<document tableId="0FD8661BFFC3FFE3699BFB0826C838AF" sourceDocId="2F37FFFDFFCEFFEE6954FF9024793C6C" ID-DOI="http://doi.org/10.5281/zenodo.19247995" ID-Zenodo-Dep="19247995" captionStart="Table7" checkinTime="1774594295801" checkinUser="felipe" pageId="13" pageNumber="14" updateTime="1774599400661" updateUser="ExternalLinkService"><mods:mods xmlns:mods="http://www.loc.gov/mods/v3">
    <mods:titleInfo>
        <mods:title>Drought Stress in Millets and Its Response Mechanism</mods:title>
    </mods:titleInfo>
    <mods:name type="personal">
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            <mods:roleTerm>Author</mods:roleTerm>
        </mods:role>
        <mods:namePart>Tiwari, Anjali</mods:namePart>
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        </mods:role>
        <mods:namePart>Kesarwani, Kapil</mods:namePart>
    </mods:name>
    <mods:name type="personal">
        <mods:role>
            <mods:roleTerm>Author</mods:roleTerm>
        </mods:role>
        <mods:namePart>Sharma, Arushi</mods:namePart>
    </mods:name>
    <mods:name type="personal">
        <mods:role>
            <mods:roleTerm>Author</mods:roleTerm>
        </mods:role>
        <mods:namePart>Ghosh, Tapan</mods:namePart>
    </mods:name>
    <mods:name type="personal">
        <mods:role>
            <mods:roleTerm>Author</mods:roleTerm>
        </mods:role>
        <mods:namePart>Bisht, Nisha</mods:namePart>
    </mods:name>
    <mods:name type="personal">
        <mods:role>
            <mods:roleTerm>Author</mods:roleTerm>
        </mods:role>
        <mods:namePart>Punetha, Shailja</mods:namePart>
    </mods:name>
    <mods:typeOfResource>text</mods:typeOfResource>
    <mods:relatedItem type="host">
        <mods:titleInfo>
            <mods:title>Clinical &amp; translational immunology</mods:title>
        </mods:titleInfo>
        <mods:part>
            <mods:date>2022</mods:date>
            <mods:detail type="pubDate">
                <mods:number>2022-12-14</mods:number>
            </mods:detail>
            <mods:detail type="volume">
                <mods:number>9</mods:number>
            </mods:detail>
            <mods:detail type="issue">
                <mods:number>8</mods:number>
            </mods:detail>
            <mods:extent unit="page">
                <mods:start>121</mods:start>
                <mods:end>151</mods:end>
            </mods:extent>
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    <mods:location>
        <mods:url>https://doi.org/10.5772/intechopen.105942</mods:url>
    </mods:location>
    <mods:classification>journal article</mods:classification>
    <mods:identifier type="DOI">10.5772/intechopen.105942</mods:identifier>
    <mods:identifier type="Zenodo-Dep">19247969</mods:identifier>
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<table id="0FD8661BFFC3FFE3699BFB0826C838AF"><caption pageId="13" pageNumber="14" startId="13.[207,263,1176,1195]"><paragraph blockId="13.[207,689,1176,1219]" box="[207,280,1176,1195]" pageId="13" pageNumber="14"><emphasis bold="true" box="[207,280,1176,1195]" pageId="13" pageNumber="14">Table7.</emphasis></paragraph> <paragraph blockId="13.[207,689,1176,1219]" box="[207,689,1200,1219]" pageId="13" pageNumber="14"><emphasis box="[207,689,1200,1219]" italics="true" pageId="13" pageNumber="14">Drought tolerance in plants were improved by microbes.