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1.
Lipids and proteins in substantial quantities are present as storage products in spores of Onoclea sensibilis. They fill the sparce spore cytoplasm and ultrastructurally are indistinguishable from reserve materials observed in storage tissue of higher plants. Hydrolysis of both products is correlated with early stages in spore germination.  相似文献   

2.
A detailed study of spermatogenesis in a homosporous fern, Onoclea sensibilis L., is presented from the formation of the first spermatogenous cell to the release of the sperm. Two different walls are deposited around the developing spermatids at specific developmental stages as opposed to one wall reported for other species. Most ultrastructural changes that occur in Onoclea during spermatid differentiation resemble those described in previous studies on other fern species, with the following exceptions: 1) A previously undescribed structure appears during midspermatid stage. This dense layer of amorphous material with a row of evenly spaced light areas occurs between the anterior portion of the mitochondrion associated with the multilayered structure and the anterior plasmalemma of the spermatid. 2) An early stage in blepharoplast formation resembles that which occurs in the heterosporous fern Marsilea, in contrast to that which has been reported in Platyzoma, the only other homosporous fern studied at this stage. 3) The osmiophilic crest does not form as early as reported in other ferns. 4) The cap cell of Onoclea is removed intact, rather than collapsing or forming a pore during sperm release. Observations are reported on the number of sperm per antheridium, the time course of spermatogenous cell mitosis, and of differentiation of spermatids into sperm. In Onoclea, an antheridium may contain either 32 or 64 sperm. Regardless of the final number of sperm, each has approximately the same volume.  相似文献   

3.
A fertile frond of O. sensibitis was found which yielded spores with unusual growth characteristics. About 25% of the gametophytes derived from the spores were able to undergo 2-dimensional development in darkness, in contrast to normal plants which are filamentous in darkness. When the aberrant spores were cultured in darkness under conditions of reduced ethylene concentration, the proportion of 2-dimensional plants rose to 75%, and, moreover, up to 50% of the gametophytes produced antheridia within 2 weeks. Under comparable conditions normal gametophytes produced no antheridia. The medium from antheridial cultures of the aberrant spores failed to induce the formation of antheridia in other plants.  相似文献   

4.
Spores of Onoclea sensibilis L. do not germinate on distilled H2O if they are pretreated for sufficient time with dilute NaClO solution. However, spores will germinate, after NaClO pretreatment, on a simple mineral medium containing the major and trace elements. Complete germination after pretreatment also is obtained on a solution containing only Ca2+ and K+ as the cations, but neither ion by itself is sufficient. Rb+, but not Li+ or Na+, can replace K+. Hypochlorite-treated spores do not require the continuous presence of Ca2+ and K+ to germinate; exposure during the first 4 hr of culture, with the remainder of the time on distilled H2O, is sufficient. Extraction of spores with ethylene glycol bis(aminoethyl ether) tetraacetic acid [EGTA] makes their germination dependent on Ca2+, as reported by other workers, but it does not produce a co-requirement for K+. Colorimetric analysis with arsenazo III confirms that Ca2+ is extracted from Onoclea spores by NaClO. Extractable Ca2+ amounts to about 78 nmol/mg spore dry wt. Of this amount, 31% is contained in the perispore. The perispore comprises 13% of the total spore dry wt.  相似文献   

5.
In germinating spores of Onoclea sensibilis, the nucleus migrates to one end prior to an asymmetric cell division that partitions each spore into two daughter cells of unequal size. The larger cell develops into a protonema, whereas the smaller cell immediately differentiates into a rhizoid. When spores were germinated in the presence of methanol, nuclear migration was inhibited and most nuclei moved only to the raphe on the proximal side of the spores. Subsequent cell division partitioned each spore into daughter cells of equal size of which both developed into a protonema and neither into a rhizoid. Spores became sensitive to methanol at a time just prior to or coincident with nuclear migration and the effects of the alcohol were rapidly reversible as long as the spores were removed from methanol prior to the completion of cell division. Exposure to methanol prior to, but not during, nuclear migration or after mitosis had no effect upon rhizoid differentiation. The alcohol disrupted the formation of crosswalls after mitosis and they were often convoluted and irregularly branched. These results are consistent with the interpretation that methanol may disrupt a membrane site that plays an essential role in nuclear movement and rhizoid differentiation.  相似文献   

