849 resultados para Conon, fl. 36 B.C.-17 A.D.
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本文通过LnCl_3·nTHF和[C_5H_4(SiMe_3)]Na反应得到了两类配合物[C_5H_4(SiMe_3)] LnCl_2·nTHF (Ln = Nd,Sm,Gd;n = 0,1,2)、[C_5H_4(SiMe_3)] LnCl_2·HCl·nTHF (Ln = Nd,Sm,Gd;n = 1,2)。通过元素分析、红外分析、质谱、核磁共振和热重分析确定了配合物的分子组成,特别是带氯化氢的产品在红外光谱中有1250 cm~(-1),835 cm~(-1),748 cm~(-1)自的三甲基硅基特征吸收峰。对氯化稀上进行了结构分析,结果发现LnCl_3·4THF (Ln = Sm,Gd)是与NdCl_3·4THF之间存在着变态关系。GdCl_3·4THF。晶体属单斜晶系,空间群为P21/C,晶胞参数为a = 30.765(7),b = 8.219(3),C = 17.534(3)A~·,β = 93.71(2)°;SmCl_3·4THF。晶体属单斜晶系,空间群为P21/C,晶胞参数为a = 30.921(13),b = 8.287(7),C = 17.665(8),β = 94.17(4)°。LnCl_3·4THF的单位晶胞中存在着八个分子,每对分子互相等同,但每对分子内部两个分子之间互不等同。SmCl_3·2THF·DME晶体属单斜晶系,空间群为P21/a,晶胞参数为a = 13.547(8),b = 8.607(4),C = 16.029(9)A°,β = 90.53(5)°。铲原子与三个氯原子。两个四氢呋喃中的氧原子以及DME中的两个氧原子键合,形成七配位的配合物,但是配位多面体不是理想的五角双锥,而是形成了比五角双锥(D_(5h))对称性更低的多面体(C_(3v))。它能看作是在正八面体的一个面的中心加上第七个原子的结果,而且这八面体主要受到决定上述那个面的三个原子伸展开的畸变。在制备C_5H_5SiMe_3时,如果不用减压蒸馏,而在常压下直接蒸馏,则得到的不是C_5H_5SiMe_3而是它的二聚体(C_5H_5SiMe_3)_2。用红外光谱和核磁共振确定了它的组成和结构,特别是在1650 cm~(-1)处出现(C_5H_5SiMe_3)_2的孤立双键吸收峰。用C_5H_5SiMe_3和Ee(CO)_5回流反应制得了[C_5H_4(SiMe_3) Ee(CO)_2]_2。经过元素分析,红外光谱,质谱,顺磁共振确定了配合物的组成,红外光谱中有桥羰基的吸收峰,质谱图中498的离子峰的出现标志着上述二聚体的存在。用[C_5H_5Fe(CO)_2]_2作为制备双金属配合物的原料,用Na/Hg并还原[C_5H_5Fe(CO)_2]_2。反应时间为6-7小时得到中间体[C_5H_5Fe(CO)_2]_2Na·4THF的深紫红色晶体。反应时间加长,中间体被破坏,反应到15小时时生成了[C_5H_5Fe(CO)_2]Na·TMEDA的黄色晶体,特别是中间体的获得及晶体结构的测定对我们解释反应的机理非常重要。[C_5H_5Fe(CO)_2]_2Na·4THF为单斜晶系,空间群为P21/n,晶胞参数为a = 10.155(5),b = 17.121(4),C = 18.667(6)A°,β = 97.61(3)°,V = 3216.9A°~3, 2 = 4。铁的配位数为七,钠的配位数为六,钠离子和桥连羰基氧以配位键结合,每个钠离子连结着两个[C_5H_5Fe(CO)_2]_2~-,而每个[C_5H_5Fe(CO)_2]_2~-又连结着两个钠离子,组成一个无限链状分子,键状分子间以Van de W力结合。[C_5H_5Fe(CO)_2]Na·TMEDA正交晶系,空间群为P_(2,2,2,)。晶胞参数为a = 6.001(4),b = 10.644(6),C = 24.214(11)A~·。α = β = r = 90°。z = 4 V = 1546·7A°~3,铁的配位数为五。钠的配位数为四,钠离子和羰基氧以配位键结合,每个钠离子连结着两个[C_5H_5Fe(CO)_2]~-,每个[C_5H_5Fe(CO)_2]~-又连结着两个钠离子,体系就是以这种连结方式或正负电荷交替的形式无限螺旋分子,每个链节存在着两个[C_5H_5Fe(CO)_2]Na·TMEDA分子,链节的长度为a轴的轴长,说明螺旋分子以a轴轴长向上平移。用LnCl_3·nTHF和[C_5H_5Fe(CO)_2]Na反应制得了[C_5H_5Fe(CO)_2] LnCl_2·nTHF (Ln = Nd, Sm, Gd; n = 1, 2),用[C_5H_5Fe(CO)_2] LnCl_2和[C_5H_4(SiMe_3)]Na或用[C_5H-4(SiMe_3)] LnCl_2和[C_5H_5Fe(CO)_2]Na得到[C_5H_5Fe(CO)_2] [C_5H_4(SiMe_3)] LnCl·nTHF (Ln = Nd, Sm, Gd; n = 0, 1, 3),配合物[C_5H_5Fe(CO)_2] LnCl_2·nTHF及[C_5H_5Fe(CO)_2] [C_5H_4(SiMe_3)] LnCl·nTHF中存在着2000 cm~(-1)左右的终端羰基吸收峰及1766 cm~(-1)左右的桥连羰基吸收峰。说明稀土和铁之间是以羰基相连的。在TOTOE质谱仪上,配合物[C_5H_5Fe(CO)_2]Gd~·Cl·THF出现[C_5H_5Fe(CO)]GdCl_2、[Fe(CO)_2] Gd~+Cl_2的离子峰,配合物[C_5H_5Fe(CO)_2]-[C_5H_4(SiMe_3)] GdCl·THF出现[C_5H_5Fe(CO)_2] [C_5H_4]Gd~+Cl、[C_5H_5Fe(CO)_2]Gd~+Cl·[C_5H_4C(SiMe_3)] Gd~+Cl等离子峰。所有稀土有机配合物都溶于四氢呋喃、苯,对空气和水敏感。
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电感耦合等离子体发射光谱(ICP-AES)已有20多年的历史,经过20年来的发展,ICP-AES已成为世界各地分析化学实验室制备的分析手段之一。目前ICP-AES已经应用于生物样品、地质样品,合金等各种样品的分析中。虽然ICP-AES已成为溶液分析最理想、最有效的方法之一,但由于样品组成的复杂性,也使分析化学工作者面临着许多困难。如在钢铁及合金分析中,样品主成份的分析需准确度要好于1%,精密度≤0.3%,采用ICP-AES法的非内标法通常是达不到要求的。对于一些较纯的水溶液样品,一般可以采用简单的水样标准化,而含有复杂的、可变的基体成份就不适合于基体匹配。为了使冶金样品主成份分析的精度小于0.3%,准确度好于1%,我们将ICP摄谱法广泛应用的内标法应用到光电直读光谱仪中。内标法的作用达到了这一目的。使用内标法,就是要使内标元素能起到在等离子体激发过程中变动的补偿作用同时,还能起到在样品引入过程中,对样品喷雾量和提升率变动的补偿作用以提高分析方法精度和准确度。在初步的试验中,我们考察了28种元素谱线强度随等离子体操作参数变化的情况。(a)谱线强度与正向功率的关系;(b)谱线强度与观察高度的关系;(c)谱线强度与载气流速的关系。这样各元素在等离子体中的行为就因所给定的条件不同而异。根据上述28种元素在等离子体中的行为进行分类,为选择合适的内标元素奠定了基础。我们还对等离子体的正向功率、载气流量、观察高度、酸度等实验条件做了研究。发现,当各操作参数等主要条件改变时,谱线强度往往改变较大,但选择的内标元素谱线亦有类似的变化。因此,在采用内标法后,可以使这种变动得到一定的补偿,从而提高了分析结果的精度。本工作选用的折衷工作条件为:正向功率:1.30KW;载气流量:0.75 l/min; 观察高度:17 mm; 酸度:10% HNO_3(v/v)。