29 resultados para Ley 24.522


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以1981~2004年间捕获的中华鲟(AcipensersinensisGray)亲鲟样本为研究材料,研究葛洲坝截流24年来中华鲟繁殖季节中坝下30km范围内产卵群体结构的变化情况。测定与统计结果显示,中华鲟雌雄性比由1981~1983年的1.10∶1降低到1987~1989年的0.63∶1,而后上升到2003~2004年的5.86∶1。雌鲟平均体长由1990~1992年的263.1cm增加到1999~2001年的276.7cm,升幅为5.2%(差异极显著);平均体重由1990~1992年的202.4kg

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本实验对在不同Zn2+浓度条件下培养的固氮鱼腥藻(Anabaena azoticaLey)的生长、光合放氧速率和叶绿素荧光参数Fv/Fm进行了测定.结果表明,当Zn2+浓度为1.0μmol/L时,其比生长速率(Specific growth rate)最大,光合放氧速率和Fv/Fm值最高.当Zn2+浓度大于等于5.0μmol/L时会抑制A.azotica Ley的生长和光合作用.对在0μmol/L和5.0μmol/L Zn2+浓度下生长的藻细胞藻胆体-类囊体膜复合物吸收光谱的比较和对与5.0μmol/L

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Tylopharynx clariamphida sp. n. is described from muddy sand collected in Anhui Province, China. It can be distinguished from T foetida (Butschli, 1874), the type and only species of the genus, by numerous characters: having 24 to 26 prominent and clearly separated longitudinal ridges, a higher lip region with no hint of a cephalic framework, more prominent amphidial foveae in lateral view, wider and more posteriorly located amphidial apertures, smaller basal knobs of stoma, longer metacorpus, more enlarged phasmids, shorter spicules with shorter digitate terminus, shorter reflexed part of testis, and thicker gubernaculum with more angular shape. For comparison, an expanded description is given for T foetida from Belgium, and SEM photographs of both species are provided.

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低压滴灌毛管进口工作压力、铺设长度、地面坡度及毛管管径是影响滴灌灌水均匀度的重要参数。试验研究结果表明,低压条件下毛管进口压力的变化对灌水均匀度的影响并不明显;灌水均匀度随着毛管铺设长度的增大呈降低趋势,管径越小,降低越显著,但在一定管长范围内,毛管铺设长度对灌水均匀度的影响并不明显;逆坡情况下,灌水均匀度随着坡度的增大而减小,顺坡情况下,灌水均匀度随着坡度的增大呈先增大而后减小的趋势,在2‰的坡度时达到峰值;灌水均匀度随着管径的增大而增大,当管径增大到一定程度后,灌水均匀度随管径增大的幅度减缓。

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本文叙述了2.4-二甲基戊二烯基稀土金属有机化合物的合成并通过元素分析,红外光谱、核磁共振谱及质谱的鉴定。测定了Gd(2.4-GH_(11))_3的单晶结构,此外还合成了(2.4-GH_(11)K.TMEDA及K_2C_8H_8·3THF并也测定了它们的晶体结构。在所合成化合物的红外光谱中,没有属于C=C双键的吸收峰,表明分子中配位体以η~5形式的大π键体系与稀土金属离子结合,在Ln(2.4-GH_(11))_2Cl·TMF和Ln(2.4-GH_(11))Cl_2·GH_THF的红外光谱中,于1060波数附近出现一强而宽的吸收峰,即化合物中有四氢呋喃分子络合。