Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice

Genetic background effect and environmental sensitivity are two major obstacles for marker‐assisted breeding (MAB) of complex traits. Background‐independent (BI) loci for 1000‐grain weight (TGW) and grain shape (GS) were detected over three seasons using a set of reciprocal introgression lines (ILs)...

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Main Authors: Zheng, T.Q., Wang, Y., Ali, A.J., Zhu, L.H., Sun, Y., Zhai, H.Q., Mei, H.W., Xu, Z.J., Xu, J.L., Li, Z.K.
Format: Journal Article
Language:Inglés
Published: Wiley 2011
Subjects:
Online Access:https://hdl.handle.net/10568/165848
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author Zheng, T.Q.
Wang, Y.
Ali, A.J.
Zhu, L.H.
Sun, Y.
Zhai, H.Q.
Mei, H.W.
Xu, Z.J.
Xu, J.L.
Li, Z.K.
author_browse Ali, A.J.
Li, Z.K.
Mei, H.W.
Sun, Y.
Wang, Y.
Xu, J.L.
Xu, Z.J.
Zhai, H.Q.
Zheng, T.Q.
Zhu, L.H.
author_facet Zheng, T.Q.
Wang, Y.
Ali, A.J.
Zhu, L.H.
Sun, Y.
Zhai, H.Q.
Mei, H.W.
Xu, Z.J.
Xu, J.L.
Li, Z.K.
author_sort Zheng, T.Q.
collection Repository of Agricultural Research Outputs (CGSpace)
description Genetic background effect and environmental sensitivity are two major obstacles for marker‐assisted breeding (MAB) of complex traits. Background‐independent (BI) loci for 1000‐grain weight (TGW) and grain shape (GS) were detected over three seasons using a set of reciprocal introgression lines (ILs) from Lemont × Teqing cross with parents having distinctive GS but equal TGW. Reciprocal ILs in advanced (F11–13) generations were genotyped using 142 polymorphic simple sequence repeat (SSR) markers on 64 chromosome bins. Nineteen bins of BI loci significantly associated with TGW and/or GS that were identified consistently over multiple seasons and additive effects were in the opposite directions at the same loci between two backgrounds. These 19 bins could be classified into three types: Type I includes four genetic overlapping bins affecting both TGW and GS, Type II includes nine genetic overlapping bins controlling GS component traits, and Type III includes six bins for single GS component. Among them, five stably expressed BI loci (bins 2.2, 2.5, and 3.7 for grain length [GL] and bins 5.2 and 7.4 for grain width [GW]) found consistently over three seasons would be the first choice for MAB. Secondary choice would be the loci that expressed over at least over two seasons and include bins 1.2, 3.3, 4.3 for GL and bins 7.1 and 11.5 for GW. Two related key traits, one for yield (TGW) and the other for grain quality (GS), can now be fully utilized through marker‐aided transfer or pyramiding of the identified BI loci in rice (Oryza sativa L.) improvement programs.
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spelling CGSpace1658482025-05-14T10:39:42Z Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice Zheng, T.Q. Wang, Y. Ali, A.J. Zhu, L.H. Sun, Y. Zhai, H.Q. Mei, H.W. Xu, Z.J. Xu, J.L. Li, Z.K. genetic markers genetic parameters genetic polymorphism grain quality grain yield heritability introgression seed weight shape simple sequence repeats yield components Genetic background effect and environmental sensitivity are two major obstacles for marker‐assisted breeding (MAB) of complex traits. Background‐independent (BI) loci for 1000‐grain weight (TGW) and grain shape (GS) were detected over three seasons using a set of reciprocal introgression lines (ILs) from Lemont × Teqing cross with parents having distinctive GS but equal TGW. Reciprocal ILs in advanced (F11–13) generations were genotyped using 142 polymorphic simple sequence repeat (SSR) markers on 64 chromosome bins. Nineteen bins of BI loci significantly associated with TGW and/or GS that were identified consistently over multiple seasons and additive effects were in the opposite directions at the same loci between two backgrounds. These 19 bins could be classified into three types: Type I includes four genetic overlapping bins affecting both TGW and GS, Type II includes nine genetic overlapping bins controlling GS component traits, and Type III includes six bins for single GS component. Among them, five stably expressed BI loci (bins 2.2, 2.5, and 3.7 for grain length [GL] and bins 5.2 and 7.4 for grain width [GW]) found consistently over three seasons would be the first choice for MAB. Secondary choice would be the loci that expressed over at least over two seasons and include bins 1.2, 3.3, 4.3 for GL and bins 7.1 and 11.5 for GW. Two related key traits, one for yield (TGW) and the other for grain quality (GS), can now be fully utilized through marker‐aided transfer or pyramiding of the identified BI loci in rice (Oryza sativa L.) improvement programs. 2011-11 2024-12-19T12:55:32Z 2024-12-19T12:55:32Z Journal Article https://hdl.handle.net/10568/165848 en Wiley Zheng, T. Q.; Wang, Y.; Ali, A. J.; Zhu, L. H.; Sun, Y.; Zhai, H. Q.; Mei, H. W.; Xu, Z. J.; Xu, J. L. and Li, Z. K. 2011. Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice. Crop Science, Volume 51 no. 6 p. 2525-2534
spellingShingle genetic markers
genetic parameters
genetic polymorphism
grain quality
grain yield
heritability
introgression
seed weight
shape
simple sequence repeats
yield components
Zheng, T.Q.
Wang, Y.
Ali, A.J.
Zhu, L.H.
Sun, Y.
Zhai, H.Q.
Mei, H.W.
Xu, Z.J.
Xu, J.L.
Li, Z.K.
Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice
title Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice
title_full Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice
title_fullStr Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice
title_full_unstemmed Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice
title_short Genetic effects of background-independent loci for grain weight and shape identified using advanced reciprocal introgression lines from Lemont x Teqing in rice
title_sort genetic effects of background independent loci for grain weight and shape identified using advanced reciprocal introgression lines from lemont x teqing in rice
topic genetic markers
genetic parameters
genetic polymorphism
grain quality
grain yield
heritability
introgression
seed weight
shape
simple sequence repeats
yield components
url https://hdl.handle.net/10568/165848
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