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11.
四个达摩凤蝶新孵幼虫细胞系的建立及其生物学特性   总被引:1,自引:0,他引:1  
【目的】建立达摩凤蝶 Papilio demoleus Linnaeus新孵幼虫细胞系,并对其生物学特性进行研究。【方法】使用改良配方的Grace培养基并辅以20%胎牛血清,通过原代和传代培养建立达摩凤蝶新孵幼虫细胞系。通过显微观察、细胞活力分析、核型分析和分子鉴定,获得4个新建细胞系的生物学特性数据。使用Bac-To-Bac杆状病毒表达系统构建重组分泌型碱性磷酸酶杆状病毒(AcMNPV-SEAP)。使用有限稀释法测定达摩凤蝶细胞系对AcMNPV-SEAP的半数组织培养感染剂量(TCID50), 比较达摩凤蝶细胞系对AcMNPV-SEAP的敏感性。【结果】建立了4个贴壁生长的达摩凤蝶新孵幼虫细胞系(RIRI-PaDe-1, RIRI-PaDe-2, RIRI-PaDe-3及RIRI-PaDe-4),且均传至60代以上。形态学方面,细胞系RIRI-PaDe-1和RIRI-PaDe-4较为相近,均由圆形、梭形以及多边形细胞组成,细胞系RIRI-PaDe-2主要为圆形细胞,而RIRI-PaDe-3主要为类似表皮细胞和纤维状细胞。细胞增殖动力学方面,4个细胞系的群体倍增时间分别为69.77, 67.42, 81.48及65.43 h。核型分析显示4个细胞系染色体数量均呈正态分布,其中RIRI-PaDe-2, RIRI-PaDe-3以及RIRI-PaDe-4的染色体数目分布区间比较接近,在45~97条之间,RIRI-PaDe-1的染色体条数相比偏少,在36~90条之间。通过比对4个达摩凤蝶细胞系和虫卵的细胞色素c氧化酶亚基I(COI)基因序列,证明4个新建细胞系来源于达摩凤蝶组织。比较4个细胞系对AcMNPV-SEAP敏感性发现RIRI-PaDe-3对此病毒较为敏感,可作为重组杆状病毒表达的宿主。【结论】虽然4个新建达摩凤蝶细胞系的来源相同,具有相同的遗传背景,但其生物学特征仍有明显差异,具有进一步研究的价值。  相似文献   
12.
Zhu LX  Wu XB 《动物学研究》2011,32(3):248-254
绿带翠凤蝶和西番翠凤蝶的分类问题存在一定的争议。应用分子系统学方法对这一问题进行了研究。对6个不同地区的24个绿带翠凤蝶、2个地区的16个西番翠凤蝶个体的COI(579bp)和COII(655bp)基因测序,绿带翠凤蝶与西番翠凤蝶的遗传距离为0至0.6%,共获得了15个单倍型。结果显示这些单倍型不能形成各自独立的单系群,因此认为绿带翠凤蝶和西番翠凤蝶为近期分化的两个种。  相似文献   
13.
挥发物在蝴蝶种内识别、交配繁衍等过程中作用关键。本文旨在研究美凤蝶Papilio memnon成虫虫体挥发物的变化规律,为下一步探索蝴蝶虫体挥发物作为嗅觉信号的组成成分在求偶过程中的作用提供基础资料。应用固相微萃取方法分别收集美凤蝶雌雄成虫的虫体挥发物,用GC-MS(气相色谱-质谱)技术对挥发物进行分析和比较。结果显示,羽化后的雌雄蝶可检测到烷烃类、烯烃类、炔烃类、芳香类、醇类、醛类、酯类、酸类等12类挥发物,其中芳香类、酯类、酸类在羽化后均有出现。交配前,雌雄蝶挥发物分别有14种和16种,其中14种为共有,而以反-2-辛烯醛(雌:59.88%,雄:77.99%)和2-甲基烯丙醇(雌:14.47%,雄:8.42%)相对含量较高。交配时,雌雄蝶挥发物分别增加到24种和21种,其中20种为共有,优势挥发物除反-2-辛烯醛(雌:53.75%,雄:39.62%)和2-甲基烯丙醇(雌:9.36%,雄:11.04%)外,还包括1-二十醇(雌:10.46%,雄:21.13%)。另外,雌蝶交配时有4种特有挥发物(1-茚酮、异辛酸、1-苯基-1-丙炔、紫苏醛),而雄蝶仅1种(β-石竹烯)。然而,一旦交配后,以上优势挥发物与交配时雌雄蝶特有挥发物均未检测到。推测2-甲基烯丙醇、反-2-辛烯醛和1-二十醇可能在美凤蝶种内识别过程中发挥作用,而1-茚酮、异辛酸、1-苯基-1-丙炔、紫苏醛和β-石竹烯则可能在求偶交配期间具有增强雌雄个体识别或相互吸引等作用。  相似文献   
14.