化合物的室温NMR谱有四个吸收峰,2.4-二甲基戊二烯配位体可能为η~5平面∪或W构型。化合物的水解'H-NMR谱与质谱都证实水解产物为2.4-二甲基-1.3-戊二烯。它是-2.4二甲基戊二烯阴离子水解所得的唯一产物,它表明化合物中的配位体确为2.4-二甲基戊二烯阴离子。(2.4-GH_(11))_2Cl·TMDA配合物晶体结构是应用低温X-射线衍射技术用Nicolet R_3 M/E型四园衍射仪LT-1低温装置并利用重原子法测定的最小二乘法精修至收敛时的一致性因子R=0.055. Rw=0.057。晶体属单斜晶系P21/n空间群。晶胞参数a=11.322(4)A, b=9.242(3)A, c=15.956(5)A. β=106.70(3)分子中2.4-二甲基戊二烯阴离子呈平面∪构型。钾离子与四甲基乙二胺二啮体结合形成的络合阳离子和2.4-二甲基戊二烯阴离子相间排列形成无限链状结构分子。2.4-二甲基戊二烯阴离子的C-C键长明显分为中间与外端C-C键两组。外端组C-C键双性质较强键长较短。表明C3具有负电荷的共振杂化体贡献较大。分子中K-C键最短的是K-C(1.5)。而不是具有较多负电荷的C3-K键。这可能是由于几何因素造成的。K_2C_8H_8·3THF的晶体结构是采用与前者相同的方法测定的。它属三斜晶系,PT空间群,晶胞参数a=10.263(3)A, b=13.157(4)A, c=9.443A, α=87.51(2)°, β=114.93(2)°, γ=76.81(2)°. V=1111.6A, R=0.051. 晶体中负二价的环辛四烯阴离呈平面构型,具有中心对称性,两侧与两中心对称相关的钾离子连接,相邻的非等效的钾离子间通过两四氢呋喃分子的氧原子相连接,从而形成了无限链状结构的分子。环辛四烯反映了Huckel的4n+2芳香性规则。该结构的特别之处在于四氢呋喃分子的氧原子以桥键形式与两个钾离子同时连接。而这种形式的桥键在其它化合物中似还未发现。Go(2.4-GH_(11))_3的晶体结构亦是采用与前述相同的方法测定的。其晶体为三斜晶系,PT空间群,晶胞参数a=12.541A, b=12.853A, c=8.432A, α=91.44°, β=108.61°, γ=117.97°, V=112.54A~3. 结构测定表明,Gd(2.4-GH_(11))_3分子具有C_3h对称性。三个配位体阴离了的九个带负电荷的碳原子近似以三帽三角棱柱形式与钆离子配位。分子中2.4-二甲基戊二烯阴离子的C-C键长-亦分为而组。外端C-C键较中间C-C键强,键长较短,亦表明C3具有较多的负电荷。2.4-二甲基戊二烯阴离子本身近似呈平面∪构型。C2,C4偏离由C1 C3 C5三碳原子构成的平面0.067A。方向上远离中心钆离子。可能在此以离子性为主的化合物中,钆离子与不带电荷的C2 C4间的相互作用有些排斥性质。与Nd(2.4-GH_(11))_3不同的是,在Gd(2.4-GH_(11))_3分子中,Gd-(C(1,5)键最短,而不是Gd-C(3)键。这可能是由于钆离子的半径较小,化合物的空间位阻效应较大所致。

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报道了利用兰州重离子加速器国家实验室ECR源引出的高电荷态离子207Pbq+(24≤q≤36)入射到Si(110)表面产生的电子发射的实验测量结果.结果表明,高电荷态离子与固体表面相互作用产生的电子发射产额Y与入射离子的电荷态q、入射角度ψ和入射能量E都有很强的关联.首次发现,电子发射产额Y与入射角度ψ间有接近1/tanψ的关系.理论分析认为,这些过程与基于经典过垒模型的势能电子发射过程密切相关.

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The electron emission induced by highly charged ions Pb-207(q+) (24 <= q <= 36) interacting with Si(110) surface is reported. The result shows that the electron emission yield Y has a strong dependence on the projectile charge state q, incidence angle psi and impact energy E. In fitting the experimental data we found a nearly 1/tan psi dependence of Y. Theoretical analysis shows that these processes are closely related to the process of potential electron emission based on the classical over-the-barrier model.

