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1.
对两个不同地理种群的栉孔扇贝的3个群体——俄罗斯种群(R)、中国种群野生群体(CW)和养殖群体(CC)及其3个杂交组合F1代生长发育各组合40~50只进行了3次测定比较研究.结果表明,在壳长、壳宽、壳高、活体重4个生长发育指标上均表现不同程度的杂种优势,2月龄时CW♀×R♂杂交效果最好;3月龄时3个杂交组合的杂种优势均较大,但差异不显著;4月龄时各杂交组合的杂种优势明显,尤其是活体重的杂种优势突出,以R♀×CC♂杂交效果最好;3个亲本群体各个性状的测定性能表现在2,3月龄以俄罗斯种群较好,4月龄以中国养殖群体较好.中国种群2月龄野生群体较养殖群体生长发育快,3月龄时其生长发育差异不显著,4月龄养殖群体生长发育快.  相似文献   

2.
在对栉孔扇贝中国养殖种群(CC)、中国野生种群(CW)和俄罗斯种群(RW)及其3 种杂交种群早期(2,3,4月龄)生长发育研究的基础上进行了各种群的中期(6,8,10,12月龄)生长发育测定比较研究,结果表明,3个亲本群体各个性状的中期生长性能表现以中国养殖种群最好;3个杂交组合的杂种群体各个性状的中期生长性能均高于纯种亲本种群,杂种优势均较大,其范围在3%~52%,以CC♀×RW♂杂交效果最好;壳长、壳宽、壳高、活体重在4个生长发育指标中期的4 个阶段均表现出不同程度的杂种优势,杂种优势在性状间存在明显差别,体重的杂种优势远大于壳宽、壳长和壳高的,变化趋势为体重大于壳宽,壳宽大于壳长,壳长大于壳高;季节性变化因素对栉孔扇贝各个性状的生长速度影响非常大,6~8月龄处于冬季最寒冷的时间(11月份至翌年3月份),扇贝越冬期间仅能维持生命,生长率接近于0,温暖季节如6月龄(11月)以前和8月龄(3月份)以后各性状的生长速度提高幅度很大.  相似文献   

3.
为开展合浦珠母贝(Pinctada fucata)遗传改良和培育优质新品种,作者利用合浦珠母贝北海养殖群体(B)、徐闻养殖群体(X)和三亚养殖群体(S)进行双列杂交,获得3个种群内自繁群体及6个种群间杂交群体。对8月龄F1代的壳长、壳高、壳宽和体质量4个生长性状进行了测定,计算了各组合的一般配合力、特殊配合力及杂种优势。结果表明,杂交组合的各性状值普遍高于自繁群体,其中S(♀)×B(♂)和S(♀)×X(♂)杂交组合的各性状值极显著高于其他组合。三亚群体各性状的一般配合力最大,S(♀)×X(♂)组合各性状特殊配合力最大,其次是S(♀)×B(♂)组合。杂交子一代4个生长指标均表现出一定程度的杂种优势(0.24%~52.62%)。不同杂交组合间和不同性状间的杂种优势存在差异,其中,S(♀)×B(♂)杂交组合杂种优势明显,其反交组合B(♀)×S(♂)杂交优势程度不高,且在壳宽上表现出较低的杂种优势率(0.24%);S(♀)×X(♂)杂交组合杂种优势率比反交组合X(♀)×S(♂)高。体质量的平均杂种优势率均高于其他3个性状。该研究的结果表明杂交群体性状的改进为进一步选育奠定了基础。  相似文献   

4.
在对栉孔扇贝中国养殖种群(CC)、中国野生种群(CW)与俄罗斯种群(RW)及其杂交种群早期(2,3,4月龄)和中期(6,8,10,12月龄)生长发育研究的基础上,进行了各种群的1~2龄(14,16,19,21,24月龄)生长发育测定比较研究.结果表明,3个亲本群体各个性状的后期生长性能表现以中国养殖种群最好;2个杂交组合CC雌(♀)×RW雄(♂)和CW雌(♀)×RW雄(♂)的杂种群体各个性状的后期生长性能均高于纯种亲本种群,杂种优势均较大,其范围在3.16%~37.18%之间,以CC雌(♀)×RW雄(♂)杂交效果最好,是理想的杂交组合;壳长、壳宽、壳高、活体重4个生长发育指标在后期各个阶段均表现出不同程度的杂种优势,杂种优势在性状间存在明显差别,体重的杂种优势远大于壳宽、壳长和壳高,变化趋势为体重大于壳宽大于壳长大于壳高;栉孔扇贝各个性状的生长率受生长发育季节的影响较大,12~16月龄生长迅速,到16月龄(11月份)生长速度达到高峰,到下一年度的2月下旬(19月龄)几乎没有增长,仅能维持生命,开春以后增长也不大,这说明,栉孔扇贝在来年秋季完成了强度生长,是水产养殖的最佳收获时节,应当尽量避免跨越第二个冬季,以减少越冬损失.  相似文献   

