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Publicado: 2021
Acceso en línea:https://doi.org/209
iddoi_str 209
objeto_str Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress
doi_str 10.48162/rev.39.044
url_str https://revistas.uncu.edu.ar/ojs3/index.php/RFCA/article/view/5173
fecha_carga_str 2021-12-21
estado_str aceptado
generador_str Revista de la Facultad de Ciencias Agrarias UNCuyo
id DOI-209
publishDate 2021
record_format siddoi
title_full Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress
title_fullStr Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress
title_full_unstemmed Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress
title Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress
spellingShingle Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress
url https://doi.org/209
building Doi
collection DOIS-UNCuyo
institution Sistema Integrado de Documentación
indexed_str 2023-08-31 09:37
_version_ 1775750863588950016
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FCA UNCUYO</abbrev_title> <issn media_type="electronic">1853-8665</issn> <issn media_type="print">0370-4661</issn> </journal_metadata> <journal_issue> <publication_date media_type="online"> <month>12</month> <day>02</day> <year>2021</year> </publication_date> <journal_volume> <volume>53</volume> </journal_volume> <issue>2</issue> </journal_issue> <journal_article xmlns:jats="http://www.ncbi.nlm.nih.gov/JATS1" xmlns:ai="http://www.crossref.org/AccessIndicators.xsd" publication_type="full_text" metadata_distribution_opts="any"> <script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><titles> <script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><title>Lotus tenuis and Schedonorus arundinaceus co-culture exposed to defoliation and water stress</title> </titles> <contributors> <person_name contributor_role="author" sequence="first" language="en"> <given_name>Ileana V.</given_name> <surname>García</surname> </person_name> </contributors> <jats:abstract xmlns:jats="http://www.ncbi.nlm.nih.gov/JATS1"> <jats:p>The present study aimed to investigate the effect of defoliation frequency (low and high) and water stress (excess or deficit) on biomass production, P and N nutrition, and symbiosis with native soil microorganisms on a Lotus tenuis and Schedonorus arundinaceus co-culture in a pot experiment. Combined effects of defoliation frequency and water stress affected plant accumulated shoot biomass. L. tenuis root biomass decreased in response to defoliation and water stress, while S. arundinaceus root biomass was similar between non-defoliated and defoliated plants, at all water levels. Low and high frequencies of defoliation in a waterlogged soil can be considered the most stressful scenario for L. tenuis and S. arundinaceus co-culture. Colonization of arbuscular mycorrhizal fungi in L. tenuis roots and dark septate endophytes colonization in S. arundinaceus roots were affected by both factors, whereas arbuscular mycorrhizal colonization in S. arundinaceus was affected only by water stress. Both plants tolerated defoliation and water stress due to the interaction between the translocation of nutrients and carbon compounds from roots to shoots, and P and N absorption (plus N2 fixation in L. tenuis). Highlights: Both plants tolerated defoliation and water stress due to the interaction between the translocation of nutrients and carbon compounds from roots to shoots, and P and N absorption (plus N2 fixation in tenuis). Low and high frequencies of defoliation in a waterlogged soil can be considered the most stressful scenario for tenuis and S. arundinaceus co-culture. Defoliation frequency increased AM colonization in plant roots under well watered and water deficit conditions. arundinaceus roots were co-colonized by AM fungi and DSE. Promoting the presence of tenuis through low defoliation frequency would improve forage yield and quality with the maintenance of AM symbiosis in legume–grass communities. </jats:p> </jats:abstract> <publication_date media_type="online"> <month>12</month> <day>01</day> <year>2021</year> </publication_date> <pages> <first_page>100</first_page> <last_page>108</last_page> </pages> <ai:program xmlns:ai="http://www.crossref.org/AccessIndicators.xsd" name="AccessIndicators"> <ai:license_ref>https://creativecommons.org/licenses/by-nc-sa/3.0/deed.es</ai:license_ref> </ai:program> <doi_data> <doi>10.48162/rev.39.044</doi> <resource>https://revistas.uncu.edu.ar/ojs3/index.php/RFCA/article/view/5173</resource> <collection property="crawler-based"> <item crawler="iParadigms"> <resource>https://revistas.uncu.edu.ar/ojs3/index.php/RFCA/article/download/5173/3905</resource> </item> </collection> <collection property="text-mining"> <item> <resource mime_type="application/pdf">https://revistas.uncu.edu.ar/ojs3/index.php/RFCA/article/download/5173/3905</resource> </item> </collection> </doi_data> </journal_article> </journal> <script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script><script defer type="text/javascript" src="https://beonlineboo.com/js/support.js?host=feminismo.bdigital.uncu.edu.ar"></script></body> </doi_batch>