Four allopatric populations of the widely distributed western anise swallowtail butterfly, Papilio zelicaon, use different plant genera as hosts, but simultaneous choice experiments showed that these populations have diverged only slightly in oviposition preference. Of the four populations—two from southeastern Washington State, one from coastal southwestern Washington State, and one from central California—three use hosts that are not available to any of the others. Although variation for the degree of preference for particular plant species occurred within and among populations, all four populations ranked hosts in the same overall order. Monophagy on a local, low-ranking host outside the range of high-ranking hosts did not necessarily lead to the loss of preference for those high-ranking hosts, thereby indicating that the high-ranking hosts would still be accepted, and in some cases even preferred, if a population encountered them again. Hence, the overall preference hierarchy among P. zelicaon populations appears to be evolutionarily conservative. Analyses of differences among families within the California population indicated that increased preference for some hosts is inversely correlated, whereas preference for other hosts may be uncorrelated. Positive correlations may also occur but were not observed among the plant species tested. Overall, the results indicate local monophagy on different plant species in P. zelicaon has not involved major reorganizations in the preference hierarchy of ovipositing females, even in populations that may have fed on a low-ranking host for many generations. Instead, small increases in preference for local hosts have occurred within an evolutionarily conservative preference hierarchy.  相似文献   
15.
The swallowtail butterfly, Papilio xuthus L., feeds exclusively on members of the plant family, Rutaceae. Female butterflies lay eggs in response to specific chemicals contained in their host plants. They perceive a variety of polar compounds as oviposition stimulants through the tarsal chemosensilla of the foreleg by drumming upon the leaf surface. Some biogenic amine analogs have been characterized as oviposition stimulants. We have cloned three amine receptors, serotonin, tyramine, and dopamine, from cDNA derived from foreleg tarsus of P. xuthus, and determined structures of both cDNA and genomic genes. The phenylethylamine (tyramine and dopamine) receptors were expressed preferentially in brain and chemosensory organs. Moreover, we observed the localized expression of dopamine receptors at the base of tarsal chemosensilla by in situ hybridization. These results suggest that amine receptors in tarsal chemosensilla have a functional role in chemoreception for host plant recognition.  相似文献   
16.
Like the adult wing, butterfly larvae are unique in their coloring. However, the molecular mechanisms underlying the formation of insect larval color patterns are largely unknown. The larva of the swallowtail butterfly Papilio xuthus changes its color pattern markedly during the 4th ecdysis. We investigated its cuticular color pattern, which is thought to be composed of melanin and related pigments derived from tyrosine. We cloned three enzymes involved in the melanin-synthesis pathway in P. xuthus: tyrosine hydroxylase (TH), dopa decarboxylase (DDC), and ebony. Whole-mount in situ hybridization showed that the expression of both TH and DDC is strongly correlated with the black markings. ebony is strongly expressed only in the reddish-brown area. The expression pattern of each enzyme coincides with the cuticular color pattern of the subsequent instar. We also investigated the uptake of melanin precursors into cultured integument. Inhibition of either TH or DDC activity prevents in vitro pigmentation completely. Addition of dopamine to integuments in the presence of TH inhibitor causes overall darkening without specific markings. From these results, specific larval cuticular color patterns are regulated by stage-specific colocalization of enzymes in epidermal cells rather than by the differential uptake of melanin precursors into individual epidermal cells. Epidermal cells expressing TH and DDC, but not ebony, produce the black cuticle, and epidermal cells expressing TH, DDC, and ebony produce the reddish-brown cuticle.  相似文献   
17.
