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温带粳稻耐盐基因座Saltol的分子标记辅助渐渗

Marker-Assisted Introgression of the Salinity Tolerance Locus Saltol in Temperate Japonica Rice.

作者信息

Marè Caterina, Zampieri Elisa, Cavallaro Viviana, Frouin Julien, Grenier Cécile, Courtois Brigitte, Brottier Laurent, Tacconi Gianni, Finocchiaro Franca, Serrat Xavier, Nogués Salvador, Bundó Mireia, San Segundo Blanca, Negrini Noemi, Pesenti Michele, Sacchi Gian Attilio, Gavina Giacomo, Bovina Riccardo, Monaco Stefano, Tondelli Alessandro, Cattivelli Luigi, Valè Giampiero

机构信息

Council for Agricultural Research and Economics, Research Centre for Genomics and Bioinformatics, Via S. Protaso 302, 29017, Fiorenzuola d'Arda, Piacenza, Italy.

Council for Agricultural Research and Economics, Research Centre for Cereal and Industrial Crops, s.s. 11 to Torino, km 2.5, 13100, Vercelli, Italy.

出版信息

Rice (N Y). 2023 Jan 12;16(1):2. doi: 10.1186/s12284-023-00619-2.

Abstract

BACKGROUND

Rice is one of the most salt sensitive crops at seedling, early vegetative and reproductive stages. Varieties with salinity tolerance at seedling stage promote an efficient growth at early stages in salt affected soils, leading to healthy vegetative growth that protects crop yield. Saltol major QTL confers capacity to young rice plants growing under salt condition by maintaining a low Na/K molar ratio in the shoots.

RESULTS

Marker-assisted backcross (MABC) procedure was adopted to transfer Saltol locus conferring salt tolerance at seedling stage from donor indica IR64-Saltol to two temperate japonica varieties, Vialone Nano and Onice. Forward and background selections were accomplished using polymorphic KASP markers and a final evaluation of genetic background recovery of the selected lines was conducted using 15,580 SNP markers obtained from Genotyping by Sequencing. Three MABC generations followed by two selfing, allowed the identification of introgression lines achieving a recovery of the recurrent parent (RP) genome up to 100% (based on KASP markers) or 98.97% (based on GBS). Lines with highest RP genome recovery (RPGR) were evaluated for agronomical-phenological traits in field under non-salinized conditions. VN1, VN4, O1 lines were selected considering the agronomic evaluations and the RPGR% results as the most interesting for commercial exploitation. A physiological characterization was conducted by evaluating salt tolerance under hydroponic conditions. The selected lines showed lower standard evaluation system (SES) scores: 62% of VN4, and 57% of O1 plants reaching SES 3 or SES 5 respectively, while only 40% of Vialone Nano and 25% of Onice plants recorded scores from 3 to 5, respectively. VN1, VN4 and O1 showed a reduced electrolyte leakage values, and limited negative effects on relative water content and shoot/root fresh weight ratio.

CONCLUSION

The Saltol locus was successfully transferred to two elite varieties by MABC in a time frame of three years. The application of background selection until BCF allowed the selection of lines with a RPGR up to 98.97%. Physiological evaluations for the selected lines indicate an improved salinity tolerance at seedling stage. The results supported the effectiveness of the Saltol locus in temperate japonica and of the MABC procedure for recovering of the RP favorable traits.

摘要

背景

水稻在幼苗期、营养生长早期和生殖阶段是对盐分最敏感的作物之一。在幼苗期具有耐盐性的品种能在盐渍化土壤的早期阶段促进高效生长,从而实现健康的营养生长,保护作物产量。Saltol主要数量性状位点通过维持地上部低的钠/钾摩尔比,赋予幼龄水稻植株在盐胁迫条件下生长的能力。

结果

采用标记辅助回交(MABC)程序,将在幼苗期赋予耐盐性的Saltol基因座从供体籼稻IR64-Saltol转移到两个温带粳稻品种Vialone Nano和Onice中。利用多态性KASP标记进行前景和背景选择,并使用通过测序基因分型获得的15580个单核苷酸多态性(SNP)标记对所选株系的遗传背景恢复情况进行最终评估。经过三代MABC和两代自交,鉴定出了导入系,其轮回亲本(RP)基因组恢复率高达100%(基于KASP标记)或98.97%(基于GBS)。对具有最高RP基因组恢复率(RPGR)的株系在非盐渍化条件下的田间进行农艺-物候性状评估。综合农艺评价和RPGR%结果,选择VN1、VN4、O1株系作为最具商业开发价值的株系。通过在水培条件下评估耐盐性进行生理特性分析。所选株系的标准评价系统(SES)得分较低:分别有62%的VN4植株和57%的O1植株达到SES 3或SES 5,而Vialone Nano和Onice植株分别只有40%和25%的得分在3至5之间。VN1、VN4和O1的电解质渗漏值降低,对相对含水量和地上部/根鲜重比的负面影响有限。

结论

通过MABC在三年时间内成功地将Saltol基因座转移到了两个优良品种中。在回交一代(BCF)之前应用背景选择,能够选择出RPGR高达98.97%的株系。对所选株系的生理评估表明其在幼苗期的耐盐性有所提高。结果支持了Saltol基因座在温带粳稻中的有效性以及MABC程序在恢复RP优良性状方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74bc/9837369/b90bc661c308/12284_2023_619_Fig1_HTML.jpg

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