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Marker Aided Incorporation of Saltol a Major QTL Associated with Seedling Stage Salt Tolerance into Oryza sativa ‘Pusa Basmati 1121’

机译:标记辅助将与育苗期耐盐性相关的主要QTL Saltol掺入水稻 Pusa Basmati 1121中

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摘要

Pusa Basmati 1121 (PB1121), an elite Basmati rice cultivar is vulnerable to salinity at seedling stage. A study was undertaken to impart seedling-stage salt tolerance into PB1121 by transferring a quantitative trait locus (QTL), Saltol, using FL478 as donor, through marker assisted backcrossing. Sequence tagged microsatellite site (STMS) marker RM 3412, tightly linked to Saltol was used for foreground selection. Background recovery was estimated using 90 genome-wide STMS markers. Systematic phenotypic selection helped in accelerated recovery of recurrent parent phenome (RPP). A set of 51 BC3F2 lines homozygous for Saltol were advanced to develop four improved near isogenic lines (NILs) of PB1121 with seedling stage salt tolerance. The background genome recovery in the NILs ranged from 93.3 to 99.4%. The improved NILs were either similar or better than the recurrent parent PB1121 for yield, grain and cooking quality and duration. Biochemical analyses revealed significant variation in shoot and root Na+ and K+ concentrations. Correlation between shoot and root Na+ concentration was stronger than that between root and shoot K+ concentration. The effect of QTL integration into the NILs was studied through expression profiling of OsHKT1;5, one of the genes present in the Saltol region. The NILs had significantly higher OsHKT1;5 expression than the recurrent parent PB1121, but lower than FL478 on salt exposure validating the successful introgression of Saltol in the NILs. This was also confirmed under agronomic evaluation, wherein the NILs showed greater salt tolerance at seedling stage. One of the NILs, Pusa1734-8-3-3 (NIL3) showed comparable yield and cooking quality to the recurrent parent PB1121, with high field level seedling stage salinity tolerance and shorter duration. This is the first report of successful introgression of Saltol into a Basmati rice cultivar.
机译:优质印度香米Pusa Basmati 1121(PB1121)在苗期容易受到盐分的影响。进行了一项研究,通过使用标记辅助回交,以FL478为供体,通过转移数量性状基因座(STL),即Saltol,来赋予PB1121幼苗期耐盐性。与Saltool紧密连接的序列标记微卫星位点(STMS)标记RM 3412用于前景选择。使用90个全基因组STMS标记估计背景恢复。系统性表型选择有助于加快复发亲本表型(RPP)的恢复。推进了一组51种对Saltol纯合的BC3F2品系,以开发出具有幼苗期耐盐性的PB1121的四个改良的近等基因系(NIL)。 NIL中的背景基因组回收率为93.3%至99.4%。改良的NILs在产量,籽粒和蒸煮质量及持续时间方面与再生亲本PB1121相似或更好。生化分析表明,茎和根中Na + 和K + 的浓度存在显着差异。根与茎中Na + 浓度之间的相关性强于根与茎中K + 浓度之间的相关性。 QTL整合到NILs中的作用是通过OsHKT1; 5(存在于Saltol区的基因之一)的表达谱分析来进行的。 NIL的OsHKT1; 5表达明显高于复发亲本PB1121,但盐暴露低于FL478,这证明了Saltol在NIL中的成功渗入。这在农艺学评估中也得到了证实,其中NIL在苗期表现出更高的耐盐性。 NIL之一是Pusa1734-8-3-3(NIL3),其产量和蒸煮品质与轮回亲本PB1121相当,田间水平的幼苗耐盐性高,持续时间短。这是成功地将Saltol渗入印度香米的第一个报道。

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