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Does transport stress have any effect on carcass quality of Nellore cattle (Bos taurus indicus) in Brazil? — A case study

Abstract

With the increasing concomitant demands for Brazilian beef and in particular high-quality beef, there is a need for observational studies of the effects of pre- and post-slaughter practices on beef carcass traits. We hypothesized in our case study that pre-slaughter transport of bovines over significant distances would induce stress in animals, and that this would reduce carcass quality because of higher pH resulting from long-distance transportation. To test this hypothesis, 30,230 Nellore carcasses from a private slaughterhouse were evaluated 24 h postmortem. Analysis showed correlations between animal maturity, ultimate pH, distance, and carcass weight. More precisely, there was a slight positive correlation between ultimate pH and weight (but not with transportation distance) and a slight positive correlation between maturity and weight. A linear regression model (R2 = 0.016) failed to show distance having a significant effect on ultimate pH (P = 0.63), while carcass weight significantly affected ultimate pH (P < 0.001) with a low coefficient of 0.0003. Maturity negatively affected ultimate pH also (P < 0.001) but with also a small effect (−0.0008). Results (from 95% confidence intervals of variance of the random effects and of the random errors) showed that the variability within farms was higher than between farms. The linear mixed model showed that maturity had a significant effect on carcass weight value (P < 0.001) with a large coefficient of 2.90. The R2 of the linear mixed model was 46.03%. In conclusion, while weight and maturity both affect ultimate pH, long distances did not significantly impact ultimate pH and therefore the beef quality from Nellore cattle. This could be because of low stress during transport, as well as the physical characteristics of the Nellore breed that favor greater resistance to tropical climatic conditions.

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Does transport stress have any effect on carcass quality of Nellore cattle (Bos taurus indicus) in Brazil? — A case study

Author: da Silva Rodrigues Mendes, Nathalia; Rodrigues Silva, Renato; Ferreira de Oliveira, Tatianne; Ellies Oury, Marie Pierre; Francois Hocquette, Jean; Chriki, Sghaier
Publisher: Zenodo
DOI: 10.1093/tas/txad134
Source: https://zenodo.org/records/13366098/files/txad134.pdf
T ansla ional Animal Science, 2024, 8, xad134
h ps://doi.o g/10.1093/ as/ xad134
Ad ance access publica ion 8 Decembe 2023
Mea Science
Recei ed Ap il 26, 2023 Accep ed Decembe 7, 2023.
Does anspo s ess ha e any e ec on ca cass quali y o
Nello e ca le (Bos au us indicus) in B azil? — A case s udy
Na halia da Sil a Rod igues Mendes†,‡, Rena o Rod igues Sil a||, Ta ianne Fe ei a de Oli ei a†,
Ma ie-Pie e Ellies-Ou y‡,$, Jean-F ançois Hocque e‡, Sghaie Ch iki‡,¶,1,
†Depa men o Food Science and Technology, School o Ag onomy, Fede al Uni e si y o Goiás-UFG, Campus Samambaia, CEP 74690-900,
Goiânia, B azil
‡Ins i u Na ional de Reche che pou l’Ag icul u e, l’Alimen a ion e l’En i onnemen (INRAE), Uni e si é Cle mon Au e gne, Ve Ag o Sup,
UMR He bi o es, UMR1213, Reche ches su les He bi o es, Theix, 63122 Sain -Genès Champanelle, F ance
||Depa men o Ins i u e o Ma hema ics and S a is ics, Fede al Uni e si y o Goiás, Goiânia, B azil
$Depa men o Feed and Food, Bo deaux Sciences Ag o, CS 40201, 33175 G adignan, F ance
¶ISARA, CEDEX 07, 69364 Lyon, F ance
1Co esponding au ho : [email p o ec ed]
Abs ac
Wi h he inc easing concomi an demands o B azilian bee and in pa icula high-quali y bee , he e is a need o obse a ional s udies o he
e ec s o p e- and pos -slaugh e p ac ices on bee ca cass ai s. We hypo hesized in ou case s udy ha p e-slaugh e anspo o bo ines o e
signi ican dis ances would induce s ess in animals, and ha his would educe ca cass quali y because o highe pH esul ing om long-dis ance
anspo a ion. To es his hypo hesis, 30,230 Nello e ca casses om a p i a e slaugh e house we e e alua ed 24 h pos mo em. Analysis
showed co ela ions be ween animal ma u i y, ul ima e pH, dis ance, and ca cass weigh . Mo e p ecisely, he e was a sligh posi i e co ela ion
be ween ul ima e pH and weigh (bu no wi h anspo a ion dis ance) and a sligh posi i e co ela ion be ween ma u i y and weigh . A linea
eg ession model (R2 = 0.016) ailed o show dis ance ha ing a signi ican e ec on ul ima e pH (P = 0.63), while ca cass weigh signi ican ly a -
ec ed ul ima e pH (P < 0.001) wi h a low coe icien o 0.0003. Ma u i y nega i ely a ec ed ul ima e pH also (P < 0.001) bu wi h also a small
e ec (−0.0008). Resul s ( om 95% con idence in e als o a iance o he andom e ec s and o he andom e o s) showed ha he a iabili y
wi hin a ms was highe han be ween a ms. The linea mixed model showed ha ma u i y had a signi ican e ec on ca cass weigh alue
(P < 0.001) wi h a la ge coe icien o 2.90. The R2 o he linea mixed model was 46.03%. In conclusion, while weigh and ma u i y bo h a ec
ul ima e pH, long dis ances did no signi ican ly impac ul ima e pH and he e o e he bee quali y om Nello e ca le. This could be because o
low s ess du ing anspo , as well as he physical cha ac e is ics o he Nello e b eed ha a o g ea e esis ance o opical clima ic condi ions.
Lay Summa y
Wi h he inc easing concomi an demands o B azilian bee and o high-quali y bee , he e is a need o obse a ional s udies o he e ec s o
p e- and pos -slaugh e p ac ices on bee ca casses. In ou case s udy, we hypo hesized ha p e-slaugh e anspo o bo ines o e signi ican
dis ances would induce s ess in animals and ha his s ess would educe ca cass quali y because o he highe pH which would esul om
long-dis ance anspo a ion. To es his hypo hesis, 30,230 Nello e ca casses om a p i a e slaugh e house we e e alua ed 24 h pos mo em.
