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1.
Phenolic acids are major components of cell walls in wheat and have important implications on human health as antioxidants with anti-tumor activity. Our objectives were to identify phenolic acid genes in wheat by single nucleotide polymorphisms (SNPs) detected within the coding sequences of candidate genes, and to identify chromosomal regions associated with single phenolic acids and total soluble phenolic compounds. A set of candidate genes involved in the biosynthesis of hydroxycinnamic acid derivatives were identified by comparative genomics. SNPs found in the coding sequences of six genes (PAL1, PAL2, C4H, C3H, COMT1 and COMT2) were used to determine their chromosomal location and accurate map position on two reference consensus linkage maps. The genome-wide association study (GWAS), based on genotyping a tetraploid wheat collection with 81,587 gene-associated SNPs, detected 22 quantitative trait loci (QTL) distributed on almost all durum wheat chromosomes. Two QTL for p-coumaric acid were coincident with the phenylalanine ammonia-lyase (PAL2) and p-coumarate 3-hydroxylase (C3H) genes on chromosome arms 2AL and 1AL, respectively. The availability of candidate gene-based markers can allow elucidating the mechanism of phenolic acids accumulation in wheat kernels and exploiting the genetic variability of phenolic acids content for the nutritional improvement of wheat end-products.  相似文献   
2.
本文综述了利用脂肪细胞膜免疫技术进行畜禽脂肪代谢研究的成果,其技术路线主要包括试验途径和方法、免疫机理、降脂效果及特异性脂肪膜蛋白的研究启示,从而为脂肪细胞膜免疫降脂试验提供成功的范例和科学的依据,并开辟降低脂肪、提高瘦肉率研究的新领域。  相似文献   
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AIM: To explore the role of Akt signal pathway in apoptosis of neural cells in adult rats treated with Zuogui Pill, a Chinese medicine. METHODS: Flowcytometry and Western blotting methods were used to investigate the changes of cellular apoptosis rate and Akt signal pathway. RESULTS: Monosodium glutamate (MSG) could increase cellular apoptosis rate and significantly restrained the phosphorylation of Akt (Ser473) and Akt (Thr308), and markedly increased the levels of phospho-FKHR (ser256), GSK-3β (Ser9) and PTEN. Zuogui Pill partly inhibited the above effects of MSG. CONCLUSION: Zuogui pill effectively inhibits the neural apoptosis induced by MSG, and Akt pathway is involved in the neuronal protection of Zuogui pill.  相似文献   
5.
土壤的盐化和碱化往往伴随发生,在盐碱胁迫下,植物会遭受许多类型的非生物胁迫,严重影响植物的正常生长发育.本综述首先介绍了盐碱土的分类;其次从四个方面对植物在盐碱胁迫下体内产生相应生理机制进行详细介绍;接下来以植物在盐碱胁迫下产生的钙信号为重点进行阐述,包括植物首个非离子通道型盐胁迫下离子感受器GIPCs的发现、盐碱胁迫...  相似文献   
6.
为研究几种经济红藻中茉莉酸合成途径的关键物质,实验采用液相色谱—质谱联用技术(LC-MS)对茉莉酸生物合成途径相关物质建立检测方法,并对龙须菜、坛紫菜受到机械损伤时各物质的变化情况进行检测。以100%甲醇提取茉莉酸(JA)、茉莉酸甲酯(MeJA)、12-氧-植物二烯酸(12-OPDA)和13-氢过氧化亚麻酸(13-HpOTE),利用XBridge TM C18色谱柱,以甲醇/水为流动相分离4种物质。优化条件下4种物质得到良好分离,加标回收率为81.23%~90.25%,检测限为0.04~0.56 ng/mL,灵敏度高。坛紫菜、龙须菜和真江蓠3种红藻中,坛紫菜中未检测到JA和13-HpOTE,4种物质均在另外2种藻中检测到。龙须菜受机械损伤胁迫后,4种物质在短时间内得到积累,其中13-HpOTE响应迅速。研究表明,红藻中可能存在类似于植物的茉莉酸合成途径,并参与对损伤的胁迫响应。  相似文献   
7.