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Aims. We determine branching fractions, cross sections and thermal rate constants for the dissociative recombination of CD3CDOD+ and CH3CH2OH2+ at the low relative kinetic energies encountered in the interstellar medium. Methods. The experiments were carried out by merging an ion and electron beam at the heavy ion storage ring CRYRING, Stockholm, Sweden. Results. Break-up of the CCO structure into three heavy fragments is not found for either of the ions. Instead the CCO structure is retained in 23 +/- 3% of the DR reactions of CD3CDOD+ and 7 +/- 3% in the DR of CH3CH2OH2+, whereas rupture into two heavy fragments occurs in 77 +/- 3% and 93 +/- 3% of the DR events of the respective ions. The measured cross sections were fitted between 1-200 meV yielding the following thermal rate constants and cross-section dependencies on the relative kinetic energy: sigma(E-cm[eV]) = 1.7 +/- 0.3 x 10(-15)(Ecm[eV])(-1.23 +/- 0.02) cm(2) and k(T) = 1.9 +/- 0.4 x 10(-6)(T/300)-0.73 +/- 0.02 cm(3) s(-1) for CH3CH2OH2+ as well as k(T) = 1.1 +/- 0.4 x 10(-6)(T/300)(-0.74 +/- 0.05) cm(3) s(-1) and s(Ecm[eV]) = 9.2 +/- 4 x 10(-16)(Ecm[eV])-1.24 +/- 0.05 cm(2) for CD3CDOD+

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By [2 + 2] Schiff base condensation of 5 - bromo - 2 - methoxylbenzene - 1,3 - dicarboxaldehyde with diethylenetriamine, a new hexaaza 24 - membered macrocyclic ligand was obtained,which formed a macrocyclic binuclear copper(I) complex in the presence of [Cu . (CH3CN)(4)]ClO4. When the copper(I) complex was oxidized in air or oxygen, a new macrocyclic binuclear copper( II) complex was obtained. The copper( II.) complex was characterized by several methods and its oxidized products was characterized by H-1 NMR. The results show that during oxidation, a methoxyl group in the ligand ring broke; and the phenoxy - and water - bridged Cu(II) complex formed. In oxidation of monooxygenase such as ligninase, oxidative demethylation also happened. Therefore this work mimicked this process for the first time by using macrocyclic complex. The quantity of absorbed oxygen and the absorption rate of oxygen were determined.

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A pollen record of core PC-1 from the northern Okinawa Trough, East China Sea (ECS), provides information on vegetation and climate changes since 24 cal. kaBP. A total of 103 samples were palynologically analyzed at 8 cm intervals with a time resolution of 230 a. Four pollen zones are recognized: zone I (812-715 cm, 24.2-21.1 cal. kaBP), zone II (715-451 cm, 21.1-15.2 cal. kaBP), zone III (451-251 cm, 15.2-10.8 cal. kaBP), zone IV (251-0 cm, 10.8-0.3 cal. kaBP), corresponding to Late MIS 3, Last Glacial Maximum (LGM), deglaciation and Holocene, respectively. The LGM is characterized by the dominance of herbs, mainly Artemisia, and high pollen influx, implying an open vegetation on the exposed continental shelf and a cool and dry climate. The deglaciation is a climate warming stage with Pinus percentage increased and Artemisia percentage decreased and a rapid sea-level rise. The Holocene is characterized by predominance of tree pollen with rapid increase in Castanea-Castanopsis indicating the development of mixed evergreen and deciduous broad-leaved forest and a warm, humid climate. Low pollen influx during the Holocene probably implies submergence of the continental shelf and retreat of the pollen source area. The vegetation indicated by pollen assemblage found in this upper zone is consistent with the present vegetation found in Kyushu, Japan. Originating from the humid mountain area of North Luzon of the Philippines, Tasmania and New Zealand, Phyllocladus with sporadic occurrence throughout PC-1 core probably suggests the influence of Palaeo-Kuroshio Current or intense summer monsoon. The observed changes in Pinus and Herbs percentage indicate fluctuations of the sea level, and high Pinus percentage corresponds to high sea level. Spectrum analysis of the pollen percentage record reveals many millennial-scale periodicities, such as periodicities of 6.8, 3.85 2.2, 1.6 ka.

