933 resultados para Racial Crossing


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The experiments reported were started as early as 1933, when indications were found in class material that the factor for small pollen, spl, causes not only differences in the size of pollen grains and in the growth of pollen tubes, but also a competition between megaspores, as first observed by RENNER (1921) in Oenothera. Dr. P. C. MANGELSDORF, who had kindly furnished the original seeds, was informed and the final publication delayed untill his publication in 1940. A further delay was caused by other circunstances. The main reason for the differences of the results obtained by SINGLETON and MANGELSDORF (1940) and those reported here, seems to be the way the material was analysed. I applied methods of a detailed statistical analysis, while MANGELSDORF and SINGLETON analysed pooled data. 1) The data obtained on pollen tube competition indicate .that there is about 3-4% of crossing-over between the su and sp factors in chromosome IV. The elimination is not always complete, but from 0 to 10% of the sp pollen tubes may function, instead of the 50% expected without elimination. These results are, as a whole, in accordance with SINGLETON and MANGELSDORF's data. 2) Female elimination is weaker and transmission determined as between 16 to 49,5%, instead of 50% without competition, the values being calculated by a special formula. 3) The variability of female elimination is partially genotypical, partially phenotypical. The former was shown by the difference in the behavior of the two progenies tested, while the latter was very evident when comparing the upper and lower halves of ears. For some unknown physiological reason, the elimination is generally stronger in the upper than in the lower half of the ear. 4) The female elimination of the sp gene may be caused theoretically, by either of two processes: a simple lethal effect in the female gametophyte or a competition between megaspores. The former would lead not only to the abortion of the individual megaspores, but of the whole uniovulate ovary. In the case of the latter, the abortive megaspore carrying the gene sp will be substituted in each ovule by one of the Sp megaspores and no abortion of ovaries may be observed. My observations are completely in favor of the second explication: a) The ears were as a whole very well filled except for a few incomplete ears which always appear in artificial pollinations. b) Row arrangement was always very regular. c) The number of kernels on ears with elimination is not smaller than in normal ears, but is incidentally higher : with elimnation, in back-crosses 354 kernels and in selfed ears 390 kernels, without elimination 310 kernels per ear. d) There is no correlation between the intensity of elimination and the number of grains in individual ears; the coefficient; of linear correlation, equal to 0,24, is small and insignificant. e) Our results are in complete disagreement whit those reported by SINGLETON and MANGELSDORF (1940). Since these authors present only pooled date, a complete and detailed analysis which may explain the cause of these divergences is impossible.

