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WUSCHEL是植物干细胞命运的决定基因,在植物发育过程中WUSCHEL基因的表达决定着干细胞的形成和器官的发生.从狗蔷薇的类原球茎中克隆出其同源基因;经过对其进行蛋白质序列比对和系统发育分析,将其命名为Ra WUS基因.构建在XVE系统下的化学调控的表达载体.在该系统下,Ra WUS基因的超量表达能诱导转基因烟草根尖形成不定芽;同时显微观察表明,根部的皮层中有圆球形的分生组织干细胞团的产生.结果表明:Ra WUS基因的过量表达能够促使根的皮层中薄壁细胞转变成为分生组织干细胞而形成不定芽在根尖异位发生,说明其能够在植物的根尖中诱导茎尖分生组织干细胞的活性和发育的可塑性. 相似文献
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Ana Clara B Menezes Kacie L McCarthy Cierrah J Kassetas Friederike Baumgaertner James D Kirsch Sheri Dorsam Tammi L Neville Alison K Ward Pawel P Borowicz Lawrence P Reynolds Kevin K Sedivec J Chris Forcherio Ronald Scott Joel S Caton Carl R Dahlen 《Journal of animal science》2021,99(2)
The objective of this study was to evaluate the effects of feeding vitamin and mineral (VTM) supplement and (or) rate of gain (GAIN) during early gestation on amino acid (AA) concentrations in allantoic fluid (ALF) and amniotic fluid (AMF) and maternal serum. Seventy-two crossbred Angus heifers (initial BW = 359.5 ± 7.1 kg) were randomly assigned to one of four treatments in a 2 × 2 factorial arrangement with main effects of VTM supplement (VTM or NoVTM) and rate of gain (GAIN; low gain [LG], 0.28 kg/d, vs. moderate gain [MG], 0.79 kg/d). The VTM treatment (113 g•heifer−1•d−1, provided macro and trace minerals and vitamins A, D, and E to meet 110% of the requirements specified by the NASEM in Nutrient requirements of beef cattle. Washington, DC: The National Academies Press. doi:10.17226/19014, 2016) was initiated 71 to 148 d before artificial insemination (AI). To complete the factorial arrangement of treatments, at breeding heifers were either maintained on the basal diet (LG), or received MG diet which was implemented by adding a protein/energy supplement to the LG diet. Thirty-five gestating heifers with female fetuses were ovariohysterectomized on d 83 of gestation and maternal serum, ALF, and AMF were collected. Samples were analyzed for concentrations of neutral AA: Ala, Asn, Cys, Gln, Gly, Ile, Leu, Met, Phe, Pro, Ser, Thr, Trp, Tyr, and Val; cationic AA: Arg, His, and Lys; and anionic AA: Asp and Glu. In serum, a VTM × GAIN interaction (P = 0.02) was observed for Glu, with greater concentrations for VTM-LG than VTM-MG. Concentrations of serum Cys, Met, and Trp were greater (P ≤ 0.03) for MG than LG. In ALF, concentrations of Glu were affected by a VTM × GAIN interaction, where VTM-MG was greater (P < 0.01) than all other treatments. Further, ALF from VTM had increased (P ≤ 0.05) concentrations of His, Asp, and 12 of the 14 neutral AA; whereas GAIN affected concentrations of Arg, Cys, and Asp, with greater concentrations (P ≤ 0.05) in MG heifers. In AMF, AA concentrations were not affected (P ≥ 0.10) by VTM, GAIN, or their interaction. In conclusion, increased concentrations of AA in maternal serum and ALF of beef heifers were observed at d 83 of gestation in response to VTM supplementation and rate of gain of 0.79 kg/d, which raises important questions regarding the mechanisms responsible for AA uptake and balance between the maternal circulation and fetal fluid compartments. 相似文献
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Erin Massender Luiz F. Brito Angela Cnovas Christine F. Baes Delma Kennedy Flavio S. Schenkel 《Zeitschrift für Tierzüchtung und Züchtungsbiologie》2021,138(1):91-107
Genetic selection for carcass traits is paramount to maximize the profitability and long‐term sustainability of any meat‐producing livestock species. The main objectives of this research were to evaluate the efficiency of indicator traits for the genetic improvement of lamb carcass traits and to determine the value of including carcass traits into terminal sire selection indexes for the Canadian sheep industry. The carcass traits included hot carcass weight (HCW), fat depth at the GR site (FATGR) and average carcass conformation score (AVGCONF), and were measured on heavy lambs (slaughter age less than 365 days and HCW greater than 16.3 kg) in commercial abattoirs. Growth traits were found to be moderately efficient indicator traits for the genetic improvement of HCW but selection on ultrasound traits was necessary to substantially improve the carcass quality traits (FATGR and AVGCONF). Economic selection indexes were designed by adding various combinations of carcass traits into the Canadian Sheep Genetic Evaluation System terminal indexes. Records measured on individuals and progeny were assumed to be the sources of information for live animal and carcass traits, respectively. The changes in index accuracy, efficiency and expected correlated response were used to assess the value of their inclusion. HCW was found to have a large economic value, and its inclusion into terminal selection indexes was expected to substantially increase their accuracy (0.08–0.12 points) and efficiency (20%–30%). However, further including FATGR (measured 110 mm from the carcass midline over the 12th rib) and AVGCONF had little impact on the accuracy (≤0.03) and efficiency (1%–7%) of the proposed indexes. Thus, the inclusion of carcass traits into the existing terminal selection indexes could be beneficial for the genetic improvement of HCW, but further research is needed to determine optimal methods of increasing carcass fatness and muscularity. 相似文献
87.
