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1.
Baulcombe DC Huttly AK Martienssen RA Barker RF Jarvis MG 《Molecular & general genetics : MGG》1987,209(1):33-40
Summary A genomic clone of a wheat -amylase gene (Amy3/33) was identified, on the basis of hybridisation properties, as different from -Amy1 and -Amy2 genes which had been characterised previously. The nucleotide sequence revealed that this gene has the normal sequence motifs of an active gene and an open reading frame interrupted by two introns. The protein sequence encoded by this open reading frame is recognisably similar to that of -amylase from the -Amy1 and -Amy2 genes and there is high sequence homology in all three proteins at the putative active sites and Ca++ binding region. In addition, the introns are at positions equivalent to the position of introns in the -Amy1 and -Amy2 genes. However, the sequence was less similar to -Amy1 and -Amy2 than these are to each other. Southern blot analysis showed that the Amy3/33 DNA is one of a small multigene family carried on a different chromosome (group 5) from either the -Amy1 or -Amy2 genes. A further difference from the -Amy1 and -Amy2 genes was the pattern of expression. Amy3/33 was expressed only in immature grains and, unlike the -Amy1 and -Amy2 genes, not at all in germinating aleurones. These data suggested therefore that this gene represents a third type of -amylase gene, not described before, which shares a common evolutionary ancestor with the -Amy1 and -Amy2 genes. 相似文献
2.
椭圆斜羽叶的解剖研究及斜羽叶的系统分类位置 总被引:2,自引:0,他引:2
本文根据对椭圆斜羽叶(Plagiozamites oblongifolius)钙质石化化石的研究,认为其主要特征如下:羽状复叶,叶肉无海绵组织和栅栏组织分化。羽片叶脉维管束外韧式,木质部外始式,与现代苏铁属叶脉特征相近。羽轴维管束为“U”形,外始式木质部、梯状纹孔管胞,与现代苏铁属的羽轴维管束相似。根据上述特征,目前可将斜羽叶属归入原始苏铁类植物。但是,如果斜羽叶的生殖器官同 Noeggerathia 一样,为异孢型孢子囊穗,则斜羽叶可能为一种与苏铁类起源有关的原裸子植物。 相似文献
3.
R. G. Beutel R. E. Roughley 《Journal of Zoological Systematics and Evolutionary Research》1988,26(5):380-400
Various characters of adult and larval members of Adephaga and Cupedidae were analyzed, and suggest that Gyrinidae are the sister-group of the remaining Adephaga, and are not closely related to the remaining aquatic Adephaga. The aquatic families Noteridae, Amphizoidae, Hygrobiidae and Dytiscidae seem to form a well founded monophyletic unit. The following characters are considered as synapomorphies of Adephaga excluding Gyrinidae: bifurcate condition of the muscle (= M.) tentoriopraementalis inferior, reduction of hypopharynx, strongly developed prosternal process, reduction in size and specialized modification of the ventral sclerite of the mesothorax, strongly developed mesofurcal arms, a high mesopleural ridge, globular mesocoxae restricted to rotatory movements, invaginated sternum VIII (coxostemum), the strongly curved base of the median lobe of the aedeagus, which articulates with the parameres, the rotated position of the aedeagus in repose, fusion of the larval clypeolabrum with the frons and reduction of the larval lacinia. Mesal shifting of M. episterno-coxalis prothoracis, and the fusion of the apical portions of the malpighian tubules of either side are considered as synapomorphies of Adephaga excluding Rhysodidae and Gyrinidae. Lateral reduction of the meta “sternal” transverse ridge and the presence of the subcubital setal binding patch of the hind wing are considered as synapomorphic characters of Trachypachidae, Noteridae, Amphizoidae, Hygrobiidae and Dytiscidae. We postulate that the metacoxal fusion occurred independently in gyrmids and the common ancestor of Trachypachidae, Noteridae, Amphizoidae, Hygrobiidae and Dytiscidae. Consequently we consider this character state as another synapomorphy of Trachypachidae and Hydradephaga excluding Haliplidae and Gyrinidae. The following characters are considered as synapomorphies of Noteridae, Amphizoidae, Hygrobiidae and Dytiscidae: Loss of tactile setae on the head capsule, metafurcal origin on the intercoxal wall, expansion of the intercoxal wall, elongation of the subcubital setal binding patch, loss of Mm. furca-coxale anterior and posterior, reduction of the larval abdominal segments IX and X, and the shifting of the uropmphi onto the ventral side of segment VIII. Presence of M. tentorio-mandibularis and M. stipitopalpalis intemus are certainly primitive features of adult gyrinids but the distribution of these character states among most members of Adephaga is yet unclear. Chemical defence gland constituents point towards a very isolated position of Gyrinidae. The old age of the group, documented by a larva found in upper Permian deposits, may support the hypothesis of a sister-group relation-ship between Gyrinidae and the remainder of Adephaga. 相似文献
4.
J. W. M. Baars 《Aquatic Ecology》1988,22(2):147-155
The cold oligo-eurytherm diatomsCoscinodiscus concinnus W. Smith andRhizosolenia setigera Brightwell were cultured to determine their best competitive position by growth. Comparison of their generation times with those of other diatoms indicate that they reach this position between 6°C and 12°C. Both species grew between –1.5°C and about 20°C. The experiments indicate thatC. concinnus flowerings are possible in a deep water column, during periods of high light intensities. The simultaneous death of species in the upper layer is also caused by high light intensities.C. concinnus appeared in two morphological forms; the normal voluminous form, and a flatter form with a few intercalary bands only, filled with large oil-droplets. The latter appeared at 0°C and below, and at the upper temperature limit for growth of about 19°C–20°C. The separation of nov. spec. fromC. concinnus based on the absence or presence of a hyaline area and intercalary bands as identification characteristics should be reconsidered. 相似文献
5.