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优良的种质是产业发展的重要保证,品种更新和养殖技术的发展已经给世界农业带来了令人瞩目的成就,然而我国水产生物的育种工作刚处于起步阶段,而育种技术的研究则更是滞后。借鉴陆生生物中发展起来的相对成熟的研究方法,可以帮助加快海洋生物遗传育种相关研究的进度。本研究以我国北方海区重要的海洋经济动物-皱纹盘鲍为研究对象,从表型遗传、数量性状遗传等2个方面开展了皱纹盘鲍的遗传育种研究,同时从幼鲍培育密度与分选效应等方面研究了皱纹盘鲍的中间培育技术。 主要结果如下: 1. 皱纹盘鲍的贝壳颜色遗传、食物对贝壳颜色表现型的影响,贝壳颜色与生长速度间的关系 将贝壳颜色为橘红色(O表型)的突变型皱纹盘鲍与贝壳颜色为绿色(G表型)的野生型皱纹盘鲍进行了连续2代的交配实验。结果表明:皱纹盘鲍橘红色的贝壳颜色相对于绿色的贝壳颜色为隐性性状,皱纹盘鲍的贝壳颜色表型受单位点、2个等位基因遗传控制,其中基因型为oo的个体,贝壳颜色的表现型为橘红色(O表型),而基因型为GG或Go的个体,贝壳颜色的表现型为野生型(G表型)。 为探讨食物类型对不同基因型皱纹盘鲍贝壳颜色表现型的影响,对不同贝壳颜色表型的个体投喂不同种类的食物,结果表明,除遗传因素外,皱纹盘鲍的贝壳颜色表现型显著地受食物类型的调控。其中oo基因型的个体,在摄食底栖硅藻(Navicula sp.)和红藻时,贝壳颜色的表型为橘红色;而在摄食褐藻、绿藻和以海带粉为唯一海藻源的人工配合饵料时,贝壳颜色的表型为黄色。GG和Go基因型的个体,在摄食底栖硅藻、红藻时,贝壳颜色的表型为褐红色;在摄食褐藻、绿藻和以海带粉为唯一海藻源的人工配合饵料时,贝壳颜色的表型为绿色。该结果表明,相同基因型的皱纹盘鲍在摄食不同类型的食物时,贝壳表现型不同,即不同类型的食物可以导致2种基因型皱纹盘鲍的贝壳颜色表现型在一定范围内发生转换:oo基因型的个体,贝壳的颜色可以表现为橘红色或者黄色,不会出现野生型皱纹盘鲍的褐红色或绿色;而GG与Go基因型的个体,相应的贝壳颜色表型只能是褐红色或者绿色,不会出现oo基因型可能表现的橘红色或黄色。特定基因型的皱纹盘鲍,在摄食特定类型的食物时贝壳的相应部位可表现出特定的颜色。皱纹盘鲍的这种“食物-贝壳颜色”的相关性可作为一种形态标记,用于标识皱纹盘鲍的个体和群体,该标记技术可用于皱纹盘鲍的养殖技术和遗传学研究。 此外,选用了贝壳颜色遗传学实验中建立的贝壳颜色发生分离的家系为实验材料,以壳长为指标,分析比较了来自相同家系的O表型与G表型个体之间的生长速度。结果表明,在幼鲍发育至412天止的3-5个统计时段内,没有在同一家系来源的2种贝壳颜色表型个体之间检验到生长速度的显著差异。 2. 皱纹盘鲍不同选育群体及杂交群体的贝壳形态参数分析 在皱纹盘鲍的7个群体中(包括已经对生长速度为指标进行了多代人工选育的群体4个、野生群体之间直接杂交繁育的杂交F1群体3个),测量了4-6龄成体样本的壳长(L)、壳宽(W)、壳高(H)和壳重(Sw),并计算了L/(L+W+H)、W/(L+W+H)、H/(L+W+H)和Sw/(L×W×H)等4个壳形态学参数。用方差分析方法(MANOVA、ANOVA)统计并比较了这些壳形态参数在皱纹盘鲍群体间的遗传变异。结果表明,4个壳形态参数在不同群体间变异系数分别为0.34、0.74、2.62和6.54,其中,H/(L+W+H)与Sw/(L×W×H)在各供试群体间均具有较高的多态性且差异达显著水平,表明这2个参数在不同群体间存在较高的遗传变异。由于在活体情况下无法测量壳重(Sw)性状,建议以参数H/(L+W+H)为指标对皱纹盘鲍贝壳形态(如壳型)等进行人工选择。 3. 皱纹盘鲍成体阶段生长性状的遗传参数估计 采用巢式设计,分析了成体阶段不同发育期皱纹盘鲍的壳长与生长速率的遗传力、不同发育期的壳长性状之间的遗传相关、以及不同发育期的生长速率之间的遗传相关,结果表明:(1)壳长遗传力在受精后第70 、130、320、320、380、490与550天的雄性组分估计值分别为0.161 ± 0.075、0.312 ± 0.131、0.326 ± 0.331、0.135 ± 0.228、0.153 ± 0.185和0.180 ± 0.106;雌亲组分估计分别为0.312 ± 0.172、0.699 ± 0.168、0.695 ± 0.168、0.977 ± 0.407、0.427 ± 0.195和0.449 ± 0.027。(2)生长速率遗传力在受精后第320~380天、490 ~ 550天,雄、雌组分估计值分别为0.080 ± 0.120(雄)、 0.210 ± 0.191(雌)以及0.299 ± 0.146(雄)、0.306± 0.148(雌)。雌亲组分的壳长遗传力和生长速率遗传力估计值较大且均达显著水平,表明皱纹盘鲍在成体阶段依然受母性效应的影响。成体阶段生长性状遗传力水平的估计对制定科学的皱纹盘鲍育种方案有指导意义。(3)雄亲组分估计的不同发育期(第390 ~ 550天)壳长间遗传相关为0.597 ~ 1.000,雌亲组分估计为0.589 ~ 1.177。由雄亲、雌亲组分估计,受精后第320~380天与第490 ~ 550天两个发育阶段生长速率间遗传相关均接近于0。雌亲组分估计不同发育期壳长间遗传相关均达显著水平(t0.05, d.f.