Analysis showed co ela ions be ween animal ma u i y, ul ima e pH, dis ance, and ca cass weigh . Mo e p ecisely, he e was a sligh posi i e
co ela ion be ween ul ima e pH and weigh (bu no wi h anspo a ion dis ance) and a sligh posi i e co ela ion be ween ma u i y and weigh .
S a is ical analysis showed ha he a iabili y wi hin a ms was highe han be ween a ms. In conclusion, while ca cass weigh and ma u i y
bo h a ec ul ima e pH, long dis ances did no signi ican ly a ec ul ima e pH, and he e o e had no signi ican e ec on he quali y o bee om
Nello e ca le. This could be because o low s ess du ing anspo , as well as he physical cha ac e is ics o he Nello e b eed ha a o g ea e
esis ance o opical clima ic condi ions.
Key wo ds: animal s ess, bee , ca cass ai s, ea ing quali y
In oduc ion
Bee ea ing quali y is an in insic quali y ai , which depends
on bo h p e- and pos -slaugh e ac o s (Liu e al., 2022;
Pogo zelski e al., 2022). The main a ibu es used o cha ac-
e ize bee ea ing quali y a e la o , juiciness, ende ness, and
o e all liking. These desc ip o s appea o be highly a iable
and dependen on many in e ac ing ac o s ha a e di icul
o manage, such as he an emo em p ope ies (b eed, age,
ma u i y, ca cass a le el, a y acid composi ion o cu s, e c.)
and he pos mo em elemen s (slaugh e p ocesses, such as
ca cass handling, aging, and s o age (De lin e al., 2017)).
P io o slaugh e , animals a e exposed o si ua ions ha can
igge s ess esponses, which can educe he senso y quali y
o he mea (G ube e al., 2010).
An obse a ional case s udy would be able o de e mine
whe he anspo ime migh be a signi ican sou ce o s ess.
Fo he pu poses o his pape , anspo ime means he o al
ime ha an animal is con ined in a ehicle wi hou ood,
© The Au ho (s) 2023. Published by Ox o d Uni e si y P ess on behal o he Ame ican Socie y o Animal Science.
This is an Open Access a icle dis ibu ed unde he e ms o he C ea i e Commons A ibu ion-NonComme cial-NoDe i s licence (h ps://
c ea i ecommons.o g/licenses/by-nc-nd/4.0/), which pe mi s non-comme cial ep oduc ion and dis ibu ion o he wo k, in any medium, p o ided he
o iginal wo k is no al e ed o ans o med in any way, and ha he wo k is p ope ly ci ed. Fo comme cial e-use, please con ac jou nals.pe missions@
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2Mendes e al.
wa e , o es o anspo i om he a m o he slaugh e -
house. This includes ime spen wai ing o depa a e loading,
ime in ansi , and s a iona y pe iods, as well as wai ing o
o -load (Schwa zkop -Genswein e al., 2012). T anspo
ime can be signi ican in la ge coun ies such as B azil, whe e
li es ock a e o en anspo ed long dis ances om a m o
slaugh e house, which may be loca ed in ano he pa o he
coun y. B azilian legisla ion, No ma i e Ins uc ion 09/2021,
allows a maximum o 12 h con inuous anspo a ion be-
o e equi ing a es s op o ood and wa e (B azil, 2021).
Imp ope handling du ing anspo and a he slaugh e -
house can lead o muscle glycogen deple ion, inadequa e acid-
i ica ion, and high ul ima e pH. This esul s in da ke mea ,
wi h lowe senso ial p ope ies, especially ende ness (G ube
e al., 2010), juiciness, and la o (Hemswo h e al., 2011).
Fo example, i is well known ha an ul ima e pH highe han
6 be ween 12 and 48 h pos mo em esul s in da k mea cu s
(a de ec known as da k, i m, and d y [DFD]) wi h a sho e
shel li e because o inc eased suscep ibili y o mic obial con-
amina ion (Pé ez e al., 2013). Howe e , mos s udies o he
e ec s o anspo ime on bee quali y ha e been conduc ed
using Bos au us au us ca le ea ed and anspo ed in sys-
ems di e en om hose used in B azil (Ma ia e al 2003;
Gonzalez e al., 2012 a,b; Chulayo e al., 2016; Polkingho ne
e al., 2018), whe e zebu ca le, which a e cha ac e ized by
a mo e eac i e empe amen , p edomina e (Cooke e al.,
2020). Zebu bee is ypically less ende wi h less ma bling
han ha o au ine ca le (Bos au us au us), pa icula ly
when compa ed o he Angus b eed (Seideman e al., 1982;
De And ade e al., 2020).
In o ma ion on he e ec s o anspo imes on he quali y
o mea om zebu ca le is s ill sca ce, as he e ha e only been
a limi ed numbe o s udies o hese animals, and mo eo e ,
only in he no he n and sou he n egions o B azil (Fe ei a
e al., 2006; Mendonça e al., 2018; Lace da e al., 2022).
E en hough he cen al-wes e n egion is unques ionably im-
po an o he B azilian bee indus y (ABIEC, 2022) s udies
o he e ec s o anspo ime in his i ally impo an egion
on bee quali y a e lacking.
We hypo hesized ha p e-slaugh e anspo o bo ines
causes s ess o he animals, and esul s in ca casses o
lowe quali y wi h a highe inal pH because o ha s ess.
Consequen ly, he aim o his obse a ional case s udy was o
in es iga e he e ec s o s ess du ing anspo be ween a m
and slaugh e house, speci ically on ul ima e pH o Nello e
ca le, while con olling o ho ca cass weigh and ma u i y.
Ma e ial and Me hods
Ins i u ional Animal Ca e and Use Commi ee
(IACUC)
This slaugh e house is egula ed by he B azilian Fede al
Inspec ion Se ice (S.I.F 2872).
