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Post-Anthesis Photosynthetic Properties Provide Insights into Yield Potential of Tartary Buckwheat Cultivars

机译:花后的光合特性揭示了苦荞品种的产量潜力

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Photosynthesis is the basis for plant productivity, and improvement of photosynthetic efficiency is an important way to improve crop yield. However, the relationship between photosynthetic parameters and the yield of Tartary buckwheat ( Fagopyrum tataricum ) under rainfed conditions is unclear. A two-year field trial was conducted during 2016 and 2017 to assess the photosynthetic capacity of different leaves, dry matter accumulation, and yield of four Tartary buckwheat cultivars from flowering to maturity. The leaves of all cultivars aged gradually after flowering, and the leaf chlorophyll (Chl) and soluble protein (SP) contents, net photosynthetic rates (P n ), transpiration rates (T r ), and stomatal conductance (G s ) tended to decline. The Chl, SP, P n , T r , and G s of cultivars (cvs.) XiQiao2 and QianKu3 were significantly higher than those of LiuKu3 and JiuJiang at each sampling time from 18 days after anthesis to maturity, but the intercellular CO 2 content (C i ) showed the opposite trend. Cultivars XiQiao2 and QianKu3 produced more total dry matter (mean 17.1% higher), had higher harvest index (HI, mean 16.4% higher), and yield (mean 29.0% higher) than cvs. LiuKu3 and JiuJiang at maturity, and the difference was remarkably consistent. The yield of all the cultivars was positively correlated with leaf Chl, SP, P n , T r , and G s , but negatively correlated with C i . At late growth stages, the high-yielding cultivars maintained higher Chl, SP contents, P n , T r , and G s , and showed higher dry matter accumulation and lower C i than the low-yielding cultivars, consistent with their higher leaf photosynthetic capacity. The important factors determining the yield of Tartary buckwheat were maintaining higher leaf Chl and SP content and photosynthetic capacity and delaying aging during the grain formation stage. Enhanced rates of photosynthesis and dry matter accumulation led to higher post-anthesis accumulation of biomass with a positive impact on grain number and higher yield.
机译:光合作用是植物生产力的基础,光合作用效率的提高是提高农作物产量的重要途径。然而,在雨养条件下,光合参数与of荞麦(Fagopyrum tataricum)的产量之间的关系尚不清楚。在2016年和2017年进行了为期两年的田间试验,以评估从开花到成熟的四个T苦荞品种的不同叶片的光合能力,干物质积累和产量。所有品种的花在开花后均逐渐衰老,叶绿素(Chl)和可溶性蛋白(SP)含量,净光合速率(P n),蒸腾速率(T r)和气孔导度(G s)趋于下降。 。从花期到成熟期的第18天,西Q2和前库3的Chl,SP,Pn,Tr和Gs显着高于刘库3和九江的样品,但细胞间CO 2含量(C i)显示相反的趋势。品种XiQiao2和QianKu3的总干物质产量(平均高17.1%),收获指数(HI,平均高16.4%)和单产(平均高29.0%)。 LiuKu3和JiuJiang成熟时,两者之间的差异非常一致。所有品种的产量与叶片Chl,SP,Pn,Tr和Gs呈正相关,而与Ci呈负相关。在生育后期,高产品种保持较高的Chl,SP含量,P n,Tr和G s,并且比低产品种表现出更高的干物质积累和较低的C i,这与它们较高的叶片光合能力相一致。容量。决定苦荞产量的重要因素是维持较高的叶片Chl和SP含量以及光合能力以及延缓谷粒形成阶段的衰老。光合作用和干物质积累速率的提高导致了花后生物量积累的增加,对谷物数量和产量都有积极影响。

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