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Genome evolution is a continuous process and genomic rearrangement occurs both within and between species. With the sequencing of the Arabidopsis thaliana genome, comparative genetics and genomics offer new insights into plant biology. The genus Brassica offers excellent opportunities with which to compare genomic synteny so as to reveal genome evolution. During a previous genetic analysis of clubroot resistance in Brassica rapa, we identified a genetic region that is highly collinear with Arabidopsis chromosome 4. This region corresponds to a disease resistance gene cluster in the A. thaliana genome. Relying on synteny with Arabidopsis, we fine-mapped the region and found that the location and order of the markers showed good correspondence with those in Arabidopsis. Microsynteny on a physical map indicated an almost parallel correspondence, with a few rearrangements such as inversions and insertions. The results show that this genomic region of Brassica is conserved extensively with that of Arabidopsis and has potential as a disease resistance gene cluster, although the genera diverged 20 million years ago.  相似文献   
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Background

The perennial, Oryza rufipogon distributed from Asia to Australia and the annual O. meridionalis indigenous to Australia are AA genome species in the Oryza. However, recent research has demonstrated that the Australian AA genome perennial populations have maternal genomes more closely related to those of O. meridionalis than to those found in Asian populations of O. rufipogon suggesting that the Australian perennials may represent a new distinct gene pool for rice.

Results

Analysis of an Oryza core collection covering AA genome species from Asia to Oceania revealed that some Oceania perennials had organellar genomes closely related to that of O meridionalis (meridionalis-type). O. rufipogon accessions from New Guinea carried either the meridionalis-type or rufirpogon-type (like O. rufipogon) organellar genomes. Australian perennials carried only the meridionalis-type organellar genomes when accompanied by the rufipogon-type nuclear genome. New accessions were collected to better characterize the Australian perennials, and their life histories (annual or perennial) were confirmed by field observations. All of the material collected carried only meridionalis-type organellar genomes. However, there were two distinct perennial groups. One of them carried an rufipogon-type nuclear genome similar to the Australian O. rufipogon in the core collection and the other carried an meridionalis-type nuclear genome not represented in the existing collection. Morphologically the rufipogon-type shared similarity with Asian O. rufipogon. The meridionalis-type showed some similarities to O. meridionalis such as the short anthers usually characteristic of annual populations. However, the meridionalis-type perennial was readily distinguished from O. meridionalis by the presence of a larger lemma and higher number of spikelets.

