7 resultados para Dantas, Júlio, 1876-1962.

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本文研究了采自辽宁西部下白垩统义县组和上三叠统羊草沟组的三种植物的生殖器官,它们分别属于银杏目 (Ginkgoales) 和茨康目 (Czekanowskiales)。辽宁银杏 (G. liaoningensis Liu, Crane, Li et Wang sp. nov.) 和纤细堆囊穗 (Sorosaccus gracilis Harris 1935 emend. Liu, Hueber, Li et Wang) 是银杏目植物的雄球花,通过将这两种雄球花与现存银杏 (Ginkgo biloba L.) 雄球花的对比研究,讨论了自晚三叠世至今银杏目雄性生殖器官可能的演化途径。蟹形薄果穗 (Leptostrobus cancer Harris 1951 emend. Liu, Li et Wang) 是茨康目植物的雌性生殖器官,我们根据辽西标本对该种的特征集要做了修订,并对薄果穗属 (Leptostrobus Heer 1876) 的种进行了讨论,将三个种归并到蟹形薄果穗薄。主要内容包括: 1. 银杏属植物雄球花——辽宁银杏 采自中国辽宁下白垩统义县组的辽宁银杏,为葇荑花序状,主轴基部有鳞片。小孢子叶螺旋排列在主轴上,小孢子叶上着生3—4个 (少数为2个) 卵形到椭圆形的小孢子囊。小孢子囊下垂,纵状开裂。成熟花粉粒单沟,长椭圆形;而未成熟的花粉粒处在四分体阶段。辽宁银杏的特征和现存银杏十分相似。主要差别在于辽宁银杏的小孢子叶着生3—4个 (少数为2个) 小孢子囊,而现存银杏的小孢子叶绝大多数着生2个小孢子囊。辽宁银杏在大小及小孢子囊数目上区别于其它的银杏属雄球花化石种,如:英国约克郡侏罗纪的胡顿银杏 (Ginkgo huttoni (Sternberg) Heer) 雄球花,加拿大阿尔贝塔晚白垩世一个未定名的银杏属雄球花。辽宁银杏 (化石) 和银杏 (现存) 的比较支持了根据银杏属胚珠器官而提出的缩减假说,因为自早白垩世至今,银杏属雄球花小孢子叶着生的小孢子囊的数目经历了从3—4个到2个的减少。 2. 银杏目植物雄球花——纤细堆囊穗 本文研究的纤细堆囊穗采自中国东北上三叠统羊草沟组。这种雄球花小孢子 叶末端的裂片在形态上差异很大,这是在以前对这种植物的研究中没有发现的重要特征。这些保存精美的化石对于纤细堆囊穗特征的阐明和修订以及种的复原很有帮助。将中国的标本与西伯利亚堆囊穗 (Sorosaccus sibiricus Prynada 1962)、小堆囊穗 (S. minor Harris 1935)、乌马尔堆囊穗 (S. umaltensis Krassilov 1972) 和被定为长叶拜拉 (Baiera longifolia (Pom.) Heer 1876) 的雄球花进行了比较,发现它们与纤细堆囊穗在特征上一致,故将它们处理为纤细堆囊穗的异名。同时,也讨论了堆囊穗属可能的演化意义。它可能是银杏属的远祖,经过小孢子囊数目的减少和小孢子叶长度的缩短而演化到现在的银杏,而辽西早白垩世的辽宁银杏可能代表了堆囊穗和现代银杏在演化上的一个中间阶段。 3. 茨康目雌性生殖器官——蟹形薄果穗 本文研究的蟹形薄果穗采自辽西上三叠统羊草沟组和下白垩统义县组。羊草沟组的材料是蟹形薄果穗属最早的纪录,从而该种的分布在时间上有了新的资料:从晚三叠世到早白垩世。据标本穗轴顶端的完整性,我们修订了蟹形薄果穗的特征集要和提供了它的复原图,并将三种薄果穗归并到蟹形薄果穗。我们也回顾了薄果穗属自1876年建立以来100多年的研究历史,并列出了该属所有材料,还讨论了该属各种的主要特征和建种依据。

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Gymnocypris przewalskii (Kessler 1876) is an endangered and state-protected rare fish species in Qinghai Lake, China. To further understand the life history and distribution of this fish, five surveys were carried out in Qinghai Lake between 2002-2006. Results of these surveys indicate that fishes were predominantly distributed about 2 m under the surface. In July, significant differences in fish density were found between surface and bottom layers (P = 0.001), and/or between middle and bottom layers (P = 0.025). Fish density was the greatest in the surface layer. In August and October, no significant differences were found between the different layers, but the bottom layer had a greater fish density. Furthermore, there were very large differences among different zones in fish distribution density. Differences in horizontal distribution were not significantly correlated to factors such as water depth and inshore distance, possibly because of very low and uniform fish density. Feeding, changes in water temperature, over-wintering and spawning appeared to influence fish distribution. Hydroacoustic estimates of G. przewalskii biomass in Qinghai Lake increased significantly between 2002 and 2006. We attribute this increase to the management measures put in place to protect this species.

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Amplified fragment length polymorphism (AFLP) was used to analyse the genetic structure of 45 individuals of Gymnocypris przewalskii (Kessler, 1876), an endangered and state-protected rare fish species, from three areas [the Heima (HM), Buha (BH) and Shaliu rivers (SL), all draining into Qinghai Lake]. A total of 563 polymorphic loci were detected. The HM, BH and SL populations have 435, 433 and 391 loci, respectively (Zhu and Wu, 1975), which account for 77.26%, 76.91% and 69.45% of the total number of polymorphic loci of each population, respectively. The Nei indices of genetic diversities (H) of the three populations were calculated to be 0.2869 (HM), 0.2884 (BH) and 0.2663 (SL), respectively. Their Shannon informative indices are 0.4244, 0.4251 and 0.3915, respectively. Research results show that the mean genetic distance between HM and BH is the smallest (0.0511), between BH and SL is the second shortest (0.0608), and between HM and SL is the largest (0.0713), with the mean genetic distance among the three populations being over 0.05. Data mentioned above indicate that the three populations have a certain genetic differentiation. The total genetic diversity (H-t = 0.3045) and the mean value of genetic diversity within the population (H-s = 0.2786) indicate that the variations have mainly come from within the population.

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Chinese Academy of Sciences [KZCX2-YW-315-2]; National Natural Science Foundation of China [40701021, 40625002]; National Key Technology R&D Program of China [2007BAC03A01]

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Dilution incubations and Calanus sinicus addition incubations were simultaneously conducted at five stations in the Yellow Sea in June of 2004 to evaluate the impact of microzooplankton and Calanus sinicus on phytoplankton based on the Chlorophyll a (Chl-a) levels. The Chl-a growth rates (k) ranged from 0.60-1.67 d(-1), while microzooplankton grazed the Chl-a at rates (g) of 0.29-0.62 d(t-1). The addition of C. sinicus enhanced the Chl-a growth rate (Z) by 0.004-0.037 d(-1) ind.(-1) L. C. sinicus abundance ranged from 84.1-160.9 ind. m(-3), which occupied 90.7%-99.1% of the copepod (> 500 mu m) population. The in-situ increase in phytoplankton by C. sinicus community was estimated to be 0.000 4-0.005 9 d(-1). These results showed that microzooplankton were the main grazers of phytoplankton, while C. sinicus induced a slight increase in the levels of phytoplankton.