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1.
Male production by apterous viviparae of a holocyclic biotype of the green peach aphid, Myzus persicae, was induced by pre-natal and/or post-natal exposures to a long-night regime of 15 h dark per diem. When the apterae were exposed to three or more long nights immediately after birth and they subsequently developed under a short-night regime of 8 h dark per diem, they produced females (mostly alate viviparae) during the first 8–10 days of reproduction and a high proportion of males thereafter. When the apterae were exposed to two long nights immediately before their birth and to short nights thereafter, they produced relatively few females (mostly alate viviparae), and males were deposited already after 4–6 days of reproduction, i.e. 16–18 days after the first exposure to the long nights. The proportion of males among the progeny of these apterae was highest when the two prenatal exposures comprised scotophases of 11–15 h; under such long-night regimes many aphids switched to producing males exclusively. To achieve this effect, the two long scotophases had to be separated by a photophase of more than 1–2 h. Fewer males were produced and most of the apterae reverted to the production of females (apterous viviparae) when the duration of the two prenatal scotophases was 9 h 45 min-10 h 30 min, or 18 h and longer.One long night of 15–39 h could also induce temporary male production if the aphids were exposed to it late in the 4th larval instar or as teneral adults. 相似文献
2.
At 18–19°C, apterous viviparae of a holocyclic strain of Myzus persicae raised from birth under constant scotoperiods of 9 hr 26 min–15 hr darkness per diem deposited apterous viviparae, alate viviparae, and males, in that sequence. Under the shortest scotoperiod (9 hr 26 min) in which males were recorded, only a few were deposited at the end of reproduction. With increasing duration of the scotoperiods, the aphids switched to the exclusive deposition of males progressively earlier in their reproductive lives. Thus more males and fewer females were produced; however the proportion of wingless females increased. Similar trends were recorded when the number of prenatal exposures to each scotoperiod was increased from 0 to 7.Alatae developed into gynoparae at scotoperiods of 10 hr 29 min or longer, and into virginoparae at 9 hr 40 min or shorter scotoperiods. Gynoparae and alate virginoparae, as well as alates that produced both oviparae and viviparae were found at 10 hr and 10 hr 15 min.When apterous viviparae were transferred to scotoperiods of 10 hr 29 min or 15 hr only when they attained adulthood, they also deposited males but only toward the end of their reproductive lives. 相似文献
3.
The study reports on the effects of prenatal and/or postnatal exposures to short-night or long-night conditions, and of crowding, on embryogenesis and oögenesis in alate virginoparae, gynoparae, and oviparae of a holocyclic strain of the green peach aphid, Myzus persicae, from Yakima, Washington State.In alate virginoparae raised at a density of 10–20 per radish seedling in a short-night regime (8 hr darkness per diem), 3–4 embryos occurred in each of their 10 ovarioles, when the aphids attained adulthood. More than 30 larvae were deposited by most of these alatae. However, in young adult gynoparae, raised at these densities in a long-night regime (15 hr darkness per diem), only one viable embryo (a presumptive ovipara) occurred per ovariole. The follicle containing this embryo was followed by 1–2 abnormal follicles in each ovariole, and the number of larvae deposited by a gynopara was generally less than 10. In young adult oviparae similarly raised under a long-night regime, only one egg typically occurred in each of their 10 ovarioles, and the eggs deposited by an ovipara (only after it had mated) generally numbered less than 10. Alate virginoparae and gynoparae contained an additional embryo in some of their ovarioles when these morphs were raised at a lower density (1–5 per plant).Presumptive gynoparae partially developed the reproductive features of alate virginoparae when transferred to a short-night regime at birth; the converse was true when presumptive alate virginoparae were transferred to a long-night regime early in larval life. Oviparae maintained in short nights from before birth developed the appearance of apterous virginoparae but still produced eggs rather than embryos. However, their oögenesis was enhanced and eggs (10–20) were deposited by them without prior mating. Under all regimes tested, oviparae were always deposited early in the larviposition sequence of their alate mothers, and the number of oviparae deposited never exceeded 15.The possible involvement of juvenile hormone in the regulation of these events and the ecological significance of the results are discussed. 相似文献
4.
