987 resultados para BB
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O estudo do fluxo de água e do transporte escalar em reservatórios hidrelétricos é importante para a determinação da qualidade da água durante as fases iniciais do enchimento e durante a vida útil do reservatório. Neste contexto, um código de elementos finitos paralelo 2D foi implementado para resolver as equações de Navier-Stokes para fluido incompressível acopladas a transporte escalar, utilizando o modelo de programação de troca de mensagens, a fim de realizar simulações em um ambiente de cluster de computadores. A discretização espacial é baseada no elemento MINI, que satisfaz as condições de Babuska-Brezzi (BB), que permite uma formulação mista estável. Todas as estruturas de dados distribuídos necessárias nas diferentes fases do código, como pré-processamento, solução e pós-processamento, foram implementadas usando a biblioteca PETSc. Os sistemas lineares resultantes foram resolvidos usando o método da projeção discreto com fatoração LU por blocos. Para aumentar o desempenho paralelo na solução dos sistemas lineares, foi empregado o método de condensação estática para resolver a velocidade intermediária nos vértices e no centróide do elemento MINI separadamente. Os resultados de desempenho do método de condensação estática com a abordagem da solução do sistema completo foram comparados. Os testes mostraram que o método de condensação estática apresenta melhor desempenho para grandes problemas, às custas de maior uso de memória. O desempenho de outras partes do código também são apresentados.
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稻属(Oryza L)属于禾本科的稻族,主要分布于世界的热带和亚热带地区。一般认为稻属包括20个左右的野生种和2个栽培种,我国有4-5种。迄今为止,对于稻属中种的数目和划分;稻属中所包括的种类是否为一单系类群;各基因组之闻的关系和起源以及稻属的起源等等,学术界仍然存有争议。本文评述了稻属分子系统学研究的进展,研究中存在的问题以及对未来稻属系统学研究的展望。针对稻属的分子系统学研究中所存在的问题,运用核糖体DNA转录间隔区序列测定、随机扩增多态性DNA(RAD)和SSR-anchoredPCR等分子生物学的手段对稻属中全部23个种的来自中国和世界不同地区的材料开展了分子系统学的研究。所得主要结果如下: 1.对产于中国的三种野生稻和栽培稻的二个亚种的核糖体DNA第一转录间隔区进行了序列测定。 DNA序列分别用PAUP程序进行分支分析和用MEGA程序中的UPGMA和Neighbor-joining进行聚类分析,结果表明核糖体DNA转录间隔区序列适合于进行稻属的分子系统学研究。 2.用荧光自动测序法和人工同位素测序法测定了稻属23个种和4个外类群的转录间隔区的序列。所有的DNA序列用Clustal V程序排阵后,再用PAUP程序进行分支分析。结果表明: A.稻属中的23个种组成四个主要分支,分别相当于Vaughan(1989)的四个种复合体。 B.所有AA基因组的种都在一个分支中。除了O.meridionalis与其它种的关系相对较远外,AA基因组种间有一定程度的分化,但不大。 C.尽管BB、BBCC、CC、CCDD和EE基因组的种都在一个分支中,但它们之间的分化是较为明显的。O.australiensis与该分支中的其它种的关系相对较远。以上两个分支的关系较为密切,它们组成一个自然类群,是稻属的核心部分。 