解锁遗传热点:GWAS揭示了籼稻根系和产量性状的关键氮响应基因组区域和关键基因。

IF 2.3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ankur Poudel, Sachin Phogat, Jeet Roy, Manish Ranjan Saini, K M Shivaprasad, Jayanthi Madhavan, Viswanathan Chinnusamy, K K Vinod, Amitha Mithra Sevanthi, Pranab Kumar Mandal
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引用次数: 0

摘要

水稻种植过程中氮素引起的环境污染已经造成了不良的环境影响。为了最大限度地减少影响,提高水稻的内在氮素利用效率是至关重要的,因为它是谷物中氮素利用效率最低的。虽然早前有许多基于家族和关联的水稻NUE QTL研究报道,但对籼稻和生理成熟前根系参数的精确评价缺乏报道。本研究通过全基因组关联研究(GWAS)鉴定了96个不同籼稻基因型的候选基因和qtl,这些基因型在不同的氮素水平下水培直至成熟。使用80k Affymetrix芯片进行基因分型,该芯片包含47,686个策划的SNP标记。10个不同氮素响应性状的差异反应表明不同氮素制度下的不同育种计划。种群结构分析显示,在关联面板中有两个亚种群具有不同程度的混杂。链接不平衡(LD)分析显示一个108.4 kb的LD区。使用MLM、FarmCPU和BLINK的GWAS可以在不同性状和n条件下鉴定出568个标记-性状关联(mta)。在鉴定的24个常见mta中,有13个是新的,在基因组区域中有156个候选基因跨越LD块。与产量和根系相关的mta最为突出。从现有文献中可以看出,n响应基因与干旱和盐度等其他非生物胁迫有关。候选基因OsWAK15、OsNIN8、OsHCT2、Os02 g0612900、Os02 g0613100和Os02 g0612700在氮素胁迫下的表达模式相似,可以作为调控氮素胁迫耐受基因表达的潜在靶点。经功能验证,这些mta和候选基因可作为提高水稻NUE的关键资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unlocking genetic hotspots: GWAS reveals key nitrogen responsive genomic regions and key genes for root and yield traits in indica rice.

Nitrogen (N) induced environmental pollution from rice cultivation has resulted in undesired environmental impacts. To minimize the impacts, improvement of inherent NUE is very crucial in rice as it has the lowest NUE among the cereals. Though many family based and association based QTL studies have been reported earlier on NUE in rice, the reports on indica rice and precise evaluation of root parameters till physiological maturity is lacking. This study reports the identification of candidate genes and QTLs through a genome-wide association study (GWAS) involving 96 diverse indica rice genotypes, grown under contrasting N regimes in hydroponics till maturity. Genotyping was carried out using 80 K Affymetrix chip containing 47,686 curated SNP markers. The differential response of ten different N-responsive traits indicated separate breeding program for each N-regime. The population structure analysis revealed two sub-populations with varying degrees of admixtures in the association panel. The linkage disequilibrium (LD) analysis revealed a LD block of 108.4 kb. GWAS using MLM, FarmCPU, and BLINK could identify 568 marker-trait associations (MTAs) across different traits and N-conditions. Out of 24 common MTAs identified, 13 were novel with 156 candidate genes in the genomic region spanning the LD blocks. Yield and root-related MTAs were found to be the most prominent. N-responsive genes were found to be associated with other abiotic stresses like drought and salinity, as seen from the available literature. Candidate genes (OsWAK15, OsNIN8, OsHCT2, Os02 g0612900, Os02 g0613100, and Os02 g0612700) showed a similar expression pattern under N-stress in both N use- efficient and inefficient genotypes, which can be potential targets for modulating gene expression for N stress tolerance. These MTAs and candidate genes can serve as key resources for enhancement of NUE in rice upon functional validation.

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来源期刊
Molecular Genetics and Genomics
Molecular Genetics and Genomics 生物-生化与分子生物学
CiteScore
5.10
自引率
3.20%
发文量
134
审稿时长
1 months
期刊介绍: Molecular Genetics and Genomics (MGG) publishes peer-reviewed articles covering all areas of genetics and genomics. Any approach to the study of genes and genomes is considered, be it experimental, theoretical or synthetic. MGG publishes research on all organisms that is of broad interest to those working in the fields of genetics, genomics, biology, medicine and biotechnology. The journal investigates a broad range of topics, including these from recent issues: mechanisms for extending longevity in a variety of organisms; screening of yeast metal homeostasis genes involved in mitochondrial functions; molecular mapping of cultivar-specific avirulence genes in the rice blast fungus and more.
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