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水引发和铁引发对持绿小麦种子萌发及幼苗形态生理特性的比较效应

Comparative Effects of Hydropriming and Iron Priming on Germination and Seedling Morphophysiological Attributes of Stay-Green Wheat.

作者信息

Sumbal Sumbal, Ali Ahmad, Nasser Binjawhar Dalal, Ullah Zahid, Eldin Sayed M, Iqbal Rashid, Sher Hassan, Ali Iftikhar

机构信息

Center for Plant Sciences and Biodiversity, University of Swat, Charbagh 19120, Pakistan.

Department of Chemistry, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi Arabia.

出版信息

ACS Omega. 2023 Jun 12;8(25):23078-23088. doi: 10.1021/acsomega.3c02359. eCollection 2023 Jun 27.

Abstract

Seed priming is considered to play an essential role in the overall improvement of agricultural crops. The current research work was carried out in order to investigate the comparative effects of hydropriming and iron priming on the germination behavior and morphophysiological attributes of wheat seedlings. The experimental materials consisted of three wheat genotypes including a synthetically derived wheat line (SD-194), stay-green wheat genotype (Chirya-7), and conventional wheat variety (Chakwal-50). The treatments included hydro (distilled and tap water)- and iron priming (10 and 50 mM) of wheat seeds for 12 h duration. Results indicated that both priming treatment and wheat genotypes exhibited highly different germination and seedling characteristics. These included germination percentage, root volume, root surface, root length, relative water content, chlorophyll content, membrane stability index, and chlorophyll fluorescence attributes. Furthermore, the synthetically derived line (SD-194) was the most promising in majority of the studied attributes by exhibiting a high germination index (2.21%), root fresh weight (7.76%), shoot dry weight (3.36%), relative water content (19.9%), chlorophyll content (7.58%), and photochemical quenching coefficient (2.58%) when compared with stay-green wheat (Chirya-7). The study also found that hydropriming with tap water and priming wheat seeds with low concentrations of iron yielded better results when a comparison was made with wheat seeds primed at high concentrations of iron. Therefore, wheat seed priming with tap water and iron solution for 12 h is recommended for optimum wheat improvement. Furthermore, current findings suggest that seed priming may have the prospect of an innovative and user-friendly approach for wheat biofortification with the aim of enhanced iron acquisition and accumulation in grains.

摘要

种子引发被认为在农作物的整体改良中起着至关重要的作用。开展当前的研究工作是为了探究水引发和铁引发对小麦幼苗发芽行为及形态生理特性的比较影响。实验材料包括三种小麦基因型,即一个人工合成衍生小麦品系(SD - 194)、持绿小麦基因型(Chirya - 7)和常规小麦品种(Chakwal - 50)。处理包括对小麦种子进行12小时的水(蒸馏水和自来水)引发和铁引发(10 mM和50 mM)。结果表明,引发处理和小麦基因型均表现出高度不同的发芽和幼苗特征。这些特征包括发芽率、根体积、根表面积、根长、相对含水量、叶绿素含量、膜稳定性指数和叶绿素荧光特性。此外,与持绿小麦(Chirya - 7)相比,人工合成衍生品系(SD - 194)在大多数研究特性方面最具潜力,表现出较高的发芽指数(2.21%)、根鲜重(7.76%)、地上部干重(3.36%)、相对含水量(19.9%)、叶绿素含量(7.58%)和光化学猝灭系数(2.58%)。该研究还发现,与高浓度铁引发的小麦种子相比,用自来水进行水引发以及用低浓度铁引发小麦种子产生的效果更好。因此,建议对小麦种子用自来水和铁溶液进行12小时引发以实现最佳的小麦改良。此外,当前的研究结果表明,种子引发可能有望成为一种创新且用户友好的方法,用于小麦生物强化,目的是增强铁在籽粒中的吸收和积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c16/10308549/ae374b1f782c/ao3c02359_0002.jpg

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