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	<titleInfo><title>Systematic salt tolerance-related physiological mechanisms of wild soybean and their role in the photosynthetic activity and Na&lt;sup&gt;+&lt;/sup&gt; distribution of grafted soybean plants</title></titleInfo>
	<name type="personal">
		<namePart type="family">XUE</namePart>
		<namePart type="given">Z.C.</namePart>
		<role><roleTerm type="text">author</roleTerm></role>
	</name>
	<name type="personal">
		<namePart type="family">WANG</namePart>
		<namePart type="given">Y.</namePart>
		<role><roleTerm type="text">author</roleTerm></role>
	</name>
	<name type="personal">
		<namePart type="family">LIU</namePart>
		<namePart type="given">J.</namePart>
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	<typeOfResource>text</typeOfResource>
	<genre>journal article</genre>
	<originInfo><dateIssued>2022</dateIssued></originInfo>
	<language></language>
	<abstract lang="English">Systematic salt tolerance-related physiological mechanisms in roots and shoots of halophyte Dongying wild soybean have not yet been thoroughly studied. In this study, photosynthesis, modulated 820-nm reflection, chlorophyll a fluorescence, and Na&lt;sup&gt;+&lt;/sup&gt; distribution in cultivated (G&lt;sub&gt;mc&lt;/sub&gt;) and wild (G&lt;sub&gt;sw&lt;/sub&gt;) soybean leaves of grafted soybean plants were investigated after NaCl treatment. Results showed that the decreases in photosynthetic rate, performance index, active P&lt;sub&gt;700&lt;/sub&gt; content, and plastocyanin reduction were significantly greater in the G&lt;sub&gt;sw&lt;/sub&gt; leaves than those in the G&lt;sub&gt;mc&lt;/sub&gt; leaves.  The observed increases in the Na&lt;sup&gt;+ &lt;/sup&gt;concentration in the G&lt;sub&gt;sw&lt;/sub&gt; leaves were likely responsible for the severe decrease in the photosynthetic activity of grafted plants. We suggest that Na&lt;sup&gt;+&lt;/sup&gt; accumulation in G&lt;sub&gt;sw&lt;/sub&gt; roots, which prevents the transport of Na&lt;sup&gt;+&lt;/sup&gt; from the roots to the shoots, effectively maintains the concentration of Na&lt;sup&gt;+ &lt;/sup&gt;at a comparatively low level in the leaves to prevent the destruction of the photosynthetic apparatus by salt.</abstract>
	<subject><topic>grafting; ion distribution; photosynthetic activity; salt resistance; wild soybean.</topic></subject>
	<identifier type="doi">10.32615/ps.2022.030</identifier>
	<identifier type="uri">https://ps.ueb.cas.cz/artkey/phs-202203-0009.php</identifier>
	<location><url>https://ps.ueb.cas.cz/artkey/phs-202203-0009.php</url></location>
	<relatedItem type="host">
		<titleInfo><title>Photosynthetica</title></titleInfo>
		<originInfo><issuance>continuing</issuance></originInfo>
		<part>
			<detail type="volume"><number>60</number></detail>
			<detail type="issue"><number>3</number></detail>
			<extent unit="pages">
				<start>400</start>
				<end>407</end>
			</extent>
			<date>2022</date>
		</part>
		<identifier type="issn">03003604</identifier>
		<genre authority="marc">periodical</genre>
		<genre>academic journal</genre>
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