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首页> 外文期刊>HortTechnology >Drench Application of Fish-derived Protein Hydrolysates Affects Lettuce Growth, Chlorophyll Content, and Gas Exchange
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Drench Application of Fish-derived Protein Hydrolysates Affects Lettuce Growth, Chlorophyll Content, and Gas Exchange

机译:鱼类衍生的蛋白质水解酸盐的浸泡应用影响生菜生长,叶绿素含量和气体交换

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摘要

Protein hydrolysates (PHs) are an important group of plant biostimulants that have received increasing attention in recent years because of their positive effects on crop performance and contribution to agroecological sustainability. The aim of the study was to determine the effects of fish-derived PHs on growth, chlorophyll content and fluorescence, and leaf gas exchange of lettuce (Lactuca sativa) grown in a growth chamber. Fish-derived PHs were drench applied (300 mL of 3 mL.L-1) three times at 0, 14, and 24 days after transplanting (DAT), and lettuce were evaluated 30 DAT. Application of PHs significantly increased the lettuce leaf number per plant from 22 to 28, stem diameter from 1.37 to 1.68 cm, shoot fresh and dry weight (FW and DW) from 59 to 89 g and 5.5 to 7.7 g, and root dry weight from 0.52 to 0.80 g. It also significantly increased the leaf relative water content (RWC) from 87% to 90% and succulence from 267 to 288 g.m(-2) water, but had no effect on specific leaf area (SLA). PHs significantly enhanced chlorophyll content, photosynthetic rate, stomatal conductance, and transpiration rate although they did not alter chlorophyll fluorescence. Our study indicated that plant biostimulants and fertilizer PHs improved plant performance and might have potential to be used for sustainable production of lettuce.
机译:蛋白质水解物(PHs)是一类重要的植物生物刺激剂,近年来由于其对作物生长的积极影响和对农业生态可持续性的贡献而受到越来越多的关注。本研究的目的是确定鱼源PHs对生长室中生长的莴苣(Lactuca sativa)的生长、叶绿素含量和荧光以及叶片气体交换的影响。在移栽后0、14和24天(DAT)将鱼源PHs(300 mL 3 mL.L-1)浸湿三次,并在30 DAT时对生菜进行评估。施用PHs显著增加了莴苣单株叶片数,从22增加到28,茎粗从1.37增加到1.68厘米,茎鲜重和干重(FW和DW)从59增加到89克,茎干重从5.5增加到7.7克,根干重从0.52增加到0.80克,叶片相对含水量(RWC)从87%增加到90%,肉质含量从267增加到288克,但对比叶面积没有影响。PHs显著提高了叶绿素含量、光合速率、气孔导度和蒸腾速率,但没有改变叶绿素荧光。我们的研究表明,植物生物刺激剂和肥料PHs改善了植物的性能,并可能用于莴苣的可持续生产。

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