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1.
Leptin的功能较为复杂,主要调控机体能量代谢。有研究表明Leptin在卵母细胞成熟及胚胎发育过程中也具有重要作用。本研究在卵母细胞体外成熟基础培养液中添加了不同浓度的Leptin,其中未添加Leptin的设为Ⅰ组,添加10ng/mL和50ng/mL Leptin的分别设为Ⅱ组和Ⅲ组。以陕北白绒山羊皮肤成纤维细胞为供体细胞,三组体外培养成熟的卵母细胞作为受体,利用显微操作方法对成熟卵母细胞进行去核操作,然后将供体细胞注射到卵周隙内,经电融合后形成体细胞克隆胚。根据卵母细胞体外成熟率、核移植效率以及克隆胚囊胚发育率分析Leptin在山羊核移植中的作用。结果表明Ⅰ组山羊卵母细胞体外成熟率和核移植效率显著高于其他两组(P<0.05),三组克隆囊胚发育率无显著差异(P>0.05)。Leptin降低了山羊卵母细胞体外成熟和核移植效率,对克隆胚发育能力无影响。  相似文献   

2.
人-山羊异种核移植胚胎发育的初步研究   总被引:2,自引:0,他引:2  
以体外分离培养的人胚胎成纤维细胞为核供体,经血清饥饿培养后,通过显微操作技术移入山羊去核卵母细胞中,采用化学方法激活重组胚.通过体外培养观察,2-细胞胚胎发育率可达51.33%,4-细胞发育率为31.42%,但发育至桑椹胚阶段的胚胎数目大大减少,仅为9.73%.虽然目前尚未能获得异种核移植囊胚,但实验结果说明山羊成熟卵母细胞可以支持人体细胞核完成重编程,人-山羊异种体细胞核移植重组胚可在体外完成其早期发育.  相似文献   

3.
利用含有红色荧光和Neor基因双选择标记的IGF1毛囊特异表达载体pCDsR-KI转染绒山羊胎儿成纤维细胞,经G418筛选获得具有红色荧光的IGF1转基因细胞.核移植操作前,通过比较卵母细胞体外成熟培养不同时间的成熟率以及核与极体的距离,确定20h为绒山羊卵母细胞的最佳成熟时间.比较了不同激活方法和培养体系对孤雌胚激活效率和孤雌胚早期发育的影响,结果表明:IA23187+6-DMAP组的激活效率和囊胚率(88.7%&21.6%)均稍高于乙醇+6-DMAP组(86.4%&20.4%),但二组相应数据之间差异均不显著(P〉0.05),选择前者作为转基因核移植胚的激活方案;SOFaa和CR1aa两种体外培养体系中,孤雌胚卵裂率(86.8%vs83.9%)和囊胚率(23.1%vs17.2%)均差异不显著(P〉0.05),选择结果较好的SOFaa组.比较了不同电融合参数的融合效果,结果表明:190V/mm处理组结果(62.4%)显著高于130V/mm(32.8%)和200V/mm(42.9%)组(P〈0.05).通过T-SCNT获得转基因重构胚胎203枚,48h卵裂率为79.3%(161/203),第7~9天囊胚发育率为15.3%(31/203).所得到的31枚囊胚中,较强表达红色荧光蛋白的囊胚数为17枚(阳性率为54.8%).随机挑选两枚红色荧光囊胚以PCR法进行鉴定,结果全部为转基因阳性.以上结果显示:(i)表达载体的红色荧光蛋白和Neor基因可以正常表达可获取转基因细胞和阳性转基因胚胎;(ii)所制备转基因囊胚仍有部分不表达红色荧光蛋白,说明即使选择转基因阳性细胞进行核移植所得囊胚也并非全部为转基因阳性,在囊胚期进一步筛选是必要的;(iii)通过TSCNT操作及优化,成功获得了表达红色荧光并同时转有IGF1基因的绒山羊胚胎,为绒山羊的转基因研究提供基础数据.  相似文献   

