mybiologyworld.com Report : Visit Site


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    The main IP address: 166.62.27.188,Your server United States,Scottsdale ISP:GoDaddy.com LLC  TLD:com CountryCode:US

    The description :this is a blog for biology . you will find your answer very easily check it....

    This report updates in 26-Aug-2018

Created Date:2017-12-21
Changed Date:2017-12-21

Technical data of the mybiologyworld.com


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Latitude: 33.601974487305
Longitude: -111.88791656494
Country: United States (US)
City: Scottsdale
Region: Arizona
ISP: GoDaddy.com LLC

HTTP Header Analysis


HTTP Header information is a part of HTTP protocol that a user's browser sends to called Apache containing the details of what the browser wants and will accept back from the web server.

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Date:Sun, 26 Aug 2018 11:32:14 GMT
Content-Type:text/html; charset=UTF-8

DNS

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OWNER:AS-26496-GO-DADDY-COM-LLC - GoDaddy.com, LLC, US
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mx:MX preference = 0, mail exchanger = mail.mybiologyworld.com.

HtmlToText

skip to content my biology world this is a blog for biology . you will find your answer very easily check it. menu home about us contact me scroll down to content posts posted on may 3, 2018 dominant epistasis dominant epistasis the dominant gene at one locus suppress the gene at another locus, regardless whether the other gene is dominant or recessive. the gene which suppresses other gene is called epistatic gene and the gene which gets suppressed is called hypostatic gene. example- fruit coat colour in cucurbita pepo ( summer squash). the cross is in the picture- dominant epistasis here the effect of genes, a>b>a=b posted on april 29, 2018 complementary gene interaction complementary genes these are non allelic genes which independently show similar effect but when present together produce new phenotypic effect. example- flower colour inheritance in lathyrus odoratus. the cross is in picture- complementary gene posted on january 18, 2018 january 18, 2018 functions of nucleus functions of nucleus the main function of nucleus is to control all the mechanism and metabolism which occurs in the cell. function of nuclear envelope:- it protects nucleus and its contents. it gives mechanical support to the nucleus. it gives a proper structure to the nucleus. function of nuclear pore:- it allows some rna and dna to transfer from nucleoplasm to cytoplasm. function of nucleoplasm:- it contains some enzymes , some lipids, some minerals and proteins which is important for dna replication and and many other things. function of nucleolus:- it is important for rrna synthesis after cell division. posted on january 17, 2018 cell wall cell wall cell wall is the secretory product of protoplasm. it is formed during cytokinesis. it is non living and freely permeable. it is rigid and mainly cellulosic in plants. it acts as cytoskeleton and provides mechanical soupport to plant cells. it counteracts turgor pressure by developing wall pressure. cell wall of plants contains :- matrix – it is made of hemicellulose, protein, pectin and water. fibrils – it is made of cellulose. one macrofibril is composed of 250 microfibrils . each microfibril is composed of 20 elementary fibrils. each elementary fibrils is made of 100 cellulose chains. deposition – it can be in the form of lignin, suberin, citing, wax, tanins and resins. cell wall layers: cell wall layer is mainly two types primary and secondary . primary wall – gets deposited inner to middle lamella. extensible layer, thin and elastic. cellulose is less but hemicellulose is more. elastic and thin. protein is more. lignin, suberin is absent. grow due to intussusception. hydration more. secondary wall – gets deposited inner to primary wall. non extensible layer, thick and non elastic. cellulose is more but hemicellulose is less. inelastic, rigid and thick. protein is very less. lignin , suberin may be present. grow due to accretion or apposition. hydration less. middle lamella :- middle lamella is cementing layer between the primary walls of adjacent cells. it is amorphous and mainly made up of calcium pectate. it also contain few amount of magnesium pectate. posted on january 15, 2018 mitotic inhibitors mitotic inhibitors mitotic inhibitors are those chemicals which inhibits the mitotic cell division. azidies and cyanides :- inhibits prophase. mustard gas :- agglutinate chromosome. chalones :- these are small polypeptide or glycoprotein in extra cellular fluid which inhibits mitosis. colchicine :- these cause disassembly of spindle fibres . colchicine causes metaphasic arrest and doubling of chromosomes. posted on january 13, 2018 significance of mitosis significance of mitosis significance of mitosis is of many types: growth – somatic cells are formed by mitosis, so mitosis is essential for growth and development of multicellular organisms. reproduction – mitosis is the method of multiplication of unicellular organisms. chromosome number – mitosis maintain the chromosome number. regenaration – mitosis keeps all the cells of an organism genetically similar. therefore they are able to regenerate part or whole of the organism. nucleo-cytoplasmic ratio – an active and efficient cell has a high nucleo-cytoplasmic ratio. increase in size lowers the ratio. a high nucleo-cytoplasmic ratio brought back through cell division. these 5 points signify that mitosis is very important in life. posted on january 12, 2018 meiosis meiosis most eukaryotic organisms reproduce sexually, the genomes of two parents mix to generate offsprings that are genetically distinct from either parent. sexual reproduction depends on a specialised nuclear division process called meiosis, which produces haploid cells carrying only a single copy of each chromosome. it involves two sequential cycles of nuclear and cell division which occurs in a diploid cell giving rise to 4 haploid cells, each having half the number of chromosomes in comparison to the parent cell. it is a type of reductional cell division as a daughter cells have haploid number of chromosomes in comparison to the diploid parental cell. in fact meiosis-i is reductional cell division and meiosis-ii is equational cell division. the term meiosis was coined by farmer and moore in 1905. it was first studied by van benden (1887) and strasburges (1888). meiosis is of three types:- i) zygotic meiosis, ii) sporic meiosis, iii) gametic meiosis. meiosis-i meiosis-i is initiated after the parental chromosomes have replicated to produce identical sister chromatids at the s phase. it is reductional division. it involves four phases – prophase-i,metaphase-i,anaphase-i,telophase-i. prophase-i it is more complicated and prolonged in comparison to mitotic prophase. it involves the following five subphases: leptotene :- each chromosome possess two chromatids but separate chromatids are not clearly visible. in a cell undergoing meiosis, there are two sets of chromosomes that is the chromosome number is diploid. there are two similar chromosomes of each type. such chromosomes are called homologous chromosomes. the two chromosomes are contributed by different parents, one of them belongs to father which is called parental chromosomes and the other belong to mother called maternal chromosome . the homologous chromosomes resemble each other in the position of the centromere, shape, size and possess same genes in the location as one another. during leptotene in animals, ends of all the chromosomes converge to one side of the nuclear envelope which looks like a bouquet of flower so this is also called ‘ bouquet stage ‘. the same thing in plant cells is called ‘ synizetic knot formation ‘. zygotene:- the two homologous chromosomes got attached to each other laterally due to development of ribonucleoprotein called synaptonemal complex . the process of attachment of the homologous chromosomes is called synapsis . the complex formed by a pair of synapsed homologous chromosome is called a bivalent . the number of bivalents is half the number of the total chromosomes. pachytene:- the chromatids of the homologous chromosomes now become clearly visible as tetrad . the chromatids of the same chromosome are called sister chromatids and the two chromatids of the two different homologous chromosomes are called non sister chromatids . dense areas appear at the sites of crossing over called recombination nodules to perform recombination which one is done by the enzyme recombinase . breakage of chromatids taken place by endonuclease , the broken chromatids exchange to recombine between non sister chromatids. after exchange of chromatid segments they get reunited by ligase . this is called crossing over. crossing over is the major cause of continuous type of genetic variation. diplotene:- the beginning of the diplotene is recognised by the dissolution of the synaptic email complex and the tendency of the recombined homologous chromosomes of the bivalents to separate from each other except at the sites of crossovers. these x shaped

