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Asexual reproduction

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Asexual reproduction
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{{refimprove |date=March 2018}}{{Use dmy dates |date=July 2013}}File:caduco.jpg|thumb|Asexual reproduction in liverworts: a caducous phylloid germinating]]Asexual reproductionWEB,weblink Asexual but Not Clonal: Evolutionary Processes in Automictic Populations | Genetics, 2018-08-21, is a type of reproduction by which offspring arise from a single organism, and inherit the genes of that parent only; it does not involve the fusion of gametes, and almost never changes the number of chromosomes. Asexual reproduction is the primary form of reproduction for single-celled organisms such as archaea and bacteria. Many plants and fungi sometimes reproduce asexually.While all prokaryotes reproduce without the formation and fusion of gametes, mechanisms for lateral gene transfer such as conjugation, transformation and transduction can be likened to sexual reproduction in the sense of genetic recombination in meiosis.JOURNAL, Narra, H. P.; Ochman, H., Of what use is sex to bacteria?, Current Biology, 2006, 16, R705–710, 16950097, 10.1016/j.cub.2006.08.024, 17, A complete lack of sexual reproduction is relatively rare among multicellular organisms, particularly animals. It is not entirely understood why the ability to reproduce sexually is so common among them. Current hypothesesJOURNAL, Dawson, K.J., The Advantage of Asexual Reproduction: When is it Two-fold?, Journal of Theoretical Biology, October 1995, 176, 341–347,weblink 3, 10.1006/jtbi.1995.0203, suggest that asexual reproduction may have short term benefits when rapid population growth is important or in stable environments, while sexual reproduction offers a net advantage by allowing more rapid generation of genetic diversity, allowing adaptation to changing environments. Developmental constraintsJOURNAL, Engelstädter, J., Constraints on the evolution of asexual reproduction, BioEssays, November 2008, 30, 1138–1150, 11–12, 18937362, 10.1002/bies.20833, may underlie why few animals have relinquished sexual reproduction completely in their life-cycles. Another constraint on switching from sexual to asexual reproduction would be the concomitant loss of meiosis and the protective recombinational repair of DNA damage afforded as one function of meiosis.JOURNAL, Bernstein, H.; Hopf, F.A.; Michod, R.E., The molecular basis of the evolution of sex, Adv. Genet., 24, 323–70, 1987, 3324702, 10.1016/s0065-2660(08)60012-7, Advances in Genetics, 9780120176243, Avise, J. (2008) Clonality: The Genetics, Ecology and Evolution of Sexual Abstinence in Vertebrate Animals. See pp. 22-25. Oxford University Press. {{ISBN |019536967X}} {{ISBN |978-0195369670}}

Types

Fission

An important form of fission is binary fission, where the parent organism is replaced by two daughter organisms, because it literally divides in two. Only prokaryotes (the archaea and the bacteria) reproduce asexually through binary fission. Eukaryotes (such as protists and unicellular fungi) may reproduce in a functionally similar manner by mitosis; most of these are also capable of sexual reproduction.Multiple fission at the cellular level occurs in many protists, e.g. sporozoans and algae. The nucleus of the parent cell divides several times by mitosis, producing several nuclei. The cytoplasm then separates, creating multiple daughter cells.WEB,weblink Cell reproduction, Encyclopædia Britannica, BOOK, Britannica Educational Publishing, Fungi, Algae, and Protists, The Rosen Publishing Group, 2011, 978-1-61530-463-9,weblink BOOK, P.Puranik, Asha Bhate, Animal Forms And Functions: Invertebrata, Sarup & Sons, 2007, 978-81-7625-791-6,weblink In apicomplexans, multiple fission, or schizogony appears either as merogony, sporogony or gametogony. Merogony results in merozoites, which are multiple daughter cells, that originate within the same cell membrane,BOOK, Margulis, Lynn, Lynn Margulis, McKhann, Heather I., Olendzenski, Lorraine, Illustrated glossary of protoctista: vocabulary of the algae, apicomplexa, ciliates, foraminifera, microspora, water molds, slime molds, and the other protoctists, Jones & Bartlett learn, 2001,weblink 978-0-86720-081-2, BOOK, Yoshinori Tanada, Harry K. Kaya, Insect pathology, Gulf Professional Publishing, 1993, 978-0-12-683255-6,weblink sporogony results in sporozoites, and gametogony results in microgametes.