A icle 110 o he Regulamen o Indus ial e Sani á io de
P odu os de O igem Animal - RIISPOA (B azilian Indus ial
and Sani a y Regula ion o Animal P oduc s), equi es
ha ca le be gi en a es pe iod and wa e . Fas ing in he
slaugh e house pens o 24 h p io o slaugh e . P e-ha es
handling con o med o good animal wel a e p ac ices wi h
slaugh e p ocedu es ollowing he Sani a y and Indus ial
Inspec ion Regula ion o Animal O igin P oduc s (B asil,
2004, 2021). These documen s a e he Animal Mo emen
Pe mi and he a me ’s decla a ion o ha ing ollowed he
s anda d and expec ed p o ocols (B asil, 2021). Slaugh e
condi ions con o med o adi ional o Halal p ocedu es
(CIBALLAHAL, 2022).
Da ase
We used a da a se p o ided by a p i a e company loca ed in
Inhumas (Goiás, B azil) (49°28ʹ14.84ʹʹW and 16°20ʹ31.42ʹʹS).
This slaugh e house can p ocess up o 700 ca le pe day (80
o 90 animals/h) and is egula ed by he Fede al Inspec ion
Se ice (S.I.F. 2872). The clima e in his egion is opical wi h
an a e age annual empe a u e o 23.1 °C wi h an a e age
ain all o 1,516 mm wi h a Hea Index in Inhumas o 22%
(B asil, 2022).
The ainy season is equen ly cloudy and o e cas ; he
d y season is almos always cloudless. Th oughou he yea ,
empe a u es gene ally ange om 16 o 32 °C and a ely all
below 13 °C o abo e 36 °C (B asil, 2022).
The company pu chases animals om di e en a eas
o he s a e o Goiás, and main ains hem wi hin a p o-
duc ion sys em ypical o his egion, i.e., a pas u e-based
opical condi ions sys em. These animals a e ep esen a-
i e o he bee ca le ea ed in cen al-wes e n B azil. P e-
ha es handling con o med o good animal wel a e p ac ices
and slaugh e p ocedu es and ollowed he Sani a y and
Indus ial Inspec ion Regula ion o Animal O igin P oduc s
(B asil, 2004) and Technical Regula ions o P e-slaugh e
Managemen and Humane Slaugh e and he s un me hods
au ho ized by he Minis y o Ag icul u e, Li es ock and
Supply (BRASIL, 2021).
The da a se o he pe iod om Janua y o Augus 2021
has 35,126 eco ds o bee ca cass ai s such as b eed
(Nello e o C ossb eed), ca ego y (Bull, Cow, Du ch bull,
Du ch cow, Hei e , Ma uco ox, Tau us), con o mi y, ma-
u i y (age), ca cass weigh , and ul ima e pH. Ca ego ies
a e based on age and sex and can be u he classi ied in o
cal es o hei e s, hei e s, o bullocks, which in u n may be
cas a ed o whole, as well as cows o bulls o slaugh e .
Con o mi y e e s o he s anda ds o which his mea should
be p ocessed o he ma ke o which i is in ended. Du ing
he pe iod in which his s udy was conduc ed, he mea
ollowed he s anda ds es ablished o he ollowing coun-
ies: B azil, China, and Halal consume s’ coun ies (I an and
Saudi A abia) Cen al Islâmica B asilei a De Alimen os Halal
(CIBALLAHAL, 2022).
Ma u i y (age) was de e mined by den i ion: milk ee h (up
o 20 mo), wo ee h (21 o 24 mo), ou ee h (25 o 30 mo),
six ee h (31 o 41 mo), and eigh ee h (42 mo o abo e).
Following he pos -ha es and head inspec ion, he numbe
o pe manen inciso s was eco ded o each Nello e bull. A
pai o ee h was conside ed o be p esen when ei he oo h
o a pai had pene a ed he gum. Ca cass weigh e e s o he
edible po ion a e slaugh e , which is composed o mea , a ,
and bones, and is measu ed in kilog ams (kg). The ul ima e
pH was measu ed wi h a pH-me e (AK103 - Akso P odu os
Ele onicos L da) in he Longissimus ho acis muscle a 13 h
ib o he le hal o he ca cass a pa allel poin s in he same
sec ion, and 24 h pos -slaugh e . Wi h ega d o ca cass em-
pe a u e and amb,ien empe a u e, he slaugh e house ma u-
a ion sys em a ies acco ding o ma ke : Chile equi es 2 o
4 °C o 24 h om 10 °C ambien , while U uguay and o he
coun ies equi e 4 °C o 24 h om 10 °C ambien . B azil’s
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T anspo s ess on Nello e ca le ca cass quali y 3
s anda ds o ca cass empe a u e consis o a minimum o 2
°C and a maximum o 5 °C 24 h a e slaugh e om 10 °C
ambien .
In addi ion, animals we e e alua ed acco ding o a in-
ishing, which was pe o med isually using a 9-poin scale
wi h sco es om 1 o 9 (1 - absen a ; 2,3,4 - sca ce; 5,6,7 -
medium; 8 - uni o m, and 9 - excessi e a ). The dis ance om
a m o slaugh e house is gi en in kilome e s, wi h each 100
km co esponding o 1 h 30 min d i ing ime.
The numbe s o he di e en modali ies o he a iables
a e shown in Table 1. We s a ed wi h 35,126 eco ds o bee
ca casses. O hese, 99.28% we e Nello e b eed, 97.18%
bulls non-cas a ed, 98.99% Halal, and 89.14% a in-
ishing. Res ic ing ou a ge popula ion o Nello e bulls
wi h Halal con o mi y and a e a inishing, meaning 30,230
ca casses, educed he numbe o po en ial con ounding
a iables (Table1). Because o he la ge sample size, each o
he a iables s udied can ha e signi ican e ec s, bu his was
minimized by ocusing on ul ima e pH and he a iables o
in e es , i.e., a dis ance be ween a m and slaugh e house,
ca cass weigh , and ma u i y. Fo his eason, ou sample is
limi ed o ul ima e pH, dis ance om a m o slaugh e house,
ca cass weigh and ma u i y as shown in Table 2.
