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AHCYL1基因mRNA表达和遗传变异对三穗鸭蛋壳品质的影响 被引量:1
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作者 杨英仓 谭光辉 张依裕 《基因组学与应用生物学》 CAS CSCD 北大核心 2022年第9期1862-1869,共8页
本研究旨在探讨S-腺苷基同型半胱氨酸水样蛋白1基因(AHCYL1)mRNA表达和遗传变异与鸭蛋壳品质的相关性。采用实时荧光定量PCR检测AHCYL1基因mRNA组织表达谱,结果表明:在三穗鸭[麻鸭属(Tadorna)蛋用品种之一]12个组织中均检测到AHCYL1基因... 本研究旨在探讨S-腺苷基同型半胱氨酸水样蛋白1基因(AHCYL1)mRNA表达和遗传变异与鸭蛋壳品质的相关性。采用实时荧光定量PCR检测AHCYL1基因mRNA组织表达谱,结果表明:在三穗鸭[麻鸭属(Tadorna)蛋用品种之一]12个组织中均检测到AHCYL1基因mRNA的表达,其中子宫部和肝脏表现出高度特异性表达,表达量依次为子宫>肝脏>大脑>十二指肠>腿肌>肺>腺胃>胸肌>心脏>肾脏>脾脏>肌胃,子宫部的表达量与蛋壳强度和蛋壳重呈显著正相关(P<0.05);聚合酶链式反应(PCR)结合直接测序法鉴定AHCYL1基因SNP位点,发现3个SNPs,分别为位于内含子1的g.169244 A>T、g.169265 T>C突变和外显子6的g.172066 G>A同义突变,g.169244 A>T突变位点TT基因型的蛋壳强度显著高于AT和AA基因型的(P<0.05),AA基因型个体的蛋壳重显著低于AT和TT基因型的(P<0.05),TT和AT基因型的mRNA表达水平显著高于AA基因型的(P<0.05);g.169265 T>C位点TT基因型的蛋壳强度显著高于CC基因型的(P<0.05);g.169265 T>C位点TT基因型和g.172066 G>A位点GG基因型的mRNA表达水平最高,但与其他两种基因型的差异未达到显著水平(P>0.05)。研究结果揭示了g.169244 A>T和g.169265 T>C位点可能作为提高蛋壳强度的选择标记。 展开更多
关键词 三穗鸭 ahcyl1基因 MRNA表达 SNP 蛋壳品质
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Redox state of NAD modulates the activation of Na-bicarbonate cotransporter NBCe1-B via IRBIT and L-IRBIT
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作者 Tianxiang Gui Ying Liu +8 位作者 Mingfeng Fu Han Wu Pan Su Xuhui Feng Mengmeng Zheng Zixuan Huang Xudong Luo Walter F.Boron Li-Ming Chen 《Science China(Life Sciences)》 2025年第5期1452-1462,共11页
Nicotinamide adenine dinucleotide(NAD)is well known as a coenzyme involved in many redox reactions in cellular energy metabolism,or as a substrate for many NAD+-consuming enzymes,including those that generate the seco... Nicotinamide adenine dinucleotide(NAD)is well known as a coenzyme involved in many redox reactions in cellular energy metabolism,or as a substrate for many NAD+-consuming enzymes,including those that generate the second messenger cyclic ADP-ribose or deacetylate proteins(e.g.,histones).The role of NAD in non-catalytic proteins is poorly understood.IRBIT and L-IRBIT(the IRBITs)are two cytosolic proteins that are structurally related to dehydrogenases but lack catalytic activity.Instead,by interacting directly with their targets,the IRBITs modulate the function of numerous proteins with important roles,ranging from Ca2+signaling and intracellular pH(pHi)regulation to DNA metabolism to autophagy.Among the targets of the IRBITs is the Na+-HCO3−cotransporter NBCe1-B,which plays a central role in intracellular pH(pHi)regulation and epithelial electrolyte transport.Here,we demonstrate that NAD modulates NBCe1-B activation by serving as a cofactor of IRBIT or L-IRBIT.Blocking NAD salvage pathway greatly decreases NBCe1-B activation by the IRBITs.Administration of the oxidized form NAD+enhances,whereas the reduced form NADH decreases NBCe1-B activity.Our study represents the first example in which the redox state of NAD,via IRBIT or L-IRBIT,modulates the function of a membrane transport protein.Our findings reveal a new role of NAD and greatly expand our understanding of NAD biology.Because the NAD redox state fluctuates greatly with metabolic status,our work provides insight into how,via the IRBITs,energy metabolism could affect pHi regulation and many other IRBIT-dependent processes. 展开更多
关键词 IRBIT NAD acid-base transporter NBCe1 SLC4A4 ahcyl1 AHCY
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