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Overexpression of a NAC transcription factor delays leaf senescence and increases grain nitrogen concentration in wheat

机译:NAC转录因子的过表达延迟了小麦的衰老并增加了小麦的籽粒氮含量

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Increasing the duration of leaf photosynthesis during grain filling using slow-senescing functional stay-green phenotypes is a possible route for increasing grain yields in wheat (Triticum aestivum L.). However, delayed senescence may negatively affect nutrient remobilisation and hence reduce grain protein concentrations and grain quality. A novel NAC1-type transcription factor (hereafter TaNAC-S) was identified in wheat, with gene expression located primarily in leaf/sheath tissues, which decreased during post-anthesis leaf senescence. Expression of TaNAC-S in the second leaf correlated with delayed senescence in two doubled-haploid lines of an AvalonxCadenza population (lines 112 and 181), which were distinct for leaf senescence. Transgenic wheat plants overexpressing TaNAC-S resulted in delayed leaf senescence (stay-green phenotype). Grain yield, aboveground biomass, harvest index and total grain N content were unaffected, but NAC over-expressing lines had higher grain N concentrations at similar grain yields compared to non-transgenic controls. These results indicate that TaNAC-S is a negative regulator of leaf senescence, and that delayed leaf senescence may lead not only to increased grain yields but also to increased grain protein concentrations.
机译:使用慢速感应功能性保持绿色表型增加籽粒在灌浆过程中叶片光合作用的持续时间是增加小麦(Triticum aestivum L.)籽粒产量的可能途径。但是,延迟衰老可能会对养分迁移产生不利影响,从而降低谷物蛋白浓度和品质。在小麦中鉴定出一种新的NAC1型转录因子(以下称TaNAC-S),其基因表达主要位于叶/鞘组织中,在花后叶片衰老过程中降低。 TaNAC-S在第二片叶子中的表达与AvalonxCadenza种群的两个双单倍体系(112和181行)中的衰老延迟有关,这对于叶片衰老是不同的。过表达TaNAC-S的转基因小麦植株导致叶片衰老延迟(保持绿色表型)。谷物产量,地上生物量,收获指数和总谷物N含量均未受到影响,但与非转基因对照相比,NAC过表达品系在相似的谷物产量下具有较高的谷物N浓度。这些结果表明,TaNAC-S是叶片衰老的负调节剂,延迟叶片衰老可能不仅导致谷物产量增加,而且导致谷物蛋白质浓度增加。

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