Slaugh e P ocess and Condi ions
The company ollows egula ly inspec ed p ocedu es o
slaugh e ing animals (B asil, 2004). Animals a e p ocessed
o slaugh e only a e documen s accompanying he lo a e
inspec ed. These a e he Animal Mo emen Pe mi and he
a me ’s decla a ion o ha ing ollowed he s anda d and
expec ed p o ocols. Bo h d i e s and s ockya d s a ha e
been ained in animal wel a e. Animal lo s a e sepa a ed
by o igin. A e unloading, he li es ock ucks a e washed
and disin ec ed. The animals es and a e gi en wa e o a
leas 6 h be o e slaugh e ing. Animals app o ed o slaugh e
pass h ough a sp ay ba h o p essu ized hype -chlo ina ed
wa e . Slaugh e condi ions a e con o med o adi ional o
Halal p ocedu es. A e his, an assis an om he Inspec ion
Se ice de e mines he age o he animals using den i ion and
hen s amps he ca cass wi h i s age g oup. The hal -ca casses
a e g aded o a inishing, absence o p esence o b uising,
sex, and weigh . A e he hal -ca casses a e s amped by he
Fede al Inspec ion Se ice, hey a e weighed and aceabili y
labels a e applied o he hindqua e , o equa e , and lank.
The hal -ca casses a e washed wi h je s o p essu ized wa e
o emo e bone agmen s and blood clo s, hen, hey a e
placed in chille s suspended by he Achilles endon a +4 ± 1
°C o unde go ma u a ion a e a pH d op. A e chilling,
he hal -ca casses a e classi ied by ul ima e pH (see sec ion
“Ins i u ional Animal Ca e and Use Commi ee (IACUC)”).
S a is ical Analysis
The da a we e analyzed using R so wa e ( e sion 4.1.2 - R
Co e Team, 2022). A e desc ip i e analysis, a box plo ac-
co ding o DuToi e al. (2012). Median alues a e indica ed
by he line wi hin he box plo . The box ex ends om he
25 h o 75 h pe cen iles and whiske s indica e he minimum
and maximum alues. Analysis o Va iance (ANOVA) was
pe o med using he ao () unc ion o de e mine he signi i-
can di e ences be ween ca cass cha ac e is ics.
Pea son co ela ion was calcula ed wi h he ggplo 2
package using he “pai s.panels’‘ unc ion.
P incipal Componen Analysis (PCA) was pe o med using
he package “Fac oMineR” o ep esen and model mul idi-
mensional poin cloud da ase s, showing whe he ela ionships
exis be ween he s udied a iables. PCA allows o he calcu-
la ion o new a iables, called p incipal componen s, which
cap u e he a iabili y in he da a. This enables in o ma ion o
be desc ibed wi h ewe a iables han o iginally p esen . The
p incipal componen s a e linea combina ions o he o iginal
a iables. The i s p incipal componen is he combina ion o
a iables ha explains he g ea es amoun o a iabili y in
he da a. The second and subsequen p incipal componen s
desc ibe he maximum amoun o emaining a iabili y and
Table 1. P o iles o ca casses based on b eed, ca ego y, a inishing and
con o mi y
Pa ame e Value n1%
B eed C ossb eed 253 0.72
Nello e 34,873 99.28
Ca ego y Bull 34,135 97.18
Cow 610 1.74
Du ch bull 79 0.23
Du ch cow 8 0.02
Hei e 173 0.49
Ma uco ox 48 0.14
Tau us 73 0.21
Fa inishing Excessi e 6 0.08
Medium 3,748 10.67
Ra e 31,311 89.14
Uni o m 61 0.17
Con o mi y2B azil 1 0.003
China 350 1.00
Halal 34,775 99
1Numbe o ca casses.
2The s anda ds acco ding o which his mea should be p ocessed o i s
in ended ma ke .
Table 2. Raw alues o mean, s anda d de ia ion (SD), coe icien o a ia ion (CV), minimum, and maximum o he measu ed ai s o ou s udied
popula ion o 30,230 ca casses
Mean SD CV (%) Minimum Maximum
Ul ima e pH 5.75 0.07 1.22 5.0 6.04
Dis ance, km 203 115.59 57.44 10 547
Time, h 3 1.73 57.44 0.15 8
Ca cass weigh , kg 298.9 34.14 11.41 150.5 553
Ma u i y, mon hs 203 1.97 48.47 0 8
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4Mendes e al.
mus be independen (o hogonal) be ween hem and o he
i s p incipal componen (Husson e al., 2016).
Mul i a ia e Reg ession Models we e de eloped by using
he “lm” (linea model) unc ion and “lm.be a” R Package
(Beh end , 2014). The linea eg ession models we e ca ied
ou o s udy he ela ionship be ween pH and explana o y
a iables such as ca cass weigh , ma u i y (age), and dis ances
as ollows:
yi=β0+β1xi1+β2xi2+β3xi3+i,
whe e
yi
ep esen s he i h measu ed pH on he bee ca cass,
β0
is he in e cep ,
β1,β2,β3
a e he eg ession coe icien s,
xi1
ep esen s he i h ca cass weigh ,
xi2
ep esen s he phys-
iology animal ma u i y e alua ed on ca cass ( his pa ame e
being highly co ela ed o ch onological age),
xi3
ep esen s
he i h a m and
i
he andom e o .
We i ed a mixed model o analyze i he ca cass pH a -
iance wi hin he a ms was highe han be ween he a ms.
Mixed-e ec models a e used o desc ibe ela ionships be-
ween a esponse a iable and some o he co a ia es in da a
when g ouped acco ding o one o mo e classi ica ion ac o s.
Examples o such g ouped da a include longi udinal da a,
epea ed measu es da a, mul ile el da a, and block designs.
By associa ing common andom e ec s wi h obse a ions
sha ing he same le el o a classi ica ion ac o , mixed e ec s
by g ouping he da a by g ouping he da a models lexibly
ep esen he co a iance s uc u e induced by he g ouping o
he da a (Pinhei o and Ba es, 2000).
The s a is ical model can be exp essed as ollows:
yij =µ+bi+ij,
Whe e
yij
ep esen s he ij h pH measu ed on i h a m and j h
ca cass,
µ
is he in e cep ,
bi
is he andom e ec o i h a m
and
ij
he andom e o .
