<mets:mets OBJID="eprint_11578" LABEL="Eprints Item" xsi:schemaLocation="http://www.loc.gov/METS/ http://www.loc.gov/standards/mets/mets.xsd http://www.loc.gov/mods/v3 http://www.loc.gov/standards/mods/v3/mods-3-3.xsd" xmlns:mets="http://www.loc.gov/METS/" xmlns:mods="http://www.loc.gov/mods/v3" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"><mets:metsHdr CREATEDATE="2023-07-05T14:20:09Z"><mets:agent ROLE="CUSTODIAN" TYPE="ORGANIZATION"><mets:name>OAR@ICRISAT</mets:name></mets:agent></mets:metsHdr><mets:dmdSec ID="DMD_eprint_11578_mods"><mets:mdWrap MDTYPE="MODS"><mets:xmlData><mods:titleInfo><mods:title>African and Asian origin pearl millet populations: Genetic diversity pattern and its association with yield heterosis</mods:title></mods:titleInfo><mods:name type="personal"><mods:namePart type="given">K S</mods:namePart><mods:namePart type="family">Patil</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">S K</mods:namePart><mods:namePart type="family">Gupta</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">B</mods:namePart><mods:namePart type="family">Marathi</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">S</mods:namePart><mods:namePart type="family">Danam</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">R</mods:namePart><mods:namePart type="family">Thatikunta</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">A</mods:namePart><mods:namePart type="family">Rathore</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">R R</mods:namePart><mods:namePart type="family">Das</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">K S</mods:namePart><mods:namePart type="family">Dangi</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:name type="personal"><mods:namePart type="given">O P</mods:namePart><mods:namePart type="family">Yadav</mods:namePart><mods:role><mods:roleTerm type="text">author</mods:roleTerm></mods:role></mods:name><mods:abstract>Pearl millet [Pennisetum glaucum (L.) R. Br.] is a staple food crop of arid and&#13;
semi-arid regions of Asia and Africa. Forty-five pearl millet populations of Asian&#13;
and African origin were assessed for genetic diversity using 29 simple sequence&#13;
repeat (SSR) markers. The SSR-based clustering and structure analyses showed&#13;
that Asian origin–Asian bred (As-As) and African origin–African bred (Af-Af)&#13;
populations were distributed across seven clusters, indicating no strong relationship&#13;
among populations with their geographical origin. Most of the African&#13;
origin–Asian bred (Af-As) populations had a higher average number of alleles per&#13;
locus than As-As or Af-Af populations, and the majority of them clustered separately&#13;
from As-As or Af-Af populations, indicating that introgression of African&#13;
origin breeding materials led to the development of new gene pools adapted to&#13;
the Asian region. Fourteen populations representing seven clusters were crossed&#13;
according to a diallel mating design to generate 91 population hybrids (seeds of&#13;
direct and reciprocal crossesweremixed) and evaluated at three locations in 2016.&#13;
All the 91 hybrids when partitioned into three groups based on genetic distance&#13;
(GD) between parental combinations (low,moderate, and high), revealed no correlation&#13;
between GD and panmictic midparent heterosis in any of the groups,&#13;
indicating that grain yield heterosis cannot be predicted based on GD. Two population&#13;
hybrids (GB 8735 × ICMP 87307 and Sudan I × Ugandi) exhibited high&#13;
levels of yield heterosis over standard checks and can be further utilized using&#13;
different breeding schemes to develop high-yielding pearl millet cultivars.</mods:abstract><mods:classification authority="lcc">Plant Genetics</mods:classification><mods:classification authority="lcc">Plant Breeding</mods:classification><mods:classification authority="lcc">Pearl Millet</mods:classification><mods:originInfo><mods:dateIssued encoding="iso8061">2020-06</mods:dateIssued></mods:originInfo><mods:originInfo><mods:publisher>Crop Science Society of America</mods:publisher></mods:originInfo><mods:genre>Article</mods:genre></mets:xmlData></mets:mdWrap></mets:dmdSec><mets:amdSec ID="TMD_eprint_11578"><mets:rightsMD ID="rights_eprint_11578_mods"><mets:mdWrap MDTYPE="MODS"><mets:xmlData><mods:useAndReproduction>
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