6.
蕨类植物桂皮紫萁颈卵器和精子器形态和发育的研究   总被引:5,自引:0,他引:5  
曹建国  包文美  戴绍军 《植物研究》2003,23(1):T005-T006
利用扫描电镜技术和树脂切片技术对蕨类植物桂皮紫萁(Osmunda cinnamomeaL.var.asiatica Fernald)的颈卵器和精子器的形态和发育进行了细致的研究。颈卵器发生于雌配子体的腹面,颈部由4列壁细胞构成,6-7个细胞高,内部含有颈沟细胞,腹沟细胞和卵细胞,卵细胞在整个发育过程中,造粉体和囊泡最为显著,颈卵器内的卵细胞成熟时产生卵膜和分离腔。精子器发生于雄配子体的边缘及腹面,由7-8个壁细胞螺旋状围绕而成,壁细胞内为产精组织,精子成熟时精子器盖细胞开裂释放出游动精子。  相似文献   

7.
Miller , J. H. (Yale U., New Haven, Conn.) The effect of auxin and guanine on cell expansion and cell division in the gametophyte of the fern, Onoclea sensibilis. Amer. Jour. Bot. 48(9): 816–819. Illus. 1961.—Auxin and guanine promote cell expansion in 0. sensibilis gametophytes. The optimum concentration of auxin for total expansion is 10−-5 M, but the optimum for elongation is 10−-6 M. Above this concentration the cells expanded isodiametrically. Guanine is active at higher concentrations than auxin. Increasing concentrations of auxin progressively inhibit red light-induced cell division, while guanine has no effect on cell division. Neither kinetin nor adenine promotes cell expansion or cell division.  相似文献   

8.
Miller , J. H. (Yale U., New Haven, Conn.), and P. M. Miller . The effect of different light conditions and sucrose on the growth and development of the gametophyte of the fern, Onoclea sensibilis. Amer. Jour. Bot. 48(2): 154–159. Illus. 1961.—Gametophytes grow rapidly under the highest intensity white fluorescent light used, 400 ft.-c. Growth is correspondingly less at 220 and 28 ft.-c., and at the lowest light intensity the gametophytes are markedly longer than wide. One percent sucrose added to the medium reverses the growth limitation imposed by low light intensity and produces a morphology comparable to that found under higher intensities. Sucrose does not sustain heterotrophic growth in total darkness, but permits growth if the gametophytes are given low dosages of red light. The effect of red light is reversible by far-red illumination.  相似文献   

9.
Nuclear migration was observed in individual germinating spores of Onoclea sensibilis from the onset of movement to the completion of mitosis. About 16 hr after the initiation of germination, the nucleus migrated from its initial position in the center of the spore to the proximal side. It then appeared to migrate along the raphe to one end of the spore where an asymmetric division occurred. The average velocity of migration was measured at 0.256 ± 0.065 μm/min. During migration the nucleus underwent changes in shape. No migrations or movement other than that by the nucleus were observed.  相似文献   

10.
When spores of the fern, Onoclea sensibilis L., are allowed to germinate in darkness, the rhizoid and the protonema are positioned at close to a right angle. If the spores are exposed initially to light and allowed to germinate, the rhizoid and protonema are positioned nearly axially, at opposite ends of the spore. The greater the duration and intensity of the initial illumination, the greater the tendency towards axial arrangement. All colors of light are active to some degree, and the effects are intensity-dependent. The response occurs in a uniform light field and is not dependent on a directional stimulus; the phenomenon reflects the relative arrangement of one part of the gametophyte to another part but not the orientation of growth with respect to an external stimulus. Direct tests show that neither the relative rhizoid orientation nor initial polarity of germination are affected by unilateral white light or polarized red light; the subsequent growth of the protonema, however, is oriented perpendicular to the plane of light polarization. The effects of light in determining the positional relationship between rhizoid and protonema are interpreted in terms of a hypothesis proposing light-induced changes in the structure and mechanical properties of the spore wall.  相似文献   