5.
利用中国(C)、日本(J)和韩国(K)3个长牡蛎(Crassostrea gigas)第四(F4)代选育群体,采用完全双列杂交方式构建建立了3个自交群体、3个正交群体和3个反交群体。结果表明,各交配组合在180日龄、360日龄和450日龄生长优势差异显著(P0.05);在不同生长阶段各组合的生长性能、一般配合力值、特殊配合力值和杂种优势效能值各不相同。杂交组合C♂K♀、J♂C♀和K♂J♀分别在180日龄、360日龄和450日龄表现出较大的生长优势,而自交组合K♂K♀在各个生长阶段均表现出生长劣势。中国F4代选育群体父母本一般配合力效应值均表现为非负值,而韩国F4代选育群体父母本一般配合力效应值均表现为非正值。杂交组合的特殊配合力效应值在不同生长阶段表现不一致,但与生长优势效能值基本相符。实验结果表明,多数杂交子代在生长性状上存在一定程度的杂种优势,可进行规模化商业推广应用;中国F4代选育群体作为杂交候选父母本时,具有高的可稳定遗传给子代的加性效应值。利用群体选育建立配套系,对不同选育群体进行杂交育种是培育长牡蛎优良新品系的有效方法。  相似文献   

6.
准确可靠的遗传力是育种实践的前提,本研究采用不平衡巢式设计和室内定向交尾技术完成亲蟹交配,交配模式为1个雄性三疣梭子蟹配3个雌性三疣梭子蟹,建立100组上述交配组合;经过交尾、越冬,次年春天成功构建了37个三疣梭子蟹全同胞家系,其中13个半同胞家系;80和120日龄时每个家系随机选取30个左右个体,测量其全甲宽、甲长、体高3个生长性状。通过SPSS 11.5一般线性模型(GL.M),计算表型变量的方差组分,评估全甲宽、甲长、体高等重要经济性状的遗传力。结果表明,三疣梭子蟹80日龄3项生长性状总平均值分别为(77.99±11.42)、(35.90±5.84)、(20.13±7.77)mm,80日龄遗传力估计值为0.51~0.69;120日龄3项生长性状总平均值分别为(122.73±12.80)、55.(13±5.39)、(29.99±3.34)mm,120日龄遗传力估计值在0.27~0.70之间。通过t检验发现只有基于全同胞方差组分估计的遗传力达到极显著水平,而基于母系半同胞、父系半同胞方差组分估计的遗传力均未达到显著水平。因此三疣梭子蟹2个发育阶段狭义遗传力的无偏估计值为全同胞方差组分估计的遗传力,估计值分别为0.53~0.60和0.45~0.50。研究结果表明三疣梭子蟹3项重要经济性状属于高度遗传力,说明对其选择具有较大的潜力。  相似文献   

7.
本研究以香港巨牡蛎(Crassostrea hongkongensis)自繁组HH(H♀×H♂)、葡萄牙牡蛎(C.angulata)自繁组AA(A♀×A♂)和杂交组HA(H♀×A♂)为研究对象,采用盐度骤变法研究盐度为10、15、20、25、30、35下杂交子代的早期表型性状和杂种优势。研究表明,H♀与A♂只能单向受精;盐度10条件下,各组均无法受精;HA、AA、HH的适宜卵裂盐度分别为20~35、25~35、20~30,适宜孵化盐度分别为15~30、20~30、15~25。在卵裂阶段,杂交受精卵均产生不同程度的杂种劣势(H0),杂种劣势最小为-10.168%,最大为-39.836%;在孵化阶段,杂交受精卵均存在一定的杂种优势(H0),杂种优势最小为5.665%,最大可达137.413%。存活方面,在盐度10、15、35时HA、AA、HH的存活率迅速下降并于10日内全部死亡,HA在盐度20、25、30组存活至实验结束,HH、AA仅有2组存活,分别为盐度20、25组和25、30组,HA在盐度20和25时表现出一定的存活优势(H0),分别为107.186%和7.775%。生长方面,HA在盐度20、25、30组于第4日均表现为显著的杂种劣势(H0、hp-1),于第10日盐度20组表现出杂种优势,第16日盐度25和30组表现为杂种优势。总体上,随着实验的进行杂交子代逐渐表现出生长优势,这表明杂交子代具有一定的生长潜力。  相似文献   