D.O.ridleyi与O.longiglumis非常近缘,它们组成一个分支。 E.O.meyeriana与O.granulata有非常密切的关系。O.brachyantha与O.meyeriana近缘,而与AA基因组的关系较远。O,schlechter/与Leersia hexandra近缘,而与稻属中其它种的关系较远。作为外类群的Porteresia coarctata与稻属的a brachyantha非常近缘,这有可能说明将它作稻属中的一员的观点是正确的。 3.用RAPD和ISSR技术对稻属23介种的36份材料以及Porteresia coar ctata和Leersia hexandra各1份材料进行PCR扩增。16个10-mer RAPD随机引物共扩增出368个多态条带,5个锚定SSR引物共扩增出1 16个多态条带。RAPD和ISSR扩增出的多态条带合在同一数据矩阵中,用NTSYS-pc程序进行聚类分析。得出的结果与ITS序列分支分析的结果相似。 A.从表征图上亦可区分出四个群。所有的AA基因组的种聚在一起,O.nivara与O.rufipogon的关系密切,两个种的界限不清楚,所以认为它们是一个种:O.rufipogon.。 B.分布于中国的O.officinalis与O.minuta非常近缘,而菲律宾的四倍体O.officinalis则与同是基因组的O.eichingeri和O.rhizomatis关系密切。EE基因组的O.australiensis与Officinalis群保持一种松散的联系。 C。具FF基因组的O.brachyantha与O.schlechteri近缘,它们与Porteresiacoarctata和Leersia hexandra关系的密切程度要大于它们与稻属其它种的关系。 D。最后讨论了RAPD和ISSR用予植物属内的系统发育研究存在的问题。本研究结果说明RAPD和ISSR适合于进行属内近缘种亲缘关系的研究。
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本文采用物种生物学的方法分析了绵枣[Scilla sinensis (Lour.) Merr.]多倍体复合体细胞地理、形态、生态适应和发育节律的变异。此外,还对AA细胞型居群进行了等位酶分析和杂交实验。结果如下: 1. 细胞学检查秀自中国境内45个居群,检出AA、AB、BB、AAA、BBB和AABB 6个细胞型。多数居群由1种细胞型组成。AA几乎占据着该复合体在中国的整个分布区。BB仅局限于华中和华东地区。AABB分布于华中和华东地区的北侧、东北地区的东南部及台湾岛。45个居的细胞型组成以细胞地理分布图表示。总结前人与我们的工作,该复合体中已发现12个整倍体细胞型(AA、AB、BB、AAA、ABB、BBB、AAAA、AABB、ABBB、BBBB、AABBB和AAABBB)和各种基于多倍体的非整倍体。其基本细胞型为AA、BB和AABB。AA分布于除日本和大陆上BB分布区中心外该复合体的整个分布区。BB分布中国华东和华中地区、朝鲜的济州岛和日本。AABB分布日本、朝鲜和中国东北地区的东南部及华中、华东地区的东侧。另外,BB居群染色体数量最多,AABB次之,而AA最低。 2. 野外调查和栽培实验表明AA细胞型在中国东部和西部地区间存在形态和生态分化,东部居群形态变异较小,其共同特征是纺锤形鳞茎,红褐色;根茎短柱状;叶多灰绿色,蜡质明显,斜升;花葶较强壮而直立;花紫红色;子房每室1胚珠。西部为AA细胞型的现代变异中心,居群间形态变异大,区别于东部居群的特点是鳞茎纺锤形或近球形,根茎短柱状或盘状,叶鲜绿色,蜡质不明显,平卧地面;花葶1-4枝,直立,多花葶时斜升;花白色或淡红色,子房每室胚珠1 ~ 2枚。AA和BB细胞型是向着适于不同地理区的环境发展,因而具有不同的形态和生物学特性的两个类型。BB鳞茎近球形,黄褐色,根茎不明显,为盘状;叶墨绿色,柔软而平卧地面,是适于阴湿的林下环境的结果。春季萌发较早,约在3月初,其夏季休眠特性刚好可渡过华中地区东部夏季的高温多雨,待秋季温度下降时开花结实。而AA划适应了光照较强而干旱的山坡草地灌丛的类型。其发育节律变异较大,但萌动较BB晚,无夏季休眠。AABB细胞型的形态介于两祖先二倍体之间,没有形成独特的生态适应和发育节律。 3. 对AA细胞型的等位酶分析表明,该种的居群表现出较高的遗传变异(A = 2.0, P = 58.6%, H_o = 0.172 和 H_e = 0.185)。居群间存在较明显的分化(F_(ST) = 0.314)。东西两地区间也存在遗传分化。 4. AA居群间多数组合的F_1都低于对照的花粉育性和结实率。尤其是东部和西部居群间组合的F_1花粉育性和结实率极低,几近不育。如果仅仅考虑该复合体的形态变异,它只能作为一个形态复杂多变的种,Scilla sinensis (Lour) Merr.。可是如此处理就掩盖了其细胞型间清晰的进化关系。为弥补这一缺陷,当研究细胞型间的进化关系时,可采用生物学和概念。AA细胞型为S. sinensis (Lour.) Merr., 可分两亚种:subsp. sinensis 和 subsp. alboviridis (Hand.-Mazz.) K. Y. Ding。BB细胞型为S. thunbergii Miyabe et Kudo。而ABB及含有A和B染色体组的多倍体作为杂交种S. x sino-japonica K.Y.Ding。两个二倍体种形态界限很清楚,但AABB的存在湮灭了两者的间断。