Addi ionally, we i ed a mixed o model he ca cass weigh
in unc ion o ma u i y using he a m as a andom e ec . The
model was he ollowing:
yij =β0+β1xi+bi+ij,
whe e
yij
ep esen s he ij h weigh measu ed on i h a m and j h
ca cass,
β0
is he in e cep ,
β1
is he s aigh slope,
xi
ep esen s
he ma u i y (age) e alua ed on i h a m,
bi
is he andom e -
ec o i h a m and
ij
he andom e o . Con idence in e als
o he andom e ec a iance ep esen he ul ima e pH a -
iabili y be ween a ms, and con idence in e als o andom
e o ep esen he ul ima e pH a iabili y wi hin a ms. Fo
his model, he likelihood a io es was pe o med o assess
he signi icance o he andom e ec in he model. The alue
o R2 was calcula ed using he sq lib a y. All compu a ions
ela ed o i ing mixed models we e done using he nlme R
package (Pinhei o and Ba es, 2022).
Resul s and Discussion
Desc ip i e Analysis
The pH dis ibu ion is le -skewed and has low a iabili y
(Figu e 1a), wi h a coe icien o a ia ion o 1.22% (Table
2) and an in e qua ile ange less han 0.1. I can be seen ha
he median alue is 5.75 and he e o e 50% o he samples
ha e pH alues less han 5.75. The i s qua ile 25% is o
has an ul ima e pH alue o less han 5.71, and he hi d
qua ile 75% has is o ul ima e pH alues highe han 5.79.
The box plo shows many ou lie s which a e easily de ec able
which con as s wi h he low sample a iabili y o ul ima e
pH (Figu e 1b). This may be because o echnical p oblems
(pH-me e calib a ion, o ins ance), ope a o e o , biological
p oblems in speci ic ca casses, and so on. I is wo h no ing
ha he emo al o ou lie s does no signi ican ly a ec hese
esul s, gi en he la ge sample size.
The ul ima e pH ange in his s udy ag ees wi h he a ail-
able li e a u e (Pé ez e al., 2013) and as equi ed by he
wo ma ke s (I an and Saudi A abia) o which he company
expo s bee wi h Halal con o mi y. I an allows a maximum
ul ima e pH o 6.2 as speci ied by i s egula o y agency,
and Saudi A abia allows a maximum ul ima e pH o 6.0 as
speci ied by i s egula o y agency. The ul ima e pH a e aged
5.74 ± 0.07 which is consis en wi h he indings o Sil a e al.
(2019), whose alues we e 5.78 ± 0.01, whe e hese au ho s
e alua ed he e ec o cas a ion on he ca cass and mea
quali y ai s o Nello e ca le. Ou esul s also i wi h hose
o Lace da e al. (2022), whe e he ul ima e pH mean was
5.82 ± 0.11.
In ou da a, 22.30% o he o al numbe o ca casses had
an ul ima e pH highe han 5.8 and lowe han 6.04 ( he
maximum pH alue in his s udy). We also emphasize ha
an ul ima e pH highe han 5.8 is conside ed DFD mea by
some au ho s, since hese changes in inal pH cause conside -
able losses o he bee sec o , as he mos equen p oblems
caused by s ess in ca le a e weigh loss, ca cass lesions and
al e ed mea quali y, mainly due o inc eased pH (>5.8), a -
ec ing ende ness and mea colo (da k mea ) (Lomiwes e
al., 2014; Hughes e al., 2017).
Pé ez e al. (2013) conside mea o be DFD wi h an ul-
ima e pH highe han 6 be ween 12 and 48 h pos mo em
o esul in da k mea cu s wi h a sho e shel li e because
o inc eased suscep ibili y o mic obial con amina ion. In ou
da a, only 0.023% o he o al numbe o ca casses had an
ul ima e pH highe han 6.0.
We chose o compa e ou pH esul s wi h he li e a u e,
conside ing we did no analyze mea colo , shea o ce, e c.
The ul ima e pH ange in his s udy was accep able o he
wo ma ke s (I an and Saudi A abia) o which he company
expo s bee wi h Halal con o mi y. I an allows a maximum
ul ima e pH o 6.2 as speci ied by i s egula o y agency;
and Saudi A abia allows a maximum ul ima e pH o 6.0 as
speci ied by i s egula o y agency, while B azil allows a max-
imum ul ima e pH o 6.0 as speci ied by i s egula o y agency.
These ul ima e pH alues can be explained by 1) he ac
ha animals we e aised using a pas u e sys em, which leads
o highe ul ima e pH alues han g ain- ed ca le (Apaoblaza
e al., 2020) and 2) he use o non-cas a ed males, which can
lead o inc eased s ess, because cas a ed animals a e easie
o handle han non-cas a ed animals, since cas a ion esul s
in changes in beha io , namely in becoming calme , gen le ,
mo e obedien , and mo e amenable o managemen (Dua e
e al., 2011). These wo easons would jus i y he abno mal
ul ima e pH in some e alua ed ca casses bu a e insigni ican
when compa ed o he e ec s o oad anspo ime on ul i-
ma e pH as conside ed in his s udy (Figu e 1a and b).
The dis ibu ion o dis ances be ween a m and slaugh e -
house is le -skewed wi h a high a iabili y (Figu es 2a and
b), wi h a coe icien o a ia ion o 57.44% (Table 2). The
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T anspo s ess on Nello e ca le ca cass quali y 5
median alue is 181 km and he i s qua ile 25% wi h a
dis ance alue o less han 105 km and he hi d qua ile
75% has a dis ance alue o mo e han 292 km. I should be
no ed ha he slaugh e house in his s udy was loca ed nea
he geog aphic cen e o he Goiás s a e, and ha he a e age
dis ance was no as g ea as hose epo ed in Chile (We ne
e al., 2013) o Canada (Gonzalez e al., 2012 a,b; Wa en e
al., 2010), which had an a e age dis ance g ea e han 400
km. Howe e , he dis ances epo ed o he p esen s udy
a e simila o hose in s udies conduc ed in he no he n and
Figu e 1. F equency dis ibu ion o ul ima e pH alues in bee ca casses, ep esen ed as a his og am (a) and box plo (b).