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1) The first part deals with the different processes which may complicate Mendelian segregation and which may be classified into three groups, according to BRIEGER (1937b) : a) Instability of genes, b) Abnormal segregation due to distur- bances during the meiotic divisions, c) obscured segregation, after a perfectly normal meiosis, caused by elimination or during the gonophase (gametophyte in higher plants), or during zygophase (sporophyte). Without entering into detail, it is emphasized that all the above mentioned complications in the segregation of some genes may be caused by the action of other genes. Thus in maize, the instability of the Al factor is observed only when the gene dt is presente in the homozygous conditions (RHOADES 1938). In another case, still under observation in Piracicaba, an instability is observed in Mirabilis with regard to two pairs of alleles both controlling flower color. Several cases are known, especially in corn, where recessive genes, when homozigous, affect the course of meiosis, causing asynapsis (asyndesis) (BEADLE AND MC CLINTOCK 1928, BEADLE 1930), sticky chromosomes (BEADLE 1932), supermunmerary divisions (BEADLE 1931). The most extreme case of an obscured segregatiou is represented by the action of the S factors in self stetrile plants. An additional proof of EAST AND MANGELSDORF (1925) genetic formula of self sterility has been contributed by the studies on Jinked factors in Nicotina (BRIEGER AND MANGELSDORF (1926) and Antirrhinum (BRIEGER 1930, 1935), In cases of a incomplete competition and selection between pollen tubes, studies of linked indicator-genes are indispensable in the genetic analysis, since it is impossible to analyse the factors for gametophyte competition by direct aproach. 2) The flower structure of corn is explained, and stated that the particularites of floral biology make maize an excellent object for the study of gametophyte factors. Since only one pollen tube per ovule may accomplish fertilization, the competition is always extremely strong, as compared with other species possessing multi-ovulate ovaries. The lenght of the silk permitts the study of pollen tube competitions over a varying distance. Finally the genetic analysis of grains characters (endosperm and aleoron) simpliflen the experimental work considerably, by allowing the accumulation of large numbers for statistical treatment. 3) The four methods for analyzing the naturing of pollen tube competition are discussed, following BRIEGER (1930). Of these the first three are: a) polinization with a small number of pollen grains, b) polinization at different times and c) cut- ting the style after the faster tubes have passe dand before the slower tubes have reached the point where the stigma will be cut. d) The fourth method, alteration of the distatice over which competition takes place, has been applied largely in corn. The basic conceptions underlying this process, are illustrated in Fig. 3. While BRINK (1925) and MANGELSDORF (1929) applied pollen at different levels on the silks, the remaining authors (JONES, 1922, MANGELSDORF 1929, BRIEGER, at al. 1938) have used a different process. The pollen was applied as usual, after removing the main part of the silks, but the ears were divided transversally into halves or quarters before counting. The experiments showed generally an increase in the intensity of competition when there was increase of the distance over which they had to travel. Only MANGELSDORF found an interesting exception. When the distance became extreme, the initially slower tubes seemed to become finally the faster ones. 4) Methods of genetic and statistical analysis are discussed, following chiefly BRIEGER (1937a and 1937b). A formula is given to determine the intensity of ellimination in three point experiments. 5) The few facts are cited which give some indication about the physiological mechanism of gametophyte competition. They are four in number a) the growth rate depends-only on the action of gametophyte factors; b) there is an interaction between the conductive tissue of the stigma or style and the pollen tubes, mainly in self-sterile plants; c) after self-pollination necrosis starts in the tissue of the stigma, in some orchids after F. MÜLLER (1867); d) in pollon mixtures there is an inhibitory interaction between two types of pollen and the female tissue; Gossypium according to BALLS (1911), KEARNEY 1923, 1928, KEARNEY AND HARRISON (1924). A more complete discussion is found in BRIEGER 1930). 6) A list of the gametophyte factors so far localized in corn is given. CHROMOSOME IV Ga 1 : MANGELSDORF AND JONES (1925), EMERSON 1934). Ga 4 : BRIEGER (1945b). Sp 1 : MANGELSDORF (1931), SINGLETON AND MANGELSDORF (1940), BRIEGER (1945a). CHROMOSOME V Ga 2 : BRIEGER (1937a). CHROMOSOME VI BRIEGER, TIDBURY AND TSENG (1938) found indications of a gametophyte factor altering the segregation of yellow endosperm y1. CHROMOSOME IX Ga 3 : BRIEGER, TIDBURY AND TSENG (1938). While the competition in these six cases is essentially determined by one pair of factors, the degree of elimination may be variable, as shown for Ga2 (BRIEGER, 1937), for Ga4 (BRIEGER 1945a) and for Spl (SINGLETON AND MANGELSDORF 1940, BRIEGER 1945b). The action of a gametophyte factor altering the segregation of waxy (perhaps Ga3) is increased by the presence of the sul factor which thus acts as a modifier (BRINCK AND BURNHAM 1927). A polyfactorial case of gametophyte competition has been found by JONES (1922) and analysed by DEMEREC (1929) in rice pop corn which rejects the pollen tubes of other types of corn. Preference for selfing or for brothers-sister mating and partial elimination of other pollen tubes has been described by BRIEGER (1936). 7) HARLAND'S (1943) very ingenious idea is discussed to use pollen tube factors in applied genetics in order to build up an obstacle to natural crossing as a consequence of the rapid pollen tube growth after selfing. Unfortunately, HARLAND could not obtain the experimental proof of the praticability of his idea, during his experiments on selection for minor modifiers for pollen tube grouth in cotton. In maize it should be possible to employ gametophyte factors to build up lines with preference for crossing, though the method should hardly be of any practical advantage.