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稻属(Oryza L.)属于禾本科稻族(Oryzeae Dumortier)。本属包括AA,BB,BBCC,CC,CCDD,EE,FF,GG,HHJJ和HHKK十个基因组,二十余种。其中Oryza officinalis复合体包括BB,BBCC,CC,CCDD和EE五个基因组,九个种。众多的学者对该复合体进行了广泛深入的研究,为后续研究奠定了坚实的基础。然而,迄今为止,多倍体物种形成问题许多没有解决,基因组间的关系尚未完全阐明,甚至有些多倍体物种的基因组组成仍未确认。 本文评述了Oryza officinalis复合体中基因组研究的历史和现状,用基因组原位杂位(GISH)的方法,对该复合体四倍体物种的基因组组成作了验证;对B,C,D和E四个基因组间的关系进行了研究。同时对基因组原位杂交的方法,原位杂交鉴定多倍体基因组的组成以及研究基因组间关系的方法作了一些探讨。其主要研究结果如下: 一. 原杂交方法的研究:1)染色体制片:比较研究了不同的制片方法,发现压片法适用于大染色体的材料;将酶解/空气干燥法(Fukui et al., 1992)加以改进后,特别适宜于小染色体植物材料的制片。2)根尖储存时间和条件对原位杂交的影响:发现在-20 ℃的酒精(70%)中储存8个月以内的根尖材料,可用于原位杂交;而在-20 ℃的固定液中储藏18个月的根尖,DNA降解严重,不能用于GISH。3)探针标记:比较了随机引物法、缺口平移法和两步标记法(先用随机引物标记后,再用缺口平移法进行标记的方法)的优缺点。结果显示两步标记法是最佳标记方法。 二. GISH鉴定异源多倍体的方法:用两个异源四倍体Oryza minuta和Scilla sinensis (2n = 34)做染色体制片,进行原位杂交实验,结果表明:1)用二倍体亲本基因组之一做探针而不用封阻DNA, 可以鉴别Oryza minuta而不能鉴别Scilla sinensis中的基因组。2)用一个二倍体亲本做探针而用另一个做封阻,能够区分Scilla sinensis的两个基因组;但过量的封阻DNA将可以造成一些实验假象。3)同时用两个亲本的DNA做探针,不仅能够有效分辨不同的基因组,还能够根据交叉杂交程度推测基因组间的分化程度,是鉴别异源多倍体最有效的方法。 三. GISH鉴定稻属四倍体的基因组组成:1)Oryza minuta, O. punctata和O. malampuzhaensis的基因组的组成都为BBCC。2)Oryza minuta中B基因组和二倍体O. punctata中的B基因组之间存在着明显的基因组内分化。3)O. alta是一个异源多倍体,其基因组组成为CCDD。但C和D之间的分化不彻底,可以认为它不是一个严格意义上的异源多倍体。 四. GISH研究B,C,D和E基因组间的关系:1)B基因组和C基因组之间的关系最远;E和C之间的分化同E和B之间的分化程度接近,但E和C之间的分化比E和D之间的分化要小一些;C和D之间的分化不彻底,关系最近。
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稻属(Oryza L.)隶属于禾本科(Gramineae)Ehrhartoideae亚科的稻族(Oryzeae),包括两个栽培种(亚洲栽培稻O. sativa和非洲栽培稻O. glaberrima)和大约20多个野生种,广布于热带亚洲、非洲、大洋洲、中美洲和南美洲。药用野生稻复合体(O. officinalis complex)是稻属中最大、也是最复杂的一个复合体,共包括9个种,含有5种染色体组类型(B、C、BC、CD 和E)。作为栽培稻品质改良的重要基因库,药用野生稻复合体在稻属中具有重要的地位。但是,相似的形态和重叠的地理分布使部分物种的分类和鉴定一直较为困难;种内染色体组构成和倍性的不同更增加了分类鉴定的复杂性。这种情况阻碍了对这些野生稻遗传优势的有效利用。另外,由于物种间断分布和缺乏明确的二倍体亲本等原因,药用野生稻复合体内的异源多倍体起源一直存在争议。本文通过细胞核乙醇脱氢酶基因(Adh)和nrDNA的内转录间隔区(ITS)限制性片段长度多态性(RFLP)分析;叶绿体matK 基因、trnL 内含子和trnL-trnF 基因间隔区、核基因Adh和GPA1以及核糖体DNA ITS片段等序列比较的方法,对药用野生稻复合体中染色体组和物种的鉴定、种间系统发育关系,以及异源多倍体CCDD物种的起源和多倍体ITS的分子进化等进行了研究。主要研究结果如下: 1. 利用核Adh 基因限制性片段长度多态性,检测了来自国际水稻研究所基因库的64份药用野生稻复合体的样品。结果证明,所有O. rhizomatis样品都是含C染色体组的二倍体,所有O. minuta样品都是含BC 染色体组的四倍体。但是,种子库中鉴定为O. officinalis、O. punctata和O. eichingeri的样品中,同时都发现了含C染色体组的二倍体和含BC染色体组的四倍体。四倍体的O. officinalis只在印度分布,而且曾被描述为另一个种O. malampuzhaensis。 四倍体的O. punctata,也被一些学者称为O. schweinfurthiana,被发现和其二倍体一样分布广泛。值得注意的是,有两个曾被作为O. officinalis 四倍体的样品实际上是含有CD染色体组的物种O. latifolia。我们的结果增进了对国际水稻研究所种子库中部分野生稻样品染色体组构成的理解, 纠正了以往对药用野生稻复合体样品的错误鉴定,为今后进一步研究和利用这部分资源提供了种质编目的重要基础。 2. 对稻属中代表不同地理分布区的、含CD染色体组的11个样品(包括77个克隆)的ITS片段进行了测序。