T.E. Mittler J. Eisenbach J.B. Searle M. Matsuka S.G. Nassar 《Journal of insect physiology》1979,25(3):219-226
Photoperiod-induced male production by apterous and alate viviparae of the green peach aphid. Myzus persicae, was reduced or prevented by treating the aphids with the JH analog kinoprene (Zoecon's insect growth regulator ZR 777). Concomitant with this reduction in the number of males was an increase in the production of females. This was most clearly demonstrated for apterous viviparae that had been raised from birth under weak long-night regimes of 10–10.5 hr dark day, and exposed to 0.1% kinoprene-treated radish seedlings for 2–3 days on reaching the fourth larval instar or adulthood.Male production by alate viviparae, whose apterous mothers were born and raised for 5 days under a long-night regime of 15 hr dark day and then maintained under a short-night regime of 8 hr dark day, was completely inhibited by exposing them to kinoprene-treated plants for 2–3 days when they had reached the fourth instar.It is concluded that the kinoprene treatment affects sex chromosome replication in the oögonia of an aphid so that these germ cells develop parthenogenetically into females (2n = 12 with two X chromosomes) rather than males (2n = 11 with one X chromosome). This may result either from a direct action of absorbed kinoprene on the oögonia or from an indirect action whereby the kinoprene stimulates the insect's hormonal system to produce a hormone that stimulates development of the oögonia into females. 相似文献
5.
早期胚胎的发育选择:性别决定 总被引:2,自引:0,他引:2
性别决定是一个复杂的发育调控过程, 早期胚胎发育过程中, 雌雄二者必居其一的发育选择是胚胎性腺形成必须的发育决定。文章综述了动物性别决定的遗传系统、性腺发生、性别决定关键基因及其作用机制, 从分子进化的角度分析了性染色体与性别决定形成机制, 提示性别决定基因在进化中总是趋向异配性染色体。 相似文献
6.
Cichlid species of the genus Oreochromis vary in their genetic sex-determination systems. In this study, we used microsatellite DNA markers to characterize the sex-determination system in Oreochromis tanganicae. Markers on linkage group 3 were associated with phenotypic sex, with an inheritance pattern typical of a female heterogametic species (WZ-ZZ). Further, locus duplication was observed for two separate microsatellite markers on the sex chromosome. These results further advance our understanding of the rapidly evolving sex-determination systems among these closely related tilapia species. 相似文献
7.
J. T. Margaritopoulos K. Tsamandani O. M. Kanavaki N. I. Katis J. A. Tsitsipis 《Journal of Applied Entomology》2010,134(4):323-332
Forty‐four parthenogenetic lineages of Myzus persicae s.l. (Sulzer) from tobacco crops and peach orchards located in various regions of Greece were examined to determine their response to the insecticide pymetrozine using leaf‐dip bio‐assays. The results show that the aphid has not developed resistance, as all lineages exhibited resistance factors bellow 6.0. In transmission experiments of potato virus Y (PVY) using a lineage of the tobacco‐adapted subspecies M. persicae nicotianae Blackman on tobacco plants, one foliar application with pymetrozine provided adequate protection for 7 days. Pymetrozine significantly reduced both virus acquisition and inoculation compared with the untreated control and the reduction was comparable to a mineral oil application. These results are discussed in terms of the advantage of incorporating pymetrozine as a compound of pest management strategies against M. persicae s.l. and for control of non‐persistent viruses, especially in crops such as tobacco because of the high selection pressure from neonicotinoids resulting in potential of resistance developing in aphid populations. 相似文献
8.
Kudryavtsev I. V. Safronova L. D. Kudryavtsev P. I. 《Russian Journal of Developmental Biology》2003,34(6):337-346
The material was analyzed on the main problems of genetics of mammalian spermatogenesis, sex determination, its reversion and other defects from the standpoint of current cytological and molecular-genetic concepts of functional activity of the parental genomes after fertilization and behavior of their chromosomes at the early embryonic stages. On the basis of this analysis, a hypothesis has been proposed, which explains a high percentage (50% or more) of early embryonic mortality in placental mammals under the conditions of natural and extracorporeal fertilization, as well as regular appearance of defects in the course of natural sex determination, including the appearance of representatives of both sex minorities. We do not make pretense to comprehensive and deep analysis of male gametogenesis and sex determination in mammals. 相似文献
9.
Genetic evidence for co-occurrence of chromosomal and thermal sex-determining systems in a lizard 总被引:1,自引:0,他引:1
An individual's sex depends upon its genes (genotypic sex determination or GSD) in birds and mammals, but reptiles are more complex: some species have GSD whereas in others, nest temperatures determine offspring sex (temperature-dependent sex determination). Previous studies suggested that montane scincid lizards (Bassiana duperreyi, Scincidae) possess both of these systems simultaneously: offspring sex is determined by heteromorphic sex chromosomes (XX-XY system) in most natural nests, but sex ratio shifts suggest that temperatures override chromosomal sex in cool nests to generate phenotypically male offspring even from XX eggs. We now provide direct evidence that incubation temperatures can sex-reverse genotypically female offspring, using a DNA sex marker. Application of exogenous hormone to eggs also can sex-reverse offspring (oestradiol application produces XY as well as XX females). In conjunction with recent work on a distantly related lizard taxon, our study challenges the notion of a fundamental dichotomy between genetic and thermally determined sex determination, and hence the validity of current classification schemes for sex-determining systems in reptiles. 相似文献
10.
