Ayed Sourour, Bouhaouel Imen, Jebari Hayet, Hamada Walid
Field Crops Laboratory, LR20-INRAT-02, National Agricultural Research Institute of Tunisia, University of Carthage, Ariana 2049, Tunisia.
Genetics and Cereal Breeding Laboratory, LR14AGR01, National Agronomic Institute of Tunisia, University of Carthage, Tunis 1082, Tunisia.
Plants (Basel). 2022 Jan 4;11(1):133. doi: 10.3390/plants11010133.
The use of biostimulant (BS) holds a promising and environmental-friendly innovation to address current needs of sustainable agriculture. The aim of the present study is twofold: (i) assess the potential of durum wheat seed coating with microbial BS ('Panoramix', Koppert), a mix of spp., spp., and compared to two chemical products ('Spectro' and 'Mycoseeds') through germination bioassay, pot and field trials under semi-arid conditions, and (ii) identify the most effective method of BS supply ('seed coating', 'foliar spray', and 'seed coating + foliar spray') under field conditions. For this purpose, three modern durum wheat cultivars were tested. 'Panoramix' was the most efficient treatment and enhanced all germination (germination rate, and coleoptile and radicle length), physiological (relative water content, chlorophyll content, and leaf area), and agro-morphological (plant height, biomass, seed number per spike, thousand kernel weight, and grain yield) attributes. Unexpectedly, the individual application of 'Panoramix' showed better performance than the combined treatment 'Panoramix + Spectro'. Considering the physiological and agro-morphological traits, the combined method 'seed coating + foliar spray' displayed the best results. Principal component analysis confirmed the superiority of 'Panoramix' treatment or 'seed coating + foliar spray' method. Among tested durum wheat cultivars, 'Salim' performed better especially under 'Panoramix' treatment, but in some case 'Karim' valorized better this BS showing the highest increase rates. Based on these study outcomes, 'Panoramix' might be used as promising sustainable approach to stimulate durum wheat performance.
使用生物刺激素(BS)是一种前景广阔且环保的创新方法,可满足当前可持续农业的需求。本研究的目的有两个:(i)通过发芽生物测定、盆栽和半干旱条件下的田间试验,评估用微生物生物刺激素(“全景混合剂”,科伯特公司)对硬粒小麦进行种子包衣的潜力,该生物刺激素是多种[具体菌种1]、[具体菌种2]和[具体菌种3]的混合物,并与两种化学产品(“光谱”和“霉菌种子”)进行比较;(ii)确定田间条件下生物刺激素供应的最有效方法(“种子包衣”、“叶面喷施”和“种子包衣 + 叶面喷施”)。为此,对三个现代硬粒小麦品种进行了测试。“全景混合剂”是最有效的处理方法,提高了所有发芽指标(发芽率、胚芽鞘和胚根长度)、生理指标(相对含水量、叶绿素含量和叶面积)以及农艺形态指标(株高、生物量、每穗粒数、千粒重和籽粒产量)。出乎意料的是,单独使用“全景混合剂”的表现优于联合处理“全景混合剂 + 光谱”。考虑到生理和农艺形态特征,“种子包衣 + 叶面喷施”组合方法显示出最佳效果。主成分分析证实了“全景混合剂”处理或“种子包衣 + 叶面喷施”方法的优越性。在测试的硬粒小麦品种中,“萨利姆”表现更好,尤其是在“全景混合剂”处理下,但在某些情况下,“卡里姆”对这种生物刺激素的增值效果更好,显示出最高的增长率。基于这些研究结果,“全景混合剂”可能是一种有前景的可持续方法,可用于促进硬粒小麦表现。