基于这些ITS序列的限制性片段长度多态性,提出一个快速而可靠的区分稻属CD 染色体组物种的方法。这个方法的具体步骤是:(1)利用通用引物扩增ITS 片段;(2)利用限制性内切酶FokI和/或DraⅢ消化PCR扩增产物;(3)用1%的琼脂糖胶电泳并根据消化产物的片段长度多态性来区分不同物种。 3. 利用包括两个叶绿体片段(matK和 trnL-trnF)、nrDNA内转录间隔区(ITS)和三个核基因(Adh1、Adh2和GPA1)的同源序列分析,探讨了药用野生稻复合体中二倍体物种和它们所代表的染色体组之间的系统发育关系。独立和合并的基因系统发育树都显示了一致的结果,即C染色体组和B染色体组的亲缘关系要比它们和E染色体组的近。三个含C染色体组的二倍体中,O. officinalis 和O. rhizomatis表现出较近的亲缘关系。值得注意的是,在O. eichingeri种内,尽管基于多基因的数据支持来自斯里兰卡的样品和来自非洲的样品聚成一个分支,但是较低的支持率表明, 两个地区的样品之间存在着较高的遗传分化。 4. 稻属中含CD染色体组的物种特产于拉丁美洲,包括O. alta、 O. grandiglumis 和O. latifolia。由于具有相同的染色体组类型、相似的形态特征和重叠的地理分布,这3个物种间的系统发育关系一直存在争论。另外,因为美洲大陆上没有含C和D染色体组的二倍体物种存在,对这些含CD染色体组物种的可能起源也有不同的假设被提出。使这个问题更具挑战性的是,尽管开展了世界范围的收集,至今仍没有找到含D 染色体组的二倍体物种。在本研究中,代表含C、CD和E染色体组以及含G染色体组的外类群共7个物种,共15份样品的2个叶绿体片段(matK和trnL-trnF)和3个核基因(Adh1,Adh2 和 GPA1)部分片段被测序。基于简约法、距离法和最大似然法的系统发育分析都充分支持含CD染色体组的物种起源于一次杂交事件的推论,并且显示,在物种形成时,含C染色体组的物种(O. officinalis 或O. rhizomatis 而非O. eichingeri)可能承担了母本,而含E染色体组的物种(O. australiensis)则可能承担了父本。另外,CCDD物种间非常一致的系统发育关系表明,非常大的分歧存在于 O. latifolia 和其它两个种(O. alta和O. grandiglumis)之间,这个结果倾向于将后两个种处理为同种或同种下不同分类群。 5. 基于178个克隆序列比较,探讨了ITS在稻属多倍体中的致同进化及其系统学意义。研究发现稻属异源四倍体的ITS存在不同形式的进化方式:首先,非洲BBCC四倍体O. eichingeri和O. punctata 的ITS片段同时保留了双亲拷贝,而且系统发育研究表明,二倍体的O. eichingeri和O. punctata 可能是这两个四倍体的直接祖先;其次,亚洲四倍体O. malampuzhaensis和O. minuta 的ITS仅定向保留母本ITS拷贝;另外,美洲CCDD四倍体的ITS序列发生了双向致同进化,即O. alta和O. grandiglumis的ITS位点一致化成C染色体组类型,而O. latifolia一致化成 D/E 染色体组类型。我们的研究进一步表明在利用ITS片段进行系统发育分析时,特别是涉及异源多倍体时必须慎重。 6. 利用栽培稻的微卫星引物,对含B/C染色体组的6个物种,157个体的SSR位点进行扩增。结果在这些亲缘关系稍远的野生稻中得到7个SSR位点,其中5个位点表现出多态性。比较BB、CC和BBCC物种SSR位点的每位点平均等位基因数A、多态位点百分率P和期望杂合度He ,3项指标发现,四倍体物种的遗传多样性,总体上要高于二倍体物种;二倍体物种内部,O. officnalis的遗传变异最大。另外,以遗传相关性为标准,讨论了B/C染色体组物种间的系统发育关系,同时推测了现存二倍体物种和4个BBCC四倍体物种的遗传关系。
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Modern theories of motor control incorporate forward models that combine sensory information and motor commands to predict future sensory states. Such models circumvent unavoidable neural delays associated with on-line feedback control. Here we show that signals in human muscle spindle afferents during unconstrained wrist and finger movements predict future kinematic states of their parent muscle. Specifically, we show that the discharges of type Ia afferents are best correlated with the velocity of length changes in their parent muscles approximately 100-160 ms in the future and that their discharges vary depending on motor sequences in a way that cannot be explained by