Figu e 2. F equency dis ibu ion o dis ance be ween a m and slaugh e house (km) in bee ca casses, ep esen ed as a his og am (a) and box plo (b).
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6Mendes e al.
sou he n egions o B azil (Mendonça e al., 2018; Lace da
e al., 2022), and a e in acco dance wi h B azilian legisla ion,
No ma i e Ins uc ion 09/2021, which allows a maximum o
12 h o con inuous anspo be o e equi ing a es s op o
ood and wa e (B asil, 2021).
Al hough animal anspo o long du a ion is mo e likely
o comp omise animal wel a e han ha o sho e du a-
ion, i is impo an o ecognize ha i is no he du a ion
o he jou ney pe se, bu he associa ed nega i e aspec s, i.e.,
lack o ood, lack o wa e and high empe a u e, which a e
he sou ce o any de imen al e ec s. S ess om ex eme
empe a u es and lack o ood, wa e , and es , o example,
a e all exace ba ed by leng h o exposu e, i.e., jou ney du a-
ion (Nielsen e al., 2011). Fu he mo e, once animals ha e
adap ed o hei new si ua ion, dis ance is a ela i ely mino
p oblem when compa ed o loading densi ies, ehicle design,
oad condi ions, o d i e skill (S appini e al., 2009). In his
s udy, hese ac o s we e con olled o , and he dis ance had
no signi ican in luence on bee quali y, as shown by he ul i-
ma e pH alues.
The weigh dis ibu ion is le -skewed and has high a ia-
bili y (Figu e 3a), wi h a coe icien o a ia ion o 11.41%.
The median alue is 296.50 kg wi h he i s qua ile 25%
ha ing a weigh alue o less han 275.50 kg and he hi d
qua ile 75% wi h a weigh alue o mo e han 319.50 kg.
The many ou lie s shown in he box plo (Figu e 3b) can
be explained by di e en ages. This ag ees wi h he esul s
o Bu eš and Ba oň (2012) who e alua ed he e ec s o
gende and age a slaugh e on g ow h, eed in ake, ca -
cass composi ion, and mea quali y o musculus longissimus
lumbo um a ibu es in Cha olais × Simmen al. They ound
ha bulls slaugh e ed a 14 mo o age we e ligh e han hose
slaugh e ed a 18 mo o age a he end o he a ening pe iod.
This same esul in Nello e bulls was also obse ed by Sil a
e al. (2019). The a e age ho ca cass weigh in he p esen
s udy was 298.90 ± 34.14 kg and which ag ees wi h he alue
o 248 ± 34.20 kg obse ed o Nello e bulls by Mello e al.
(2018) and wi h 236.60 kg ound by Sil a e al. (2019).
The ma u i y dis ibu ion is le -skewed and has high a i-
abili y (Figu e 4a), wi h a coe icien o a ia ion o 48.47%.
The median is 4 ee h and he i s qua ile 25% wi h a ma-
u i y alue o less han 2 ee h and he hi d qua ile 75%
has a alue o mo e han 4 ee h. The box plo indica es
many ou lie s (Figu e 4b). This is due o he sample size and
in he p esen s udy, he expe imen al design did no s ipu-
la e he age ange o he animals s udied since he objec i e
was o make an explo a o y analysis o he company’s da a.
This ag ees wi h esul s om Dua e e al. (2011) wi h mos
o he animals wi h 4 pe manen inciso s ee h and when
e alua ing he physical and chemical cha ac e is ics o mea
om Nello e bulls wi h 4 pe manen inciso s ee h he ound
accep able esul s o ende ness.
Co ela ions Be ween Bee Ca cass T ai s
The ma ix co ela ion be ween bee ca casses shows weak
co ela ions be ween ai s and no ela ionship be ween he
wo a iables o in e es namely ul ima e pH and dis ance
(Table 3).
The e was no signi ican co ela ion be ween ul ima e pH
and dis ance ( = 0.01) on he one hand and be ween ul i-
ma e pH and ma u i y ( = 0.01) on he o he hand. In he
condi ions s udied, he hypo hesis ha long dis ances would
signi ican ly in e e e wi h bee quali y was no con i med o
he Nello e b eed. In his s udy, he anspo a ion dis ance
and ime may ha e been insu icien o cause enough s ess
o he animals o deple e glycogen s o es. A longe anspo
ime (14 h) may esul in changes o he umen en i onmen ,
leading o an inc eased ace a e/ p opiona e a io. This would
Figu e 3. F equency dis ibu ion o ho ca cass weigh (kg) in bee ca casses, ep esen ed as a his og am (a) and box plo (b).
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T anspo s ess on Nello e ca le ca cass quali y 7
educe he quan i y o ci cula ing glucose and a ec ul ima e
pH (Deng e al., 2017). This p obably did no occu in he
animals s udied because e en he longes ime (8 h) did no
impede he decline in ul ima e pH.
Ano he ac o may be due o he physical cha ac e is ics
o he Nello e b eed, which is e y esis an o hea due o
i s la ge body su ace a ea and g ea e numbe o swea
glands. The cha ac e is ics o i s hai also acili a e hea ex-
change wi h he en i onmen . In addi ion, he diges i e ac
is 10% smalle han ha o Eu opean ca le b eeds (ACNB,
2022). The e o e, hei me abolism is lowe and gene a es
less hea . Acco ding o Dewell (2010), la ge ca le canno
handle hea s ess as well as smalle ca le because inc eased
a deposi ion p e en s ca le om egula ing hei hea e -
ec i ely. Sola adia ion is a c i ical componen ha can lead
o losses om hea s ess. In ou s udy, he a e age weigh
was 300 kg which con ibu ed o hese animals being able
o handle he hea . This esul ag ees wi h alues o ul i-
ma e pH ob ained by Lace da e al. (2022) who in es iga ed
he e ec s o di e en p e-slaugh e oad anspo imes on
senso y e alua ion and ins umen al measu emen s o mea
quali y o Nello e ca le. They obse ed ha , wi h he longes
anspo being 6 h, no no iceable e ec on ul ima e pH o
mea quali y.
