Seed priming enhances seed germination and plant growth in four neglected cultivars of Capsicum annuum L.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2024-10-28 eCollection Date: 2024-01-01 DOI:10.7717/peerj.18293
Angelo Granata, Fiore Capozzi, Anna Gaglione, Riccardo Riccardi, Patrizia Spigno, Simonetta Giordano, Maria Cristina Sorrentino, Valeria Spagnuolo
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Abstract

Priming is basically a water-based technique inducing controlled seed rehydration to trigger the metabolic processes normally activated during the early phase of germination. It is regarded as an ecofriendly approach alternative to fertilizers in traditional agriculture, but also a method to synchronize off-field crops and resume stored seeds, improving vigor, and allowing for a rapid, uniform seedling emergence. In this work we tested several methods of seed priming (i.e., hydro-priming, halopriming by KNO3, and acid priming with HCl) in four ancient and neglected cultivars of Capsicum annuum L., a crop species belonging to Solanaceae family cultivated worldwide. We followed germination performance, seedling growth and selected morphological traits, antioxidant production in the leaves, and protein content of the seeds. Apart from acid priming, which inhibited root emergence, both hydropriming and halopriming decreased the mean germination time in all cultivars. The best treatments were KNO3 6% for 96 h > KNO3 4% for 48 h > hydropriming for 24 h. In particular, KNO3 6% for 96 h in all four cultivars significantly increased plant growth, simple vigor index, development germination index, leaf antioxidant concentration and protein content in the seeds, in comparison to control and other priming treatments, indicating the prompt activation of pre-germinative processes.

种子处理可提高四种被忽视的辣椒栽培品种的种子萌发率和植株生长率
催芽基本上是一种以水为基础的技术,通过诱导受控的种子再水化来触发通常在萌芽早期激活的新陈代谢过程。它被认为是传统农业中肥料的一种生态友好型替代方法,同时也是一种同步化田外作物和恢复贮藏种子的方法,可提高种子活力,使幼苗迅速、均匀地萌发。在这项工作中,我们在四种古老而被忽视的辣椒栽培品种中测试了几种种子催芽方法(即水力催芽、KNO3 卤化催芽和盐酸酸性催芽),辣椒栽培品种属于茄科作物,在世界各地均有栽培。我们对种子的萌发性能、幼苗生长和部分形态特征、叶片中抗氧化剂的产生以及蛋白质含量进行了跟踪研究。除了酸性催芽抑制了根的萌发外,水催芽和卤化催芽都缩短了所有栽培品种的平均发芽时间。与对照和其他催芽处理相比,在所有四个栽培品种中,KNO3 6%催芽96小时可显著提高植物生长、简单活力指数、发育发芽指数、叶片抗氧化剂浓度和种子蛋白质含量,这表明催芽前过程被迅速激活。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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