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The present work deals with the study of the effects of selfing and crossing in pures lines of okra inbred for five generations and the methods of breeding in this plant. This work is party of a large program of this Dept. to study heterosis in plants naturally self pollinated. The technic of selfing consists of tying with a string the floral bud before anthesis. To make controlled crosses, it is necessary to emasculate the flowers removing the anthers with small forceps, and to cover the flowers with a bag and wait for 1 or 2 days until the blooming. Also, the male parents are covered with paper bags prior to flowering. Finally, the pollen is brushed lightly over the stigma of the emasculated flowers and the females unit rebagged. The authors have tried without sucess the technic of soda fountain straw used for cotton. The treatments were: I) Fl of the cross pure-line x foreign variety (not improved by breeding). II) Fl of the cross pure-line x parental variety and III) pure-line 5 generations inbred. In order to compare the production of these three treatments, a randomized blocks with 4 replications was designed; since we had 6 families in each treatment, the total number was: 4 replications x 3 treatments x 6 families: = 72. Each familiy was planted in lines of 10 plants. Owing to the design devised, the present experiment corresponds to a split-plot. The analysis of variance of the number and the weight of the pods is given in tables 2 and 4, and shows the following: 1) The production expressed in both numbers and weights of the cross, - pure lines x foreign variety - was statistically smaller than the others treatments, i, e., the cross of pure-lines x parental variety and the pure-lines; 2) The production of the treatments pure-lines x parental variety and selfed purelines was the same. It was proved that the selfing do not produce harmful effects in okra, it was benefical, since after 5 inbred generations the production was the same when compared with Fl of the parental variety. Also, the methods of pure-lines are indicated to improve varieties of okra.

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This paper deals with the macroscopic and microscopic observation of the growth ringe in two disks from the crossing section of wood stem of Tecoma chrysothrica and also deals with statistical analysis of the size of fiber and vessel member in different grow rings of secondary xilem. By statistical analyses of variance the authors verified the following: first, the fiber reaches its utmost length at the 11 th and 12 th grow rings; second, the vessel member reaches its utmost width in the same region as the fiber length. This point out there is certain correlation between the width of vesses member with the fiber length at the same growth rings. There was no statistical signification in the variation of the vessel length and the fiber width.