the state of their parent muscle alone. We therefore conclude that muscle spindles can act as "forward sensory models": they are affected both by the current state of their parent muscle and by efferent (fusimotor) control, and their discharges represent future kinematic states. If this conjecture is correct, then sensorimotor learning implies learning how to control not only the skeletal muscles but also the fusimotor system.
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The mission of NOAA’s Office of National Marine Sanctuaries (ONMS) is to serve as the trustee for a system of marine protected areas, to conserve, protect and enhance biodiversity. To assist in accomplishing this mission, the ONMS has developed a partnership with NOAA’s Center for Coastal Monitoring and Assessment’s Biogeography Branch (CCMA-BB) to conduct biogeographic assessments of marine resources within and adjacent to the marine waters of NOAA’s National Marine Sanctuaries (Kendall and Monaco, 2003). Biogeography is the study of spatial and temporal distributions of organisms, their associated habitats, and the historical and biological factors that influence species’ distributions. Biogeography provides a framework to integrate species distributions and life history data with information on the habitats of a region to characterize and assess living marine resources within a sanctuary. The biogeographic data are integrated in a Geographical Information System (GIS) to enable visualization of species’ spatial and temporal patterns, and to predict changes in abundance that may result from a variety of natural and anthropogenic perturbations or management strategies (Monaco et al., 2005; Battista and Monaco, 2004). Defining biogeographic patterns of living marine resources found throughout the Northwestern Hawaiian Islands (NWHI) was identified as a priority activity at a May 2003 workshop designed to outline scientifi c and management information needs for the NWHI (Alexander et al., 2004). NOAA’s Biogeography Branch and the Papahanaumokuakea Marine National Monument (PMNM) under the direction of the ONMS designed and implemented this biogeographic assessment to directly support the research and management needs of the PMNM by providing a suite of spatially-articulated products in map and tabular formats. The major fi ndings of the biogeographic assessment are organized by chapter and listed below.