URL analysis for mybiologyworld.com


http://www.mybiologyworld.com/wp-content/uploads/2018/04/img_20180429_015526-2.jpg
http://www.mybiologyworld.com/cell-wall/
http://www.mybiologyworld.com/page/4/
http://www.mybiologyworld.com/about-us/
http://www.mybiologyworld.com/mitotic-inhibitors/
http://www.mybiologyworld.com/#content
http://www.mybiologyworld.com/m-phase/
http://www.mybiologyworld.com/wp-content/uploads/2018/05/img_20180503_190419.jpg
http://www.mybiologyworld.com/dominant-epistasis/
http://www.mybiologyworld.com/functions-of-nucleus/
http://www.mybiologyworld.com/page/2/
http://www.mybiologyworld.com/complementary-gene-interaction/
http://www.mybiologyworld.com/contact/
http://www.mybiologyworld.com/g2-phase/
http://www.mybiologyworld.com/meiosis/

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Domain Name: MYBIOLOGYWORLD.COM
Registry Domain ID: 2202780108_DOMAIN_COM-VRSN
Registrar WHOIS Server: whois.godaddy.com
Registrar URL: http://www.godaddy.com
Updated Date: 2017-12-21T09:11:26Z
Creation Date: 2017-12-21T09:11:26Z
Registry Expiry Date: 2018-12-21T09:11:26Z
Registrar: GoDaddy.com, LLC
Registrar IANA ID: 146
Registrar Abuse Contact Email: [email protected]
Registrar Abuse Contact Phone: 480-624-2505
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DNSSEC: unsigned
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DOMAIN

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