6.
7.
W. Junger 《Journal of comparative physiology. A, Neuroethology, sensory, neural, and behavioral physiology》1991,169(5):633-639
Waterstriders on ponds and creeks compensate for displacement caused by wind or water current with periodical jumps against the direction of drift. This behavior is mediated by visual stimuli.
相似文献
1. | Waterstriders are able to detect the direction and extent of their displacement on an artificial canal when visual cues are reduced to a single point-like light source above the upstream end of the canal. They adjust the frequency and direction of the compensatory jumps to keep their mean position on the canal constant. The mean amplitude of the jumps is constant and independent of the stream velocity. |
2. | During drift compensation the light spot is kept in the frontal visual field at a fixed angle of elevation. This set angle differs among individuals and can be changed with time. |
3. | The station-keeping ability can hardly be explained by a velocity servo system since there is no accumulating position error. The average compensatory movements are governed by a discontinuously working position servo. |
4. | When the light spot is switched off, a few jumps are still performed. Jumps, therefore, are not triggered individually by visual cues. Waterstriders must possess an endogenous jump-generator. |
8.
Ursula Bartecki 《Primates; journal of primatology》1986,27(2):173-184
A study was carried out on the social position of 12 subadult males of a semifreeranging Barbary macaque population during
the non-mating season. The social position was measured in terms of spatial as well as interactive parameters. The subadult
males had social contacts to members of nearly all other age-sex classes but showed clear preferences for same-sexed partners.
Besides this differences were found between 5- and 6-year-old males with respect to their interaction profiles and the preference
for special classes of interaction partners. The terms “peripheral-central” is discussed with reference to the social structures
of macaque societies. The data of the present study indicate that the social position of subadult male Barbary macaques can
not be described by one of these terms exclusively. The results are compared to other studies on Barbary macaques and other
macaque species. It is concluded that in macaque societies subadult males are not obligatorily forced to live at the periphery
or to abide. It is proposed not to postulate stiff social structures but to put more emphasis on the range of variation among
macaque species. 相似文献
9.
Ferritin, a protein widespread in nature, concentrates iron ∼1011–1012-fold above the solubility within a spherical shell of 24 subunits; it derives in plants and animals from a common ancestor
(based on sequence) but displays a cytoplasmic location in animals compared to the plastid in contemporary plants. Ferritin
gene regulation in plants and animals is altered by development, hormones, and excess iron; iron signals target DNA in plants
but mRNA in animals. Evolution has thus conserved the two end points of ferritin gene expression, the physiological signals
and the protein structure, while allowing some divergence of the genetic mechanisms. Comparison of ferritin gene organization
in plants and animals, made possible by the cloning of a dicot (soybean) ferritin gene presented here and the recent cloning
of two monocot (maize) ferritin genes, shows evolutionary divergence in ferritin gene organization between plants and animals
but conservation among plants or among animals; divergence in the genetic mechanism for iron regulation is reflected by the
absence in all three plant genes of the IRE, a highly conserved, noncoding sequence in vertebrate animal ferritin mRNA. In
plant ferritin genes, the number of introns (n= 7) is higher than in animals (n= 3). Second, no intron positions are conserved when ferritin genes of plants and animals are compared, although all ferritin
gene introns are in the coding region; within kingdoms, the intron positions in ferritin genes are conserved. Finally, secondary
protein structure has no apparent relationship to intron/exon boundaries in plant ferritin genes, whereas in animal ferritin
genes the correspondence is high. The structural differences in introns/exons among phylogenetically related ferritin coding
sequences and the high conservation of the gene structure within plant or animal kingdoms suggest that kingdom-specific functional
constraints may exist to maintain a particular intron/exon pattern within ferritin genes. In the case of plants, where ferritin
gene intron placement is unrelated to triplet codons or protein structure, and where ferritin is targeted to the plastid,
the selection pressure on gene organization may relate to RNA function and plastid/nuclear signaling.
Received: 25 July 1995 / Accepted: 3 October 1995 相似文献
10.
金钱松(属)的细胞分类学研究 总被引:2,自引:0,他引:2
我国特有植物金钱松Pseudolarixamabills的体细胞染色体数目为2n=44,不同于n=12(Miyake&Yasui,1911)和2n=24(Dunieu-Vabre,1961)的结果。核型公式为K(2n)=44=4sm+40t)4SC)属3B类型,与K(n)=22=2m+20t(Sax&Sax,1933)和K(2n)=44=4sm+40t(Hizume1988)有差异。染色体相对长度组成为=44=4L+12M_2+26M_1+2S。金钦松(属)不仅在染色体数目(2n=44)和核型(具20对端着丝粒染色体)而且它的一些形态、解剖学和植化性状与所有松科其它各属不同。另外,它的一系列形态、解剖、孢粉、生化、植化和古植物学特征显然表明把该属与落叶松属、雪松属一起组成落叶松亚科是不适宜的。因此似乎有理由把金钱松从该亚科分出并建立一个单型的金钱松新亚科。本文还对金钱松(属)核型可能由近缘的铁杉属起源和进化而来作了讨论。 相似文献