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Since 2001, NOAA National Centers for Coastal Ocean Science (NCCOS), Center for Coastal Monitoring and Assessment’s (CCMA) Biogeography Branch (BB) has been working with federal and territorial partners to characterize, monitor, and assess the status of the marine environment across the U.S. Virgin Islands (USVI). At the request of the St. Thomas Fisherman’s Association (STFA) and NOAA Marine Debris Program, CCMA BB developed new partnerships and novel technologies to scientifically assess the threat from derelict fish traps (DFTs). Traps are the predominant gear used for finfish and lobster harvesting in St. Thomas and St. John. Natural phenomena (ground swells, hurricanes) and increasing competition for space by numerous user groups have generated concern about increasing trap loss and the possible ecological, as well as economic, ramifications. Prior to this study, there was a general lack of knowledge regarding derelict fish traps in the Caribbean. No spatially explicit information existed regarding fishing effort, abundance and distribution of derelict traps, the rate at which active traps become derelict, or areas that are prone to dereliction. Furthermore, there was only limited information regarding the impacts of derelict traps on natural resources including ghost fishing. This research identified two groups of fishing communities in the region: commercial fishing that is most active in deeper waters (30 m and greater) and an unknown number of unlicensed subsistence and or commercial fishers that fish closer to shore in shallower waters (30 m and less). In the commercial fishery there are an estimated 6,500 active traps (fish and lobster combined). Of those traps, nearly 8% (514) were reported lost during the 2008-2010 period. Causes of loss/dereliction include: movement of the traps or loss of trap markers due to entanglement of lines by passing vessels; theft; severe weather events (storms, large ground swells); intentional disposal by fishermen; traps becoming caught on various bottom structures (natural substrates, wrecks, etc.); and human error.
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Scientific and anecdotal observations during recent decades have suggested that the structure and function of the coral reef ecosystems around St. John, U.S. Virgin Islands have been impacted adversely by a wide range of environmental stressors. Major stressors included the mass die-off of the long-spined sea urchin (Diadema antillarum) in the early 1980s, a series of hurricanes (David and Frederick in 1979, and Hugo in 1989), overfishing, mass mortality of Acropora species and other reef-building corals due to disease and several coral bleaching events. In response to these adverse impacts, the National Centers for Coastal Ocean Science (NCCOS), Center for Coastal Monitoring and Assessment, Biogeography Branch (CCMA-BB) collaborated with federal and territorial partners to characterize, monitor, and assess the status of the marine environment around the island from 2001 to 2012. This 13-year monitoring effort, known as the Caribbean Coral Reef Ecosystem Monitoring Project (CREM), was supported by the NOAA Coral Reef Conservation Program as part of their National Coral Reef Ecosystem Monitoring Program. This technical memorandum contains analysis of nine years of data (2001-2009) from in situ fish belt transect and benthic habitat quadrat surveys conducted in and around the Virgin Islands National Park (VIIS) and the Virgin Islands Coral Reef National Monument (VICR). The purpose of this document is to: 1) Quantify spatial patterns and temporal trends in (i) benthic habitat composition and (ii) fish species abundance, size structure, biomass, and diversity; 2) Provide maps showing the locations of biological surveys and broad-scale distributions of key fish and benthic species and assemblages; and 3) Compare benthic habitat composition and reef fish assemblages in areas under NPS jurisdiction with those in similar areas not managed by NPS (i.e., outside of the VIIS and VICR boundaries). This report provides key information to help the St. John management community and others understand the impacts of natural and man-made perturbations on coral reef and near-shore ecosystems. It also supports ecosystem-based management efforts to conserve the region’s coral reef and related fauna while maintaining the many goods and ecological services that they offer to society.
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The St. Croix East End Marine Park (STXEEMP) was established in 2003 as the first multi-use marine park managed by the U.S. Virgin Islands Department of Planning and Natural Resources. It encompasses an area of approximately 155 km2 and is entirely within Territorial waters which extend up to 3 nautical miles from shore. As stated in the 2002 management plan, the original goals were to: protect and maintain the biological diversity and other natural values of the area; promote sound management practices for sustainable production purposes; protect the natural resource base from being alienated for other land use purposes that would be detrimental to the area’s biological diversity; and to contribute to regional and national development (The Nature Conservancy, 2002). At the time of its establishment, there were substantial data gaps in knowledge about living marine resources in the St. Croix, and existing data were inadequate for establishing baselines from which to measure the future performance of the various management zones within the park. In response to these data gaps, National Centers for Coastal Ocean Science (NCCOS), Center for Coastal Monitoring and Assessment, Biogeography Branch (CCMA-BB) worked with territorial partners to characterize and assess the status of the marine environment in and around the STXEEMP and land-based stressors that affect them. This project collected and analyzed data on the distribution, diversity and landscape condition of marine communities across the STXEEMP. Specifically, this project characterized (1) landscape and adjacent seascape condition relevant to threats to coral reef ecosystem health, and (2) the marine communities within STXEEMP zones to increase local knowledge of resources exposed to different regulations and stressors.