4.
成年耳细胞克隆山羊(Capra hircus)   总被引:32,自引:2,他引:30  
繁殖季节采集关中奶山羊卵巢,采集获得可用卵母细胞5.5枚/卵巢(1815/330).经约20 h 成熟培养,第一极体排放率66.17%(1201/1815).将有类第二极体排出结构的成熟卵母细胞去核,去核率75.44%(906/1201).培养济宁青山羊耳部皮肤成纤维细胞传2代后液氮冷冻,解冻培养3~6代,用0.5% FBS饥饿2~10 d作为供体细胞.利用卵母细胞胞质内注射法将分离的供体细胞核胞体注入到去核卵母细胞内,注核成功率98.12%(889/906).克隆胚胎用5μmol/L 离子酶素激活4.5 min, 在含2 mmol/L 6-二甲氨基嘌呤(6 dime-thylaminopurine,6-DMAP)的培养液中培养3 h,然后在mCR1aaBF培养液中培养36 h,卵裂率76.69%(645/841).其中由未经冷藏处理供体细胞克隆得到308枚胚胎,激活后卵裂率、4-细胞发育率、囊胚发育率分别为68.5%(211/308),59.72%(126/211)和17.46% (22/126);另外,由4℃冷藏处理24h供体细胞获得的109枚克隆胚胎,激活率、4-细胞率、囊胚率分别为72.48%(79/109),53.16%(42/79)和19.05%(8/42).统计学分析表明,4℃处理供体细胞对克隆胚胎的早期发育没有显著影响.将102枚发育至4-细胞期的克隆胚胎移植到17只自然发情2~3 d 的受体山羊输卵管,其中非冷藏供体细胞克隆的84枚胚胎移植后没有产仔.18枚冷藏体细胞克隆的胚胎移植获得1只发育足月的克隆山羊.将冷藏或非冷藏处理供体细胞克隆得到的19枚体外发育囊胚移植到自然发情6~8 d 的受体山羊,结果无一产仔.未经冷藏处理供体细胞克隆得到的18枚体外发育桑椹胚移植到自然发情5 d受体山羊后获得1只足月羔羊.微卫星引物PCR扩增结果证实2只克隆山羊来源于同一供体细胞.  相似文献   

5.
Zhang P  Yang ZZ  Dou HW  Li WH  Lv B  Bolund L  DU YT  Tan PP  Ma RL 《遗传》2011,33(5):527-532
通过体细胞核移植(Somatic cell nuclear transfer,SCNT)培育转基因动物新个体是当前被广泛使用的技术之一,但其生产成本高和转基因囊胚形成率低在很大程度上制约了该技术的应用。文章报告对该技术的一些改进以提高其成功率并降低成本。首先将增强型绿色荧光基因(EGFP)导入猪胎儿成纤维细胞中,通过荧光观察EGFP的表达来筛选适合做细胞核移植的体细胞。这样避免了外源EGFP基因虽已整合至猪基因组但不表达的情况,保证供体细胞100%是表达目标蛋白(绿色荧光蛋白)的细胞;然后利用新一代体细胞核移植技术——手工克隆技术(Handmade cloning,HMC)将供体细胞与卵母细胞融合生产胚胎。共收集了4个批次378个肉用家猪的卵母细胞,经体外培养成熟后手工去核得到266个去核卵母细胞,与EGFP细胞融合后获得127个重构胚胎,将重构胚胎体外培养到144 h,得到转基因囊胚65个,平均囊胚率为52.1±8.3%。与传统SCNT相比,HMC不仅操作简便,而且能大幅提高核移植细胞的囊胚率。更为重要的是,改进的手工克隆技术摆脱了昂贵的显微操作仪,为产业化生产转基因动物提供了新的实用基础。  相似文献   

6.
通过体细胞核移植技术制作了人胰岛素原转基因牛。在CMV启动子指导下以内部核糖体进入位点序列(IRES)连接的新霉素抗性基因和绿色荧光蛋白基因组成了双重标记基因的筛选系统,用于转基因细胞的富集以及细胞和植入前胚胎的筛选。转基因通过电穿孔的方法(900V/cm,5ms)转入体外培养的牛胎儿成纤维细胞,基因转染细胞在添加G418 (800μg/mL)的培养基中培养10天以富集转基因细胞。选择表达绿色荧光蛋白的转基因细胞作为核供体进行体细胞核移植,重构胚经体外培养至囊胚阶段,选择表达绿色荧光蛋白的囊胚进行胚胎移植。为比较基因转染以及供体细胞所处周期对转基因细胞核移植胚胎发育的影响,用作核移植供体的转基因细胞或非转基因细胞先饥饿培养2—4天(0.5 ?S) ,然后恢复培养(10?S) 10 h使细胞同步化于G1期,以正常培养的细胞作为对照进行核移植。结果表明,转基因细胞作为核供体得到的核移植胚胎的体外囊胚发育率低于以非转基因细胞为核供体的对照组(23.2% VS 35.2 %,P<0.05) ;转基因细胞周期同步化处理与否对其克隆胚囊胚发育率无显著影响(23.2% VS 18.9 %,P>0.05)。胚胎移植后2个月直肠检查发现7头受体牛(每头移植2—4枚胚胎)中有一头妊娠,并最终发育足月产下一头小牛。聚合酶链反应(PCR)检测和DNA测序分析表明其为转人胰岛素原基因的转基因克隆牛。  相似文献   