8.
应用数量遗传学原理和全同胞组内相关法估计了三疣梭子蟹80日龄和120日龄体重的遗传力。实验中的400只亲蟹均来自人工养殖的选育群体。通过群体间杂交,构建了37个全同胞家系包括13个半同胞家系,分别测定了80日龄和120日龄时大约30个个体的体重。利用SPSS软件的一般线性模型(GL.M)过程,计算表型变量的方差组分,估计体重性状的遗传力。结果表明,三疣梭子蟹80日龄和120日龄体重的遗传力估计值分别在0.42—0.64和0.25—0.39之间。雌性遗传方差组分均显著大于雄性遗传方差组分,说明雌性遗传方差组分存在显著的母性效应。经过t检验,父系半同胞、母系半同胞方差组分估计的遗传力均未达到显著水平,全同胞方差组分估计的遗传力达到极显著水平。因此可以认为基于全同胞方差组分估计的遗传力是对三疣梭子蟹两个发育阶段狭义遗传力的无偏估计值,估计值分别为0.53和0.35。说明三疣梭子蟹体重属于中度遗传力,对其选择育种具有较大的潜力。  相似文献   

9.
红壳文蛤双列杂交及杂种优势分析   总被引:2,自引:1,他引:1  
以广西(G)、江苏(S)和日本(J)3个文蛤群体中原种红壳文蛤进行双列杂交,获得了试验家系(Gg、Ss、Gs、Gj、Sg、Sj),比较其生长性能,并评估杂种优势。从生长来看,浮游期杂交组的日生长率大于自繁组;以江苏文蛤为母本的组合的壳长均显著大于以广西文蛤为母本的组合(P0.05),壳长受卵源影响极显著(P0.01)。稚贝和幼贝期,杂交组的日生长率均大于自繁组,杂交组合Gs的日生长率从13日龄至149日龄均最大;交配方式对壳长极显著影响(P0.01)。从存活率来看,杂交组的存活优势更明显,Gs的存活率几乎均最高。从杂种优势来看,杂交组从13日龄以后具明显的杂种优势,尤其是Gs在1—149日龄均呈正值。广西群体和江苏群体间建立了完全2×2双列杂交,中亲杂种优势一直大于0,且始终介于单亲杂种优势HGs和HSg之间。杂种优势潜力指数(hp)表明,1—5日龄的数值介于–1和1之间,未产生杂种衰退;13日龄后的数值均大于1,表明真正获得了杂种优势。杂种获得(hg)及13日龄后的超亲优势率均为正值,进一步说明壳长性状得到了明显改良。从壳色来看,子代的红壳个体占比为72.80%—76.49%,均得到明显提高。总之,杂交组合Gs的杂种优势最明显,为开展3个群体的杂交育种提供了参考依据。  相似文献   

10.
为探讨不同地理群体香港牡蛎的杂种优势,于2014年5月开展了广东珠海(Z,生长快)和广西茅尾海(M,抗逆性强)群体间的2×2双列杂交,比较了各实验组早期生长、存活优势,并计算了各阶段的杂种优势,实验由2个杂交组MZ(M♀×Z♂)、ZM(Z♀×M♂)和2个自交组MM(M♀×M♂)、ZZ(Z♀×Z♂)组成。结果表明:浮游期间,正交组(MZ)幼虫在9日龄前未表现出生长优势,但表现出一定的存活优势,幼虫大小存在显著的母本效应;12日龄时正交杂种优势5.34。反交组(ZM)幼虫生长和存活都表现出了正杂种优势,但生长优势值逐渐减小,到了12日龄时壳高与自繁组(ZZ)幼虫间差异不显著(P0.05)。室内苗种培育阶段,杂交稚贝表现出明显的生长、存活优势,正交组(MZ)和反交组(ZM)子代的生长优势分别为7.86±3.12、17.47±13.14;存活优势分别为8.33±1.41、2.86±1.08。以上结果说明两个群体香港牡蛎杂交可以产生杂种优势,可为牡蛎杂种优势开发利用提供参考。  相似文献   