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NOAA’s Coral Reef Conservation program (CRCP) develops coral reef management priorities by bringing together various partners to better understand threats to coral reef ecosystems with the goal of conserving, protecting and restoring these resources. Place-based and ecosystem-based management approaches employed by CRCP require that spatially explicit information about benthic habitats and fish utilization are available to characterize coral reef ecosystems and set conservation priorities. To accomplish this, seafloor habitat mapping of coral reefs around the U.S. Virgin Islands (USVI) and Puerto Rico has been ongoing since 2004. In 2008, fishery acoustics surveys were added to NOAA survey missions in the USVI and Puerto Rico to assess fish distribution and abundance in relation to benthic habitats in high priority conservation areas. NOAA’s National Centers for Coastal Ocean Science (NCCOS) have developed fisheries acoustics survey capabilities onboard the NOAA ship Nancy Foster to complement the CRCP seafloor habitat mapping effort spearheaded by the Center for Coastal Monitoring and Assessment Biogeography Branch (CCMA-BB). The integration of these activities has evolved on the Nancy Foster over the three years summarized in this report. A strategy for improved operations and products has emerged over that time. Not only has the concurrent operation of multibeam and fisheries acoustics surveys been beneficial in terms of optimizing ship time and resources, this joint effort has advanced an integrated approach to characterizing bottom and mid-water habitats and the fishes associated with them. CCMA conducts multibeam surveys to systematically map and characterize coral reef ecosystems, resulting in products such as high resolution bathymetric maps, backscatter information, and benthic habitat classification maps. These products focus on benthic features and live bottom habitats associated with them. NCCOS Centers (the Center for Coastal Fisheries and Habitat Research and the Center for Coastal Environmental Health and Biomolecular Research) characterize coral reef ecosystems by using fisheries acoustics methods to capture biological information through the entire water column. Spatially-explicit information on marine resources derived from fisheries acoustics surveys, such as maps of fish density, supports marine spatial planning strategies and decision making by providing a biological metric for evaluating coral reef ecosystems and assessing impacts from pollution, fishing pressure, and climate change. Data from fisheries acoustics surveys address management needs by providing a measure of biomass in management areas, detecting spatial and temporal responses in distribution relative to natural and anthropogenic impacts, and identifying hotspots that support high fish abundance or fish aggregations. Fisheries acoustics surveys conducted alongside multibeam mapping efforts inherently couple water column data with information on benthic habitats and provide information on the heterogeneity of both benthic habitats and biota in the water column. Building on this information serves to inform resource managers regarding how fishes are organized around habitat structure and the scale at which these relationships are important. Where resource managers require place-based assessments regarding the location of critical habitats along with high abundances of fish, concurrent multibeam and fisheries acoustics surveys serve as an important tool for characterizing and prioritizing coral reef ecosystems. This report summarizes the evolution of fisheries acoustics surveys onboard the NOAA ship Nancy Foster from 2008 to 2010, in conjunction with multibeam data collection, aimed at characterizing benthic and mid-water habitats in high priority conservation areas around the USVI and Puerto Rico. It also serves as a resource for the continued development of consistent data products derived from acoustic surveys. By focusing on the activities of 2010, this report highlights the progress made to date and illustrates the potential application of fisheries data derived from acoustic surveys to the management of coral reef ecosystems.
