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21.
郑均宝  刘玉军 《植物研究》1993,13(3):268-275
选择易产生不定根的绿豆下胚轴做试验材料,研究乙烯在不定根形成中的作用。试验指出,乙烯利和乙烯气体在低浓度下(1—5mgL~(-1))促进或不抑制不定根的形成,随着浓度增加,抑制作用加强。IBA促进不定根形成的作用十分显著。IBA和乙烯相结合的试验说明,两者的作用似乎是独立的。可以设想,存在一个适于生根的低内源乙烯的界限,超过这个界限,抑制不定根形成。  相似文献   
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Common potato (Solanum tuberosum L.) and its wild relatives belong to Solanum section Petota. This section's phylogeny and species delimitation are complicated due to various ploidy levels, high heterozygosity, and frequent interspecific hybridization. Compared to the nuclear genome, the plastid genome is more conserved, has a haploid nature, and has a lower nucleotide substitution rate, providing informative alternative insights into the phylogenetic study of section Petota. Here, we analyzed 343 potato plastid genomes from 53 wild and four cultivated species. The diversity of sequences and genomes was comprehensively analyzed. A total of 24 species were placed in a phylogenetic tree based on genomic data for the first time. Overall, our results not only confirmed most existing clades and species boundaries inferred by nuclear evidence but also provided some distinctive species clade belonging and the maternally inherited evidence supporting the hybrid origin of some species. Furthermore, the divergence times between the major potato clades were estimated. In addition, the species discriminatory power of universal barcodes, nuclear ribosomal DNA, and whole and partial plastid genomes and their combinations were thoroughly evaluated; the plastid genome performed best but had limited discriminatory power for all survey species (40%). Overall, our study provided not only new insights into phylogeny and DNA barcoding of potato but also provided valuable genetic data resources for further systematical research of Petota.  相似文献   
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玉米种子萌发成苗不同阶段需水阈值的研究   总被引:7,自引:0,他引:7  
用渗透势不同的聚乙二醇(PEG)6000模拟外界环境水分条件,对玉米不同品种的种子在萌动、萌发及成苗三个阶段需水的量化研究表明,种苗的抗旱性随吸水进程的推进而减弱;种子在萌动、萌发及胚芽伸长至一定长度的时间(t)与外界环境水势(w)之间存在着1/t=a+bw的关系,据此推算出不同品种在不同成苗阶段的需水阈值,发现不同品种在同一成苗过程中对环境水分条件的反应不同,它们的抗旱性也不同。  相似文献   
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利用单克隆抗体免疫磁珠吸附方法分离脐血CD34+细胞,并观察了IL3/GMCSF融合蛋白(PIXY321)对脐血CD34+细胞的刺激作用。PIXY321对脐血CD34+细胞扩增作用大于IL3和GMCSF单独及联合应用。在液体培养条件下,每毫升20ngPIXY321可有效地扩增脐血造血祖细胞,适宜扩增时间为5-8天,扩增后造血祖细胞的数量可达扩增前的8-10倍,从而初步建立了一种简单可行的脐血造血细胞扩增方法。  相似文献   
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本研究对四年生杉木半同胞子代林49个家系的遗传测定结果表明:树高、胸径、冠幅等性状呈高度遗传;枝粗、枝数等性状呈弱度遗传;枝数与大多性状间呈不显著遗传负相关;树高、胸径之间遗传相关显著;冠幅、年轮盘数、枝粗及枝长四者之间遗传相关极显著;该四性状与高、径之间呈极显著遗传相关.采用综合指数选择摸式得指数方程为I=1.647P1 2.993P2 1.522P3 0.086P4-0.ll7P5-1.779P6-1.995P7,据此选出遗传型最佳家系,并分析了综合指数选择法的合理性和有效性.  相似文献   
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Hyperosmolarity plays an essential role in the pathogenesis of diabetic tubular fibrosis. However, the mechanism of the involvement of hyperosmolarity remains unclear. In this study, mannitol was used to evaluate the effects of hyperosmolarity on a renal distal tubule cell line (MDCK). We investigated transforming growth factor‐β receptors and their downstream fibrogenic signal proteins. We show that hyperosmolarity significantly enhances the susceptibility to exogenous transforming growth factor (TGF)‐β1, as mannitol (27.5 mM) significantly enhanced the TGF‐β1‐induced increase in fibronectin levels compared with control experiments (5.5 mM). Specifically, hyperosmolarity induced tyrosine phosphorylation on TGF‐β RII at 336 residues in a time (0–24 h) and dose (5.5–38.5 mM) dependent manner. In addition, hyperosmolarity increased the level of TGF‐β RI in a dose‐ and time‐course dependent manner. These observations may be closely related to decreased catabolism of TGF‐β RI. Hyperosmolarity significantly downregulated the expression of an inhibitory Smad (Smad7), decreased the level of Smurf 1, and reduced ubiquitination of TGF‐β RI. In addition, through the use of cycloheximide and the proteasome inhibitor MG132, we showed that hyperosmolarity significantly increased the half‐life and inhibited the protein level of TGF‐β RI by polyubiquitination and proteasomal degradation. Taken together, our data suggest that hyperosmolarity enhances cellular susceptibility to renal tubular fibrosis by activating the Smad7 pathway and increasing the stability of type I TGF‐β receptors by retarding proteasomal degradation of TGF‐β RI. This study clarifies the mechanism underlying hyperosmotic‐induced renal fibrosis in renal distal tubule cells. J. Cell. Biochem. 109: 663–671, 2010. © 2010 Wiley‐Liss, Inc.  相似文献   
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Cholesterol is essential in establishing most functional animal cell membranes; cells cannot grow or proliferate in the absence of sufficient cholesterol. Consequently, almost every cell, tissue, and animal tightly regulates cholesterol homeostasis, including complex mechanisms of synthesis, transport, uptake, and disposition of cholesterol molecules. We hypothesize that cellular recognition of cholesterol insufficiency causes cell cycle arrest in order to avoid a catastrophic failure in membrane synthesis. Here, we demonstrate using unbiased proteomics and standard biochemistry that cholesterol insufficiency causes upregulation of prohibitin, an inhibitor of cell cycle progression, through activation of a cholesterol‐responsive promoter element. We also demonstrate that prohibitin protects cells from apoptosis caused by cholesterol insufficiency. This is the first study tying cholesterol homeostasis to a specific cell cycle regulator that inhibits apoptosis. J. Cell. Biochem. 111: 1367–1374, 2010. © 2010 Wiley‐Liss, Inc.  相似文献   
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