《Current biology : CB》2021,31(21):4800-4809.e9
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11.
Veronika Slancarova Jana Zdanska Bohuslav Janousek Martina Talianova Christian Zschach Jitka Zluvova Jiri Siroky Viera Kovacova Hana Blavet Jiri Danihelka Bengt Oxelman Alex Widmer Boris Vyskot 《Evolution; international journal of organic evolution》2013,67(12):3669-3677
The plant genus Silene has become a model for evolutionary studies of sex chromosomes and sex‐determining mechanisms. A recent study performed in Silene colpophylla showed that dioecy and the sex chromosomes in this species evolved independently from those in Silene latifolia, the most widely studied dioecious Silene species. The results of this study show that the sex‐determining system in Silene otites, a species related to S. colpophylla, is based on female heterogamety, a sex determination system that is unique among the Silene species studied to date. Our phylogenetic data support the placing of S. otites and S. colpophylla in the subsection Otites and the analysis of ancestral states suggests that the most recent common ancestor of S. otites and S. colpophylla was most probably dioecious. These observations imply that a switch from XX/XY sex determination to a ZZ/ZW system (or vice versa) occurred in the subsection Otites. This is the first report of two different types of heterogamety within one plant genus of this mostly nondioecious plant family. 相似文献
12.
Michail Rovatsos Jasna Vuki? Petros Lymberakis Luká? Kratochvíl 《Proceedings. Biological sciences / The Royal Society》2015,282(1821)
Amniote vertebrates possess various mechanisms of sex determination, but their variability is not equally distributed. The large evolutionary stability of sex chromosomes in viviparous mammals and birds was believed to be connected with their endothermy. However, some ectotherm lineages seem to be comparably conserved in sex determination, but previously there was a lack of molecular evidence to confirm this. Here, we document a stability of sex chromosomes in advanced snakes based on the testing of Z-specificity of genes using quantitative PCR (qPCR) across 37 snake species (our qPCR technique is suitable for molecular sexing in potentially all advanced snakes). We discovered that at least part of sex chromosomes is homologous across all families of caenophidian snakes (Acrochordidae, Xenodermatidae, Pareatidae, Viperidae, Homalopsidae, Colubridae, Elapidae and Lamprophiidae). The emergence of differentiated sex chromosomes can be dated back to about 60 Ma and preceded the extensive diversification of advanced snakes, the group with more than 3000 species. The Z-specific genes of caenophidian snakes are (pseudo)autosomal in the members of the snake families Pythonidae, Xenopeltidae, Boidae, Erycidae and Sanziniidae, as well as in outgroups with differentiated sex chromosomes such as monitor lizards, iguanas and chameleons. Along with iguanas, advanced snakes are therefore another example of ectothermic amniotes with a long-term stability of sex chromosomes comparable with endotherms. 相似文献
13.
The wheat aphid Schizaphis graminum (Rondani) displays wing dimorphism with both winged and wingless adult morphs. The winged morph is an adaptive microevolutionary response to undesirable environmental conditions, including undesirable population density, photoperiod, temperature, and host plant. Here we studied the integrative effects of population density, photoperiod, temperature, and host plant on the induction of alate aphids in S. graminum. The present results show that these four factors all play roles in inducing alate aphids in S. graminum but population density is the most important under almost all circumstances. In importance, population density is followed by photoperiod, host plant, and temperature, in that order. These results indicate that ambient environmental factors are highly important to stimulation of alate aphids in S. graminum, especially when population density reaches 64 individuals per leaf. 相似文献
14.