Budding

File:S cerevisiae under DIC microscopy.jpg|thumb|The yeast Saccharomyces cerevisiae reproducing by buddingbuddingSome cells split via budding (for example baker's yeast), resulting in a "mother" and "daughter" cell. The offspring organism is smaller than the parent. Budding is also known on a multicellular level; an animal example is the hydra, which reproduces by budding. The buds grow into fully matured individuals which eventually break away from the parent organism. Internal budding is a process of asexual reproduction, favoured by parasites such as Toxoplasma gondii. It involves an unusual process in which two (endodyogeny) or more (endopolygeny) daughter cells are produced inside a mother cell, which is then consumed by the offspring prior to their separation.BOOK, Smyth, James Desmond, Wakelin, Derek, Introduction to animal parasitology, 1994, Cambridge University Press, 101–102, 3, 0-521-42811-4, Also, budding (external or internal) is present in some worm like Taenia or Echinococci; these worm produce cyst and then produce (invaginated or evaginated) protoscolex with budding.

Vegetative propagation

File:Bryophyllum daigremontianum nahaufnahme1.jpg|thumb|Vegetative plantlets of mother-of-thousands, Bryophyllum (Kalanchoe) daigremontianum]]Vegetative propagation is a type of asexual reproduction found in plants where new individuals are formed without the production of seeds or spores by meiosis or syngamy.WEB,weblink Asexual Reproduction, Ucmp.berkeley.edu, 13 August 2010, Examples of vegetative reproduction include the formation of miniaturized plants called plantlets on specialized leaves (for example in kalanchoe) and some produce new plants out of rhizomes or stolon (for example in strawberry). Other plants reproduce by forming bulbs or tubers (for example tulip bulbs and dahlia tubers). Some plants produce adventitious shoots and may form a clonal colony, where all the individuals are clones, and the clones may cover a large area.WEB,weblink Celebrating Wildflowers - Fading Gold - How Aspens Grow, Fs.fed.us, 11 May 2010, 13 August 2010,weblink" title="web.archive.org/web/20100923073834weblink">weblink 23 September 2010, no,

Sporogenesis

Many multicellular organisms form spores during their biological life cycle in a process called sporogenesis. Exceptions are animals and some protists, who undergo meiosis immediately followed by fertilization. Plants and many algae on the other hand undergo sporic meiosis where meiosis leads to the formation of haploid spores rather than gametes. These spores grow into multicellular individuals (called gametophytes in the case of plants) without a fertilization event. These haploid individuals give rise to gametes through mitosis. Meiosis and gamete formation therefore occur in separate generations or "phases" of the life cycle, referred to as alternation of generations. Since sexual reproduction is often more narrowly defined as the fusion of gametes (fertilization), spore formation in plant sporophytes and algae might be considered a form of asexual reproduction (agamogenesis) despite being the result of meiosis and undergoing a reduction in ploidy. However, both events (spore formation and fertilization) are necessary to complete sexual reproduction in the plant life cycle.Fungi and some algae can also utilize true asexual spore formation, which involves mitosis giving rise to reproductive cells called mitospores that develop into a new organism after dispersal. This method of reproduction is found for example in conidial fungi and the red algae Polysiphonia, and involves sporogenesis without meiosis. Thus the chromosome number of the spore cell is the same as that of the parent producing the spores. However, mitotic sporogenesis is an exception and most spores, such as those of plants, most Basidiomycota, and many algae, are produced by meiosis.

Fragmentation

File:Tu - Linckia guildingi.jpg |thumb |right |alt=Regeneration from an arm |Linckia guildingi "comet", a starfishstarfishFragmentation is a form of asexual reproduction where a new organism grows from a fragment of the parent. Each fragment develops into a mature, fully grown individual. Fragmentation is seen in many organisms. Animals that reproduce asexually include planarians, many annelid worms including polychaetesBOOK, Ruppert, E. E., Fox, R. S., Barnes, R. D., Invertebrate Zoology, Annelida, Brooks / Cole, 7, 0-03-025982-7, 2004, 434–441, and some oligochaetes,BOOK, Ruppert, E.E., Fox, R.S., Barnes, R.D., yes, Invertebrate Zoology, Annelida, Brooks / Cole, 7, 0-03-025982-7, 2004, 466–469, turbellarians and sea stars. Many fungi and plants reproduce asexually. Some plants have specialized structures for reproduction via fragmentation, such as gemma in liverworts. Most lichens, which are a symbiotic union of a fungus and photosynthetic algae or bacteria, reproduce through fragmentation to ensure that new individuals contain both symbiont. These fragments can take the form of soredia, dust-like particles consisting of fungal hyphen wrapped around photobiont cells.Clonal Fragmentation in multicellular or colonial organisms is a form of asexual reproduction or cloning where an organism is split into fragments. Each of these fragments develop into mature, fully grown individuals that are clones of the original organism. In echinoderms, this method of reproduction is usually known as fissiparity.BOOK, Sköld, Helen Nilsson, Obst, Matthias, Sköld, Mattias, Åkesson, Bertil, Baruch Rinkevich, Valeria Matranga, Stem Cells in Marine Organisms, Stem Cells in Asexual Reproduction of Marine Invertebrates, Springer, 2009, 125, 978-90-481-2766-5,weblink Researchers claim today that due to many environmental and epigenetic differences, that clones originated in the same ancestor might actually be genetically and epigenetically different.JOURNAL, Neuhof, Moran, Levin, Michael, Rechavi, Oded, Vertically and horizontally-transmitted memories – the fading boundaries between regeneration and inheritance in planaria, Biology Open, 26 August 2016, bio.020149, 10.1242/bio.020149, 27565761,weblink 30 August 2016, 5051648, 5,

Agamogenesis

Agamogenesis is any form of reproduction that does not involve a male gamete. Examples are parthenogenesis and apomixis.