=13 = 4.33 ~ 11.69,P<0.01),表明壳长性状早期选择有效,即在皱纹盘鲍早期阶段依据壳长性状对个体进行择优或去劣可在后期阶段获得壳长较大的个体。由于使用的雄亲数目少(8个父系半同胞),实验中以雄亲组分估计的遗传参数误差较大。 4. 皱纹盘鲍选育系间的群体杂交 进行了皱纹盘鲍4个人工选育系之间的完全双列杂交实验,以群体交配的方式共建立了16个组合;此外,以大连“98”选群与汕头“S”选群为亲本,以群体交配的方式建立了4个交配组合。对不同方向的杂交组合进行了中亲杂种优势、超亲杂种优势以及配合力等方面的评价。 (1)测量了4个选育群体(R、97、S和J)及其各杂交组合在受精后第9、20和30天时的壳长,统计分析了不同选育系间壳长性状的差异、评价了不同方向杂交组合的中亲与超亲杂种优势、以及配合力。结果如下: 选育系群体内交配繁育的4个组合,在受精后第9、20和30天的壳长均有显著差异,其中,97  97组合在早期发育各阶段均为最小,分别为0.462 ± 0.023mm、0.698 ± 0.057mm和1.476 ± 0.234mm;S  S组合的3次测量值均为最大,分别为0.522 ± 0.023mm、0.824 ± 0.084mm和1.798 ± 0.229mm。 两个方向杂交组合与选育系亲本群体内交配组合的平均值和高亲值比较,得到如下结果:(A)受精后第9天壳长表现正向中亲杂种优势的组合有6个、表现负向中亲杂种优势的组合6个,其中J  97组合的中亲优势率最高,为9.05%;R  S组合最低,为-6.61%。正向高亲杂种优势组合有4个、负向高亲杂种优势组合有8个,其中S  J组合的高亲优势率最高,为5.77%;R  S组合最低,为-7.96%。(B)受精后第20天壳长表现正向中亲杂种优势的组合有7个、表现负向中亲杂种优势的组合5个,其中J  97组合的中亲优势率最高,为12.60%;J  R组合最低,为-8.72%。正向高亲杂种优势组合有3个、负向高亲杂种优势组合有11个,其中J  97组合的高亲优势率最高,为12.20%;J  R组合最低,为-12.67%。(C)受精后第30天壳长表现正向中亲杂种优势的组合有7个、负向中亲杂种优势的组合5个,其中97  S组合的中亲优势率最高,为24.08%;S  97组合最低,为-12.69%。正向高亲杂种优势组合有6个、负向高亲杂种优势组合有6个,其中97  S组合的高亲优势率最高,为15.95%;S  J组合最低,为-19.44%。上述结果表明,皱纹盘鲍不同选育系之间的交配组合,杂种优势率差异很大,因此,通过组配实验,将杂种优势率高的交配组合选择出来应用于生产,可望显著提高目标性状的产量。 对早期发育阶段各生长期壳长性状,亲本一般配合力(GCA)、各杂交组合间特殊配合力(SCA)以及正反交(REC)效应值进行方差分析,结果表明:各亲本GCA差异显著,说明各选育群体存在显著的遗传差异,其中汕头选群“S”在测量的各个生长期均为正值且显著大于其它各亲本;特殊配合力(SCA)以及正反交(REC)效应值较大在各杂交组合间存在显著差异,说明在早期生长发育阶段非加性遗传效应(显性和上位效应)占主导地位。综合各个生长期亲本GCA和杂交组特殊配合力(SCA)以及正反交(REC)效应值,杂交组合97×S在早期生长阶段不仅有较高SCA值而且两个亲本也具有较大的GCA值,表明选育系97和S较适宜作为杂交亲本使用。 (2)大连“98”选群与汕头“S”选群进行2×2因子设计的群体杂交实验,比较了各交配组合早期存活相关性状如受精率、孵化率、变态率以及壳长性状,评价了两个方向杂交组合平均以及不同方向杂交组合的中亲杂种优势率。结果表明早期发育阶段各组合间的受精率无显著差异,而孵化率、变态率等两个杂交方向平均的中亲杂种优势率为5.49%与12.53%,高于壳长性状的优势率(0.936-1.534%)。方差分析结果表明不同方向的杂交组合在早期发育阶段存活相关性状以及壳长性状存在显著差异。孵化率、变态率性状,S×98的中亲杂种优势率分别为13.21%与21.10%,均高于98×S的-3.84%与3.85%;而第10和25d壳长性状,S×98的中亲杂种优势率为1.14%与-2.52%,低于98×S的1.93%与4.41%。 为进一步评价“98”选群与“S”选群不同交配组合在不同温度条件下的生长,进行了基因型与环境的互作研究。从“98”选群与“S”选群的4个交配组合中分别取5月龄幼鲍100头,各组合随机分成3组,每组1个重复,分别于12°C、16°C和 22°C温度条件下进行培育,比较各交配组合基因型与温度对幼鲍生长的影响。不同温度条件下,各组合壳长生长的方差分析结果表明,基因型和温度都能够对幼鲍生长以及最终壳长产生极显著的影响(P < 0. 01),它们的交互作用也达到显著水平(P < 0.05)。杂交子代的幼鲍壳长在12°C、16°C和 22°C温度条件下均表现出杂种优势,双向杂交的中亲杂种优势率分别为5.32%、5.55%和0.03%,表明低温条件(12°C),比高温条件(22°C)下有更强的杂种优势。汕头“S”选群的早期孵化率、变态率、生长性状以及低温条件下幼鲍生长性状的单亲杂种优势率分别为16.64%、42.49%、3.42~5.79%和5.73~9.15%,单亲杂种优势率较大,表明可通过杂交手段,显著地改良汕头“S”选群在早期发育阶段的生长速度、存活率以及幼鲍期的生长性状。