11.
In the four-celled antheridium of the fern species Onoclea sensibilis a central spermatogenous cell is enveloped by a jacket of three cells. Starting from the base, the jacket comprises the cup-shaped basal cell, the ring cell—both of which encircle the spermatogenous cell—and the cap cell. The lower wall of the spermatogenous cell has the configuration of a funnel; its upper wall is dome shaped. The choice of whole antheridia for study instead of sectioned ones has, for the first time, made it possible to study the formation of the uniquely shaped antheridial cell plates step by step. The cell plate antecedent of the funnel wall has the configuration of a funnel. This conclusion conflicts with Davie's contention that this cell wall is oriented transversely at first and acquires funnel-shape secondarily. The present studies further show that the funnel cell plate forms from base to rim. This finding contrasts with a report that in another fern species this cell plate begins to form on one side of the initial and then proceeds circularly around it. The base of the funnel cell plate attaches to the basal wall of the antheridium initial in a separate event. The genesis of the dome-shaped upper wall of the spermatogenous cell is described for the first time.  相似文献   

12.
13.
Antheridial initiation in Onoclea sensibilis L., an advanced leptosporangiate fern, begins with the production of a small, wedge-shaped cell within the anterior region of the vegetative cell. This is in contrast to previous reports claiming that the initials are formed by a localized protuberance in the cell wall of the vegetative cell (Campbell, 1886; Davie, 1951; Leung and Naf, 1979; Nayar and Kaur, 1971). The mature antheridium of Onoclea is composed of three uniquely shaped jacket cells surrounding spermatogenous cells. The two funnel-shaped jacket cell walls are shown to form in a lateral circular manner. Except for the production of the antheridial initial cell, jacket cell formation in Onoclea proceeds in accordance with the classical concept of antheridial development in advanced ferns accredited in part to Atkinson (1894), Campbell (1886), Kny (1869), and Strasburger (1869). The classical concept has been contested in more recent years by Davie (1951), Leung and Näf (1979), and Verma and Khullar (1966).  相似文献   

14.
In chlorophyll-containing spores of Onoclea sensibilis, depletion of lipid reserves during germination is correlated with increases in the activity of the glyoxylate cycle enzymes isocitrate lyase and malate synthase. In Onoclea, the heterotrophic activity associated with lipid catabolism occurs at the same time that autotrophic activity is taking place. Increases in chlorophyll content and in the activity of glycolate oxidase were recorded during the earliest stages of spore germination. In this species, there is no temporal separation of heterotrophic and autotrophic reactions. Concurrent increases in glyoxylate and glycolate cycle activities appear to occur naturally.  相似文献   

15.
A method of preparation for electron microscopy of fern spores in early stages of germination is presented. The cytochemistry and fine structure of Onoclea spores during the early stages of germination are described. The cytoplasm of the hydrated spore is filled with lipid droplets, protein granules and chloroplasts. During the early stages of development ribosomes and mitochondria increase in the area surrounding the central nucleus, and a new peripheral wall forms around the protoplast. Microtubules and large, branching mitochondria are associated with the nucleus during migration from its original central position in the spore to the proximal face and then to one end of the spore. There is no morphological polarization of cytoplasmic organelles of the spore before migration of the nucleus.  相似文献   

16.
The mating system and the genetic system of the homosporous fern Osmunda regalis were investigated. Seven populations from western Massachusetts were sampled. All the sporophytes investigated were found to be heterozygous for zygotic lethals. Morphological studies of the gametophytes indicated an intergametophytic mating system when the gametophytes were spatially and chronologically situated to exchange male gametes. Genetic studies evidenced a genetic system based upon duplicate loci.  相似文献   

17.
Onoclea sensibilis gametophytes grown on agar, unsterilized soil or ashed soil without the addition of antheridiogen developed antheridia after the notch meristem was formed. There was a linear increase in maleness through time on all three media. Antheridial production on agar was delayed nearly 3 wk. Agar had a significantly higher proportion of females than ashed soil or unsterilized soil. It was concluded that agar is an inappropriate medium for experiments on the mechanism of sexual development in Onoclea gametophytes.  相似文献   