研究了单一酸对分析元素谱线强度的影响。结果表明,单一酸的酸度在20%(v/v)以内,对分析元素与内标元素的谱线净强度的比值无影响。在折衷工作条件下,我们用合成水溶液体系研究了共存元素引起的物理干扰对分析元素谱线强度的影响。实验结果表明,随着试液中共存元素(Cu)浓度的增加,粘度明显增加,并导致提升量的急剧降低,谱线强度相应下降。但是当气溶胶导入量发生变化的时候,同时也引起内标元素和分析元素的原子或离子在等离子体中浓度分布的发迹内标元素与分析元素严格一致,可以较正共存元素引起的物理干扰。当共存元素达到一定的浓度时,由于内标元素与分析元素不严格一致,内标法失去作用。我们又考察了内标元素的浓度对分析元素的影响,内标元素的加入量从5~500μg/ml变化。当内标元素的浓度为200μg/ml时,对Mo, Ni, Pb, Ti及Mg略有影响,对其它元素无影响。我们选定内标元素的浓度为10 PPm。在折衷工作条件下,我们绘制了含有Y作内标的一套工作曲线及相应的不含Y的工作曲线,并分析了BMn40-1.5锰白铜样品。结果表明,当含量大于0.3%时,测定精度均低于0.3%,并得出以下结论:(1)各种元素在等离子体中的行为依测定条件而异,因此内标元素的选择最好是从在等离子体中行为相似的一组内选择。(2)在光电直流光谱仪中动用内标法可以提高样品中主成份元素的精度和准确度。(3)内标法在SBR较高的情况下可以起到较好的效果,但当SBR较小时,内标法就会失去作用。样品分解是样品分析的关键步骤。在现有的分解方法中,常用的有干灰化法和湿灰化法等。然而这些方法各有其缺点。因此,我们试图寻找一种快速的湿法消解技术,微波炉快速样品溶解似乎很具有吸引力。我们利用国产微波炉和全聚器氟乙烯密封溶器结合,系统地考查了微波炉溶解茶叶及茶树叶,利用ICP-AES测定的可行性,并与湿式消解法,加压密封法等进行了比较,获得满意结果。首先,我们选择了微波炉消化处理的最佳条件,确定了最佳溶解方案,已证明HNO_3-HF(5:1)混合酸溶解样品是令人满意的。又研究了微波炉加热对分析无素挥发性的影响。结果表明,微波炉加热与不经微波炉加热样品的浓度没有明显差异。按上述确定的工作条件,我们分析茶叶及茶树叶样品,并与不同的处理方法进行了比较。采用干灰化法处理茶叶(茶树叶)至少需8小时,而且还极易损失和沾污,但干灰化法用的酸量较少,空白较低,对Cr等的测定有利。湿法消解由于使用HClO_4-HF混酸,B大部分损失或完全挥发挥失。然而采用微波炉完全溶解样品只需19分钟即可,而且由于未使用HClO_4,样品溶液最后只需蒸至近干,有效地防止了易挥发元素的损失及某些不溶性高氯酸盐的生成。微波炉混合酸消酸系统是一种合适的溶解各种各样样品的技术,它为分解各种各样样品以进行多元素测定提供了一种快速、准确、经济的方法。该方法对于通常在敞口溶器中分解易于损失的挥发性元素特别有用,而且还特别适用于样品个数多,量少的生物样品等的微量元素的分析测定。
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本文通过无水LnCl_3(Ln = Pr.Nd.Gd)与两倍摩尔的叔丁基环戊二烯基碱金属盐在THF中60-80℃反应,分离到一类新的二(叔丁基环戊二烯基)稀土氯化物(T-DuCp)_2 2net.nTHF (Ln = Pr,Nd,n = 2 Ln = Gd,n = 1),对它们进行了元素分析。红外光谱及水鲜色质谱的表征。对于配合物(t-BuCp)_2PrCl·2THF的单晶,测定了它的晶体结构,晶体层单斜晶系P21/C空间群,晶胞参数为:a = 15.080 b = 8.855 c = 21.196A, β = 110.34°V = 2653.9A~3 δ = 4,结构分析表明此配合物是一中性的单分子配合物。最后的R = Rw = 0.058平均Pr-C.2.81 Pr-Cent 2.53A, Pr-Cl及Rr-O键长分别为2.72与2.62A。本文通过Lnel_3(Ln = Nd.Pr.Ga)与等摩尔的叔丁基环戊二烯基碱金属盐在THF中60-80℃反应,分离到一类中性的单(叔丁基环戊二烯基)稀土二氯化物,并对它们进行了元素分析,红外光谱及水鲜色质谱的表征。本文通过轻稀土元素La,Pr的三氯化物与带基钠以1:2摩尔比在THF中70-80℃反应,分离到了二带基轻稀土氯化物(CaH_7)_2LaCl.2THF及[(CqH_7)_2PrCl.THF]_2。并且对此二配合物进行了元素分析。红外光谱及水鲜色质谱的表征。对于[(CuH_7)_2PrCl.TH]_2配合物,测定了它的晶体结构,这是第一个得到结构表征的茚基稀土氯化物,晶体层于单斜晶系,P_(21)/C空间群,晶胞参数为a = 7.808 b = 17.796 c = 14.070A β = 93.97°v = 1950.31A. E = 2最后的R = 0.045. Rw = 0.039结构分析表明此配合物以中性的二聚体形式存在。平均的Pr-C.2.81 Pr-Cent 2.53. Pr-Cl.2.84H Pr-O钻长2.54A。为了进一步研究不同配体对配合物结构的影响,我们还研究了Gael_3与Nae_5Mes以1:1摩尔比在THF中的反应,分离到了两种配合物[(NaTHF)(C_5MesGd.THF)_2Cl_5]_2.6THF(I)及L_5Me_5GdCl2.3THF(II)并且对配合物(I),测定了它的晶体结构,晶体层于三斜晶系。Pi空间群。晶胞参数a = 12.183 b = 13.638 c = 17.883A, α = 110.38 β = 94.04 γ = 99.44°, V = 2721.20A, E = 1。结构分析表明,此配合物是一种以两个Na原子通过THF中的O原子而桥联的金层有机配合物,在结构上有十分新颖的特点。在此配合物分子中含有四个Gd原子及二个Na原子,Na及Gd间以Cl桥键相联结,Gd-Gd_2 = 4.033 Gdll-Na = 2.818A。最后的R = 0.04M Rw = 0.042。本文还对(t-BuCp)_2P_2Cl.2THF与NaH及LiAlH4的反应进行了初步的研究,分离到(t-Bucp)_2PrH.2THF及(t-Bucp)_2P_2RIH_4.3THF两种新的氢化物,并且对它们进行了元素分析,红外光谱的表征,对于它们水鲜产物的气相分中的H_2,用气相色谱法进行了定性表征。
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本文通过LnCl_3·2LiCl (Ln=La, Nd)和等摩尔的CH_3C_5H_4Na在四氢呋喃中于室温反应,得到了一种新的阴离子型配合物[Li(THF)_2]_2 (M-Cl)_4[(η~5-CH_3C_5H_4)Ln·THF] (Ln=La, Nd),对其进行了元素分析,红外光谱和核磁谱的鉴定,并测得了[Li(THF)_2]_2 (M-Cl)_4[(η~5-CH_3C_5H_4)Nd·THF]的X-光晶体结构。晶体属单斜晶系,空间群为P_(21/n),晶脆参数为a=12.130(5),b=17.343(5),c=17.016(5)A,β=108.54(3)°,V=3393.87A~3,E=4,R=0.0505,中心钕原子分别与CH_3Cp~-。THF和四个桥氯配位,形成稳定的八配位的八面体结构。通过[Li(THF)_2]_2(M-Cl)_4[(η~5-CH_3C_5H_4)Nd·THF]与2摩尔的t-BuLi在四氢呋喃和戊烷的混和溶液中反应,分离得到一种新的阴离子型配合物晶体,经元素分析,红外光谱,核磁和水解色质谱的鉴定,证明为[Li(DME)_3][(η~5-CH_3C_5H_4)Nd(t-Bu)_3],此配合物不仅对空气和水汽极为敏感,而且对温度也很敏感,即使在-5 ℃下放置也会逐渐分解,发生β-H消除。我们进一步研究了LnCl_3·2LiCl与2摩尔的C_5H_5Na的四氢呋喃反应液在低温下与等摩尔的CH_3Li乙醚溶液反应,从中分离得到一种新的阴离子型烷基配合物晶体[Li(DME)_3][(η~5-C_5H_5)_3LnCH_3] (Ln=La, Nd)对其进行了元素分析,红外光谱,核磁和水解色质谱的鉴定。此外,从这一反应中还得到另一种副产物,经X-光结构鉴定为[Li(DME)_3]~+{[(η~5-C_5H_5)Nd(M-Cl)_2Nd(η~5-C_5H_5)](M-Cl)_4(M_4-D)[(η~5-C_5H_5)Nd(M-CH_3)_2Nd(η~5-C_5H_5)]}~(2-)[Li(DME)_3]~+。本文还研究了NdCl_3·2LiCl与2倍摩尔的CH_3C_5H_4Na的四氢呋喃反应液和等摩CH_3Li乙醚溶液于-78 ℃下反应,从中分离得到另一种新的阴离子型配合物[Li(DME)_3][(η~5-CH_3C_5H_4)_3NdCH_3]并对其进行了元素分析,红外光谱的鉴定。我们还研究了配合物[Li(DME)_3][(η~5-CH_3C_5H_4)Nd(t-Bu)_3]对苯乙烯的催化聚合活性,发现它可以单独引发苯乙烯聚合,得无规聚苯乙烯。