本研究的结果支持了Lerner(1954)杂种优势的基因与环境互作学说。 5. 皱纹盘鲍幼鲍的中间培育技术研究 (1)对南方越冬方式的评价 目前,每年的11月前后,将6-7月龄幼鲍运往南方的闽东、闽中、闽南沿海越冬,翌年4月至6月再运回到北方(大连、山东半岛)的养殖模式已经普遍应用于皱纹盘鲍的实际生产,为评价南方越冬的幼鲍培育方式,本研究分别以不同幼鲍材料在闽东三都海湾进行了越冬培育实验。 选择生产上壳长分别为18.37 ± 1.28 mm、15.89 ± 1.10 mm、14.55 ± 1.10 mm与10.59 ± 0.84 mm的幼鲍进行了为期6.5个月的越冬培育,实验结束时,存活率分别为95.56 ± 2.21%、90.55 ± 1.96%、83.97 ± 1.63%与63.30 ± 2.79%。回归分析表明,供试幼鲍在实验起始时的壳长与越冬阶段的存活率成正相关(P = 0.018 < 0.05)。该结果表明,提高幼鲍的规格可显著提高皱纹盘鲍的越冬成活率,因此对于实际生产而言,采取适当措施提高皱纹盘鲍越冬苗种的规格将大幅增加生产的收益,而采用生长速率快的品种、品系或提早采苗均可实现该目标。综合各规格组幼鲍,幼鲍在南方开放性水域进行越冬培育的平均存活率较高,可达到91.38±0.01%,从幼鲍南方越冬的存活曲线可以看出,幼鲍的死亡主要集中在从大连运至福建某地后的15天内,出现死亡高峰的原因可能是由于运输过程的胁迫。此外,2月及4月中下旬水温出现显著降低或回升时也有较明显的死亡出现。该部分结果,对皱纹盘鲍幼鲍的养成管理有指导意义,可以通过合理安排越冬时间、避开死亡的敏感期等措施减少苗种越冬阶段的死亡量。 以中国大连野生群体繁育的子一代为亲本(10♀,10♂),以群体交配的方式繁育F2代个体为实验材料,分别于南方海区以及北方室内升温水方式下进行生长、存活比较,结果表明南方越冬培育方式下,幼鲍壳长的日增长率为81.37-108.89 µm•day-1,与北方室内升温培育条件相比,壳长生长提高了1.08 ~ 1.68倍;而存活率无显著差异。皱纹盘鲍幼鲍南方越冬方式的优势主要体现在鲍鱼幼鲍的生长速度加快,同时节约养殖场的能耗 (2)幼鲍培育过程中的养殖密度与分选效应评价 以3种规格皱纹盘鲍幼鲍为材料比较幼鲍在4个培育密度以及分选或混养条件下壳长的平均日生长及特定生长率。在南方越冬培育方式下实验进行106天,多因素方差分析结果表明实验初始幼鲍的壳长以及培育密度对壳长的生长有显著影响,而且密度效应在不同幼鲍起始规格组中有不同表现;分选没有能够提高不同规格组的生长。本研究的结果对皱纹盘鲍幼鲍的越冬培育有一定的指导作用。

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A continuous long (224m) and high-resolution core TY2 was recovered from paleo-maar-lake Tianyang, tropical South China. Based on the diatom records of the upper 130-m core, this paper focuses on exploring climate change and the lake evolution history in tropical South China during the past 240ka. The most typical and unique characteristics of the diatom assemblages is that, Aulacoseira granulata was dominant or absolutely dominant species (80-90%) during most parts of the 130-m core, while Cyclotella stelligera var. tenuis and Fragilaria construens var. venter were subdominant species in only limited parts of the lower and upper core, respectively. Time scale is always the biggest problem for the study of TY2 core, so although diatom is seldom used for establishing time scale, here we attempt this by correlating the diatom-reconstructed temperature sequence with the time scale of ODP core 806B from Equatorial Western Pacific. Verified by the few most reliable ages from TY2 core and the parallel core TYl, a rather reasonable and reliable time scale was established. 