Trichomes of Lycopersicon spp. and their effect on Myzus persicae (Sulzer) (Hemiptera: Aphididae) 总被引:1,自引:0,他引:1
Aaron T Simmons Geoff M Gurr Des McGrath Helen I Nicol Peter M Martin 《Australian Journal of Entomology》2003,42(4):373-378
Abstract The green peach aphid ( Myzus persicae ) is becoming resistant to many of the pesticides used in the tomato ( Lycopersicon esculentum ) industry. A potential alternative method of control is host-plant resistance, which may be mediated by trichomes. Resistance to the green peach aphid was assessed for six accessions of L. hirsutum, three of L. pennellii and a L. esculentum control. Mortality, entrapment and number of aphids unaffected by trichomes were recorded 24, 48 and 72 h after placement. Using multiple regression against counts of glandular and non-glandular trichomes, the role of foliar pubescence in resistance to the aphid was established. Lycopersicon pennellii possessed the highest level of resistance after 72 h and type IV trichome density accounted for 26.5% of variance in mortality ( P < 0.001). Low densities of type IV and high densities of type VII trichomes increased the number of aphids 'unaffected' by trichomes, a relationship accounting for 29% of variance ( P < 0.001). Information on which types of trichomes most strongly affect resistance to insect pests will aid future breeding and L. pennellii shows potential for use in breeding programs to increase levels of host-plant resistance in L. esculentum. 相似文献
15.
Sex is determined genetically in some species (genotypic sex determination, or GSD) and by the environment (environmental sex determination, or ESD) in others. The two systems are generally viewed as incompatible alternatives, but we have found that sex determination in a species of montane lizard ( Bassiana duperreyi , Scincidae) in south-eastern Australia is simultaneously affected by sex chromosomes and incubation temperatures, as well as being related to egg size. This species has strongly heteromorphic sex chromosomes, and yet incubation at thermal regimes characteristic of cool natural nests generates primarily male offspring. We infer that incubation temperatures can over-ride genetically determined sex in this species, providing a unique opportunity to explore these alternative sex-determining systems within a single population. 相似文献
16.
Adriana E. Alvarez ;Anahi M. Alberti D'Amato ;W. Fred Tjallingii ;Marcel Dicke ;Ben Vosman 《Insect Science》2014,21(6):727-740
Young leaves of the potato Solanum tuberosum L. cultivar Kardal contain resistance factors to the green peach aphid Myzuspersicae (Sulzer) (Hemiptera: Aphididae) and normal probing behavior is impeded. However, M. persicae can survive and reproduce on mature and senescent leaves of the cv. Kardal plant without problems. We compared the settling ofM. persicae on young and old leaves and analyzed the impact of aphids settling on the plant in terms of gene expression. Settling, as measured by aphid numbers staying on young or old leaves, showed that after 21 h significantly fewer aphids were found on the young leaves. At earlier time points there were no difference between young and old leaves, suggesting that the young leaf resistance factors are not located at the surface level but deeper in the tissue. Gene expression was measured in plants at 96 h postinfestation, which is at a late stage in the interaction and in compatible interactions this is long enough for host plant acceptance to occur. In old leaves of cv. Kardal (compatible interaction), M. persicae infestation elicited a higher number of differentially regulated genes than in young leaves. The plant response to aphid infestation included a larger number of genes induced than repressed, and the proportion of induced versus repressed genes was larger in young than in old leaves. Several genes changing expression seem to be involved in changing the metabolic state of the leaf from source to sink. 相似文献
17.
Marie Altmanová Daniel Frynta Michail Rovatsos Lukáš Kratochvíl 《Evolution; international journal of organic evolution》2018,72(8):1701-1707
Snakes are historically important in the formulation of several central concepts on the evolution of sex chromosomes. For over 50 years, it was believed that all snakes shared the same ZZ/ZW sex chromosomes, which are homomorphic and poorly differentiated in “basal” snakes such as pythons and boas, while heteromorphic and well differentiated in “advanced” (caenophidian) snakes. Recent molecular studies revealed that differentiated sex chromosomes are indeed shared among all families of caenophidian snakes, but that boas and pythons evolved likely independently male heterogamety (XX/XY sex chromosomes). The historical report of heteromorphic ZZ/ZW sex chromosomes in a boid snake was previously regarded as ambiguous. In the current study, we document heteromorphic ZZ/ZW sex chromosomes in a boid snake. A comparative approach suggests that these heteromorphic sex chromosomes evolved very recently and that they are poorly differentiated at the sequence level. Interestingly, two snake lineages with confirmed male heterogamety possess homomorphic sex chromosomes, but heteromorphic sex chromosomes are present in both snake lineages with female heterogamety. We point out that this phenomenon is more common across squamates. The presence of female heterogamety in non‐caenophidian snakes indicates that the evolution of sex chromosomes in this lineage is much more complex than previously thought, making snakes an even better model system for the evolution of sex chromosomes. 相似文献
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Phillips BC Edmands S 《BioEssays : news and reviews in molecular, cellular and developmental biology》2012,34(3):166-169
Squamates may be an attractive group in which to study the influence of sex chromosomes on speciation rates because of the repeated evolution of heterogamety (both XY and ZW), as well as an apparently large number of taxa with environmental sex-determination. 相似文献