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The microstructures in iron- and sulphur-doped InP crystals were studied using both electron microscopy and electron diffraction. A modulated structure has been found in S-doped InP crystal, where the commensurate modulations corresponded to periodicities of 0.68 nm and 0.7 nm in real space and were related to the reflections of the cubic lattice in [111] and [113BAR] directions; they were indexed as q111* = 1/2(a* + b* + c*) and q113BAR* = 1/4(-a* - b* + 3c*), respectively. Single atomic layers of iron precipitate were observed, with preferred orientations along which precipitates are formed. Simulated calculations by means of the dynamical theory of electron diffraction using models for the precipitate structure were in good agreement with our experimental results. The relation between the modulated structure and the precipitates is also discussed.
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本文利用改进的“氯仿薰蒸天菌法”比较了两种不同施肥制度下土壤微生物体C.N量及其季节变化,估算土壤生物量的周转速度和在土壤N素供给中的作用。循环处理土壤的基础呼吸较非循环处理高出14%。N矿化强度高出20%。土壤生物量平均增长11%。表明循环处理分解有机物料和供给养分的能力较非循环处理强。并且随着土壤有机肥料的循环回田。土壤生物量的周转速度加快。年矿化量增加。成为土壤供N中不可忽视的N源之一。同时耕层土壤微生物体生物具有明显的季节变化。全年呈春秋低,夏季高的变化趋势。据1988年偏低的估算,土壤生物量年变化幅度为±15%(非循环)和±17%(循环)。周转速度为37%(非循环)和48%(循环),年矿化量占土壤供N总量的10%(非循环)和13%(循环)。
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从新几内亚核桃木的树皮中分离得到的吲哚类喹诺里西定生物碱10-Desbromoarborescidine A,因发现其具有阻滞钙离子通道的活性而倍受关注。10-Desbromoarborescidine A由A、B、C、D四个环组成,只有一个手性中心,是吲哚生物碱中结构较简单的一种,常作为此类生物碱全合成方法的模型化合物。但迄今为止,能高效而简便的实现手性10-Desbromoarborescidine A不对称全合成方法线路不多,大多数以不对称诱导的方式建立其手性中心,手性催化的方式仅有一例金属催化。从逆合成分析可知,Desbromoarborescidine A的全合成可以通过亚胺不对称催化还原进行关键的手性中心构建,而本课题组在之前的研究中通过手性有机小分子催化剂的发展,已将三氯硅烷氢转移还原亚胺发展成了一类简便实用、高效、高对映选择性并具有优良底物适应范围的不对称催化反应,我们希望以这一反应作为关键手段,发展一条Desbromoarborescidine A及其类似物不对称合成新路线。 根据我们设计的新路线,首先成功合成了其关键中间体,然后我们进行了关键的不对称催化尝试。用本实验室已有的高性能有机小分子催化剂虽得到了较好的对应选择性,但是产率很低。同时,为了验证整条线路的可行性,我们也用消旋的中间体进行拉通线路的尝试。但不幸的是,在脱除保护基时遇到了很大困难。尝试换不同的保护基,或改变脱保护基的顺序,都未能成功合成目标产物。究其原因可能是由于吲哚的特殊性造成的,吲哚类亚胺与常规的芳香亚胺有较大的差异,其NH基团无论保护还是不保护,对与其2位相联接的C=N双键均有很大的影响,导致其不对称催化还原难以进行。另外,由于所设计的还原产物含有处在吲哚苄位的胺基,稳定性较差,造成保护基脱除困难。 烯胺C-亚磺酰化反应是本课题组最近发现的一个新反应,之前未见文献报道。本研究对该反应进行了反应条件优化和底物扩展,发现带Cbz,Ac,COt-Bu,CO2Et,Bz等保护基的一系列环状和非环状烯胺在亚磺酸钠、DMAc和MeSiCl3的共同作用下能高效高产率生成β-胺基烯基亚砜类新化合物,为合成多官能团化的烯基亚砜新化合物提供了一条简便实用的途径。 The main constituent of Dracontomelum mangiferum B1, indoloquinolizidine alkaloid 10-Desbromoarborescidine A, has drawn great attention due to its calcium channel blocking activity. Its molecular structure is relatively simple compared with the other alkaloids of the same type, which has only one chiral center, albeit with four cycles A, B, C, and D. This compound is often used as a model target for exploring different strategies for the total synthesis of indole alkaloids. Nevertheless, so far there still lack practical and highly efficient methods for the asymmetric total synthesis of 10-Desbromoarborescidine A. Most of the current available