<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE article PUBLIC "-//Atypon//DTD Atypon Systems Archival NLM DTD Suite v2.2.0 20090301//EN" "nlm-dtd2.2/archivearticle.dtd">
<article xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" article-type="research-article" dtd-version="2.2" xml:lang="EN">
	<front>
		<journal-meta>
			<journal-id journal-id-type="publisher-id">pnut</journal-id>
			<journal-id journal-id-type="allenpress-id">pnut</journal-id>
			<journal-title>Peanut Science</journal-title>
			<issn pub-type="ppub">0095-3679</issn>
			<issn pub-type="active">0095-3679</issn>
			<publisher>
				<publisher-name>American Peanut Research and Education Society</publisher-name>
			</publisher>
		</journal-meta>
		<article-meta>
			<article-id pub-id-type="doi">10.3146/i0095-3679-11-1-6</article-id>
			<article-categories>
				<subj-group subj-group-type="heading">
					<subject>Articles</subject>
				</subj-group>
			</article-categories>
			<title-group>
				<article-title>Utilization of Wild Relatives in Genetic Improvement of <italic>Arachis hypogaea</italic> L. VI. Fertility in Triploids: Cytological Basis and Breeding Implications<xref ref-type="fn" rid="fn1"><sup>1</sup></xref></article-title>
			</title-group>
			<contrib-group>
				<contrib contrib-type="author" xlink:type="simple">
					<name name-style="western">
						<given-names>A. K.</given-names><x xml:space="preserve"> </x>
						<surname>Singh</surname>
					</name><x xml:space="preserve"> and </x>
				</contrib>
				<contrib contrib-type="author" xlink:type="simple">
					<name name-style="western">
						<given-names>J. P.</given-names><x xml:space="preserve"> </x>
						<surname>Moss</surname>
					</name>
					<xref ref-type="aff" rid="aff2"><sup>2</sup></xref>
				</contrib>
				
					<aff id="aff2">
					<label><sup>2</sup></label>Cytogeneticist and Principal Cytogeneticist, respectively, Groundnut Improvement Program, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru P. O. 502 324, A.P., India
				</aff>
			</contrib-group>
			<author-notes>
				<fn fn-type="fn" id="fn1">
					<p><sup>1</sup>Submitted as Journal Article No. 329 by the International Crops Research Institute for the Semi-Arid Tropics (ICRISAT).</p>
				</fn>
			</author-notes>
			<pub-date pub-type="ppub">
				<month>1</month>
				<year>1984</year>
			</pub-date>
			<volume>11</volume>
			<issue>1</issue>
			<fpage>17</fpage>
			<lpage>21</lpage>
			<history>
				<date date-type="accepted">
					<day>8</day>
					<month>3</month>
					<year>1984</year>
				</date>
			</history>
			<permissions>
				<copyright-statement>American Peanut Research and Education Society</copyright-statement>
				<copyright-year>1984</copyright-year>
				<copyright-holder>American Peanut Research and Education Society</copyright-holder>
			</permissions>
			<related-article related-article-type="pdf" xlink:href="i0095-3679-11-1-6.pdf" xlink:type="simple"></related-article>
			<abstract>
				<title>Abstract</title>
				<p>The triploid hybrids between <italic>Arachis hypogaea</italic> L. and diploid species of section <italic>Arachis nom. nud.</italic> which had been observed to be sterile at Reading, England, produced pegs and pods at the ICRISAT Center. Cytological investigations of these and other triploid hybrids revealed (1) spindle abnormalities resulting in restitution nuclei and unreduced gametes, and (2) unequal segregation of chromosomes resulting in haploid to hyperdiploid gametes. Of the 225 F<sub>2</sub> plants derived from triploids, 82&percnt; were hexaploid, 8&percnt; were tetraploid, and 10&percnt; had chromosome numbers from 20&ndash;59. This indicates that the above processes occurred both at micro- and mega-sporogenesis and that unreduced gametes were more effective in fertilization resulting in a higher percentage of hexaploid progenies. The implications of these results are that triploids can be used in <italic>Arachis</italic> interspecific breeding for increased recombination between chromosomes and quick recovery of <italic>Arachis hypogaea</italic> like tetraploid lines.</p>
			</abstract>
			<kwd-group>
				<title>Key Words</title>
				<kwd>Groundnut</kwd><x xml:space="preserve">; </x><x xml:space="preserve">, </x>
				<kwd>Peanut</kwd><x xml:space="preserve">; </x><x xml:space="preserve">, </x>
				<kwd>Triploid</kwd><x xml:space="preserve">; </x><x xml:space="preserve">, </x>
				<kwd>Fertility</kwd><x xml:space="preserve">; </x><x xml:space="preserve">, </x>
				<kwd>Unreduced gametes</kwd><x xml:space="preserve">; </x><x xml:space="preserve">, </x>
				<kwd>Chromosome pairing</kwd><x xml:space="preserve">; </x><x xml:space="preserve">, </x>
				<kwd>Disjunction</kwd><x xml:space="preserve">; </x><x xml:space="preserve">, </x>
				<kwd>Introgression</kwd>
			</kwd-group>
			<counts>
				<page-count count="5"></page-count>
			</counts>
		</article-meta>
	</front>
</article>