11.
In order to assess the impact of deep-sea mining on the in situ benthic life, we measured the microbial standing stock and concentration of organic nutrients in the deep-sea sediments of the Central Indian Ocean Basin in the Indian pioneer area. Sediments were collected using box core and grab samples during September 1996. The total bacterial numbers ranged from 10 10 -10 11 cells per g -1 dry weight sediment. There was a marginal decrease in the number of bacteria from surface to 30 cm depth, though the subsurface section registered a higher number than did the surface. The highest numbers were encountered at depths of 4-8 cm. The retrievable number of bacteria were two orders less in comparison with the direct total counts of bacteria. An almost homogeneous distribution of bacteria, total organic carbon, living biomass, and lipids throughout the depth of cores indicates active microbial and benthic processes in the deep sea sediments. On the other hand, a uniform distribution of total counts of bacteria, carbohydrates, and total organic carbon in all the cores indicates their stable nature and suggests that they can serve as useful parameters for long-term monitoring of the area after the benthic disturbance. Further studies on temporal variability in this region would not only verify the observed norms of distribution of these variables but would also help to understand restabilization processes after the simulated benthic disturbance.  相似文献   

12.
海上大直径钢管桩打桩过程中,桩周土体受到强烈扰动而发生强度弱化,掌握桩周土体强度弱化规律对于准确预测打桩过程、保证工程安全具有重要意义。为研究土体强度弱化规律,开展了环剪试验模拟打桩对桩周土体的扰动,测试土体强度随剪切速率的变化规律,建立了描述土体强度弱化规律的拟合公式,引入到打桩分析软件中。研究结果表明:土体的强度折减程度不仅与土体本身的性质有关还受到土体的埋深和剪切速率的影响,埋深越深土体强度折减程度越低,剪切速率越高土体强度折减越高,在打桩分析中可采用这里推荐的线性折减方法来模拟不同深度处土体强度的折减规律。  相似文献   

13.
An acoustic inversion method using a wide-band signal and two near field receivers is proposed and applied to multiple layered seabed models including a manganese sediment. The inversion problem can be formulated into a probabilistic model comprised of signals, a forward model, and additive noise. The forward model simulates wide-band signals, such as chirp signals, and is chosen to be the source-waveletconvolution plane wave modeling method. The wavelet matching technique, using weighted least-squares fitting, estimates the sediment sound-speed and thickness on which determination of the possible numerical ranges for a priori uniform distribution is based. The genetic algorithm is applied to a global optimization problem to find a maximum a posteriori solution for determined a priori search space. Here the object function is defined by an L 2 norm of the difference between measured and modeled signals. Not only the marginal pdf but also its statistics are calculated by numerical evaluation of integrals using the samples selected during importance sampling process of the genetic algorithm.  相似文献   

14.
This article reviews information recently available from existing marine and coastal mining for responses to environmental issues affecting marine mining at different depths. It is particularly but not exclusively concerned with those issues affecting seabed biodiversity impact and recovery. Much information has been gathered in the past 10 years from shallow mining operations for construction aggregate, diamonds, and gold, from coastal mines discharging tailings to shallow and deep water, and from experimental deep mining tests. The responses to issues identified are summarized in a series of eight tables intended to facilitate site-specific consideration. Since impacts can spread widely in the surface mixing layer SML, and can affect the biologically productive euphotic zone, the main issues considered arise from the depth of mining relative to the SML of the sea. Where mining is below the SML, the issue is whether it is environmentally better to bring the extraction products to the surface vessel for processing (and waste discharge), or to process the extraction products as much as possible on the seabed. Responses to the issues need to be sitespecific, and dependent on adequate preoperational environmental impact and recovery prediction. For deep tailings disposal from a surface vessel, there are four important environmental unknowns: (1) the possible growth of "marine snow" (bacterial flocs) utilizing the enormous quantities of fine tailings particles (hundreds or thousands of metric tons per day) as nuclei for growth, (2) the possibility that local keystone plankton and nekton species may migrate diurnally down to and beyond the depth of deep discharge and hence be subjected to tailings impact at depth, (3) the burrow-up capability of deep benthos and their ability to survive high rates of tailings deposition, and (4) the pattern and rate of dispersion of a tailings density current through the deep water column from discharge point to seabed. Actions to obtain relevant information in general and site-specifically are suggested.  相似文献   