methods rely on stoichiometric asymmetric synthesis for the construction of the chiral center. There is only one example reporting utilization of asymmetric catalysis, but with transition metal complex as the catalyst. Our retrosynthetic analysis shows that catalytic asymmetric reduction of imine could be used as the key step for the construction of the chiral center of Desbromoarborescidine A. Since in the previous studies our group has developed the asymmetric reduction of imines by trichlorosilane into a practical and highly efficient and enantioselective method using newly designed chiral organocatalysts, we hope to apply this method to develop a novel synthetic route for the total synthesis of Desbromoarborescidine A and its analogues in this study. According to the newly designed synthetic route, we first accomplished the synthesis of the key intermediates which was then examined for the critical asymmetric catalysis. The asymmetric reduction using the highly efficient organocatalysts, developed in our lab afforded high ee but poor yield. We tried different reaction conditions to improve the yield, but failed to get any good results. Simultaneously, to vertify the feasibility of the synthetic route we designed, we also tired to go through the route toward the racemic synthesis of Desbromoarborescidine A. But unfortunately, protection and deprotection proved to be big hurdles. All the different protection groups and different sequences of protection and deprotection we tried failed to get us through the designed synthetic sequence and furnish the final product. Most likely, the indole part is the culprit behind the failures.The NH group of the indole, no matter protected or not, may impact the catalytic asymmetric reduction of C-N double bond connected with 2-C. Additionally, the reduction product we designed contains an amino group in the β-position of the indole, which may cause problems due to its instability. C-sulfenylation of enamines is a novel reaction discovered recently by our group, which has not been seen before in the literature. In this study, optimization of the reaction conditions and exploration of the substrate scope were further undertaken for this reaction, which reveal that a series of enamines with N-Cbz, Ac, COt-Bu, CO2Et protection groups could all undergo smooth C-sulfinylations with the comined use of sodium benzene sulphinate, DAMc and MeSiCl3, efficiently furnishing the β-amino vinylsulfoxide products in high yield, affording a practical and highly efficient methods for synthesis of functional vinylsulfoxides.
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高等植物种子胚乳贮藏蛋白是种子发芽时的主要氮源,也是人类和动物食用植物蛋白的主要来源。大麦种子胚乳贮藏蛋白主要是醇溶蛋白(hordeins),占大麦胚乳总蛋白的50–60%。根据大麦醇溶蛋白的大小和组成特点,大麦醇溶蛋白被划分为三种类型:富硫蛋白亚类(B,γ-hordeins)、贫硫蛋白亚类(C-hordeins)以及高分子量蛋白亚类(D-hordeins)。B组和C组醇溶蛋白是大麦胚乳的两类主要贮藏蛋白,它们分别占大麦总醇溶蛋白成分的70–80%和10–12%。遗传分析表明,大麦B、C、D和γ-组醇溶蛋白分别是由位于大麦第五染色体1H(5)上的Hor2、Hor1、Hor3和Hor5位点编码。Hor2位点编码大量分子量相同但组成不同的B组醇溶蛋白(B-hordein)。B-hordein的种类、数量和分布是影响大麦酿造、食用及饲养品质的重要因素之一。为深入了解B-hordein基因家族的结构和染色体组织,探明Hor2位点基因表达的发育调控机制,最终达到改良禾谷类作物籽粒品质的目的,本研究以青藏高原青稞为材料,采用同源克隆法,分别克隆B-hordein基因和启动子,通过原核生物表达验证B-hordein基因功能,并利用实时定量PCR探索B-hordein基因表达时空关系,取得如下研究结果: 1. 以具有特殊B组醇溶蛋白亚基组成的9份青藏高原青稞为材料,根据GenBank中三个B-hordein基因序列(GenBank No. X03103, X53690和X53691)设计一对引物,通过PCR扩增,获得23个B-hordein基因克隆并对其进行了序列分析。核苷酸序列分析表明,所有克隆均包含完整的开放阅读框。有11个克隆都存在一个框内终止密码子,推测这11个克隆可能是假基因。