Eugenia的生物特征和形态调整。dysenterica直流。幼苗对土壤水分亏缺增加的反应

Q3 Agricultural and Biological Sciences Acta Scientiarum. Biological Sciences Pub Date : 2023-06-15 DOI:10.4025/actascibiolsci.v45i1.62761
Matheus Pena Campos, J. Rufini, B. M. Silva, M. Guedes, Y. M. García, Janaina Canaan Rezende de Souza, R. P. Azevedo, Miriã Cristina Pereira Fagundes
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引用次数: 1

摘要

水分胁迫可以影响植物生长发育的各个方面,损害其生产潜力。鉴于其社会经济和环境潜力,培育塞拉多原生水果物种并研究它们在低水分条件下的行为是必要的活动。本研究旨在评估水分亏缺对巴西塞拉多大草原特有树种cagaita (Eugenia dysenterica DC.)生长和生物量的影响。试验采用随机区组设计(RBD),采用双因子设计(2x5),分别设置2株卡盖塔母株和5种水分条件,试验期120 d。我们评估了生长和叶、茎、根的功能特征。最严重的水分亏缺条件降低了卡盖塔植株的梢长、叶片数、生物量和干物质产量,增加了比根长和单株质量根长。赤字扩大对其增长和发展产生了负面影响。母株之间存在统计学差异,母株2对干旱的抵抗力更强。施用严重或较长时间的水分亏缺影响了新梢的生长,减少了新叶的出现。缺水造成的胁迫使根系功能特征增加,支持了逆境条件下植物注重更高生物量生产并将更多干物质转化为根系的假设。叶面积不表现为一个功能特征,这解释了大肠杆菌DC植株的胁迫效应。
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Biometric and morphological adjustments of Eugenia. dysenterica DC. seedlings in response to increased soil water deficit
Water stress can affect all aspects of plant growth and development, compromising its productive potential. The cultivation of fruit species native to the Cerrado and the study of their behavior under conditions of low water availability are necessary activities, in view of their socioeconomic and environmental potential. This study was conducted to evaluate the effect of water deficit on growth and biomass production of the cagaita tree (Eugenia dysenterica DC.), a species endemic to the Cerrado (Brazilian Savannah). The experiment was performed in a greenhouse for 120 days in a randomized block design (RBD), with a double factorial arrangement (2x5), corresponding to two cagaita mother plants and five water conditions. We evaluated the growth and leaf, stem and root functional characteristics. The most severe water deficit conditions reduced shoot growth, number of leaves, production of biomass and dry matter and increased the specific and per plant mass root length of cagaita plants. Deficit extension had negative effects on its growth and development. There was a statistical difference between mother plants, with mother plant 2 being more resistant to drought. The application of a severe or longer water deficit affected shoot growth and reduced the appearance of new leaves. The stress caused by water deficiency allowed an increase in root functional characteristics, supporting the hypothesis that plants under adverse conditions focus on higher biomass production and convert a higher amount of dry matter into the roots. Leaf area did not show to be a functional characteristic, explaining the stress effects in E. dysenterica DC plants.
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来源期刊
Acta Scientiarum. Biological Sciences
Acta Scientiarum. Biological Sciences Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.00
自引率
0.00%
发文量
45
审稿时长
38 weeks
期刊介绍: The journal publishes original articles in all areas of Biological Sciences, including anatomy, bacteriology, molecular biology, biochemistry, botany, cytology and cell biology, animal behavior, ecology, limnology, embryology, and histology, morpho-physiology, genetics, microbiology, parasitology and zoology.
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