<?xml version='1.0' encoding='UTF-8'?><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" dtd-version="1.0" xml:lang="en" article-type="research article"><front><journal-meta><journal-id journal-id-type="publisher-id">EJSS</journal-id><journal-title-group><journal-title>Eurasian Journal of Soil Science</journal-title><journal-title-abbreviation>Eurasian J Soil Sci</journal-title-abbreviation></journal-title-group><issn pub-type="epub">2147 - 4249</issn><publisher><publisher-name>Federation of Eurasian Soil Science Societies</publisher-name></publisher></journal-meta><article-meta><article-url-doi>http://ejss.fesss.org/10.18393/ejss.1399856</article-url-doi><article-doi>10.18393/ejss.1399856</article-doi><article-title>Enhancing phosphorus use efficiency in wheat grown on alkaline calcareous soils</article-title><article-yazar>Muhammad Abbas abbasbhr@nia.org.pk</article-yazar><article-yazar>Muhammad Irfan </article-yazar><article-yazar>Javaid Ahmed Shah </article-yazar><article-yazar>Niaz Ali Sial </article-yazar><article-yazar>Nizamuddin Depar </article-yazar><article-vol>13</article-vol><article-issue>1</article-issue><article-pages>79 - 88</article-pages><article-manuscript-submitdate>2023-08-16</article-manuscript-submitdate><article-manuscript-accepteddate>2023-11-30</article-manuscript-accepteddate><article-manuscript-articlepublisheddate>2023-12-04</article-manuscript-articlepublisheddate><article-manuscript-issuepublisheddate>2024-01-01</article-manuscript-issuepublisheddate><article-copyright> Copyright © 2016 The authors and Federation of Eurasian Soil Science Societies </article-copyright><article-abstract>Phosphorus (P) use efficiency is crucial for sustainable wheat production, particularly on alkaline calcareous soils. This study investigates the relative importance of two factors; P acquisition efficiency (PAE) and P utilization efficiency (PUtE), in determining P use efficiency (PUE) in wheat. A field trial with ten wheat genotypes was conducted under two P levels (no P application and P application at 110 kg P2O5 ha−1). Results revealed significant genetic variability in PUE, PAE, and PUtE among wheat genotypes under varying P availabilities. Genotypes MK-4 and MK-8 exhibited superior PUE, making them ideal candidates for soils with differing P levels. PAE played a more substantial role in influencing PUE, with PUtE contributing less to the variability. The findings underscore the importance of improving PAE, particularly for wheat genotypes grown in P-deficient conditions. Moreover, selecting genotypes with lower grain P concentration can enhance PUtE, contributing to improved PUE. These insights can improve breeding efforts and crop management practices to enhance P use efficiency in wheat, ultimately reducing production costs and fertilizer demand, especially in P-limited alkaline calcareous soils.</article-abstract><article-keywords>Alkaline-calcareous soil, P acquisition efficiency, P utilization efficiency, P use efficiency, wheat genotypes.</article-keywords></article-meta></front></article>