推测的氨基酸序列分析表明,所有大麦B-hordein具有相似的蛋白质基本结构,均包括一个高度保守的信号肽、中间重复区以及C-端结构域。不同大麦种重复区内重复基元的数目有较大差异。青稞材料Z07–2和Z26的B-hordeins仅具有12个重复基元结构,更接近于野生大麦。这些重复基元数目的差异导致了重复区序列长度和结构的变异。这种现象极可能是由于醇溶谷蛋白基因在进化过程中染色体的不平衡交换或复制滑动所造成的。对所克隆基因和禾本科代表性醇溶谷蛋白基因进行聚类分析,结果表明所有来自栽培大麦的B-hordeins聚类成一个亚家族,来自野生大麦的B-hordeins以及普通小麦的LMW-GS聚类成另外一个亚家族,表明这两个亚家族的成员存在显著差异。此外,我们发现B-hordein基因推测的C-末端序列具有一些有规律的特征:即具有相同C-末端序列的B-hordein基因在系统发生树中聚类为同一个亚组(除BXQ053,BZ09-1,BZ26-5分别单独聚为一类外)。这个特征将有助于我们对所有B组醇溶蛋白基因家族成员进行分类,避免了在SDS-PAGE电泳图谱上仅依靠大小分类的局限性。 2. 根据上述克隆的青稞B-hordein基因的5’端序列设计三条基因特异的反向引物,以青稞Z09和Z26的基因组DNA为模板,采用SON-PCR和TAIL-PCR技术分离克隆出8个B-hordein基因的上游调控序列(命名为Z09P和Z26P)。序列分析表明,推测的TATA box位于–80 bp,CAAT–like box位于–140 bp处。此外,Z09P和Z26P中有六个序列在–300 bp处均存在一个由高度保守的EM基序和类GCN4基序构成的胚乳盒(Endosperm Box,EB),在约–560 bp处存在一个胚乳盒类似结构。而Z09P-2和Z26P-3不存在保守的胚乳盒或其类似结构,预示着这两个启动子所调控的基因表达可能受不同类型反式作用因子的调节,推测该启动子对基因的表达调控具有多样性。 3. 将B-hordein基因的开放阅读框定向克隆到表达载体pET-30a中,将其导入大肠杆菌表达菌株BL21中进行外源基因的诱导表达以验证所克隆基因的功能。结果表明仅含重组子pET-BZ07-2和pET-BZ26-5的BL21细菌有目的表达蛋白产生。在诱导3 h时的蛋白表达量最高;3 mM IPTG诱导的蛋白表达量要高于1 mM IPTG诱导的表达量。这为分离纯化B-hordein蛋白以及进一步研究其对大麦籽粒品质的影响奠定基础。 4. 根据从青稞Z09和Z26中分离克隆的B-hordein基因序列设计一对基因特异的引物,同时,选择大麦α-微管蛋白基因(GenBank no. U40042)为看家基因并设计特异引物,利用实时荧光定量PCR检测了青稞籽粒4个胚乳发育时间段的B-hordein基因表达,荧光定量结果显示:两份材料中B-hordein基因的表达量均随发育过程的进行而逐渐升高。Z09中B-hordein基因在开花后7天开始转录,而Z26开花4天后就有低水平B-hordein的表达,这表明Z26中B-hordein基因可能比Z09表达的较早或者Z09中B-hordein基因表达水平较低以致于不能被检测到。此外,在4个不同的胚乳发育时期中,Z26中B-hordein基因的表达量均高于Z09材料。在开花12天到18天的过程中,Z09和Z26中B-hordein基因的表达水平有一个急剧性的升高。这说明在不同胚乳发育时期,Hor2位点的B-hordein等位基因变异体存在mRNA的差异表达。 Seed endosperm storage proteins in higher plants are the main resources of nitrogen for germinating and plant proteins for human and animals. Barley prolamins (also called hordeins) are the major storage proteins in the endosperm and account for 50–60% of total proteins. Hordeins are classically divided into three groups: sulphur-rich (B, γ-hordeins), sulphur-poor (C-hordeins) and high molecular weight (HMW, D-hordeins) hordeins based on the size and composition. B-hordeins and C-hordeins are two major groups and each respectively account for about 70-80% and 10-12% of the total hordein fraction in barley endosperm. Genetic analysis showed that B-, C-, C-, γ-hordeins are encoded by Hor2, Hor1, Hor3 and Hor5 locus on the chromosome 1H (5). Hor2 locus is rich in alleles that encode numerous heterogeneous B-hordein polypeptides. It is reported that B-hordein species, quantity and distribution are significant factors affecting malting, food and feed quality of barley. To understand comprehensively the structure and organization of B-hordein gene family in hull-less barley and explore the developmental control mechanisms of Hor2 locus gene expression and eventually to better exploitation in crop grain quality improvement, we isolated and cloned B-hordein genes and promotors of hull-less barley from Qinghai-Tibet Plateau by PCR, and testified their expression founction in bacteria expression system and explore their spatial and temporal expression pattern by quantitative real time PCR. Our results are as followed, 1. Twenty-three copies of B-hordein gene were cloned from nine hull-less barley cultivars of Qinghai-Tibet Plateau with special B-hordein subunits and molecularly characterized by PCR, based on three B-hordein genes published previously (GenBank No. X03103, X53690 and X53691). DNA sequences analyses confirmed that the six clones all contained a full-length coding region of the