4 resultados para informaatio - ys

em Scielo Saúde Pública - SP


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The male of Eneoptera surinamensis (Orthoptera-Eneopteridae) is provided with 9 chromosomes, that is, with 3 pairs of autosomes and 3 sex chromosomes. Spermatogonia. - The autosomes of the spermatogonia are of the same size and U-shaped. One of the sex chromosomes approximately equalling the autosomes in size is telocentric, while the other two are much larger and V-shaped. One of the latter is smaller than the other. The sex chromosomes as showed in Figs. 1 and 2 are designated by X, Yl and Y2, X being the larger V, Yl the smaller one and Y2 the rod-shaped. Primary spermatocytes. - Before the growth period of the spermatocytes all the three sex chromosomes are visible in a state of strong heteropycnosis. X is remarkable in this stage in having two long arms well separated by a wide commissural segment. (Figs. 4, 5 and 6). During the growth period Y2 disappears, while X and Yl remain in a condensed form until metaphase. These may be separated from one another or united in the most varied and irregular manner. (Fig. 7 to 12). In the latter case the segments in contact seem to be always different so that we cannot recognize any homology of parts in the sense os genetics. At diplotene Y2 reappears together with the autosomal tetrads. X and Yl may again be seen as separate or united elements. (Figs. 13 and 14). At later diakinesis and metaphase the three sex chromosomes are always independent from each other, Y2 being typically rod-shaped, X and Yl V-shaped, X being a little larger than Yl. (Fig. 15 to 18). At metaphase the three condensed tetrads go to the equatorial plane, while the sex chromosomes occupy any position at both sides of this plane. In almost all figures which could be perfectly analysed X appeared at one side of the autosomal plate an Yl together with Y2 far apart at the other side. (Figs. 16 and 18). Only a few exception have been found. (Figs. 17 and 19). At anaphase X goes in precession to one pole, Yl and Y2 to the other (Figs. 20 and 21). As it is suggested by the few figures in which a localization of the sex chromosomes different from the normal has been observed, the possibility of other types of segregation of these elements cannot be entirely precluded. But, if this does happen, the resulting gametes should be inviable or give inviable zygotes. Early in anaphase autosomes and sex chromosomes divide longitudinally, being maintained united only by the kinetochore. (Figs. 20 and 21). At metaphase the three sex chromosomes seem to show no special repulsion against each other, X being found in the proximity of Yl or Y2 indifferently. At anaphase, however, the evidences in hand point to a stronger repulsion between X on the one side and both Ys on the other, so that in spite of the mutual repulsion of the latter they finish by going to the same pole. Secondary spermatocytes. - At telophase of the primary spermatocytes all the chromosomes enter into distension without disappearing of view. A nuclear membrane is formed around the chromosomes. All the chromosomes excepting Y2 which has two arms, are four-branched. (Fig. 22). Soon the chromosomes enter again into contraction giving rise to the secondary metaphase plate. Secondary spermatocytes provided as expected with four and five chromosomes are abundantly found. (Figs. 23 and 24). In the former all chromosomes are X-shaped while in the latter there is one which is V-shaped. This is the rod- shaped Y2. In the anaphase of the spermatocytes with four chromosomes all the chromosomes are V-shaped, one of them (X) being much larger than the others. In those with five there is one rod-shaped chromosome (Y2). (Fig. 25), Spermatids. Two classes of spermatids are produced, one with X and other with Yl and Y2. All the autosomes as well as Y2 soon enter into solution, X remaining visible for long time in one class and Yl in the other. (Figs. 26 and 27). Since both are very alike at this stage, one cannot distinguish the two classes of spermatids. Somatic chromosomes in the famale. - In the follicular cells of the ovary 8 chromosomes were found, two of which are much larger than the rest. (Figs. 29 and 30). These are considered as being sex chromosomes. CONCLUSION: Eneoptera surinamensis has a new type of sex-determining mechanism, the male being X Yl Y2 and the female XX. The sex chromosomes segregate without entering into contact at metaphase or forming group. After a review of the other known cases of complex sex chromosome mechanism the author held that Eneoptera is the unique representative of a true determinate segregation of sex chromosomes. Y2 behaving as sex chromosome and as autosome is considered as representing an intermediary state of the evolution of the sex chromosomes.