7.
体外培养成熟的卵母细胞是进行克隆猪研究所需受体卵母细胞的主要来源, 卵母细胞成熟质量与体细胞核移植胚胎发育能力关系密切. 为提高卵母细胞体外成熟率和成熟质量, 进而提高体细胞核移植猪的成功率, 本实验以改进的TCM199培养液为基础液(T), 分别添加10%的猪卵泡液(T+pFF)和 10%的胎牛血清(T+FBS)后进行卵母细胞成熟培养, 以成熟率和体细胞核移植胚胎发育率等重要指标为标准, 研究了pFF和FBS对卵母细胞成熟及核移植胚胎发育能力的影响. T, T+pFF和T+FBS组在成熟培养后42 h卵母细胞成熟率分别为(53.2±3.8)%, (69.7±3.8)%和(70.2±3.7)%, 添加10%的pFF和FBS显著(P<0.05)提高了卵母细胞成熟率; 3组不同成熟培养液获得的成熟卵母细胞在体细胞核移植后囊胚发育率差异不显著, 但T+pFF组的囊胚细胞数(34.5±2.24)显著(P<0.05)高于T组的囊胚细胞数(26.6±1.25). 来自T+pFF组的体细胞核移植胚胎经手术法移植入发情周期为第0天或第1天的18头受体母猪输卵管, 其中有3头受体母猪妊娠发育到期, 获得克隆民猪14头, 其中有6头健康成活至今. 实验结果表明, 培养液中添加10%pFF可以有效提高卵母细胞成熟比例和成熟质量, 在含有10% pFF培养液中获得的成熟卵母细胞具有支持核移植胚胎全程发育的能力.  相似文献   

8.
体外培养成熟的卵母细胞是进行克隆猪研究所需受体卵母细胞的主要来源, 卵母细胞成熟质量与体细胞核移植胚胎发育能力关系密切. 为提高卵母细胞体外成熟率和成熟质量, 进而提高体细胞核移植猪的成功率, 本实验以改进的TCM199培养液为基础液(T), 分别添加10%的猪卵泡液(T+pFF)和 10%的胎牛血清(T+FBS)后进行卵母细胞成熟培养, 以成熟率和体细胞核移植胚胎发育率等重要指标为标准, 研究了pFF和FBS对卵母细胞成熟及核移植胚胎发育能力的影响. T, T+pFF和T+FBS组在成熟培养后42 h卵母细胞成熟率分别为(53.2±3.8)%, (69.7±3.8)%和(70.2±3.7)%, 添加10%的pFF和FBS显著(P<0.05)提高了卵母细胞成熟率; 3组不同成熟培养液获得的成熟卵母细胞在体细胞核移植后囊胚发育率差异不显著, 但T+pFF组的囊胚细胞数(34.5±2.24)显著(P<0.05)高于T组的囊胚细胞数(26.6±1.25). 来自T+pFF组的体细胞核移植胚胎经手术法移植入发情周期为第0天或第1天的18头受体母猪输卵管, 其中有3头受体母猪妊娠发育到期, 获得克隆民猪14头, 其中有6头健康成活至今. 实验结果表明, 培养液中添加10%pFF可以有效提高卵母细胞成熟比例和成熟质量, 在含有10% pFF培养液中获得的成熟卵母细胞具有支持核移植胚胎全程发育的能力.  相似文献   