</emphasis></paragraph></caption><thead><tr id="E59734D1FFC3001169A1FD7620DB3F43"><th box="[245,303,742,815]" id="A6465DADFFC3001169A1FD7625563F43" pageId="13" pageNumber="14">Crop</th><th box="[363,516,742,815]" id="A6465DADFFC30011683FFD76267D3F43" pageId="13" pageNumber="14"><emphasis bold="true" box="[363,446,742,761]" id="69D3EA81FFC3FFE3683FFD7625C73E95" pageId="13" pageNumber="14">Microbes</emphasis></th><th box="[562,652,742,815]" id="A6465DADFFC300116B66FD7626F53F43" pageId="13" pageNumber="14">Plant part used for isolation</th><th box="[699,1038,742,815]" id="A6465DADFFC300116BEFFD7620773F43" pageId="13" pageNumber="14">Benefits</th><th box="[1089,1186,742,815]" id="A6465DADFFC300116D15FD7620DB3F43" pageId="13" pageNumber="14"><emphasis bold="true" box="[1089,1186,742,761]" id="69D3EA81FFC3FFE36D15FD7620DB3E95" pageId="13" pageNumber="14">References</emphasis></th></tr></thead><tbody><tr id="E59734D1FFC3001169A1FCD420DB3FE0"><th box="[245,303,836,908]" id="A6465DADFFC3001169A1FCD425563FE0" pageId="13" pageNumber="14">Foxtail</th><td box="[363,516,836,908]" id="A6465DADFFC30011683FFCD4267D3FE0" pageId="13" pageNumber="14">Actinobacter</td><td box="[562,652,836,908]" id="A6465DADFFC300116B66FCD426F53FE0" pageId="13" pageNumber="14">Roots</td><td box="[699,1038,836,908]" id="A6465DADFFC300116BEFFCD420773FE0" pageId="13" pageNumber="14">The findings showed that host plants in the rhizoplane enrich specific bacteria and functions.</td><td box="[1089,1186,836,908]" id="A6465DADFFC300116D15FCD420DB3FE0" pageId="13" pageNumber="14">[<bibRefCitation author="Jin T &amp; Wang Y &amp; Huang Y &amp; Xu J &amp; Zhang P &amp; Wang N." box="[1094,1119,836,855]" id="3F364B62FFC3FFE36D12FCD420263F3B" journalOrPublisher="Gigascience." pageId="13" pageNumber="14" pagination="1 - 12" part="6" publicationUrl="10.1093/gigascience/gix089" refId="ref10377" refString="[68] Jin T, Wang Y, Huang Y, Xu J, Zhang P, Wang N. Taxonomic structure and functional association of foxtail millet root microbiome. Gigascience. 2017; 6: 1-12. DOI: 10.1093/gigascience/gix089" title="Taxonomic structure and functional association of foxtail millet root microbiome" type="journal article" year="2017">68</bibRefCitation>]</td></tr><tr id="E59734D1FFC3001169A1FC0C20DB3F93"><th box="[245,303,924,1023]" id="A6465DADFFC3001169A1FC0C25563F93" pageId="13" pageNumber="14">Foxtail</th><td box="[363,516,924,1023]" id="A6465DADFFC30011683FFC0C267D3F93" pageId="13" pageNumber="14"><taxonomicName _evidence="catalogs" _step="species1" authorityName="Baumann et al." authorityYear="1968" baseAuthorityName="Beijerinck" baseAuthorityYear="1911" box="[363,472,924,970]" class="Gammaproteobacteria" family="Moraxellaceae" genus="Acinetobacter" id="9CA74D10FFC3FFE3683FFC0C25A93FA6" kingdom="Bacteria" order="Pseudomonadales" pageId="13" pageNumber="14" phylum="Proteobacteria" rank="species" species="calcoaceticus"><emphasis box="[363,472,924,970]" id="69D3EA81FFC3FFE3683FFC0C25A93FA6" italics="true" pageId="13" pageNumber="14">Acinetobacter calcoaceticus</emphasis></taxonomicName> EU- LRNA-72 and <taxonomicName box="[363,475,1004,1023]" class="Sordariomycetes" family="Bionectriaceae" genus="Penicillium" id="9CA74D10FFC3FFE3683FFC7C25A23F93" kingdom="Fungi" order="Hypocreales" pageId="13" pageNumber="14" phylum="Ascomycota" rank="species" species="undetermined"><emphasis box="[363,475,1004,1023]" id="69D3EA81FFC3FFE3683FFC7C25A23F93" italics="true" pageId="13" pageNumber="14">Penicillium sp</emphasis></taxonomicName></td><td box="[562,652,924,1023]" id="A6465DADFFC300116B66FC0C26F53F93" pageId="13" pageNumber="14">Roots</td><td box="[699,1038,924,1023]" id="A6465DADFFC300116BEFFC0C20773F93" pageId="13" pageNumber="14">Increasing glycine betaine, proline, and sugar buildup while lowering lipid peroxidation.