barley B-hordein genes. Eleven clones all contain an in-frame stop codon and they are probably pseudogenes. The analysis of deduced amino acid sequences of the genes shows that they have similar structures including signal peptide domain, central repetitive domain, and C-terminal domain. The number of the repeats was largerly variable and resulted in polypeptides in different sizes or structures among the genes. Twelve such repeated motifs were found in Z07–2 and Z26, and they are close to those of the wild barleys, and it is most probably caused by unequal crossing-over and/or slippage during replication as suggested for the evolution of other prolamins. The relatedness of prolamin genes of barley and wheat was assessed in the phylogenetic tree based on their polypeptides comparison. Our phylogenetic analysis suggested that the predicted B-hordeins of cultivated barley formed a subfamily, while the B-hordeins of wild barleys and the two most similar sequences of LMW-GS of T. aestivum formed another subfamily. This result indicated that the members of the two subfamilys have a distinctive difference. In addition, we found the B-hordeins with identical C-terminal end sequences were clustered into a same subgroup (except BXQ053,BZ09-1 and BZ26-5 as a sole group, respectively), so we believe that B-hordein gene subfamilies possibly can be classified on the basis of the conserved C-terminal end sequences of predicted polypeptide and without the limit of SDS-PAGE protein banding patterns. 2. The specific primers were designed according to the published sequences of barley B-hordein genes from Z09 and Z26. Using total DNA isolated from them as the templates, eight clones (designated Z09Pand Z26P) of upstream sequences of the known B-hordein genes was obtained by TAIL-PCR and SON-PCR. Sequences analysis shows that the putative TATA box was present at position –80 bp and CAAT-like box at position –140 bp. Besides, a putative Endosperm Box including an Endosperm Motif (EM) and a GCN4-Like Motif was found at position –300 bp in six clones, and another Endosperm-like box was found at positon –560 bp. While the Endosperm Box or Endosperm-like box was not found in Z09P-2 and Z26P-3. This may indicate that gene expression drived by the two promtors was probably controlled by different trans-acting factors and the genetic control mechanism of corresponding gene expression may be diverse. 3. The B-hordein genic region coding for the mature peptide was cloned into expression vector pET-30a and transformed into bacterial strain BL21 for identifying gene expression fountion. Protein SDS–PAGE analysis showed that only the transformed lysate with the pET-BZ07-2 and pET-BZ26-5 constructs produced proteins related to B-group hordeins of barley, and the mounts of proteins induced by 3 mM IPTG and 3 h were higher than other conditions. This established a base for isolating and putifying B-hordein and further exploring their effects on barley grain quality. 