18.
Early events during the germination of spores of the fern Onoclea sensibilis were studied to determine the time during germination when ethylene had its greatest inhibiting effect. Water imbibition by dry spores was rapid and did not appear to be inhibited by ethylene. During normal germination DNA synthesis occurred about four hours before the nucleus moved from a central position to the spore periphery. Following nuclear movement, mitosis and cell division occurred, partitioning the spore into a small rhizoid cell and a large protonemal cell. Cell division was complete approximately six hours after nuclear movement. Ethylene treatment of the spores blocked DNA synthesis, nuclear movement, and cell division. The earliest DNA replication in uninhibited spores was observed after 14 hours of germination, and the maximal rate of spore labeling with 3H-thymidine was between 16 and 20 hours. Spores were most sensitive to ethylene, however, during the stages of germination prior to DNA synthesis, and it was concluded that ethylene did not directly inhibit DNA replication but blocked germination at some earlier fundamental step. The effects of ethylene were reversible. since complete recovery from inhibition of germination was possible if ethylene was released and the spores were kept in light. Recovery was much slower in darkness. It was hypothesized that light acted photosynthetically to overcome the ethylene inhibition of germination. Consistent with this, it was shown that spores exhibit net photosynthesis after only two hours of germination.  相似文献   

19.
李荣森  罗成 《昆虫学报》1989,32(2):149-157
研究了苏芸金杆菌(Bacillus thuringiensis)3个变种6个菌株的提纯伴孢晶体和芽孢对大蜡螟(Galleria mellonella)和大菜粉蝶(Pieris brassicae)的毒力、晶体的蛋白质和多肽成分及芽孢衣中的类晶体蛋白质成分.生物测定表明,晶体毒力高于芽孢,在总数量相同的情况下,晶体和芽孢近1:1的混合物的毒力高于单独的晶体或芽孢.芽孢衣中存在一种类似晶体蛋白质的成分,无晶体突变株及无效野生株的芽孢则无此种蛋白质且对两种昆虫无毒.变种wuhanensis和变种galleriae的晶体含MW138000的主要蛋白质和63000的次要蛋白质,经碱性缓冲液溶解后,上清液含MW138000的蛋白质,沉淀中含MW63000的蛋白质;变种aizawai的晶体中仅含138000的蛋白质.对大蜡螟无毒的HD-11(var.aizawai)晶体的蛋白质成分有别于上述晶体,其胰蛋白酶消化物的SDS凝胶电泳图型显示少2条多肽带,但对大菜粉蝶仍有效.结果表明,苏芸金杆菌的芽孢在昆虫病理中有重要作用,伴孢晶体的蛋白质和多肽成分与它们对昆虫的毒力特性之间有密切关系.  相似文献   

20.
Light is required for the germination of spores of Matteuccia struthiopteris. Histochemical studies show that dormant spores contain no starch, but have an abundance of storage protein granules. Starch accumulates in the numerous chloroplasts of the spore on exposure to light and becomes gradually more extensive. Protein granules disappear as germination progresses. Following this, the centrally located nucleus migrates toward the proximal spore face. Concomitant with the nuclear migration, an increase of cytoplasmic RNA surrounding the nucleus occurs. An equal nuclear division and unequal cell division give rise to a 2-celled gametophyte consisting of a large prothallial cell and smaller rhizoidal cell. A new peripheral wall forms around the entire protoplast at the time of nuclear migration, while a transverse wall forms after nuclear division. The rhizoid emerges through the split raphe along the proximal spore face; it is rich in cytoplasmic RNA but contains very few chloroplasts and little starch. Electron microscopy of the 2-celled stage revealed a greater concentration of mitochondria, Golgi bodies, and a more extensive endoplasmic reticulum in the rhizoid than was found in the prothallial cell, which, however, was far richer in chloroplasts and lipid bodies. As the rhizoid elongates and becomes more vacuolated, cytoplasmic RNA decreases as cytoplasmic protein increases. The rhizoid undergoes no cell divisions, while the prothallial cell retains the potential for further cell division. The possible significance of the distribution of storage products, cell organelles, and other cell components were considered in relation to the non-equational cell division and differentiation of the 2 cells.  相似文献   

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