Weak bu signi ican co ela ions we e ob ained be ween
ul ima e pH and ca cass weigh ( = 0.12, P < 0.01) on he
one hand and, be ween dis ance and ca cass weigh on he
o he ( = 0.05, P < 0.01). This is in ag eemen wi h González
e al. (2012a), which aimed o iden i y and quan i y se e al
ac o s a ec ing sh inkage in ca le du ing long-haul com-
me cial anspo (≥400 km; n = 6,152 ips). They concluded
ha anspo du a ion was he a iable wi h he mos in lu-
ence on sh inkage, especially a high ambien empe a u es
because bo h ac o s ha e a mul iplica i e e ec on each o he .
Thus, e e y a emp should be made o educe anspo du-
a ion and sh inkage, such as by a oiding unnecessa y delays
h ough ca e ul ip planning and e icien bo de c ossing in-
spec ion p o ocols o eede ca le. T anspo should be mo e
ca e ully managed du ing ho wea he o minimize a oidable
sh inkage. Again, ho ca cass weigh was ound no o be a -
ec ed by p e-slaugh e oad anspo dis ance. This may be
because e en he longes anspo ime added o he wai ing
ime in he holding pen was insu icien o educe ca cass
weigh . In addi ion, o he ac o s ela ed o anspo a ion
Figu e 4. F equency dis ibu ion o ma u i y (age) in bee ca casses, ep esen ed as a his og am (a) and box plo (b).
Table 3. Co ela ion coe icien s be ween bee ca cass ai s
pH Dis ance Weigh Ma u i y
Ul ima e pH 1 0.0110.1220.0071
Dis ance, km — 1 0.052−0.032
Ca cass Weigh , kg — — 1 0.232
Ma u i y, mon hs — — — 1
1Co ela ion is no signi ican ly di e en (P > 0.05)
2Co ela ion is signi ican ly di e en a 0.01 (P < 0.01).
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8Mendes e al.
can con ibu e o changes in ca cass weigh , such as animal
densi y, and lo mixing in uck compa men s (Mendonça e
al., 2019). Howe e , in he cu en s udy, hese ac o s we e
con olled o , so ha he e ec s o anspo dis ance could
be isola ed and eliably de e mined (Table 3).
T anspo a ion dis ance and ma u i y had a nega i e weak
ela ionship ( = −0.03, P < 0.01), wi h a low co ela ion be-
ween ca cass weigh and ma u i y ( = 0.23, P < 0.01). This
signi ican co ela ion is due o he ac ha he age a which
an animal is slaugh e ed de e mines i s weigh and composi-
ion o he ca cass because o i s s age o ma u i y (Pe hick e
al., 2007).
In he PCA, he dis ance be ween a m and slaugh e house,
ca cass weigh , ma u i y, and ul ima e pH we e conside ed si-
mul aneously in he igh uppe hi d o he plo . This shows
why he i s wo PCAs explain only 57.2% o he o al a -
iabili y o he da ase , wi h 31.6% co esponding o he i s
p incipal componen and 25.6% o he second p incipal com-
ponen . Resul s om P incipal Componen Analysis (PCA)
con i med a low co ela ion be ween ul ima e pH and dis-
ance and a signi ican co ela ion be ween ma u i y and ca -
cass weigh (Figu e 5). The con ibu ion o he ul ima e pH
in he i s dimension is 16.82% and in he second dimension
is 11.91%; dis ance om a m o slaugh e house con ibu es
2.16% and 63.25%, in he i s and second dimensions, e-
spec i ely; ca cass weigh con ibu es 49.47% in he i s
dimension and 0.09% in he second dimension; and animal
ma u i y con ibu es 31.55% and 24.76% in he i s and
second dimensions, espec i ely.
Howe e , hese esul s should be in e p e ed wi h cau ion
due o he la ge amoun o noise in he da a. Because o his,
i is impo an o emphasize ha in he cu en s udy, ou
p o ocol was insu icien o adequa ely es ou hypo hesis,
because he p ima y objec i e o he p esen case s udy was o
make an explo a o y analysis o he company’s da a, aking
in o conside a ion all he da a ob ained du ing he 6-mo
pe iod e alua ed, o ha e a obus da ase wi h p e- and pos -
slaugh e da a.
pH as a Func ion o Ca cass Weigh , Ma u i y,
Dis ance
Resul s om he eg ession analysis showed ha dis ance
does no ha e a signi ican e ec on pH (P = 0.634). Ca cass
weigh signi ican ly a ec s pH (P < 0.001) wi h a low coe i-
cien o 0.000266, and, as such, has a e y small e ec .
Animal ma u i y (age) nega i ely a ec s pH as well
(P < 0.001) bu also wi h a e y small e ec ( he coe icien
being −0.000806).
yi=5.67 +0.000266xi1−0.000806xi2+0.00000165xi3
Whe e yi ep esen s he measu ed ul ima e pH, xi1
ep esen s he ca cass weigh , xi2 ep esen s he animal ma u-
i y e alua ed o he ca cass, xi3 ep esen s he dis ance be-
ween he a m and he slaugh e house.
The alue o R2 was 0.016, which indica es ha only 1.6%
o o al a iabili y can be explained by his eg ession model.
The e o e, 98.4% o he a iabili y is a ibu able o o he
Figu e 5. P incipal componen analysis. This analysis was pe o med using he ollowing a iables: dis ance, ul ima e pH, weigh , ma u i y. P ojec ion o
a iables in a “XY” plane de ined by he axes o he i s wo p incipal componen s (PC1 and PC2), showing he pe cen age o explained a iabili y in
he wo PCs o he plo .
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T anspo s ess on Nello e ca le ca cass quali y 9
ac o s no conside ed he e. Thus, esul s om he mul iple
eg essions model con i m he p e ious esul s om he PCA.
Howe e , he e ec s e en hough small we e de ec able due
o he la ge sample size.
pH Va iabili y Be ween and Wi hin Fa ms
Resul s om 95% con idence in e als o a iance o he
andom e ec s and o he andom e o showed ha he
a iabili y wi hin a ms is highe han be ween a ms
(Table4).
