content in the embryo was higher than in cotyledons and testa. Both albumins and globulins were shown to contain 42% exogenous amino acids. The content of methionine - the first limiting amino acid of bean proteins - did not exceed 0.30% of the total amino acid content in albumins and globulins. Free glutamic and aspartic acids made up more than 60% of the total free amino acids.


2003 ◽  
Vol 1 (2-3) ◽  
pp. 89-95 ◽  
Author(s):  
P. R. Thomison ◽  
D. J. Barker ◽  
A. B. Geyer ◽  
L. D. Lotz ◽  
H. J. Siegrist ◽  
...  

AbstractIncreased amino acid content in high-oil maize (Zea mays L.) grain may add further value to its use in livestock rations, especially if this enhanced amino acid content is consistent across varying growing conditions. Most high-oil maize (HOM) grown in the USA utilizes the TopCross system which involves planting a blend (TC Blend) of two types of maize. Field experiments and on-farm studies were conducted in 1997 and 1998 to compare the amino acid profile of grain from HOM TC Blends with that of their normal-oil maize (NOM) counterparts across a range of production environments in Ohio. In 1997, the composition of four amino acids (lysine, methionine, glycine and arginine) was significantly higher in HOM compared to NOM grain. In 1998, nine amino acids (lysine, methionine, glycine, arginine, asparagine, threonine, serine, cysteine and tryptophan) were greater in HOM than in NOM grain. Lysine and methionine content in HOM grain averaged 12 and 13% higher than in NOM grain in both years. The number of amino acids significantly affected by the grain parent was greater than that for maize type each year. A significant maize type × grain parent interaction for a limited number of amino acids suggest that TC Blend grain parents may affect the consistency of amino acid composition in HOM grain. Results of this study demonstrate that the levels of several amino acids, including economically important lysine and methionine, were consistently greater in HOM than in NOM grain across a range of production environments. Modelling with livestock ration balancing software showed that the additional amino acids and oil in HOM added 12–20% to its value as livestock feed.


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