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<xml>
<records>
<record>
	<source-app name="Actavia">Actavia</source-app>
	<ref-type name="Journal Article">0</ref-type>
	<contributors>
		<authors>
			<author>CHATTOPADHYAY, K.</author>
			<author>VIJAYAN, J.</author>
			<author>RAY, A.</author>
			<author>CHAKRABORTY, K.</author>
			<author>SARKAR, R.K.</author>
		</authors>
		<secondary-authors></secondary-authors>
	</contributors>
	<titles><title>Special issue in honour of Prof. Reto J. Strasser - Additive main effect and digenic epistatic quantitative trait loci for chlorophyll fluorescence traits influencing salt tolerance at seedling stage in rice</title></titles>
	<dates>
		<year>2020</year>
		<pub-dates><date>2020-5-28</date></pub-dates>
	</dates>
	<pages>595-607</pages>
	<abstract>In this investigation, an attempt was made to identify quantitative trait locus (QTL)/gene associated with JIP-test parameters in rice. Thirty main effect additive QTLs (M-QTLs) along with more than 500 digenic epistatic QTLs were detected using a backcross-derived population from tolerant genotype Pokkali (AC41585) and the susceptible counterpart IR64. These M-QTLs were located in almost all the chromosomes except chromosome number 6 and 8. Most of the M-QTLs showed pleiotropic effects. Positional similarity of all these overlapping additive and additive × additive interaction, QTLs indicated the substantial resemblance of the genetic basis of many JIP-test parameters which imparted salinity tolerance in rice at the seedling stage. Twenty-three potential functional genes were also delineated inside these additive QTLs regions. The identified putative QTLs for JIP-test parameters and probable functional genes lying therein are useful for imparting greater photosynthetic potential in rice under salt stress.</abstract>
	<number>2</number>
	<volume>58</volume>
</record>
</records>
</xml>