9.
为了探索转基因体细胞核经连续核移植后的发育潜力,以转人组织型纤溶酶原激活剂(t-PA)指形区缺失基因的山羊胎儿成纤维细胞为核供体,MII期的卵母细胞质为核受体,利用胞质内注射法构建原代核移胚胎(G0),并进行了原代核移植胚胎的继代核移植研究。比较原代和继代核移植胚胎在体外发育能力上的差异;在G1、G2代核移植试验过程中,比较了供体胚胎细胞的发育阶段对核移植胚胎体外发育的影响。结果表明,原代核移植胚胎的卵裂率(76.45%±1.17%)与继代核移植胚胎的卵裂率(72.18%±1.97%,76.05%±2.38%,75.99%±2.84%)无显著性差异(P>0.05)。但原代核移植胚胎的桑葚胚率(47.20%±2.93%)、囊胚率(11.00%±1.42%)显著高于G1、G2、G3代核核移植胚胎的桑葚胚率(34.99%±2.66%,28.23%±2.00%,23.34%±1.99%)、囊胚率(3.87%±0.67%,2.08%±1.66%,0);在G1、G2中,当用16-细胞期核移植胚胎作为核供体时的桑葚胚率(29.57%±1.53%,24.43%±1.87%)、囊胚率(1.96%±1.31%,2.01%±1.34%)低于用32~64-细胞时期的核移植胚胎的桑葚胚率(34.32%±1.31%,29.76%±1.66%)、囊胚率(3.86%±1.03%,3.48%±0.34%),但无显著性差异(P>0.05)。由此得出结论:转基因体细胞核移植胚胎不宜进行多代克隆;胞质内注射法构建核移植胚胎,用32~64-细胞期的胚胎作为核供体构建的核移植胚胎的体外发育率高于用16-细胞期的胚胎作为核供体构建的核移植胚胎的体外发育率。  相似文献   

10.
通过体细胞核移植技术制作了人胰岛素原转基因牛。在CMV启动子指导下以内部核糖体进入位点序列(IRES)连接的新霉素抗性基因和绿色荧光蛋白基因组成了双重标记基因的筛选系统,用于转基因细胞的富集以及细胞和植入前胚胎的筛选。转基因通过电穿孔的方法(900 V/cm, 5 ms)转入体外培养的牛胎儿成纤维细胞,基因转染细胞在添加G418(800 μg/mL) 的培养基中培养10天以富集转基因细胞。选择表达绿色荧光蛋白的转基因细胞作为核供体进行体细胞核移植,重构胚经体外培养至囊胚阶段,选择表达绿色荧光蛋白的囊胚进行胚胎移植。为比较基因转染以及供体细胞所处周期对转基因细胞核移植胚胎发育的影响,用作核移植供体的转基因细胞或非转基因细胞先饥饿培养2—4天(0.5% FBS),然后恢复培养(10% FBS)10?h使细胞同步化于G1期,以正常培养的细胞作为对照进行核移植。 结果表明,转基因细胞作为核供体得到的核移植胚胎的体外囊胚发育率低于以非转基因细胞为核供体的对照组(23.2% VS 35.2%, P<0.05);转基因细胞周期同步化处理与否对其克隆胚囊胚发育率无显著影响(23.2% VS 18.9%, P>0.05)。胚胎移植后2个月直肠检查发现7头受体牛(每头移植2—4枚胚胎)中有一头妊娠,并最终发育足月产下一头小牛。聚合酶链反应(PCR)检测和DNA测序分析表明其为转人胰岛素原基因的转基因克隆牛。  相似文献   

11.
Transgenic animal mammary gland bioreactors are used to produce recombinant proteins with appropri-ate post-translational modifications.The nuclear transfer of transgenic somatic cells is a powerful method to pro-duce mammary gland bioreactors.We established an effi-cient gene transfer and nuclear transfer approach in goat somatic cells.Gene targeting vector pGBC2LF was con-structed by cloning human lactoferrin (LF) gene cDNA into exon 2 of the milk goat beta-casein gene and the endogenous start codon was replaced by that of human LF gene.Goat fetal fibroblasts were transfected with lin-earized pGBC2LF and 14 cell lines were positive accord-ing to PCR and Southern blot.The transgenic cells were used as donor cells of nuclear transfer and some of recon-structed embryos could develop into blastocyst in vitro.  相似文献   