These esul s may be explained by he ac each a m is
a a di e en dis ance om he slaugh e house, and by each
a m ha ing p o ided se e al ca casses wi h di e en cha -
ac e is ics. Because o his, he a iabili y o he pH o he
ca casses p o ided by each a m is g ea e han he a i-
abili y o ca cass pH be ween a ms. The es ima e o he
andom e ec a iance is smalle han he es ima e o he
andom e o a iance o he model. This may be due o
he high a iabili y in he cha ac e is ics o ca casses and
in mea quali y o ca le is mul i ac o ial. Indeed, he high
a iabili y as epo ed by Clinqua e al. (2022) is o en
linked o he p io i ies o he a ming sys em. The conclu-
sion eached was ha he di e si y o a ming sys ems is a
consequence o he di e si y in se e al ac o s: b eed (dai y
o bee ), age, and sex (bulls, s ee s, hei e s, cull cows) used
o p oduce bee . Fu he , he e a e o he ac o s linked o
a ming p ac ices (e.g., die , especially g azing) ha ha e a
s ong in luence on he senso y, nu i ional, echnological,
and ex insic a ibu es o mea quali y (Clinqua e al.,
2022).
Liu e al. (2022) also epo ed he syne gies and an agonisms
be ween bee quali y dimensions. To gi e wo examples: he
e ec o gene ics alone (highly muscled b eeds, local b eeds,
e c.), and di e en die s (pas u e s inland, o ganic s con en-
ional on g ass) ha e di e en e ec s on he a ibu es o mea
quali y. These wo ac o s a y o a g ea e o lesse deg ee
wi hin a gi en a m’s he d as well as be ween he he ds o di -
e en a ms. Al hough he s udy o gene ic imp o emen o
he Nello e b eed is widesp ead in B azil, he animals used in
he p esen s udy we e no gene ically iden i ied as Nello e ei-
he indi idually o in agg ega e bu we e classi ied as Nello e
by he a ms. This esul s in a iabili y o ca cass cha ac e is-
ics, e en when hey come om he same a m as epo ed in
he li e a u e, e en when he animals a e o he same gende .
This jus i ies he esul ob ained h ough he mixed model
(Table 4).
I is wo h no ing ha imp o emen s a he a m le el can
be impeded o e en elimina ed by poo anspo , subs anda d
slaugh e and p ocessing p ac ices. All hese conside a ions
explain why in e -animal a iabili y in quali y can be high,
e en when a popula ion o animals a e p oduc s o he same
a ming sys em (Dua e e al., 2011). In he p esen s udy,
p e- and pos -slaugh e p o ocols we e hose ecommended
by B azilian legisla ion.
Modeling he Rela ionship Be ween Ca cass Weigh
and Ma u i y and Fa ms
Resul s om a linea mixed model show ha ma u i y has
a signi ican e ec on he ca cass weigh (P < 0.001) wi h a
la ge coe icien o 2.90. A a io likelihood es ou pe o med
he mixed model mul iple eg ession. The alue o R2 in he
linea mixed model is 46.03%, which indica es ha his o al
a iabili y can be explained by he mixed eg ession model.
The e o e, 53.97% o he a iabili y is a ibu able o o he
ac o s no conside ed he e. The Linea Mixed Model o
he ela ionship be ween ca cass weigh and ma u i y and
he a ms con i ms he esul s o Pea son’s co ela ion be-
ween ca cass weigh and ma u i y (Table 3), as well as by
PCA (Figu e 5). As p e iously no ed, hese esul s we e also
ound by o he esea che s (Bu eš and Ba oň, 2012; Sil a e
al., 2019). Consis en wi h Pe hick e al. (2007), Sil a e al.
(2019), and Bu eš and Ba oň (2012), we conclude ha he
age a which an animal is slaugh e ed de e mines he weigh
and composi ion o he ca cass based on he s age o ma u i y
eached.
Se e al ac o s should be conside ed when de eloping
guidelines o educe ca le anspo s ess and sh inkage:
he ype o ca le, ambien empe a u e, anspo du a ion,
d i ing quali y, and ime and o igin o loading (González e
al., 2012a).
Conclusion
Bee ca cass ai s can be a ec ed by ca cass weigh and ma-
u i y, bu only o a limi ed ex en . The hypo hesis ha long
dis ances would signi ican ly a ec bee quali y was no con-
i med o he Nello e b eed in he condi ions s udied. This
could be because o low s ess du ing anspo , as well as he
physical cha ac e is ics o he Nello e b eed ha a o g ea e
esis ance o opical clima ic condi ions.
In addi ion, he s a egy o pu chasing animals wi hin a a-
dius o 300 km, equi alen o a maximum o 8 h o anspo
ime, is consis en wi h he li e a u e on changes in he quali y
o bo ine ca casses due o anspo ime. This is an obse a-
ion bene icial o he company and con o ms o he s anda ds
equi ed by he B azilian ma ke and o hose ma ke s, o
which B azil expo s.
An expe imen al s udy on a much smalle scale, wi h
an assessmen o s ess indica o s, such as lac a e, glucose
concen a ions, co isol concen a ion and c ea ine kinase,
no epineph ine and epineph ine, o b uise sco e shee o e al-
ua e he consequences on bee ea ing quali y, is necessa y o
unde s and any in e ac ion be ween hese pa ame e s and
he bene i s o he supply chain so ha he mea indus y
can u he imp o e animal wel a e and mea quali y du ing
p e-slaugh e comme cial ope a ions. This s udy which used a
da ase p o ided by a slaugh e house can se e as a sou ce o
use ul indica o s on a la ge scale. Al hough mea p oduc ion
has become mo e e icien and line speed has inc eased, he e
Table 4. Poin es ima e o a iance componen s o andom e ec s and model e o espec i ely, using he es ic ed maximum likelihood me hod.
Lowe and uppe bounds o 95% con idence in e als o he a iance componen s o andom e ec s and model e o
Va iances Poin es ima e Lowe limi Uppe limi
Random e ec s 0.02979055 0.02698031 0.0328935
Random e o 0.06518885 0.06466902 0.06571286
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