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1) "Purú-purú" é uma palavra indígena que quer dizer "pintado" ou "manchado", peculiar à Amazonia Brasileira. Com êsse nome é designada uma dermatose referida entre os selvicolas desde 1774, por Ribeiro Sampaio. Certas tribus, com alta incidência da moléstia passaram a ser cahamadas também "Purú-purús", o mesmo acontecendo com o rio onde habitavam - Rio Purús. 2) A doença existe na bacia do Rio Solimões e seus principais afluentes: Javari, Juruá, Purús, Içá, Japurá, e Negro. Por esses rios, o fóco da dermatose se continua nos países limitrofes com o Brasil: Guianas, Venezuela, Colombia, Perú (Equador) e Bolivia. 3) Desde 1890 essa dermatose foi relacionada à pinta (carate ou mal del pinto) por P. S. de Magalhães, idéa essa depois defendida por Juliano Moreira, Carlos Chagas, Roquete Pinto, Wappeus, O. da Fonseca Filho, Da Matta, Brumpt e outros, baseados na semelhança clínica e na terapêutica. Recentemente (1945), essa provavel identidade das duas dermatoses, recebeu fundamento sorológico de Biocca (que verificou a positividade das reações de Kline e Kahn em doentes de purú-purú), e, pelo presente trabalho, recebe base clínico-epidemio-anatomo-patológica. 4) Sob o ponto de vista clínico, as lesões cutaneas discromicas da moléstia, são de 3 órdens: a) lesões papulo-eritemato-escamosas, isoladas ou não, arredondadas, pruriginosas e de bordos nitidos; b) lesões maculo-escamosas, maiores mais pálidas, ás vezes já mostrando alterações pigmentares na parte central; c) máculas discromod´rmicas, lisas ou ligeiramente escamosas, com maior ou menor alteração pigmentar, as quais assumem diferentes aspéctos, consequentes à hipo - ou hiperpigmentação, variaveis também com a côr do paciente. As colorações predominantes nas manchas, são o branco, o preto e o vermelho, com tonalidades eminentemente variaveis. Embora raramente, nessas extensas dermodiscromias, observa-se superposição de lesões papulo-eritemato-escamosas. O aparecimento dos 3 tipos de leões acima citados, obedece seguramente a um processo evolutivo da dermatose, dando-se na órdem exposta e de acordo com o tempo de doença. Além das lesões discromicas, características da enfermidade, foi observado purido, e infartamento ganglionar. O estado geral dos doentes era bom. A avaliação de anemia e eosinofilia, foi prejudicada pela ocurrência de outros processos mórbidos (malaria e helmintiases). Em 2 pacientes pretos e adultos, havia avançada hiperqueratose palmo-plantar. 5) Sob o ponto de vista epidemiológico, foram feitas as seguintes observações: a) Idade. A dermtose ocorre em tôdas as idades, mais incide principalmente dos 15 aos 29 anos. Tomando um grupo relativamente homogêneo de doéntes de um mesmo local, 53% têm 15 e mais anos de idade. De 36 doentes que deram informações seguras ou aproximadas quanto à idade em que lhes apareceu a doença, verifica-se que 77% já estavam infectados antes dos 15 anos. Em 5 casos, a infecção se deu antes dos 2 anos de idade. b) Sexo. Nos doentes em conjunto, existiam 34 homens e 35 mulheres. Mas, no grupo homogeneo acima citado, havia ligeira predominância do sexo feminino (60.7%). c) Côr ou raça. Foram encontradas as seguintes percentagens: Pretos - 34.8%, brancos - 27.5% índios - 23.2% e mulatos - 14.5%. Essas diferenças não indicam predileção racial. d) Família. A A dermatose é eminentemente familial. Em grupo de 41 doentes, 34 pertenciam a 8 familias. e) Lesão inicial. Contágio. Em 6 casos ainda existia a lesão inicial, chamada "empigem", isolada ou acompanhada de outras lesões semelhantes. De 33 doentes, 26 (78.8%) referiam a lesão inicial nas partes descobertas do corpo (rosto, braços e mãos, pernas e pés), isto é regiões mais sujeitas a pequenos traumas, que servem como "porta de entrada" do treponema. Os AA não acreditam na existência de um vetor. Pensam que o contágio é direto, as condições eficientes e predisponentes do mesmo, coexistindo no domícilio, onde vivem em promiscuidade e falta de higiene, doentes e sadios. Os autores não encontraram treponemas em córtes impregnados de “purú-purú”, tanto de “lesão recente” como de “lesão tardia”. Atribuem o fracasso ao provável uso de antitreponemicos pelos doentes, uma vez que a terapeutica empírica pelo arsênico e mercúrio é muito espalhada na Amazônia. Histopatológicamente, encontraram na “lesão recente”: hiperqueratose, hiperacantose, exocitose, exoserose e espongiose na epiderme; e infiltração de células redondas, edema e diltação dos capilares no derma papilar e subpapilar; pela impregnação, acharam irregularidade na distribuição do pigmento melanico, assim como melanóforos entre as células inflamatórias do derma. Na “lesão tardia” observaram: notável atrofia do epiderme, reduzida às vezes , a 3 a 5 camadas celulares, havendo desaparecimento das papilas dérmicas; no derma, havia discreta infiltração de células redondas, relacionadas aos vasos sanguineos, ao lado de macrófagos melaniferos mais ou menos abundantes; pela impregnação, quanto às alterações pigmentares, foram observadas todas as graduações, desde a completa ausência de pigmento na basal, até um acúmulo notável de melanina, atingindo as próprias células de Malpighi. 7) Com o tratamento pelo “neo-salvarsan” os AA observaram grandes melhoras e mesmo cura aparente, com 6 a 8 injeções. Certas manifestações acromicas vitiligoides, antigas, não mostraram modificações apreciáveis com a terapêutica. 8) No Brasil, fora da Amazônia, tem sido descrito casos isolados de purú-purú, porém, na opinião dos autores, todos ou quase todos, são provavelmente, manifestações discromicas tardias de sífilis ou bouba, semelhantes aos publicados por um deles (F. N. G). Pensam do mesmo modo, quanto aos casos de pinta descritos fora da América: África, Egito, Argeria, Sahara, Trípoli, Turquestão, Filipinas, Iraque, Índia, Ceilão, etc. Ainda nesta mesma ordem de idéas, os autores negam validade ao conceito epidemiológico da existência de “casos isolados”, a não ser procedentes das “zonas pintogenas”. 9) Um dos autores (F. N. G.) emite a seguinte hipótese, que considera sugestiva, embora dificilmente demonstrável: Os treis treponemas (T. pallidum, T. pertenue e T. carateum), oriundos de um ancestral comum. tornaram-se peculiares respectivamente ao branco, ao preto e ao índio, mantendo-se assim isolados. Secundariamente, com as correntes migratórias, misturaram-se as doenças...

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Estudi elaborat a partir d’una estada a la Facultad Latinoamericana de Ciencias Sociales, durant l’ octubre del 2006. L’estudi de les haciendas creades a partir de la colonització espanyola als territoris americans no pot ser mai complet si no es pot entrar en la vida quotidiana de les persones que les constitueixen. La millor manera de fer-ho és a través d’assolir d’un exhaustiu estudi dels comportaments demogràfics –natalitat, nupcialitat, mortalitat, migracions—i familiars. L’objectiu d’aquest estudi ha estat localitzar una tipologia documental que permeti aquest treball a la parròquia de Toacazo a Cotopaxi (Equador) i, un cop assolida aquesta fita, fotografiar exhaustivament els registres parroquials, altrament dits registre civil antic. El període treballat va des de l’ 1720, any de fundació de la parròquia fins a 1857, any on s’acaba el tributo de indios o règim que regulava les normes de segregació racial de les poblacions.