分析探讨口感化及颗粒化开食料对早期断奶羔羊生长和胃肠道发育的影响。选取新生健康的双羔湖羊公羔42只,随机分为两组,分别饲喂颗粒化和口感化开食料,试验期42 d。两组羔羊21日龄之前的采食量、体重和绝对生长的变化趋势相似。21日龄以后,口感化开食料组羔羊的采食量、体重、绝对生长和相对生长均明显高于颗粒化开食料组,42日龄体重、后两周的采食量及15~21日龄的相对生长率在两组间有显著差异(P < 0.05)。口感化开食料还显著提高(P < 0.05)了羔羊42日龄时的育肥指数、体长指数、胸围指数、管围指数和断奶前的瘤胃质量和瘤胃/胴体。以上结果表明,与颗粒化开食料相比,口感化开食料更有利于羔羊早期断奶前后的瘤胃发育、采食量提高、体重和体尺的发育,但对其他胃室及肠道发育没有影响。 相似文献
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为从基因组水平上探究香猪性成熟早、产仔数少、体型小的分子机理,本研究下载与香猪在繁殖和体型性状方面有明显差异的梅山猪、杜洛克猪的重测序数据作为参照,对26头香猪、24头梅山猪和24头杜洛克猪的重测序数据进行SNPs检测和等位基因频率差值分析,筛选香猪基因组外显子上与梅山猪、杜洛克猪高度分化的SNPs位点,并使用AS-PCR方法和Sanger测序方法统计其中8个SNPs位点的群体等位基因频率。最后,对含有高度分化SNPs位点的基因进行GO功能富集和KEGG通路分析。结果显示,SNPs检测获得香猪基因组外显子上SNPs共236 710个,包括193个终止密码子丢失、1 238个终止密码子获得、90 945个错义SNPs和144 334个同义SNPs。得到1 046个香猪高度分化SNPs,包括429个错义SNPs、2个终止子丢失、6个终止子获得和609个同义SNPs,影响524个蛋白质编码基因;并发现X染色体上44-58 Mb的一段富含高度分化SNPs的热点区域。群体等位基因频率验证结果与重测序结果一致,鉴定了8个位点均为香猪与梅山猪、杜洛克猪高度分化的SNPs。对524个含有高度分化SNPs的基因进行GO和KEGG分析,富集到卵母细胞减数分裂、雌激素信号途径等繁殖相关通路;GO功能注释到细胞内雌激素受体信号、纤毛运动等繁殖相关条目,骨骼系统形态发生、骨骼发育、成骨细胞分化等体型相关条目。得到含有香猪高度分化SNPs的18个繁殖性状候选基因PTGFR、TRO、DNAH17、PKDREJ、KAT8、DNAI2、VDR、TEX14、QSOX1、AR、WNK3、ADCY3、SPEF1、MIGA2、SLC2A8、PSMF1、TBC1D20、IFT172和7个体型相关基因IBSP、NR6A1、HSPG2、TARS、PDZD2、FGF4、AMER1,可能是决定香猪性成熟早、产仔数少、体型小的关键基因。 相似文献
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