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O presente trabalho foi conduzido com a finalidade de se avaliar o efeito da aplicação foliar no nitrogênio em mudas de café (Coffea arabica L, var. Mundo Nôvo). Para isso, três fontes de fertilizantes nitrogenados - NaNO3, (NH4)2SO4 e (NH2)2CO - enriquecidos com 0,7, 0,6 e 0,4% de átomos de 15N em excesso, respectivamente, foram utilizados, aplicando-as de vários modos: 1) aplicação da dose total de cada fonte de nitrogênio ao solo; 2) aplicação da dose total de cada fonte exclusivamente foliar e 3) aplicação da metade desta dose total ao solo e da outra metade por via foliar, além das correspondentes testemunhas. O desenho experimental foi de blocos ao acaso, com 14 tratamentos e 3 repetições, com parte dos tratamentos em arranjo fatorial. As mudas de café, de 6 meses de idade foram cultivadas em casa de vegetação, durante um período de 7 meses. A seguir, as palantas foram separadas em frações raiz, caule e folha. Sobre estas frações, secas em estufa, pesadas e moídas, procedeu-se às análises químicas do nitrogênio e à determinação da relação isotópica 14N/15N. A produção de matéria seca, a quantidade de nitrogênio absorvido, aquela proveniente do solo e do fertilizante, por cada tratamento, em cada fração e na planta toda. foram utilizados para avaliar o efeito da adubação foliar ds fontes de nitrogênio. Pra a aplicação foliar do nitrogênio, foi construído um sistema espacial de pulverização. De acordo com os resultados obtidos são apresentadas, a continuação, as seguintes inferências. De maneira geral, a aplicação das três fontes de nitrogênio ao solo, seguida pela aplicação combinada ao solo e à folha, deram maior produção de matéria seca, não havendo diferença entre as fontes. Em relação a absorção do nitrogênio total, foi verificada uma maior absorção com a aplicação ao solo das três fontes de nitrogênio. No que diz respeito ao nitrogênio nas plantulas provenientes do fertilizante, a aplicação ao solo foi superior a aplicação foliar, para as três fontes. A porcentagem da eficiência do nitrogênio foi de 39%. Na aplicação foliar, a eficiência do nitrogênio foi 12,8%, 9,7% e 8,6% para nitrato de sódio, a uréia e o sulfato de amônio respectivamente. Na aplicação combinada, metade solo mais metade folha, a eficiência foi de 33,5%, 23,3% e 22,7% para o nitrato de sódio, o sulfato de amônio e a uréia, respectivamente. É difícil, no presente trabalho, explicar a pouca absorção do nitrogênio aplicada por pulverização foliar, destacando-se o nitrato de sódio em relação Ys outras fontes.

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The A. summarizes clinical records of four lepers treated with Leprolin “Souza-Araujo”, as follow: ist – Male, 28 years old, lepromatous case, treated during about 3 years, who received 80 injections of the antigen, being 52 by vene, 18 by muscle and 10 intradermally. Total about 100 cm³. Results: Absence of clinical signs, routine examinations negative for acidfast bacilli. Histopathology: from lepromatous became incaracteristic, with a few bacilli. Mitsuda test from negative became positive. 2nd – Male, 33 ys. old, lepromatous case. From September 1944 to February 1948 received 110 intravenous injections (57 cm³) and 10 cm³ perineurally to control neurites. His Mitsuda test was negative in 1944 and in 1945 became positive and remained so until 1948 (4 times controlled). Since Sept. 1946 became bacillus negative in his mucous, ear lobe and lymph nodes. Out of his lepromatous symptoms remained only mild atrophy of his hands. 3rd- Male, 30 ys. old, lepromatous case, treated since 1944. From 1946 to Feb. 1948 received 80 intravenous injections (high dosage: from 2 to 5 cm³), total 310 cm³ and 140 cm³ intramuscularly. His Mitsuda test was negative in 1943; became positive (from 1945 till 1948) after Leprolin treatment. Bacilloscopy became negative even in sections. Histopathology: the lesions from lepromatous changed to tuberculoid. 4th – Male, 17 years old, lepromatous case, received, from Dec. 1944 to Feb. 1948 only 88 intravenous injections of small doses of Leprolin (0,1 to 1,0 cm³). His Mitsuda remained negative from 1944 to 1946 and in 1947 became positive. Routine examinations negative for bacilli. Histopathology: the lepromataus lesions regressed to incaracteristic, without bacillus.

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The effects of the aging process and an active life-style on the autonomic control of heart rate (HR) were investigated in nine young sedentary (YS, 23 ± 2.4 years), 16 young active (YA, 22 ± 2.1 years), 8 older sedentary (OS, 63 ± 2.4 years) and 8 older active (OA, 61 ± 1.1 years) healthy men. Electrocardiogram was continuously recorded for 15 min at rest and for 4 min in the deep breathing test, with a breath rate of 5 to 6 cycles/min in the supine position. Resting HR and RR intervals were analyzed by time (RMSSD index) and frequency domain methods. The power spectral components are reported in normalized units (nu) at low (LF) and high (HF) frequency, and as the LF/HF ratio. The deep breathing test was analyzed by the respiratory sinus arrhythmia indices: expiration/inspiration ratio (E/I) and inspiration-expiration difference (deltaIE). The active groups had lower HR and higher RMSSD index than the sedentary groups (life-style condition: sedentary vs active, P < 0.05). The older groups showed lower HFnu, higher LFnu and higher LF/HF ratio than the young groups (aging effect: young vs older, P < 0.05). The OS group had a lower E/I ratio (1.16) and deltaIE (9.7 bpm) than the other groups studied (YS: 1.38, 22.4 bpm; YA: 1.40, 21.3 bpm; OA: 1.38, 18.5 bpm). The interaction between aging and life-style effects had a P < 0.05. These results suggest that aging reduces HR variability. However, regular physical activity positively affects vagal activity on the heart and consequently attenuates the effects of aging in the autonomic control of HR.