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The Stanley lattice, Tamari lattice and Kreweras lattice are three remarkable orders defined on the set of Catalan objects of a given size. These lattices are ordered by inclusion: the Stanley lattice is an extension of the Tamari lattice which is an extension of the Kreweras lattice. The Stanley order can be defined on the set of Dyck paths of size n as the relation of being above. Hence, intervals in the Stanley lattice are pairs of non-crossing Dyck paths. In a former article, the second author defined a bijection Φ between pairs of non-crossing Dyck paths and the realizers of triangulations (or Schnyder woods). We give a simpler description of the bijection Φ. Then, we study the restriction of Φ to Tamari’s and Kreweras’ intervals. We prove that Φ induces a bijection between Tamari intervals and minimal realizers. This gives a bijection between Tamari intervals and triangulations. We also prove that Φ induces a bijection between Kreweras intervals and the (unique) realizers of stack triangulations. Thus, Φ induces a bijection between Kreweras intervals and stacktriangulations which are known to be in bijection with ternary trees.

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Atazanavir inhibits UDP-glucuronyl-transferase-1A1 (UGT1A1), which metabolizes raltegravir, but the magnitude of steady-state inhibition and role of the UGT1A1 genotype are unknown. Sufficient inhibition could lead to reduced-dose and -cost raltegravir regimens. Nineteen healthy volunteers, age 24 to 51 years, took raltegravir 400 mg twice daily (arm A) and 400 mg plus atazanavir 400 mg once daily (arm B), separated by ?3 days, in a crossover design. After 1 week on each regimen, raltegravir and raltegravir-glucuronide plasma and urine concentrations were measured by liquid chromatography-tandem mass spectrometry in multiple samples obtained over 12 h (arm A) or 24 h (arm B) and analyzed by noncompartmental methods. UGT1A1 promoter variants were detected with a commercially available kit and published primers. The primary outcome was the ratio of plasma raltegravir C(tau), or concentration at the end of the dosing interval, for arm B (24 h) versus arm A (12 h). The arm B-to-arm A geometric mean ratios (95% confidence interval, P value) for plasma raltegravir C(tau), area under the concentration-time curve from 0 to 12 h (AUC(0-12)), and raltegravir-glucuronide/raltegravir AUC(0-12) were 0.38 (0.22 to 0.65, 0.001), 1.32 (0.62 to 2.81, 0.45), and 0.47 (0.38 to 0.59, <0.001), respectively. Nine volunteers were heterozygous and one was homozygous for a UGT1A1 reduction-of-function allele, but these were not associated with metabolite formation. Although atazanavir significantly reduced the formation of the glucuronide metabolite, its steady-state boosting of plasma raltegravir did not render the C(tau) with a once-daily raltegravir dose of 400 mg similar to the C(tau) with the standard twice-daily dose. UGT1A1 promoter variants did not significantly influence this interaction.

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O trabalho analisa o comportamento das alterações eletrocardiográficas em 150 indivíduos de cor preta, naturais da área rural do sul do Rio Grande do Sul, pareados com outros tantos brancos do mesmo sexo, idade e procedência. O grupo tinha idade entre 9 e 78 anos, com média de 39,2 e era composto de 57 homens e 93 mulheres. Com referência à sorologia, 84 eram positivos e 66 negativos para a infecção pelo Trypanosoma cruzi. A prevalência de alterações eletrocardiográficas foi significativamente maior entre os pretos, tanto soropositivos quanto soronegativos. As alterações eletrocardiográficas consideradas sugestivas de miocardiopatia chagásica, predominaram significativamente entre os positivos pretos. E mesmo entre os pretos negativos as alterações foram mais numerosas e de maior gravidade com respeito aos negativos brancos. Na opinião dos autores a maior prevalência e severidade das alterações eletrocardiográficas entre os pretos, podem ser atribuídos a vários fatores entre os quais se destacariam: a pobreza e marginalidade das pessoas de cor que implicam trabalhos mais pesados e desgastantes; habitações triatomínica; alimentação mais pobre quantitativa e qualitativamente. Outro fator negativo seriam os valores mais elevados de pressão arterial encontrados entre os pretos que, associados a possíveis influências de ordem racial, podem contribuir e/ou criar condições de patologia miocárdica.