4. The gene-specific primers of B-hordein genes from Z09 and Z26 were used for the quantification of B-hordein gene expression. The α-tubulin gene from Hordeum vulgare subsp. vulgare (GenBank accession number U40042) was used as a control gene. The result shows the transcription of the B-hordein genes in Z09 was found 7 days after flowering, while the transcription of the B-hordein genes in Z26 was found 4 days after flowering, but at a very low level, and it suggested that the B-hordein genes in Z26 probably expressed earlier than those in Z09, or the B-hordein genes in Z09 expressed at so a lower level than Z26 that it can not detected. In addition, B-hordein genes in Z26 accession showed higher expression levels than those in Z09 in four developing stages. Furthermore, a progressive increase in the expression levels of the B-hordein genes between 12 and 18 days after anthesis was observed in both Z09 and Z26. It implies that the B-hordein allelic variants encoded by Hor2 locus exist the differential expression in mRNA levels of during barley endosperm development.
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Yields, correlation shapes, and mean transverse momenta p(T) of charged particles associated with intermediate-to high-p(T) trigger particles (2.5 < p(T) < 10 GeV/c) in d + Au and Au + Au collisions at root s(NN) = 200 GeV are presented. For associated particles at higher p(T) greater than or similar to 2.5 GeV/c, narrow correlation peaks are seen in d + Au and Au + Au, indicating that the main production mechanism is jet fragmentation. At lower associated particle pT < 2 GeV/c, a large enhancement of the near- (Delta phi similar to 0) and away-side (Delta phi similar to pi) associated yields is found, together with a strong broadening of the away-side azimuthal distributions in Au + Au collisions compared to d + Au measurements, suggesting that other particle production mechanisms play a role. This is further supported by the observed significant softening of the away-side associated particle yield distribution at Delta phi similar to pi in central Au + Au collisions.
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Balance functions have been measured for charged-particle pairs, identified charged-pion pairs, and identified charged-kaon pairs in Au + Au, d + Au, and p + p collisions at root s(NN) = 200 GeV at the Relativistic Heavy Ion Collider using the STAR detector. These balance functions are presented in terms of relative pseudorapidity, Delta eta, relative rapidity, Delta y, relative azimuthal angle, Delta phi, and invariant relative momentum, q(inv). For charged-particle pairs, the width of the balance function in terms of Delta eta scales smoothly with the number of participating nucleons, while HIJING and UrQMD model calculations show no dependence on centrality or system size. For charged-particle and charged-pion pairs, the balance functions widths in terms of Delta eta and Delta y are narrower in central Au + Au collisions than in peripheral collisions. The width for central collisions is consistent with thermal blast-wave models where the balancing charges are highly correlated in coordinate space at breakup. This strong correlation might be explained by either delayed hadronization or limited diffusion during the reaction. Furthermore, the narrowing trend is consistent with the lower kinetic temperatures inherent to more central collisions. In contrast, the width of the balance function for charged-kaon pairs in terms of Delta y shows little centrality dependence, which may signal a different production mechanism for kaons. The widths of the balance functions for charged pions and kaons in terms of q(inv) narrow in central collisions compared to peripheral collisions, which may be driven by the change in the kinetic temperature.