Parthenogenesis

File:Aphid-giving-birth.jpg |thumb |AphidAphidParthenogenesis is a form of agamogenesis in which an unfertilized egg develops into a new individual. Parthenogenesis occurs naturally in many plants, invertebrates (e.g. water fleas, rotifers, aphids, stick insects, some ants, bees and parasitic wasps), and vertebrates (e.g. some reptiles, amphibians, rarely birds). In plants, apomixis may or may not involve parthenogenesis.

Apomixis and nucellar embryony

Apomixis in plants is the formation of a new sporophyte without fertilization. It is important in ferns and in flowering plants, but is very rare in other seed plants. In flowering plants, the term "apomixis" is now most often used for agamospermy, the formation of seeds without fertilization, but was once used to include vegetative reproduction. An example of an apomictic plant would be the triploid European dandelion. Apomixis mainly occurs in two forms: In gametophytic apomixis, the embryo arises from an unfertilized egg within a diploid embryo sac that was formed without completing meiosis. In nucellar embryony, the embryo is formed from the diploid nucellus tissue surrounding the embryo sac. Nucellar embryony occurs in some citrus seeds. Male apomixis can occur in rare cases, such as the Saharan Cypress Cupressus dupreziana, where the genetic material of the embryo are derived entirely from pollen.

Alternation between sexual and asexual reproduction

{{see also |Plant reproduction#Sexual reproduction}}File:Soybeanaphidlifecycle.gif|thumb|upright=1.7|AphidAphidSome species alternate between sexual and asexual strategies, an ability known as heterogamy, depending on conditions. Alternation is observed in several rotifer species (cyclical parthenogenesis e.g. in Brachionus species) and a few types of insects, such as aphids which will, under certain conditions, produce eggs that have not gone through meiosis, thus cloning themselves. The cape bee Apis mellifera subsp. capensis can reproduce asexually through a process called thelytoky. A few species of amphibians, reptiles , and birds have a similar ability.For example, the freshwater crustacean Daphnia reproduces by parthenogenesis in the spring to rapidly populate ponds, then switches to sexual reproduction as the intensity of competition and predation increases. Another example are monogonont rotifers of the genus Brachionus, which reproduce via cyclical parthenogenesis: at low population densities females produce asexually and at higher densities a chemical cue accumulates and induces the transition to sexual reproduction. Many protists and fungi alternate between sexual and asexual reproduction.For example, the slime mold Dictyostelium undergoes binary fission (mitosis) as single-celled amoebae under favorable conditions. However, when conditions turn unfavorable, the cells aggregate and follow one of two different developmental pathways, depending on conditions. In the social pathway, they form a multicellular slug which then forms a fruiting body with asexually generated spores. In the sexual pathway, two cells fuse to form a giant cell that develops into a large cyst. When this macrocyst germinates, it releases hundreds of amoebic cells that are the product of meiotic recombination between the original two cells.BOOK, Mehrotra, R. S., Aneja, K. R., An Introduction to Mycology,weblink 4 August 2010, December 1990, New Age International, 978-81-224-0089-2, 83 ff, The hyphae of the common mold (Rhizopus) are capable of producing both mitotic as well as meiotic spores. Many algae similarly switch between sexual and asexual reproduction.BOOK, Cole, Kathleen M., Sheath, Robert G., Biology of the red algae,weblink 4 August 2010, 1990, Cambridge University Press, 978-0-521-34301-5, 469–, A number of plants use both sexual and asexual means to produce new plants, some species alter their primary modes of reproduction from sexual to asexual under varying environmental conditions.BOOK, Edward G. Reekie, Fakhri A. Bazzaz, Reproductive allocation in plants,weblink 4 August 2010, 28 October 2005, Academic Press, 978-0-12-088386-8, 99–,