睡莲叶片胎生现象是繁育途径的重要补充,对种群的传播、扩散和生态环境的适应性有重要作用。通过转录组测序技术筛选和分析睡莲叶片胎生现象相关的代谢路径和调控基因,为深入认识睡莲叶片胎生发育的分子机制提供参考。以叶片具有胎生现象的‘小花睡莲’(X)和叶片无胎生现象的‘蓝星睡莲’(L)为材料,利用RNA-Seq技术对叶片4个发育阶段的叶脐部分进行生物信息学分析。分析对照(L)和样品(X)叶片不同发育阶段测序结果:筛选出的差异表达基因(DEGs)中,34 909个基因(48.65%)表达上调,36 850个基因(51.35%)表达下调。DEGs分析显示,随着叶片的发育,X和L上调基因和下调基因数均呈增加趋势。对L1-vs-X1、L4-vs-X4阶段的GO和KEGG功能富集分析表明,DEGs主要富集在质膜和膜相关成分、胞外区域、细胞壁等相关的细胞组分中,涉及到代谢过程、生物合成和应急响应等;Pathway代谢通路表明,DEGs主要参与到植物激素信号转导、苯丙烷类生物合成、氨基酸类代谢、类黄酮生物合成、甘油磷脂类代谢以及细胞周期相关等过程。对DEGs进一步分析,克隆出了4个可能参与睡莲叶片胎生发育的转录因子。  相似文献   
8.
Intact spinach chloroplasts were used to determine if clomazone, 5-OH clomazone, and/or 5-keto clomazone inhibited the chloroplastic isoprenoid pathway. When isopentenyl pyrophosphate was used as a precursor, neither clomazone nor the clomazone metabolites (5-OH clomazone and 5-keto clomazone) inhibited the formation of products separated by HPLC in the organic phase. However, when pyruvate, a substrate for the first committed step of the pathway, was used as a precursor, both 5-keto clomazone and fosmidomycin reduced the formation of a non-polar product and increased the formation of a polar product in the organic phase. Only 5-keto clomazone, not 5-OH clomazone or clomazone, inhibited the formation of an additional product other than fosmidomycin in the aqueous phase from pyruvate incorporation. In an in vitro assay, 5-keto clomazone inhibited DXP synthase, the enzyme catalyzing the first committed step of the chloroplastic isoprenoid pathway. Therefore, our studies show that neither clomazone nor 5-OH clomazone inhibits the chloroplastic isoprenoid pathway, only 5-keto clomazone does.  相似文献   
9.
对白头翁叶斑病菌胞壁结合黑色素和胞外黑色素进行了理化性质和红外光谱扫描测定, 结果表明两者具有相似的理化性质, 均易溶于KOH、H2O2和NaClO, 不溶于水、乙醇和丙酮。红外光谱分析表明, 白头翁叶斑病菌YS-24菌株的胞壁结合黑色素与胞外黑色素为同一种类型的黑色素。DHN黑色素的特异性抑制剂—三环唑, 对白头翁叶斑病菌黑色素的产生有明显的抑制作用; 以白头翁叶斑病菌基因组DNA为模板, 通过PCR扩增, 得到了聚酮体合成酶基因的同源片段 AaPKS , 初步推断白头翁叶斑病菌黑色素合成属于DHN途径。  相似文献   
10.
AIM: To investigate the effect of SIRT1 on the autophagy of pancreatic cancer cells under hypoxia condition, and to analyze the underlying mechanism of regulating FOXO1/RAB7 signaling pathway. METHODS: Western blot and immunofluorescence methods were used to determine the expression of SIRT1 in the pancreatic cancer cells. The small interfering RNA targeting SIRT1 and SIRT1 over-expression plasmid were transfected into the pancreatic cancer Panc-1 cells. Confocal microscopy was used to detect the LC3 expression. Western blot was used to analyze the protein levels of LC3, p62 and FOXO1/RAB7 signaling pathway-related molecules. Co-immunoprecipitation was used to detected the protein interaction between SIRT1 and FOXO1. RESULTS: The expression level of SIRT1 in the nucleus of Panc-1 cells was increased under hypoxia condition. Compared with negative control under hypoxia condition, knock-down of SIRT1 expression attenuated the autophagy flux in the pancreatic cancer Panc-1 cells (P<0.05). Over-expression of SIRT1 increased the protein levels of FOXO1 and RAB7. On the contrary, knock-down of SIRT1 expression inhibited the protein levels of FOXO1 and RAB7. The protein interaction between SIRT1 and FOXO1 in the pancreatic cancer cells was observed. CONCLUSION: SIRT1 in pancreatic cancer Panc-1 cells under hypoxia condition is over-expressed in the nucleus. Down-regulation of SIRT1 inhibits autophagy and its mechanism may be related to FOXO1/RAB7 signaling pathway.  相似文献   
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