Conclusion

Analysis of current accessions clearly indicated that there are two distinct types of Australian perennials. Both of them differed genetically from Asian O. rufipogon. One lineage is closely related to O. meridionalis and another to Asian O. rufipogon. The first was presumed to have evolved by divergence from O. meridionalis becoming differentiated as a perennial species in Australia indicating that it represents a new gene pool. The second, apparently derived from Asian O. rufipogon, possibly arrived in Australia later.  相似文献   
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Intracerebral inoculation of field-isolates as well as established strains of equine herpesvirus-1 (EHV-1) in suckling mice results in viral replication in neurons and glial cells and induces encephalitis. By intraperitoneal (i.p.) inoculation, no histological lesion was observed in the central nervous system (CNS) in suckling mice with the EHV-1 HH1 strain (HH1), whereas a neuroadapted variant (NHH1) produced by serial passage of HH1 in the mouse brain caused severe encephalomyelitis after i.p. inoculation. The purpose of this study was to determine the route of neuroinvasion after i.p. inoculation of NHH1 and to clarify the effects of the brain passage on viral neuroinvasion. NHH1, but not HH1, targeted splenic and pulmonary macrophages and omental fat cells on days 1 and 2 post-inoculation (p.i.). From days 1 to 3 p.i., cell-associated viremia was occurred in NHH1-infected mice, but not in HH1-infected mice. On day 4 p.i., viral antigen was detected in a few endothelial cells, perivascular glial cells and neurons in the CNS in NHH1-infected mice. The number of viral antigen-positive cells increased markedly after day 5 p.i. In contrast, no viral antigen-positive cell was detected in the CNS in HH1-infected mice, except for a few nerve cells in the thoracic cord on day 4 p.i. These results suggest that NHH1 neuroinvasion is hematogenous and is correlated with enhanced extraneural virus growth.  相似文献   
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The effect of a new peptide, brain urocortin (UCN), in the central regulation of feed and salt intake in parotid fistulated sheep was investigated through a continuous intracerebroventricular (ICV) infusion of the peptide at a small dose for 48 h. Feed and salt intake on day 1 of UCN infusion were similar to those before infusion. However, feed and salt intake on day 2 during UCN infusion decreased significantly. Water intake on days 1 and 2 during UCN infusion was the same as that before infusion. Saliva secretion from the unilateral parotid gland during UCN infusion was unchanged from that before infusion. On the other hand, urine excretion during UCN infusion increased significantly. The present results suggested that UCN acts directly on the brain mechanisms of sheep to decrease feed and salt intake, but does not alter water intake.  相似文献   
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Age, growth, maturity, and sex changes of the monogrammed monocle bream Scolopsis monogramma were estimated from ca. 500 specimens collected at Okinawa-jima Island in southern Japan. Age was determined from sectioned otoliths: maximum ages were 10 years for females and 9 years for males. Parameters for von Bertalanffy growth functions were L t  = 206.6{1 ? exp[?0.68(t + 0.81)]} (n = 337) for females and L t  = 244.4{1 ? exp[?0.93(t + 0.32)]} (n = 130) for males. The spawning season was estimated to last from June to July, with a peak in July. The standard length (SL) and age at 50 % maturity for females were estimated as 186.4 mm SL and 3.3 years, respectively. Intersex individuals appeared from 159.6 to 237.5 mm SL (n = 16) in fish between 1 and six years old, with the highest frequencies occurring at 170 mm SL and 2 years old. Hence, almost all S. monogramma specimens found at Okinawa-jima Island exhibited pre-maturational sex change, although some may have been protogynous hermaphrodites. Biological characteristics such as age at growth, maturation, and spawning season are valuable factors that can inform the resource management of local fisheries.  相似文献   
58.
We studied the spawning seasonality and gonadal development of blue marlin Makaira nigricans using specimens captured around Yonaguni Island in southwestern Japan between February 2003 and February 2006. The mean (±SD) lower jaw–fork length of females (234 ± 24 cm) was greater than that of males (191 ± 12 cm). The smallest mature female and male were 183 and 160 cm, respectively. Most of the 717 females had immature ovaries. However, in March and from May to September, the ovaries of 26 females contained oocytes with yolk globules, hydrated oocytes, or postovulatory follicles. Most males had testes with a large amount of spermatozoa throughout the year. The occurrence of mature blue marlin at Yonaguni Island suggests that spawning occurs here. The mean condition factors (fatness of the fish) of both sexes decreased from March to June or July, presumably as they expended energy to reproduce. We discuss our results in the context of migration theory for blue marlin in the western North Pacific Ocean.  相似文献   
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An adhesive polymeric system for delivering pesticides through the stem of plants has been developed using a polymeric adhesive membrane with penetration enhancers. The active agent, imidacloprid, 1-(6-chloro-3-pyridylmethyl)-N-nitroimidazolidin-2-ylideneamine, incorporated in either acrylic adhesive polymer or natural rubber membrane was effectively absorbed through the stem of the model plant, eggplant (Solanum melongena), at a controlled rate of penetration. The penetration rate across the cuticular membrane was enhanced by 5·1 times and 2·4 times with l-menthol and d-limonene, respectively, incorporated in the polymer membrane as penetration enhancers. Correspondingly, the acrylic adhesive pesticide patch with l-menthol provided the highest insecticidal activity. The present adhesive transepidermal pesticide delivery system can deliver the active agent directly to the target site as well as minimizing the excess amount of the active agent wasted throughout the non-target environment. © 1997 SCI.  相似文献   
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