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利用基于饱和 GBS 的 SNP 连锁图谱解析水稻农艺、产量和营养性状的遗传基础。

Deciphering the genetic basis of agronomic, yield, and nutritional traits in rice (Oryza sativa L.) using a saturated GBS-based SNP linkage map.

机构信息

Rice Breeding and Innovation Department, International Rice Research Institute, DAPO 7777, Metro Manila, Philippines.

Institute of Crop Science, College of Agriculture and Food Science, University of the Philippines Los Baños (UPLB), 4031, College, Laguna, Philippines.

出版信息

Sci Rep. 2024 Aug 4;14(1):18024. doi: 10.1038/s41598-024-67543-3.

Abstract

Developing high-yielding rice varieties that possess favorable agronomic characteristics and enhanced grain Zn content is crucial in ensuring food security and addressing nutritional needs. This research employed ICIM, IM, and multi-parent population QTL mapping methods to identify important genetic regions associated with traits such as DF, PH, NT, NP, PL, YLD, TGW, GL, GW, Zn, and Fe. Two populations of recombinant inbred lines consisting of 373 lines were phenotyped for agronomic, yield and grain micronutrient traits for three seasons at IRRI, and genotyped by sequencing. Most of the traits demonstrated moderate to high broad-sense heritability. There was a positive relationship between Zn and Fe contents. The principal components and correlation results revealed a significant negative association between YLD and Zn/Fe. ICIM identified 81 QTLs, while IM detected 36 QTLs across populations. The multi-parent population analysis detected 27 QTLs with six of them consistently detected across seasons. We shortlisted eight candidate genes associated with yield QTLs, 19 genes with QTLs for agronomic traits, and 26 genes with Zn and Fe QTLs. Notable candidate genes included CL4 and d35 for YLD, dh1 for DF, OsIRX10, HDT702, sd1 for PH, OsD27 for NP, whereas WFP and OsIPI1 were associated with PL, OsRSR1 and OsMTP1 were associated to TGW. The OsNAS1, OsRZFP34, OsHMP5, OsMTP7, OsC3H33, and OsHMA1 were associated with Fe and Zn QTLs. We identified promising RILs with acceptable yield potential and high grain Zn content from each population. The major effect QTLs, genes and high Zn RILs identified in our study are useful for efficient Zn biofortification of rice.

摘要

培育具有优良农艺性状和提高谷物锌含量的高产水稻品种对于保障粮食安全和满足营养需求至关重要。本研究采用 ICIM、IM 和多亲本群体 QTL 作图方法,鉴定与 DF、PH、NT、NP、PL、YLD、TGW、GL、GW、Zn 和 Fe 等性状相关的重要遗传区域。两个重组自交系群体由 373 个系组成,在 IRRI 进行了三个季节的农艺、产量和谷物微量营养素性状的表型分析,并通过测序进行了基因型分析。大多数性状表现出中等到高度的广义遗传力。Zn 和 Fe 含量之间呈正相关。主成分和相关结果表明,YLD 与 Zn/Fe 之间存在显著的负相关。ICIM 鉴定了 81 个 QTL,而 IM 在两个群体中检测到 36 个 QTL。多亲本群体分析检测到 27 个 QTL,其中 6 个 QTL 在整个季节中一致检测到。我们列出了与产量 QTL 相关的 8 个候选基因、与农艺性状 QTL 相关的 19 个基因以及与 Zn 和 Fe QTL 相关的 26 个基因。值得注意的候选基因包括 YLD 的 CL4 和 d35、DF 的 dh1、PH 的 OsIRX10、HDT702、sd1、NP 的 OsD27,而 WFP 和 OsIPI1 与 PL 相关,TGW 的 OsRSR1 和 OsMTP1 相关。OsNAS1、OsRZFP34、OsHMP5、OsMTP7、OsC3H33 和 OsHMA1 与 Fe 和 Zn QTL 相关。我们从每个群体中鉴定出具有可接受产量潜力和高谷物锌含量的有前途的 RIL。本研究中鉴定的主要效应 QTL、基因和高锌 RIL 可用于水稻的高效锌生物强化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ae9/11298551/cb05fd6e419c/41598_2024_67543_Fig1_HTML.jpg

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