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Since 1999, NOAA’s Center for Coastal Monitoring and Assessment, Biogeography Branch (CCMA-BB) has been working with federal and territorial partners to characterize monitor and assess the status of the marine environment in southwestern Puerto Rico. This effort is part of the broader NOAA Coral Reef Conservation Program’s (CRCP) National Coral Reef Ecosystem Monitoring Program (NCREMP). With support from CRCP’s NCREMP, CCMA conducts the “Caribbean Coral Reef Ecosystem Monitoring project” (CREM) with goals to: (1) spatially characterize and monitor the distribution, abundance and size of marine fauna associated with shallow water coral reef seascapes (mosaics of coral reefs, seagrasses, sand and mangroves); (2) relate this information to in situ fine-scale habitat data and the spatial distribution and diversity of habitat types using benthic habitat maps; (3) use this information to establish the knowledge base necessary for enacting management decisions in a spatial setting; (4) establish the efficacy of those management decisions; and (5) develop data collection and data management protocols. The monitoring effort of the La Parguera region in southwestern Puerto Rico was conducted through partnerships with the University of Puerto Rico (UPR) and the Puerto Rico Department of Natural and Environmental Resources (DNER). Project funding was primarily provided by NOAA CRCP and CCMA. In recent decades, scientific and non-scientific observations have indicated that the structure and function of the coral reef ecosystem in the La Parguera region have been adversely impacted by a wide range of environmental stressors. The major stressors have included the mass Diadema die off in the early 1980s, a suite of hurricanes, overfishing, mass mortality of Acropora corals due to disease and several coral bleaching events, with the most severe mass bleaching episode in 2005. The area is also an important recreational resource supporting boating, snorkeling, diving and other water based activities. With so many potential threats to the marine ecosystem several activities are underway or have been implemented to manage the marine resources. These efforts have been supported by the CREM project by identifying marine fauna and their spatial distributions and temporal dynamics. This provides ecologically meaningful data to assess ecosystem condition, support decision making in spatial planning (including the evaluation of efficacy of current management strategies) and determine future information needs. The ultimate goal of the work is to better understand the coral reef ecosystems and to provide information toward protecting and enhancing coral reef ecosystems for the benefit of the system itself and to sustain the many goods and services that it offers society. This Technical Memorandum contains analysis of the first seven years of fish survey data (2001-2007) and associated characterization of the benthos. The primary objectives were to quantify changes in fish species and assemblage diversity, abundance, biomass and size structure and to provide spatially explicit information on the distribution of key species or groups of species and to compare community structure across the seascape including fringing mangroves, inner, middle, and outer reef areas, and open ocean shelf bank areas.
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This poster presents information on the status and trends of coral reef ecosystems in St. Croix, US Virgin Islands (USVI). Data were collected by NOAA’s Center for Coastal Monitoring and Assessment Biogeography Branch (CCMA-BB) from 2001-2006 at 1,275 random locations in and around Buck Island Reef National Monument (BIRNM). The main objective was to quantify changes in fish species and assemblage diversity, abundance, biomass and size structure; to provide spatially explicit information on the distribution of key species or groups of species; and to compare community structure inside versus outside of BIRNM.
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本文通过细胞遗传学、mtDNARFLP(线粒体DNA、限制性片段长度多态性)和血液蛋白及同工酶3个方面的研究,分析了云南文山黄牛和迪庆黄牛的遗传多样性和遗传分化关系。结果:(1)细胞遗传学云南两个地方黄牛品种的Y染色体形态及其C一带具有显著多态性。文山黄牛和迪庆黄牛分别为一小的近端部和亚申部(或中部)着丝位Y染色体,并分别在Y染色体的臂端部和短臂的臂端部显示弱阳性C一带,说明文山黄牛的父系起源可能是瘤牛(Bosindicus),而迪庆黄牛是普遍牛(Bostaurus)。推测两种Y染色体可能是臂问倒位的结果。(2)mtD-NARFLP两个黄牛品种的111个个体的mtDNA经8种限制性内切酶酶切后,有个酶表现出多态,共检测到17种限制性态型。归结出的3种基因单倍型,分别是A-A-A-A-A-A-A型(瘤斗)、B-B-B-B-B—B-B型(普通型)和A-C-B-B-C-A-A型(耗半Bosgrunniens)。从基因单倍型在群体中的表现可看出,文山黄牛和迪庆黄牛都具有瘤牛和普通牛两种母系起源。但文山黄牛以瘤牛血统为主,迪庆黄牛以普通牛血统为主,而且还可能含有部价耗牛的血统。(3)血液蛋白及同工酶分析了两个黄牛品种的...