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BACKGROUND AND AIMS: Pollen and seed dispersal in herbaceous insect-pollinated plants are often restricted, inducing strong population structure. To what extent this influences mating within and among patches is poorly understood. This study investigates the influence of population structure on pollen performance using controlled pollinations and genetic markers. METHODS: Population structure was investigated in a patchily distributed population of gynodioecious Silene vulgaris in Switzerland using polymorphic microsatellite markers. Experimental pollinations were performed on 21 hermaphrodite recipients using pollen donors at three spatial scales: (a) self-pollination; (b) within-patch cross-pollinations; and (c) between-patch cross-pollinations. Pollen performance was then compared with respect to crossing distance. KEY RESULTS: The population of S. vulgaris was characterized by a high degree of genetic sub-structure, with neighbouring plants more related to one another than to distant individuals. Inbreeding probably results from both selfing and biparental inbreeding. Pollen performance increased with distance between mates. Between-patch pollen performed significantly better than both self- and within-patch pollen donors. However, no significant difference was detected between self- and within-patch pollen donors. CONCLUSIONS: The results suggest that population structure in animal-pollinated plants is likely to influence mating patterns by favouring cross-pollinations between unrelated plants. However, the extent to which this mechanism could be effective as a pre-zygotic barrier preventing inbred mating depends on the patterns of pollinator foraging and their influence on pollen dispersal.

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When one pigmented Biomphalaria glabrata is mated with 1 to 20 albino snails, the percentage of albino parent producing pigmented offspring decreases while the percentage of parent laying albino offspring increases. If the number of snaisl/group increases, the mean duration of the use of allosperm decreases.

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The validity of Biomphalaria kuhniana (Clessin, 1883) is confirmed through morphological study of specimens from Surinam (type locality) and the area of Tucurui (Tocantins river, state of Pará, Brazil) in comparison with B. straminea (Dunker, 1848), and throught crossing experiments which revealed complete reproductive isolation between the two species. The full-grown shell of kuhniana is smaller (about 7.5 mm) than that of straminea (11 mm to 16.5 mm). Anatomically they differ in the degree of corrugation of the vaginal wall (little developed in kuhniana, conspicuous in straminea), number and shape of prostatic diverticula (kuhniana 4 to 9, shorter and less branched; straminea 9 to 18, longer and more branched),number of muscle layers at the middle of the penis (two in kuhniana, three in straminea), distal segment of the spermiduct usually straight or slightly wavy in kuhniana, more or less curly in straminea. Differences between B. kuhniana and B. intermedia (paraense & Deslandes, 1962) are less marked. The latter has a shell up to about 12 mm in diameter, 7 to 15 prostatic diverticula, two muscle layers at the middle of the penis, and a vaginal wall with a combination of a more or less developed corrugation (or sometimes a mere swelling) on the left of the spermathecal duct and a rudimentary pouch on the right of the duct. A Biomphalaria straminea complex is proposed to include that species as well as B. kuhniana and B. intermedia.

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Virgin homozygous black pigmented and albino Biomphalaria glabrata are paired during a period varying from 1 to 20 days. The rate of cross-fertilized parents is statistically similar for the various lengths of pairing. As a whole, nearly 80% of the albino snails produce a pigmented progeny. This production begins as soon as the snails are mated and continues after their separation. To measure the actual use of the allosperm, its use during the postmating period must be added to the length of mating. So, it appears that the real use of the allosperm is statistically constant (mean slightly inferior to 8 weeks) and not related to the length of the previous pairing.

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Observation about conhabitation among B. glabrata and B. tenagophila revealed a greater vulnerability of B. tenagophila population during the process of competition when its density was severaly decreased in 12 trials, moderate in 2 trials. It was higher than B. glabrata in only one trial. Some snail water chemical parameters analysed such as pH, alkalinity, conductivity and oxygen dissolve, an the viability rate of batch of eggs didn't give subsidy to explain the competition mechanism. The newly-born survival, in the situation of cohabitation, was low for both species. This reveals the existence of intra and interspecific competitive interacition. The fertility rate reduction of B. tenagophila during the cohabitation was considered as a cause of its exlusion. One of the factors that seems to have influenced the fertility rate was a possible wrong crossing.