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热应激对高水分利用效率和低水分利用效率肉鸡回肠上皮屏障完整性的影响。

Effect of heat stress on ileal epithelial barrier integrity in broilers divergently selected for high- and low-water efficiency.

作者信息

Greene Elizabeth S, Roach Brooklee, Cuadrado Maria Fernandez, Orlowski Sara, Dridi Sami

机构信息

Division of Agriculture, Center of Excellence for Poultry Science, University of Arkansas, Fayetteville, AR, United States.

Har-Ber High School, Springdale, AR, United States.

出版信息

Front Physiol. 2025 Apr 7;16:1558201. doi: 10.3389/fphys.2025.1558201. eCollection 2025.

Abstract

Water scarcity and rising global temperatures are two of the greatest current and future threats to poultry sustainability. Therefore, selection for water efficiency (WE) and heat resilience are of vital importance. Additionally, intestinal integrity is of critical importance under challenging conditions to maintain nutrient absorption and therefore, growth and performance of broilers. Here, we examined the effect of chronic cyclic heat stress (HS) on the ileal expression profile of tight-junction, gap-junction, adherens, and desmosome genes in the fourth generation of divergently selected low (LWE)- and high water efficient (HWE)-chicken lines. LWE birds exhibited higher levels of gut permeability, regardless of temperature, as measured by fluorescein isothiocyanate-dextran (FITC-D). Among the claudins (CLDN), showed greater expression in the HWE as compared to LWE, regardless of temperature. , -, -, and - genes were all greater in LWE and lower in HWE during HS. Conversely, was decreased in LWE but increased HWE under HS. was increased in the HWE line and decreased by HS. Cingulin () gene expression was lower in HWE as compared to LWE and lower in HS as compared to thermoneutral (TN) condition. Gap junction protein α1 () and desmoglein 4 () were greater in the HWE as compared to the LWE. Cadherin 1 () gene expression was greatest in the HWE in TN conditions and lowest in HWE under HS, whereas catenin α2 () and desmocollin 1 () were highest in HWE during HS compared to all other groups. This differential expression of key genes associated with intestinal barrier integrity likely contributes to the water efficiency phenotype and the response of these birds to HS.

摘要

水资源短缺和全球气温上升是当前及未来对家禽可持续发展的两大最大威胁。因此,选择水分利用效率(WE)和耐热性至关重要。此外,在具有挑战性的条件下,肠道完整性对于维持营养吸收以及肉鸡的生长和性能至关重要。在此,我们研究了慢性循环热应激(HS)对第四代经不同选择的低水分利用效率(LWE)和高水分利用效率(HWE)鸡品系回肠紧密连接、间隙连接、黏附连接和桥粒基因表达谱的影响。通过异硫氰酸荧光素 - 葡聚糖(FITC - D)测量,无论温度如何,LWE鸡的肠道通透性水平更高。在紧密连接蛋白(CLDN)中,无论温度如何,HWE中的表达均高于LWE。在热应激期间,CLDN1、CLDN3、CLDN4和CLDN7基因在LWE中均较高,在HWE中较低。相反,CLDN15在LWE中降低,但在热应激下HWE中升高。ZO - 1在HWE品系中增加,热应激使其降低。cingulin(CGN)基因表达在HWE中低于LWE,并在热应激下低于热中性(TN)条件。间隙连接蛋白α1(GJA1)和桥粒芯糖蛋白4(DSG4)在HWE中高于LWE。钙黏蛋白1(CDH1)基因表达在TN条件下的HWE中最高,在热应激下的HWE中最低,而连环蛋白α2(CTNNA2)和桥粒芯胶蛋白1(DSC1)在热应激期间的HWE中高于所有其他组。与肠道屏障完整性相关的关键基因的这种差异表达可能导致水分利用效率表型以及这些鸡对热应激的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e841/12009728/f3a53d2b249c/fphys-16-1558201-g001.jpg

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