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We report a measurement of high-p(T) inclusive pi(0), eta, and direct photon production in p + p and d + Au collisions at root s(NN) = 200 GeV at midrapidity (0 < eta < 1). Photons from the decay pi(0) -> gamma gamma were detected in the barrel electromagnetic calorimeter of the STAR experiment at the Relativistic Heavy Ion Collider. The eta -> gamma gamma decay was also observed and constituted the first eta measurement by STAR. The first direct photon cross-section measurement by STAR is also presented; the signal was extracted statistically by subtracting the pi(0), eta, and omega(782) decay background from the inclusive photon distribution observed in the calorimeter. The analysis is described in detail, and the results are found to be in good agreement with earlier measurements and with next-to-leading-order perturbative QCD calculations.
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Nuclear collisions recreate conditions in the universe microseconds after the Big Bang. Only a very small fraction of the emitted fragments are light nuclei, but these states are of fundamental interest. We report the observation of antihypertritons-comprising an antiproton, an antineutron, and an antilambda hyperon-produced by colliding gold nuclei at high energy. Our analysis yields 70 +/- 17 antihypertritons (3/Lambda(H) over bar) and 157 +/- 30 hypertritons (H-3(Lambda)). The measured yields of H-3(Lambda) (3/Lambda(H) over bar) and He-3 ((3)(He) over bar) are similar, suggesting an equilibrium in coordinate and momentum space populations of up, down, and strange quarks and antiquarks, unlike the pattern observed at lower collision energies. The production and properties of antinuclei, and of nuclei containing strange quarks, have implications spanning nuclear and particle physics, astrophysics, and cosmology.
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Langmuir-Blodgett (LB) films of octadecylammonium octadecanoate (C(18)H(37)j7NH(3)(+)C(17)H(35)COO(-),ODASA) and octadecylammonium octadecanoate-d(35) (C18H37+NH3+C17D35COO-, ODASA-d(53)) were prepared and their thermal behaviors were investigated by variable-temperature Fourier transform infrared transmission spectroscopy. It was found that the two hydrocarbon chains of ODASA molecule in LB films are highly ordered while that protonated (H) chain in ODASA-d(35) is partially disordered with some gauche conformers introduced at room temperature.
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The crystal structures of EtEDTB.1.4C(2)H(5)OH.5H(2)O 1 and H4EtEDTB(ClO4)(4).C2H5OH 2 (EtEDTB = N, N,N',N'-tetrakis[2-(1-ethylbenzimidazolyl)methyl]-1,2-ethanediamine) have been determined by single-crystal X-ray diffraction method. Compound 1 crystallizes in the space group P(1) over bar with a = 11.489(2), b = 11.866(3), c = 12.002(3) Angstrom, alpha = 97.47(2), beta = 114.564(13), gamma = 114.11(2)degrees, V = 1266.6(5) Angstrom(3), Z = 1, M-r = 847.48, D-c = 1.111 g/cm(3), F(000) = 456 and mu(MoKalpha) = 0.076 mm(-1). A total of 5207 reflections were measured for 1, of which 4323 were independent. The structure of 1 was solved by direct methods and refined by full-matrix least-squares technique to the final R = 0.0706 and wR = 0.1802 for 1318 observed reflections with I > 2sigma(I). In the structure of 1, centrosymmetric EtEDTB molecules are linked by hydrogen bonds through water and ethanol to form 2-dimensional network. Compound 2 crystallizes in the space group C2/c with a = 24.260(5), b = 13.040(3), c = 17.680(4) Angstrom, beta = 97.50(3)degrees, V = 5545.2(2) Angstrom(3), Z = 4, M-r = 1140.80, D-c = 1.366 g/cm(3), F(000) = 2384 and mu(MoKalpha) = 0.289 mm(-1).
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Anhydrous SmCl3 reacts with two equal of Li(1-3-(Bu2C5H3)-Bu-t) to give a complex (1,3-(Bu2C5H3)-Bu-t)(2) Sm(mu -Cl)(2)Li(THF)(2) (C34H58Cl2LiO2Sm, M-r = 726.99), monoclinic, space group P2(1)/n, a = 10.615(2), b = 21.037(4), c = 17.166(3) Angstrom, beta = 93.60(3)degrees, V = 3825.7 (13) Angstrom (3), Z = 4, D-c = 1.262 Mg/m(3), mu = 1.699 mm(-1) and F(000) = 1508, final R = 0.0387 and wR = 0.0741 for 5320 observed[I greater than or equal to2 sigma (I)] reflections. The average Sm - C distance is 2.73 Angstrom. Sm - Cl1 and Sm - Cl2 distances are 2.719 (2) and 2. 697 (2) Angstrom, respectively. Two 1, 3-(Bu2C5H3)-Bu-t-ring centroids and two mu (2)-bridging chloride atoms around Sm atom form a distorted tetrahedron.