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利用来自哈萨维的新型耐盐性资源定位水稻数量性状基因座及其与环境的互作

Mapping QTLs using a novel source of salinity tolerance from Hasawi and their interaction with environments in rice.

作者信息

Rahman M Akhlasur, Bimpong Isaac Kofi, Bizimana J B, Pascual Evangeline D, Arceta Marydee, Swamy B P Mallikarjuna, Diaw Faty, Rahman M Sazzadur, Singh R K

机构信息

International Rice Research Institute (IRRI), DAPO Box 7777, Metro Manila, Philippines.

Bangladesh Rice Research Institute, Gazipur, 1701, Bangladesh.

出版信息

Rice (N Y). 2017 Nov 2;10(1):47. doi: 10.1186/s12284-017-0186-x.

Abstract

BACKGROUND

Salinity is one of the most severe and widespread abiotic stresses that affect rice production. The identification of major-effect quantitative trait loci (QTLs) for traits related to salinity tolerance and understanding of QTL × environment interactions (QEIs) can help in more precise and faster development of salinity-tolerant rice varieties through marker-assisted breeding. Recombinant inbred lines (RILs) derived from IR29/Hasawi (a novel source of salinity) were screened for salinity tolerance in the IRRI phytotron in the Philippines (E1) and in two other diverse environments in Senegal (E2) and Tanzania (E3). QTLs were mapped for traits related to salinity tolerance at the seedling stage.

RESULTS

The RILs were genotyped using 194 polymorphic SNPs (single nucleotide polymorphisms). After removing segregation distortion markers (SDM), a total of 145 and 135 SNPs were used to construct a genetic linkage map with a length of 1655 and 1662 cM, with an average marker density of 11.4 cM in E1 and 12.3 cM in E2 and E3, respectively. A total of 34 QTLs were identified on 10 chromosomes for five traits using ICIM-ADD and segregation distortion locus (SDL) mapping (IM-ADD) under salinity stress across environments. Eight major genomic regions on chromosome 1 between 170 and 175 cM (qSES1.3, qSES1.4, qSL1.2, qSL1.3, qRL1.1, qRL1.2, qFWsht1.2, qDWsht1.2), chromosome 4 at 32 cM (qSES4.1, qFWsht4.2, qDWsht4.2), chromosome 6 at 115 cM (qFWsht6.1, qDWsht6.1), chromosome 8 at 105 cM (qFWsht8.1, qDWsht8.1), and chromosome 12 at 78 cM (qFWsht12.1, qDWsht12.1) have co-localized QTLs for the multiple traits that might be governing seedling stage salinity tolerance through multiple traits in different phenotyping environments, thus suggesting these as hot spots for tolerance of salinity. Forty-nine and 30 significant pair-wise epistatic interactions were detected between QTL-linked and QTL-unlinked regions using single-environment and multi-environment analyses.

CONCLUSIONS

The identification of genomic regions for salinity tolerance in the RILs showed that Hasawi possesses alleles that are novel for salinity tolerance. The common regions for the multiple QTLs across environments as co-localized regions on chromosomes 1, 4, 6, 8, and 12 could be due to linkage or pleiotropic effect, which might be helpful for multiple QTL introgression for marker-assisted breeding programs to improve the salinity tolerance of adaptive and popular but otherwise salinity-sensitive rice varieties.

摘要

背景

盐度是影响水稻生产的最严重且分布最广泛的非生物胁迫之一。鉴定与耐盐性相关性状的主效数量性状位点(QTL)以及了解QTL与环境的互作(QEI),有助于通过标记辅助育种更精确、快速地培育耐盐水稻品种。对源自IR29/Hasawi(一种新的盐度来源)的重组自交系(RIL)在菲律宾的国际水稻研究所植物生长室(E1)、塞内加尔的另外两个不同环境(E2)以及坦桑尼亚(E3)中进行耐盐性筛选。对苗期与耐盐性相关的性状进行QTL定位。

结果

利用194个多态性单核苷酸多态性(SNP)对RIL进行基因分型。去除偏分离标记(SDM)后,分别在E1、E2和E3中使用145个和135个SNP构建遗传连锁图谱,长度分别为1655 cM和1662 cM,平均标记密度分别为11.4 cM和12.3 cM。在盐胁迫下,通过ICIM-ADD和偏分离位点(SDL)定位(IM-ADD)在10条染色体上共鉴定出34个与5个性状相关的QTL。在第1染色体上170至175 cM之间的8个主要基因组区域(qSES1.3、qSES1.4、qSL1.2、qSL1.3、qRL1.1、qRL1.2、qFWsht1.2、qDWsht1.2)、第4染色体上32 cM处(qSES4.1、qFWsht4.2、qDWsht4.2)、第6染色体上115 cM处(qFWsht6.1、qDWsht6.1)、第8染色体上105 cM处(qFWsht8.1、qDWsht8.1)以及第12染色体上78 cM处(qFWsht12.1、qDWsht12.1)存在多个性状的共定位QTL,这些QTL可能通过不同表型环境中的多个性状来控制苗期耐盐性,因此表明这些区域是耐盐性的热点区域。使用单环境和多环境分析在QTL连锁和非连锁区域之间检测到49对和30对显著的上位性互作。

结论

在RIL中鉴定出耐盐性的基因组区域表明,Hasawi拥有耐盐性新等位基因。跨环境的多个QTL的共同区域作为第1、4、6、8和12染色体上的共定位区域,可能是由于连锁或多效性效应,这可能有助于通过标记辅助育种计划进行多个QTL导入,以提高适应性强且受欢迎但对盐敏感水稻品种的耐盐性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4855/5668218/7477a1055462/12284_2017_186_Fig1_HTML.jpg

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