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Flowering and Growth Responses of Cultivated Lentil and Wild Lens Germplasm toward the Differences in Red to Far-Red Ratio and Photosynthetically Active Radiation

机译:小扁豆和野生扁豆种质对红色与远红色比率的差异和光合有效辐射的开花和生长响应

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摘要

Understanding environmental responses of pulse crop species and their wild relatives will play an important role in developing genetic strategies for crop improvement in response to changes in climate. This study examined how cultivated lentil and wild Lens germplasm responded to different light environments, specifically differences in red/far-red ratio (R/FR) and photosynthetically active radiation (PAR). Three genotypes of each the seven Lens species were grown in environmentally controlled growth chambers equipped to provide light treatments consisting of different R/FR ratios and PAR values. Our results showed that overall, days to flower of Lens genotypes were mainly influenced by the R/FR induced light quality change but not by the PAR related light intensity change. The cultivated lentil (L. culinaris) showed consistent, accelerated flowering in response to the low R/FR light environment together with three wild lentil genotypes (L. orientalis IG 72611, L. tomentosus IG 72830, and L. ervoides IG 72815) while most wild lentil genotypes had reduced responses and flowering time was not significantly affected. The longest shoot length, longest internode length, and largest leaflet area were observed under the low R/FR low PAR environment for both cultivated and wild lentils. The distinctly different responses between flowering time and elongation under low R/FR conditions among wild Lens genotypes suggests discrete pathways controlling flowering and elongation, which are both components of shade avoidance responses. The yield and above-ground biomass of Lens genotypes were the highest under high R/FR high PAR conditions, intermediate under low R/FR low PAR conditions, and lowest under high R/FR low PAR light conditions. Three L. lamottei genotypes (IG 110809, IG 110810, and IG 110813) and one L. ervoides genotype (IG 72646) were less sensitive in their time to flower responses while maintaining similar yield, biomass, and harvest index across all three light environments; these are indications of better adaptability toward changes in light environment.
机译:了解豆类作物及其野生近缘种的环境响应将在制定遗传改良策略以应对气候变化方面发挥重要作用。这项研究检查了栽培的扁豆和野生Lens种质如何响应不同的光照环境,特别是红色/远红色比率(R / FR)和光合有效辐射(PAR)的差异。七个Lens物种中的每种的三种基因型均在环境受控的生长箱中生长,该生长箱配备了可提供由不同R / FR比和PAR值组成的光照处理。我们的结果表明,总体而言,Lens基因型的开花天数主要受R / FR诱导的光质量变化的影响,而不受PAR相关光强度的变化的影响。栽培扁豆(L. culinaris)响应低R / FR光照环境以及三种野生扁豆基因型(L. Orientalis IG 72611,L。tomentosus IG 72830和L. ervoides IG 72815)表现出一致的加速开花。大多数野生小扁豆基因型的响应降低,开花时间未受到明显影响。在低R / FR低PAR环境下,无论是栽培扁豆还是野生扁豆都可以观察到最长的芽长,最长的节间长度和最大的小叶面积。野生Lens基因型在低R / FR条件下开花时间与伸长之间的响应截然不同,这表明控制开花和伸长的离散途径都是避荫响应的组成部分。 Lens基因型的产量和地上生物量在高R / FR高PAR条件下最高,在低R / FR低PAR条件下中等,在高R / FR低PAR光照条件下最低。三种拉美乳杆菌基因型(IG 110809,IG 110810和IG 110813)和一种避草乳杆菌基因型(IG 72646)在对花的反应时间上较不敏感,同时在所有三种光照环境下保持相似的产量,生物量和收获指数;这些表明对光环境变化具有更好的适应性。

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