15.
Particle fluxes were measured 7 m above the sea bottom during the predisturbance, disturbance, and postdisturbance periods by using time series sediment traps attached to seven deep-sea moorings deployed in the INDEX experiment site in the Central Indian Basin. The predisturbance particle fluxes varied between 22.3 to 55.1 mg m -2 day -1 . Increased and variable particle fluxes were recorded by the sediment traps during the disturbance period. The increase observed was 0.5 to 4 times more than the background predisturbance fluxes. The increases in particle fluxes (~4 times) recorded by the sediment trap located in the southwestern direction (DMS-1) were the greatest, which could be the result of preferential movement of resuspended particles generated during the deep-sea benthic disturbance along the general current direction prevailing in this area during the experimental period. Also, the traps located closer to the disturbance area recorded greater fluxes than did the traps far away, across the Deep Sea Sediment Resuspension System path. This variability in recorded particle fluxes by the traps around the disturbance area clearly indicates that physical characteristics such as grain size and density of the resuspended particles produced during the disturbance had an important effect on particle movement. The postdisturbance measurements during ~5 days showed a reduction in particle fluxes of ~50%, indicating rapid particle settlement.  相似文献   

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The advanced piston corer (APC) has been used by the Ocean Drilling Program since 1985 for recovering soft sediments from the ocean floor. The pullout force measured on extracting the core barrel from the sediment is shown to correlate with the average shear strength of the sediment core measured in the ship's laboratory. A simple rule of thumb is derived relating the shear strength of the sediment to the pullout force. Multiple APC holes at individual sites allow the consistency of the pullout measurements to be assessed. The effects of different operational procedures during APC coring are also explored. Although generally applicable, the correlation between pullout force and laboratory measurements of shear strength breaks down for some APC holes, possibly because of the disturbance of some sediment types during the APC coring process. A better understanding of the physical process of APC coring, and its effect on the properties of the sediment both inside and immediately outside the core barrel, would indicate what confidence can be put on the measurement of pullout force as a way of evaluating the in situ shear strength of deep sea sediments.  相似文献   

19.
A set of 27 marine planktonic bacteria isolated from the polar regions was characterized by 16S rDNA sequencing and physiological and biochemical testing. More than half of these bacteria were positive for caseinase, gelatinase and 13-glucosidase, and could utilize glucose, maltose or malic acid as carbon source for cell growth. Twelve isolates expressed nitrate reduction activities. Except for one antarctic isolate BSwlO175 belonging to Actinobacteria phylum, these isolates were classified as γ-Proteobacteria, suggesting that γ-Proteobacteria dominated in cultivable marine bacterioplankton at both poles. Genus Pseudoalteromonas was the predominant group in the Chukchi Sea and the Bering Sea, and genus ShewaneUa dominated in cultivable bacterioplankton in the Prydz Bay. With sequence similarities above 97%, genus Psychrobacter was found at both poles. These 27 isolates were psychrotolerant, and significant 16S rDNA sequence similarities were found not only between arctic and antarctic marine bacteria ( 〉 99% ), but also between polar marine bacteria and bacteria from other aquatic environments ( ≥ 98.8% ), including temperate ocean, deep sea, pond and lake, suggesting that in the polar oceans less temperature-sensitive bacteria may be cosmopolitan and have a bipolar, even global, distribution at the species level.  相似文献   

20.
Oedometer tests have been carried out on 70 undisturbed surficial clays (at approximately 250 mm below the mudline), mostly collected by free-fall corers from sites widely scattered throughout the deep-sea North Atlantic. Acoustic measurements were also made, initially on contiguous samples and ultimately on the same sample using a geophysically instrumented oedometer which also collected electrical resistivity data. Apart from those quiescent areas below the carbonate compensation depth, such as north of the West Indies where very fine clays exist, most of the samples are silty clays whose geotechnical-geophysical properties are dependent on the type of clay minerals present (and their ability to take in moisture), the sand-size fraction, and the quantity of carbonate present. Thus the pure clays have high compressibilities which decrease on the addition of coarse particles, while the converse is true for the acoustic parameters, these increasing with the sand fraction. Using the notion of the intrinsic compression line for all samples, and comparison to it of the measured compression curves, it is clear that, contrary to some previously held ideas, most deep-sea clays are normally consolidated; the addition of carbonate has the effect of creating an open, stronger sediment skeleton. Interestingly, where information is available, the variation with depth of a sample's acoustic velocity follows the void ratio pressure relationship of the compression curve. This allows the construction of an in-situ sediment compression curve using the in-situ geophysical observations.  相似文献   

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