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Sargassum horneri is a common brown macro-alga that is found in the inter-tidal ecosystems of China. To investigate the current status of seaweed resources and provide basic data for its sustainable development, ISSR (inter simple sequence repeat) and SRAP (sequence related amplified polymorphism) markers were used to analyze the population genetics among nine natural populations of S. horneri. The nine studied populations were distributed over 2 000 km from northeast to south China. The percentage of polymorphic loci P% (ISSR, 99.44%; SRAP, 100.00%), Nei’s genetic diversity H (ISSR, 0.107-0.199; SRAP, 0.100-0.153), and Shannon’s information index I (ISSR, 0.157-0.291; SRAP, 0.148-0.219) indicated a fair amount of genetic variability among the nine populations. Moreover, the high degree of gene differentiation G st (ISSR, 0.654; SRAP, 0.718) and low gene flow N m (ISSR, 0.265; SRAP, 0.196) implied that there was significant among-population differentiation, possibly as a result of habitat fragmentation. The matrices of genetic distances and fixation indices (F st ) among the populations correlated well with their geographical distribution (Mantel test R=0.541 5, 0.541 8; P=0.005 0, 0.002 0 and R=0.728 6, 0.641 2; P=0.001 0, 0.001 0, respectively); the Rongcheng population in the Shandong peninsula was the only exception. Overall, the genetic differentiation agreed with the geographic isolation. The fair amount of genetic diversity that was revealed in the S. horneri populations in China indicated that the seaweed resources had not been seriously affected by external factors.  相似文献   
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遗传标记经历了形态标记、细胞学标记、蛋白质标记及DNA标记的四个重要发展历程。纵观遗传学的发展历史,遗传学的发展推动了新型遗传标记的发展,每一种新型遗传标记的发现,均推进了遗传理论与技术的发展。19世纪后期,孟德尔以豌豆为材料,利用7对形态学标记对杂种后代的不同个体依据性状表现进行归类分析,发现了著名的遗传分离规律和独立分配规律。细胞学标记是指能明确显示遗传多态性的细胞学特征,如染色体形态、数目和结构在不同物种中的差异等,可以作为一种遗传标记来进行基因定位。20世纪50年代,人们发现同工酶是一种可用于物种起源与进化研究、种质鉴定、分类等诸多领域的分子标记技术(Markert et al.,1959)20世纪后期以来,DNA分子标记技术不断涌现,相继建立了RFLP(restriction fragment lengthen polymorphisis)、DNA指纹 (DNA fingerprint),RAPD (random anplified polymophism DNA), AFLP(amplified fragnent lengthen polynorphisn)、微卫星 DNA (microsate llite DNA).SNP(single nucleotide polymorphisn)等专门的技术,在生物研究中得以广泛应用。分子标记技术应用于藻类学研究较晚,主要用于藻类的系统发生、地理分布、种群遗传、分类、亲本鉴定、杂种优势的鉴别及种质鉴定等领域。  相似文献   
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1 INTRODUCTION The red alga Gracilaria belongs to Gracilari- aceae, Gigartinales, Florideophyceae, and includes over 100 recorded species, wildly distributing in tropical and temperate regions (Oliveira and Plastino, 1994), and is useful for producing val…  相似文献   
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分子标记概述及其在藻类中的应用   总被引:1,自引:0,他引:1  
遗传标记经历了形态标记、细胞学标记、蛋白质标记及DNA标记的四个重要发展历程。纵观遗传学的发展历史,遗传学的发展推动了新型遗传标记的发展,每一种新型遗传标记的发现,均推进了遗传理论与技术的发展。19世纪后期,孟德尔以豌豆为材料,利用7对形态学标记对杂种后代的不同个体依据性状表现进行归类分析,发现了著名的遗传分离规律和独立分配规律。细胞学标记是指能明确显示遗传多态性的细胞学特征,如染色体形态、数目和结构在不同物种中的差异等,可以作为一种遗传标记来进行基因定位。20世纪50年代,人们发现同工酶是一种可用于物种起源与…  相似文献   
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Grateloupia turuturu is a commercial red alga with potential value in nutraceuticals and pharmaceuticals. To supplement information on its life history and verify whether carpospores can be used for seedling culture, early development of G. turuturu was investigated under culture conditions (27°C, 10-13 mol/(m2.s) in irradiance, photoperiod 10:14 h L:D). Three physiological stages were recognized by continuous microscopic observation: division stage, discoid crust stage, and juvenile seedling stage. At the beginning of the division stage, the carpospores developed germ tubes into which the carpospore protoplasm was evacuated, and then the carpospore protoplasm in the germ tubes began to divide continuously until discoid crusts formed. Finally, upright thalli appeared on the discoid crusts and developed into juvenile seedlings. It took about 60 days for carpospores to develop into juvenile seedlings. The growth parameters, including germination rate for carpospores and discoid crust diameter, were recorded. These results contribute more information on the life cycle, and at the same time are of great significance in the scaling-up of artificial seedling cultures of G. turuturu.  相似文献   
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