Inheritance in sexual species

For example, in the rotifer Brachionus calyciflorus asexual reproduction (obligate parthenogenesis) can be inherited by a recessive allele, which leads to loss of sexual reproduction in homozygous offspring.JOURNAL, Stelzer, C.-P., Schmidt, J., Wiedlroither, A., Riss, S., 2010, Loss of Sexual Reproduction and Dwarfing in a Small Metazoan, PLoS ONE, 5, 9, e12854, 10.1371/journal.pone.0012854, 20862222, 2942836, JOURNAL, Scheuerl, T., Riss, S., Stelzer, C.P., 2011, Phenotypic effects of an allele causing obligate parthenogenesis in a rotifer, Journal of Heredity, 102, 4, 409–415, 10.1093/jhered/esr036, 21576287, 3113615, Inheritance of asexual reproduction by a single recessive locus has also been found in the parasitoid wasp Lysiphlebus fabarum.JOURNAL, Sandrock, C.; Vorburger, C., Single-locus recessive inheritance of asexual reproduction in a parasitoid wasp, Curr. Biol., 21, 5, 433–7, 2011, 21353557, 10.1016/j.cub.2011.01.070,

Examples in animals

Asexual reproduction is found in nearly half of the animal phyla.BOOK, Minelli, Alessandro, 2009, Asexual reproduction and regeneration, Perspectives in Animal Phylogeny and Evolution, Oxford University Press, 123–127,weblink 978-0198566205, Parthenogenesis occurs in the hammerhead sharkWEB, Savage, Juliet Eilperin, Female Sharks Can Reproduce Alone, Researchers Find, Washington Post, 23 May 2007,weblink 27 April 2008, and the blacktip shark.JOURNAL,weblink 'Virgin Birth' By Shark Confirmed: Second Case Ever, 10.1111/j.1095-8649.2008.02018.x, Sciencedaily.com, 11 October 2008, 13 August 2010, Chapman, D. D., Firchau, B., Shivji, M. S., Journal of Fish Biology, 73, 6, 1473–1477, In both cases, the sharks had reached sexual maturity in captivity in the absence of males, and in both cases the offspring were shown to be genetically identical to the mothers. The New Mexico whiptail is another example.Reptiles use the ZW sex-determination system, which produces either males (with ZZ sex chromosomes) or females (with ZW or WW sex chromosomes). Until 2010, it was thought that the ZW chromosome system used by reptiles was incapable of producing viable WW offspring, but a (ZW) female boa constrictor was discovered to have produced viable female offspring with WW chromosomes.WEB,weblink Boa constrictor produces fatherless babies, CBC News - Technology & Science, 3 November 2010, 2014-10-20, The female boa could have chosen any number of male partners (and had successfully in the past) but on these occasions she reproduced asexually, creating 22 female babies with WW sex-chromosomes.Polyembryony is a widespread form of asexual reproduction in animals, whereby the fertilized egg or a later stage of embryonic development splits to form genetically identical clones. Within animals, this phenomenon has been best studied in the parasitic Hymenoptera. In the 9-banded armadillos, this process is obligatory and usually gives rise to genetically identical quadruplets. In other mammals, monozygotic twinning has no apparent genetic basis, though its occurrence is common. There are at least 10 million identical human twins and triplets in the world today.Bdelloid rotifers reproduce exclusively asexually, and all individuals in the class Bdelloidea are females. Asexuality evolved in these animals millions of years ago and has persisted since. There is evidence to suggest that asexual reproduction has allowed the animals to evolve new proteins through the Meselson effect that have allowed them to survive better in periods of dehydration.JOURNAL, Pouchkina-Stantcheva, N. N., McGee, B. M., Boschetti, C., Tolleter, D., Chakrabortee, S., Popova, A. V., Meersman, F., MacHerel, D., Hincha, D. K., Functional Divergence of Former Alleles in an Ancient Asexual Invertebrate, Science, 318, 5848, 268–71, 2007, 17932297, 10.1126/science.1144363, Molecular evidence strongly suggests that several species of the stick insect genus Timema have used only asexual (parthenogenetic) reproduction for millions of years, the longest period known for any insect.T Schwander et al. 2011 Molecular evidence for ancient asexuality in Timema stick insects Current Biology 21:1129-34In the grass thrips genus Aptinothrips there have been several transitions to asexuality, likely due to different causes.CJ van der Kooi & T Schwander (2014) Evolution of asexuality via different mechanisms in grass thrips (Thysanoptera: Aptinothrips) Evolution 86:1883–1893

See also

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References

{{Reflist|30em}}

Further reading

  • Graham, L.; Graham, J.; Wilcox, L. 2003. Plant Biology. Pearson Education, Upper Saddle River, NJ.: pp. 258–259.
  • Raven, P.H.; Evert, R.F.; Eichhorn, S.E. 2005. Biology of Plants, 7th Edition. W.H. Freeman and Company Publishers, NY.
  • Avise, J. 2008. Clonality: The Genetics, Ecology, and Evolution of Sexual Abstinence in Vertebrate Animals. Oxford University Press

External links

{{Commons category |Asexual reproduction}}

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