首页> 外文OA文献 >Systematic Investigation of the Effects of a Novel Protein Hydrolysate on the Growth, Physiological Parameters, Fruit Development and Yield of Grapevine (Vitis Vinifera L., cv Sauvignon Blanc) under Water Stress Conditions
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Systematic Investigation of the Effects of a Novel Protein Hydrolysate on the Growth, Physiological Parameters, Fruit Development and Yield of Grapevine (Vitis Vinifera L., cv Sauvignon Blanc) under Water Stress Conditions

机译:系统调查新型蛋白质水解产物对水胁迫条件下葡萄葡萄(葡萄藻(血管血管血管)的生长,生理参数,果实发育和产量的影响

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摘要

In the last decade climate change has impacted viticulture and water deficit has become a major concern in fruit production. Many studies have been carried out to determine the grapevine response to environmental changes and to identify key genetic traits to be used in grapevine breeding. However, in order to better manage climate-related risks, novel viticultural practices are urgently needed. A promising solution for a more sustainable model of viticulture involves the use of biostimulants. In this study, the effectiveness of a novel biostimulant (APR®) belonging to the group of protein thermal hydrolysates was tested on grapevine plants subjected to progressive water deficit conditions. Our results showed that this compound applied to roots before imposing water deprivation mitigates the consequences of stress by sustaining the growth of the younger vegetative organs and limiting the extent of cell dehydration; this positive impact on the plant’s physiological state persisted during the recovery phase. Furthermore, at the end of the growing season, plants treated with the biostimulant, both in optimal water conditions and under water stress, exhibited a greater accumulation of biomass in the aerial part (6.8% and 21.3 %, respectively) and a higher berry diameter (3.4 % and 9.5 %, respectively). Additional work through field trials will be necessary to further substantiate these results and to translate this knowledge into specific practices that grape growers can easily adopt.
机译:在过去十年的气候变化影响葡萄葡萄栽培和水资源赤字已成为水果生产的主要关注点。已经进行了许多研究以确定对环境变化的葡萄响应,并鉴定以葡萄育种中使用的关键遗传性状。然而,为了更好地管理与气候相关的风险,迫切需要新的葡萄栽培实践。对于更可持续的葡萄栽培模型的有希望的解决方案涉及使用生物刺激剂。在该研究中,在经过逐步水缺陷条件的葡萄植物上测试了属于蛋白质热水解产物组的新型生物诱导剂(APR®)的有效性。我们的研究结果表明,通过维持年轻营养器官的生长并限制细胞脱水程度,将该化合物施用于根部施加到污染之前的根源。这种积极的影响在植物的生理状态持续存在于恢复阶段。此外,在生长季节结束时,在最佳水条件和水分胁迫下,用生物刺激剂治疗的植物在空中部位(分别为6.8%和21.3%)和更高的浆果直径,以及更高的莓果直径(分别为3.4%和9.5%)。通过现场试验的其他工作将有必要进一步证实这些结果,并将这些知识转化为葡萄种植者可以轻松采用的具体实践。

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