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排序方式: 共有1498条查询结果,搜索用时 31 毫秒
1.
哺乳动物附植前胚胎的基因表达调控 总被引:4,自引:0,他引:4
哺乳动物胚胎附植前期包括:合子的形成,胚胎基因组的激活和细胞分化的开始。在这个时期,发育由母源物质控制转为合子基因控制,在此过程,同时形成染色质介导的转录抑制时期,要解除抑制必须经过胚胎基因组的激活。通过对体内、外附植前胚胎的mRNA的表达特点以及它们与成功发育联系的研究,可以筛选出最佳的体外培养条件,设计最佳的核移植方案。 相似文献
2.
Minimal Set of Metabolic Pathways Suggested from the Genome of Onion Yellows Phytoplasma 总被引:1,自引:0,他引:1
3.
猪繁殖与呼吸综合征病毒缺失变异株的基因组特征 总被引:51,自引:1,他引:51
对猪繁殖与呼吸综合征病毒(PRRSV)分离株HB2(sh)/2002的全基因组序列进行了测定与分析。该毒株基因组全长为15373nt(不包括PolyA尾),与国内外美洲型PRRSV分离株全序列相似性介于88.7%~95.1%之间。序列分析表明,该毒株是1个天然存在缺失的变异毒株,其ORFla的Nsp2存在编码12个氨基酸的连续36个核苷酸的缺失,ORF、3存在编码1个氨基酸的3个核苷酸的缺失。这是国内外首次发现PRRSV存在缺失变异现象,研究结果补充和丰富了PRRSV毒株的基因组信息数据,为深入研究该毒株的遗传与变异及其与生物学特性的关系奠定了基础。 相似文献
4.
Osteochondrosis (OC) is an injury to cartilage canals with a following necrosis in the growth cartilage, from there it can develop to osteochondrosis dissecans (OCD). Due to its high impact in the equine industry, new insights into predisposing factors and potential high‐risk genetic variants are warranted. This article reviews advancements in quantitative and molecular genetics in refining estimation of genetic parameters and identifying predisposing genetic loci. Heritabilities were highest for hock OC with estimates at 0.29–0.46 in Hanoverian warmblood and Norwegian trotters, whereas in Thoroughbreds only very low genetic variation seemed to be present in hock OC lesions. Whole genome scans using the Illumina Equine SNP50 or SNP70 Beadchip were performed in Thoroughbred, Standardbred, French and Norwegian trotter, Hanoverian and Dutch warmblood. Validation studies in Spanish Purebred and Hanoverian warmblood horses corroborated OC risk loci on ECA 3, 14, 27 and 29. Particularly, a strong association with hock‐OCD was found for a single nucleotide polymorphism (SNP) on horse chromosome (ECA) 3 upstream to the LCORL gene. Gene expression and microRNA analyses may be helpful to understand pathophysiological processes in equine OC and to connect OCD‐associated genomic regions with potential candidate genes. Furthermore progress in elucidating the underlying genetic variants and pathophysiological changes in OC may be expected from whole genome DNA and RNA next‐generation sequencing studies. 相似文献
5.
ABSTRACT1. The objectives of the current study were to investigate the mitochondrial genome and molecular phylogeny of Lueyang black-bone chicken, and provide molecule base to preserve and explore the specific chicken strain.2. Based on sequencing and clustering, the complete mitochondrial DNA map and sequences of Lueyang black-bone chicken were revealed, and two phylogenetic trees of Lueyang black-bone chickens based on D-loop sequences and the mitochondrial genome were constructed.3. The results showed that the complete mitochondrial genome of Lueyang black-bone chickens is 16,784bp in size, consisting of 22 transfer RNA genes, two ribosomal RNA genes, 13 protein-coding genes, and one non-coding control region. The base composition of the complete mtDNA sequence is 30.28% for A, 23.78% for T, 32.42% for C, 13.52% for G. Additionally, 10 haplotypes of D-loop sequences in 32 Lueyang black-bone chickens were detected, which were distributed into 4 clades (A, B, C and E).4. It was concluded that genetic diversity is wide in Lueyang black-bone chickens, and this strain has multiple maternal origins from different regions in China and neighbouring regions. 相似文献
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7.
Improvements of TKC Technology Accelerate Isolation of Transgene-Free CRISPR/Cas9-Edited Rice Plants
He Yubing Zhu Min Wang Lihao Wu Junhua Wang Qiaoyan Wang Rongchen Zhao Yunde 《水稻科学》2019,26(2):109-117
Elimination of the CRISPR/Cas9 constructs in edited plants is a prerequisite for assessing genetic stability, conducting phenotypic characterization, and applying for commercialization of the plants. However, removal of the CRISPR/Cas9 transgenes by genetic segregation and by backcross is laborious and time consuming. We previously reported the development of the transgene killer CRISPR (TKC) technology that uses a pair of suicide genes to trigger self-elimination of the transgenes without compromising gene editing efficiency. The TKC technology enables isolation of transgene-free CRISPR-edited plants within a single generation, greatly accelerating crop improvements. Here, we presented two new TKC vectors that show great efficiency in both editing the target gene and in undergoing self-elimination of the transgenes. The new vectors replaced the CaMV35S promoter used in our previous TKC vector with two rice promoters to drive one of the suicide genes, providing advantages over our previous TKC vector under certain conditions. The vectors reported here offered more options and flexibility to conduct gene editing experiments in rice. 相似文献
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9.
天然橡胶(顺式-1,4-聚异戊二烯)是一种重要的工业原料,主要来自橡胶树。以天然橡胶的生物合成与产量形成为主要内容的产胶生物学研究为橡胶树高产遗传改良提供理论指导,近10年取得了重要进展。本文从橡胶树基因组测序、橡胶转移酶、转基因、以及转录组和蛋白质组等4个方面介绍产胶生物学研究主要进展,并讨论了相关领域研究存在的问题,对未来5~10年需重点关注的研究内容提出了建议。在介绍橡胶转移酶时,同时概述其他几种产胶植物的相关研究进展。 相似文献
10.
Recent breakthroughs in CRISPR technology allow specific genome manipulation of almost all crops and have initiated a revolution in precision crop breeding. Rationally-based regulation and widespread public acceptance are needed to propel genome-edited crops from laboratory to market and to translate this innovative technology into agricultural productivity. 相似文献