Exploring Thinopyrum spp. Group 7 Chromosome Introgressions to Improve Durum Wheat Performance under Intense Daytime and Night-Time Heat Stress at Anthesis

Plants Pub Date : 2024-09-18 DOI:10.3390/plants13182605
Gloria Giovenali, Maria Lia Di Romana, Alessandra Capoccioni, Vinicio Riccardi, Ljiljana Kuzmanović, Carla Ceoloni
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Abstract

Durum wheat (DW) is one of the major crops grown in the Mediterranean area, a climate-vulnerable region where the increase in day/night (d/n) temperature is severely threatening DW yield stability. In order to improve DW heat tolerance, the introgression of chromosomal segments derived from the wild gene pool is a promising strategy. Here, four DW-Thinopyrum spp. near-isogenic recombinant lines (NIRLs) were assessed for their physiological response and productive performance after intense heat stress (IH, 37/27 °C d/n) had been applied for 3 days at anthesis. The NIRLs included two primary types (R5, R112), carriers (+) of a differently sized Th. ponticum 7el1L segment on the DW 7AL arm, and two corresponding secondary types (R69-9/R5, R69-9/R112), possessing a Th. elongatum 7EL segment distally inserted into the 7el1L ones. Their response to the IH stress was compared to that of corresponding non-carrier sib lines (−) and the heat-tolerant cv. Margherita. Overall, the R112+, R69-9/R5+ and R69-9/R112+ NIRLs exhibited a tolerant behaviour towards the applied stress, standing out for the maintenance of leaf relative water content but also for the accumulation of proline and soluble sugars in the flag leaf and the preservation of photosynthetic efficiency. As a result, all the above three NIRLs (R112+ > R69-9/R5+ > R69-9/R112+) displayed good yield stability under the IH, also in comparison with cv. Margherita. R112+ particularly relied on the strength of spike fertility/grain number traits, while R69-9/R5+ benefited from efficient compensation by the grain weight increase. This work largely confirmed and further substantiated the value of exploiting the wild germplasm of Thinopyrum species as a useful source for the improvement of DW tolerance to even extreme abiotic stress conditions, such as the severe heat treatment throughout day- and night-time applied here.
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探索 Thinopyrum spp.第 7 组染色体杂交以改善硬质小麦在花期白天和夜间强烈热胁迫下的生长表现
硬粒小麦(DW)是地中海地区种植的主要作物之一,该地区气候易变,昼夜(d/n)温度的升高严重威胁着硬粒小麦的产量稳定性。为了提高水稻的耐热性,从野生基因库中导入染色体片段是一种很有前景的策略。在此,研究人员评估了四个DW-Thinopyrum spp.近等基因重组品系(NIRLs)在花期强烈热胁迫(IH,37/27 °C d/n)3天后的生理反应和生产性能。NIRL 包括两个主要类型(R5、R112)和两个相应的次要类型(R69-9/R5、R69-9/R112),前者是 DW 7AL 臂上不同大小的 Th. ponticum 7el1L 片段的携带者(+),后者则拥有一个远端插入 7el1L 片段的 Th. elongatum 7EL 片段。它们对 IH 胁迫的反应与相应的非载体同源系(-)和耐热品种 Margherita 的反应进行了比较。玛格丽塔。总的来说,R112+、R69-9/R5+ 和 R69-9/R112+ NIRL 对所施加的胁迫表现出耐受性,不仅能保持叶片相对含水量,还能在旗叶中积累脯氨酸和可溶性糖并保持光合效率。因此,上述三个近缘种(R112+ > R69-9/R5+ > R69-9/R112+)在 IH 条件下都表现出了良好的产量稳定性,这一点与变种 Margherita 相比也是如此。玛格丽塔。R112+ 尤其依赖于穗生育期/粒数性状的优势,而 R69-9/R5+ 则受益于粒重增加的有效补偿。这项工作在很大程度上证实并进一步证实了利用薄壁种的野生种质作为有用资源的价值,以提高干旱胁迫对极端非生物胁迫条件的耐受性,例如这里采用的昼夜高温处理。
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