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			<titleStmt><title level='a'>Belowground plant carbon and nitrogen exchange: plant-derived carbon inputs and pore structure formation</title></titleStmt>
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				<publisher>Elsevier</publisher>
				<date>08/01/2025</date>
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				<bibl> 
					<idno type="par_id">10613675</idno>
					<idno type="doi">10.1016/j.soilbio.2025.109833</idno>
					<title level='j'>Soil Biology and Biochemistry</title>
<idno>0038-0717</idno>
<biblScope unit="volume">207</biblScope>
<biblScope unit="issue">C</biblScope>					

					<author>Jin Ho Lee</author><author>Tayler C Ulbrich</author><author>Maxwell Oerther</author><author>Yakov Kuzyakov</author><author>Andrey K Guber</author><author>Alexandra N Kravchenko</author>
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			<abstract><ab><![CDATA[]]></ab></abstract>
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<div xmlns="http://www.tei-c.org/ns/1.0"><p>images were used to compute pore size distributions using <ref type="bibr">'Local Thickness' tool</ref> in Image &#956;m &#956;m &gt;150 &#956;m &#216; &#956;m &#956;m, 30 150 &#956;m, &gt;150 &#956;m &#216; conducting Levene's test for variances. using Pearson's correlation for testing the study's hypotheses recipient's roots were enriched only ' shoots 30 &#956;m &#216;) 150 &#956;m &#216;) and &gt;150 &#956;m &#216;) (pores &gt;8 &#956;m &#216;) with those in the recipients' roots. recipients' recipients' neighbors'</p><p>soil's capability -combination (Fig. <ref type="figure">2B</ref>), while it did not happen in the only BSforb neighbors' case (Fig. <ref type="figure">2A</ref>). Past -30 &#956;m &#216;) and decreases in coarse pores (&gt;150 &#956;m &#216;)</p><p>based porosity (i.e., pores &gt;8 &#956;m &#216;) showed no significant differences among plant oot's</p></div>		</body>
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