</td><td box="[1089,1186,924,1023]" id="A6465DADFFC300116D15FC0C20DB3F93" pageId="13" pageNumber="14">[<bibRefCitation author="Kour D &amp; Rana KL &amp; Yadav AN &amp; Sheikh I &amp; Kumar V &amp; Dhaliwal HS" box="[1094,1118,924,943]" id="3F364B62FFC3FFE36D12FC0C20273FC3" journalOrPublisher="Environmental Sustainability." pageId="13" pageNumber="14" pagination="23 - 34" part="3" refId="ref10427" refString="[69] Kour D, Rana KL, Yadav AN, Sheikh I, Kumar V, Dhaliwal HS, et al. Amelioration of drought stress in foxtail millet (Setaria italica L.) by P-solubilizing drought-tolerant microbes with multifarious plant growth promoting attributes. Environmental Sustainability. 2020; 3: 23-34" title="et al. Amelioration of drought stress in foxtail millet (Setaria italica L.) by P-solubilizing drought-tolerant microbes with multifarious plant growth promoting attributes" type="journal article" year="2020">69</bibRefCitation>]</td></tr><tr id="E59734D1FFC3001169A1FB9F20DB381E"><th box="[245,303,1039,1138]" id="A6465DADFFC3001169A1FB9F2556381E" pageId="13" pageNumber="14">Foxtail</th><td box="[363,516,1039,1138]" id="A6465DADFFC30011683FFB9F267D381E" pageId="13" pageNumber="14"><taxonomicName _evidence="catalogs" _step="species1" authorityName="Migula" authorityYear="1895" box="[363,470,1039,1085]" class="Betaproteobacteria" family="Burkholderiaceae" genus="Pseudomonas" id="9CA74D10FFC3FFE3683FFB9F25C63851" kingdom="Bacteria" order="Burkholderiales" pageId="13" pageNumber="14" phylum="Proteobacteria" rank="species" species="fluorescens"><emphasis box="[363,470,1039,1085]" id="69D3EA81FFC3FFE3683FFB9F25C63851" italics="true" pageId="13" pageNumber="14">Pseudomonas fluorescens</emphasis></taxonomicName></td><td box="[562,652,1039,1138]" id="A6465DADFFC300116B66FB9F26F5381E" pageId="13" pageNumber="14">Roots</td><td box="[699,1038,1039,1138]" id="A6465DADFFC300116BEFFB9F2077381E" pageId="13" pageNumber="14">Increased soil moisture and improved the root adhering soil/root tissue ratio by efficiently colonising the root adhering soil.</td><td box="[1089,1186,1039,1138]" id="A6465DADFFC300116D15FB9F20DB381E" pageId="13" pageNumber="14">[<bibRefCitation author="Niu X &amp; Song L &amp; Xiao Y &amp; Ge W." box="[1094,1119,1039,1058]" id="3F364B62FFC3FFE36D12FB9F2026384E" journalOrPublisher="Frontiers in Microbiology." pageId="13" pageNumber="14" pagination="2580" part="8" refId="ref10485" refString="[70] Niu X, Song L, Xiao Y, Ge W. Drought-tolerant plant growth promoting rhizobacteria associated with foxtail millet in a semiarid agroecosystem and their potential in alleviating drought stress. Frontiers in Microbiology. 2018; 8: 2580" title="Drought-tolerant plant growth promoting rhizobacteria associated with foxtail millet in a semiarid agroecosystem and their potential in alleviating drought stress" type="journal article" year="2018">70</bibRefCitation>]</td></tr></tbody></table></document>