12.
Transgenic animal mammary gland bioreactors are used to produce recombinant proteins with appropriate post-translational modifications. The nuclear transfer of transgenic somatic cells is a powerful method to produce mammary gland bioreactors. We established an efficient gene transfer and nuclear transfer approach in goat somatic cells. Gene targeting vector pGBC2LF was constructed by cloning human lactoferrin (LF) gene cDNA into exon 2 of the milk goat beta-casein gene and the endogenous start codon was replaced by that of human LF gene. Goat fetal fibroblasts were transfected with linearized pGBC2LF and 14 cell lines were positive according to PCR and Southern blot. The transgenic cells were used as donor cells of nuclear transfer and some of reconstructed embryos could develop into blastocyst in vitro. __________ Translated from Hereditas (Beijing), 2006, 28(12): 1513–1519 [译自: 遗传]  相似文献   

13.
Combining gene targeting of animal somatic cells with nuclear transfer technique has provided a powerful method to produce transgenic animal mammary gland bioreactor. The objective of this study is to make an efficient and reproducible gene targeting in goat fetal fibroblasts by inserting the exogenous htPAm cDNA into the beta-casein locus with liposomes or electroporation so that htPAm protein might be produced in gene-targeted goat mammary gland. By gene-targeting technique, the exogenous htPAm gene was inserted to milk goat beta-casein gene sequences. Fetal fibroblasts were isolated from Day 35 fetuses of Guanzhong milk goats, and transfected with linear gene-targeting vector pGBC4htPAm using Lipefectamin-2000 and electoporation, respectively. Forty-eight gene-targeted cell colonies with homologous recombination were obtained, and three cell colonies were verified by DNA sequence analysis within the homologous recombination region. Using gene-targeted cell lines as donor cells for nuclear transfer, a total of 600 reconstructed embryos had been obtained, and 146 developed cloned embryos were transferred to 16 recipient goats, and finally three goats showed pregnancy at Day 90.  相似文献   

14.
ht-Pam基因在山羊β-酪蛋白基因座定位整合的研究   总被引:6,自引:0,他引:6  
利用体细胞基因打靶与核移植技术制备动物乳腺生物反应器是当今转基因定位整合表达的一种新技术。分别克隆山羊的β-酪蛋白基因5′调控区的6.3kb片段,外显子7、外显子8和9三个基因片段,并与克隆的人tPA突变体cDNA一起构建了含有neo和tk正负筛选标记基因的β-酪蛋白基因打靶载体PGBC4tPA,并验证了neo基因、tk基因以及Cre-LoxP系统的有效性。将线性化的PGBC4tPA通过电转染整合到山羊胎儿成纤维细胞基因组中,利用G418和GANC进行抗性细胞克隆的药物筛选,初步获得抗性细胞克隆244个,PCR检测后获得阳性细胞克隆31个,其中初步验证2个细胞克隆转植基因整合位点重组后的基因序列正确,并且该细胞克隆能够有效扩增。这为下一步基因打靶体细胞核移植制备山羊乳腺生物反应器奠定了基础。  相似文献   

15.
16.
Park KW  Choi KM  Hong SP  Han GS  Yoo JY  Jin DI  Seol JG  Park CS 《Theriogenology》2008,70(9):1431-1438
We used nuclear transfer (NT) to develop transgenic female pigs harboring goat beta-casein promoter/human granulocyte-macrophage colony stimulating factor (hGM-CSF). The expression of hGM-CSF was specific to the mammary gland, and the glycosylation-derived size heterogeneity corresponded to that of the native human protein. Although various cell types have been used to generate cloned animals, little is currently known about the potential use of fibroblasts derived from a cloned fetus as donor cells for nuclear transfer. The developmental potential of porcine cloned fetal fibroblasts transfected with hGM-CSF was evaluated in the present study. Cloned fetal fibroblasts were isolated from a recipient following the transplantation of NT embryos. The cells were transfected with both hGM-CSF and the neomycin resistance gene in order to be used as donor cells for NT. Reconstructed embryos were implanted into six sows during estrus; two of the recipient sows delivered seven healthy female piglets with the hGM-CSF gene (confirmed with PCR and fluorescent in situ hybridization) and microsatellite analysis confirmed that the clones were genetically identical to the donor cells. The expression of hGM-CSF was strong in the mammary glands of a transgenic pig that died a few days prior to parturition (110 d after AI). These results demonstrated that somatic cells derived from a cloned fetus can be used to produce recloned and transgenic pigs.  相似文献   

