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通过全基因组关联研究鉴定盐胁迫条件下水稻苗期控制氮利用效率相关性状的数量性状位点。

Identification of quantitative trait loci controlling nitrogen use efficiency-related traits in rice at the seedling stage under salt condition by genome-wide association study.

作者信息

Phan Nhung Thi Hong, Draye Xavier, Pham Cuong Van, Bertin Pierre

机构信息

Earth and Life Institute, Université Catholique de Louvain, Louvain-la-Neuve, Belgium.

Agronomy Faculty, Vietnam National University of Agriculture, Hanoi, Vietnam.

出版信息

Front Plant Sci. 2023 Jul 27;14:1197271. doi: 10.3389/fpls.2023.1197271. eCollection 2023.

Abstract

Rice cultivation is facing both salt intrusion and overuse of nitrogen fertilizers. Hence, breeding new varieties aiming to improve nitrogen use efficiency (NUE), especially under salt conditions, is indispensable. We selected 2,391 rice accessions from the 3K Rice Genomes Project to evaluate the dry weight under two N concentrations [2.86 mM - standard N (SN), and 0.36 mM - low N (LN)] crossed with two NaCl concentrations [0 (0Na) and 60 mM (60Na)] at the seedling stage. Genome-wide association studies for shoot, root, and plant dry weight (DW) were carried out. A total of 55 QTLs - 32, 16, and 7 in the whole, , and panel - associated with one of the tested traits were identified. Among these, 27 QTLs co-localized with previously identified QTLs for DW-related traits while the other 28 were newly detected; 24, 8, 11, and 4 QTLs were detected in SN-0Na, LN-0Na, SN-60Na, and LN-60Na, respectively, and the remaining 8 QTLs were for the relative plant DW between treatments. Three of the 11 QTLs in SN-60Na were close to the regions containing three QTLs detected in SN-0Na. Eleven candidate genes for eight important QTLs were identified. Only one of them was detected in both SN-0Na and SN-60Na, while 5, 0, 3, and 2 candidate genes were identified only once under SN-0Na, LN-0Na, SN-60Na, and LN-60Na, respectively. The identified QTLs and genes provide useful materials and genetic information for future functional characterization and genetic improvement of NUE in rice, especially under salt conditions.

摘要

水稻种植面临着盐分侵入和氮肥过度使用的问题。因此,培育旨在提高氮素利用效率(NUE)的新品种,尤其是在盐胁迫条件下,是必不可少的。我们从3000份水稻基因组计划中选取了2391份水稻种质,在幼苗期评估其在两种氮浓度[2.86 mM - 标准氮(SN)和0.36 mM - 低氮(LN)]与两种氯化钠浓度[0(0Na)和60 mM(60Na)]交叉处理下的干重。对地上部、根部和植株干重(DW)进行了全基因组关联研究。共鉴定出55个与所测性状之一相关的QTL,其中全基因组、染色体和染色体区段分别有32个、16个和7个。其中,27个QTL与先前鉴定的与DW相关性状的QTL共定位,另外28个是新检测到的;在SN-0Na、LN-0Na、SN-60Na和LN-60Na中分别检测到24个、8个、11个和4个QTL,其余8个QTL是处理间相对植株DW的相关QTL。SN-60Na中的11个QTL中有3个靠近SN-0Na中检测到的3个QTL所在区域。鉴定出了8个重要QTL的11个候选基因。其中只有1个在SN-0Na和SN-60Na中均被检测到,而在SN-0Na、LN-0Na、SN-60Na和LN-60Na下分别仅检测到5个、0个、3个和2个仅出现一次的候选基因。所鉴定的QTL和基因可为未来水稻氮素利用效率的功能表征和遗传改良提供有用的材料和遗传信息,尤其是在盐胁迫条件下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea57/10415682/85e7a50c8ac1/fpls-14-1197271-g001.jpg

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