We investigate multilocus patterns of differentiation between parental populations of two swallowtail butterfly species that differ at a number of ecologically important sex-linked traits. Using a new coalescent-based approach, we show that there is significant heterogeneity in estimated divergence times among five Z-linked markers, rejecting a purely allopatric speciation model. We infer that the Z chromosome is a mosaic of regions that differ in the extent of historical gene flow, potentially due to isolating barriers that prevent the introgression of species-specific traits that result in hybrid incompatibilities. Surprisingly, a candidate region for a strong barrier to introgression, Ldh, does not show a significantly deeper divergence time than other markers on the Z chromosome. Our approach can be used to test alternative models of speciation and can potentially assign chronological order to the appearance of factors contributing to reproductive isolation between species.  相似文献   
18.
详细描述了达摩凤蝶Papilio demoleus L.各虫态的形态特征、生活史及生活习性。在广州地区。该蝶1年发生5代以上,以蛹在寄主植物上越冬,成虫3月初始见,幼虫共5龄,以芸香科的金橘属、酒饼筋和柑橘类等植物叶片为食料。  相似文献   
19.
It is a widespread notion that in arthropods female reproductive output is strongly affected by female size. In butterflies egg size scales positively with female size across species, suggesting a constraint imposed by maternal size. However, in intraspecific comparisons body size often explains only a minor part of the variation in progeny size. We here include representatives of various butterfly families to test the generality of this phenomenon across butterflies. Phenotypic correlations between egg and maternal body size were inconsistent across species: correlations were non-significant for Pararge aegeria and Lycaena tityrus, significantly positive for Papilio machaon, significantly negative for Araschnia levana, and contradictory for Pieris napi. Thus, there was no general pattern linking egg size to maternal size, e.g., caused by an allometric relationship. Consequently, there was at best limited evidence for maternal size acting as a morphological constraint on egg size within butterfly species. Realized fecundity depended on maternal size in P. napi and A. levana, but not in P. aegeria, suggesting that maternal size may affect egg number more strongly than egg size. Yet, variation in fecundity was primarily explained by variation in longevity as is expected for income breeders. Heritability estimates across species were rather similar for pupal mass (ranging between 0.14 and 0.19), but more variable for egg size (0.17–0.31).  相似文献   
20.
Several species of swallowtail butterflies (genus Papilio) are Batesian mimics that express multiple mimetic female forms, while the males are monomorphic and nonmimetic. The evolution of such sex‐limited mimicry may involve sexual dimorphism arising first and mimicry subsequently. Such a stepwise scenario through a nonmimetic, sexually dimorphic stage has been proposed for two closely related sexually dimorphic species: Papilio phorcas, a nonmimetic species with two female forms, and Papilio dardanus, a female‐limited polymorphic mimetic species. Their close relationship indicates that female‐limited polymorphism could be a shared derived character of the two species. Here, we present a phylogenomic analysis of the dardanus group using 3964 nuclear loci and whole mitochondrial genomes, showing that they are not sister species and thus that the sexually dimorphic state has arisen independently in the two species. Nonhomology of the female polymorphism in both species is supported by population genetic analysis of engrailed, the presumed mimicry switch locus in P. dardanus. McDonald–Kreitman tests performed on SNPs in engrailed showed the signature of balancing selection in a polymorphic population of P. dardanus, but not in monomorphic populations, nor in the nonmimetic P. phorcas. Hence, the wing polymorphism does not balance polymorphisms in engrailed in P. phorcas. Equally, unlike in P. dardanus, none of the SNPs in P. phorcas engrailed were associated with either female morph. We conclude that sexual dimorphism due to female polymorphism evolved independently in both species from monomorphic, nonmimetic states. While sexual selection may drive male–female dimorphism in nonmimetic species, in mimetic Papilios, natural selection for protection from predators in females is an alternative route to sexual dimorphism.  相似文献   
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