17.
《Theriogenology》2009,71(9):1431-1438
We used nuclear transfer (NT) to develop transgenic female pigs harboring goat beta-casein promoter/human granulocyte-macrophage colony stimulating factor (hGM-CSF). The expression of hGM-CSF was specific to the mammary gland, and the glycosylation-derived size heterogeneity corresponded to that of the native human protein. Although various cell types have been used to generate cloned animals, little is currently known about the potential use of fibroblasts derived from a cloned fetus as donor cells for nuclear transfer. The developmental potential of porcine cloned fetal fibroblasts transfected with hGM-CSF was evaluated in the present study. Cloned fetal fibroblasts were isolated from a recipient following the transplantation of NT embryos. The cells were transfected with both hGM-CSF and the neomycin resistance gene in order to be used as donor cells for NT. Reconstructed embryos were implanted into six sows during estrus; two of the recipient sows delivered seven healthy female piglets with the hGM-CSF gene (confirmed with PCR and fluorescent in situ hybridization) and microsatellite analysis confirmed that the clones were genetically identical to the donor cells. The expression of hGM-CSF was strong in the mammary glands of a transgenic pig that died a few days prior to parturition (110 d after AI). These results demonstrated that somatic cells derived from a cloned fetus can be used to produce recloned and transgenic pigs.  相似文献   

18.
在对山羊体细胞进行外源基因转染过程中,无论电击法或脂质体法所得到的细胞克隆都有细胞过快衰老的现象。山羊体细胞转基因后出现细胞体积增大、细胞核膨大并逐步分裂成多核、细胞质空泡化和吐核等衰老的表型特征。转基因后衰老细胞的染色体核型正常,但经细胞染色体端粒长度的Southern检测发现,转基因衰老细胞比原代胎儿成纤维细胞染色体端粒长度减少了2.56 kb,超出了正常传代40代的细胞的衰老速度,但转基因衰老细胞仍能支持核移植克隆胚胎的早期发育。  相似文献   

19.
Gui T  Zhang M  Chen J  Zhang Y  Zhou N  Zhang Y  Tao J  Sui L  Li Y  Liu Y  Zhang X  Zhang Y 《Biotechnology letters》2012,34(8):1445-1452
A vector expressing human lysozyme (pBC1-hLYZ-GFP-Neo) was evaluated for gene and protein expression following liposome-mediated transformation of C-127 mouse mammary cancer cells. Cultures of G418-resistant clones were harvested 24-72 h after induction with prolactin, insulin and hydrocortisone. Target gene expression was analyzed by RT-PCR and Western blot and recombinant human lysozyme (rhLYZ) bacteriostatic activity was also evaluated. The hLYZ gene was correctly transcribed and translated in C-127 cells and hLYZ inhibited gram-positive bacterial growth, indicating the potential of this expression vector for development of a mammary gland bioreactor in goats. Guanzhong dairy goat skin fibroblasts transfected with pBC1-hLYZ-GFP-Neo were used to construct a goat embryo transgenically expressing rhLYZ by somatic nuclear transplantation with a blastocyst rate of 9.0 ± 2.8 %. These data establish the basis for cultivation of mastitis-resistant hLYZ transgenic goats.  相似文献   

20.
Transposon systems are widely used for genetic engineering in various model organisms. PiggyBac (PB) has recently been confirmed to have highly efficient transposition in the mouse germ line and mammalian cell lines. In this study, we used a modified PB transposon system mediated by PB transposase (PBase) mRNA carrying the human lactoferrin gene driven by bovine β-casein promoter to transfect bovine mammary epithelial cells (BMECs), and the selectable reporter in two stable transgenic BMEC clones was removed using cell-permeant Cre recombinase. These reporter-free transgenic BMECs were used as donor cells for somatic cell nuclear transfer (SCNT) and exhibited a competence of SCNT embryos similar to stable transgenic BMECs and nontransgenic BMECs. The comprehensive information from this study provided a modified approach using an altered PB transposon system mediated by PBase mRNA in vitro and combined with the Cre/loxP system to produce transgenic and selectable reporter-free donor nuclei for SCNT. Consequently, the production of safe bovine mammary bioreactors can be promoted.  相似文献   

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