01S 7/6 falls at the depth of 100m (ca. 194kaBP), OIS 6/5 at 75m (ca. 132kaBP), OIS 5/4 at 46m (ca. 75kaBP), OIS 4-3 at 35m (ca. 60kaBP). Qualitative and quantitative environmental reconstructions are made on the basis of diatom assemblage ecotype and EDDI dataset. Correlation of diatom-reconstructed temperature and moisture changes of Core TY2 with pollen-reconstructed temperature and rainfall sequence of Core TYl proves that the results are quite consistent in most periods. Thus the reconstruction results from diatom are quite reliable, and probably have a much higher resolution than pollen results. Combined with lithological and magnetic susceptibility variations, the diatom analysis reveals that, the general climate in tropical South China during the past 240ka was warm and wet. On the time scale of glacial-interglacial, warm and wet, cool and dry are not always synchronous. It was relatively warm-wet during the penultimate interglacial, cool-dry during the penultimate glacial, warm-dry during the last interglacial, and cooler-drier during the last glacial. In contrast, on the time scale of subglacial-subinterglacial scales, warm and dry, cool and wet corresponds very obviously, showing very clear 21-23 ka precession cycle. Analysis also shows that, the water of Tianyang paleo-maar-lake was generally warm, turbulent, turbid, meso-trophic, slightly alkaline, low conductivity and fresh during the past 240 kaBP, with small variations in some parts. Tianyang paleolake experienced shallow to semi-deep lake in OIS7d, open shallow lake in OIS7c-OIS5b, shallow coastal lake in OIS5a-OIS4c, swamp in OIS4b, and then completely dried up in OIS3c. The lake evolution was mainly controlled by temperature and precipitation changes in tropical China. While temperature and precipitation changes were probably controlled by the migrations of monsoon rainband and the evaporation rate, which was in turn controlled by the evolution of East Asian monsoon. Therefore, when the summer monsoon was strongest the climate was warm-dry, when stronger the climate was warm-wet; when the winter monsoon was strongest the climate was cool-dry, stronger cool-wet. This mechanism caused the warm-dry sub interglacial and cool-wet subglacial climate in the tropical South China.