Heat-induced Leaf Senescence in Creeping Bentgrass Suppressed by Aminoethoxyvinylglycine Involving Regulation of Chlorophyll Metabolism

IF 1.2 4区 农林科学 Q3 HORTICULTURE
S. Rossi, Bingru Huang
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Abstract

Heat stress-induced or stress-accelerated leaf senescence is related to the accumulation of ethylene and loss of chlorophyll in cool-season grass species. The objective of this study was to determine whether foliar-spraying the ethylene inhibitor, aminoethoxyvinylglycine (AVG), may suppress heat-induced leaf senescence through effects on chlorophyll synthesis and degrading enzymes in creeping bentgrass (Agrostis stolonifera). Plants were maintained in environmentally controlled growth chambers under non-stress (22/17 °C day/night) or heat stress (35/30 °C day/night) temperature conditions for 25 days, and turf quality, electrolyte leakage, and chlorophyll content were measured to assess the extent of leaf senescence. Activities of chlorophyll-synthesizing and chlorophyll-degrading enzymes were quantified to determine whether AVG may regulate chlorophyll metabolism. Plants were foliar-sprayed with 25 µm AVG before and during heat stress at 7-day intervals. From 21 through 25 days of heat stress, AVG-treated plants had significantly higher turf quality and chlorophyll content, whereas electrolyte leakage was significantly lower in comparison with untreated controls. The activity of a chlorophyll-synthesizing enzyme, porphobilinogen deaminase, was significantly increased in AVG-treated plants at 21 days of heat stress. The activity of chlorophyll-degrading enzymes was significantly lower in plants treated with AVG from 14 through 25 days of heat stress for peroxidase, from 21 through 25 days of heat stress for pheophytinase, and at 25 days of heat stress for chlorophyllase. AVG may have suppressed heat-induced leaf senescence by regulating chlorophyll metabolic activities in cool-season grass species.
氨基乙氧基乙烯基甘氨酸抑制匍匐草热致叶片衰老与叶绿素代谢调控
冷季禾草叶片衰老与乙烯的积累和叶绿素的损失有关。本研究旨在研究叶面喷施乙烯抑制剂aminoethoxyvinylglycine (AVG)是否能通过对匍匐草(Agrostis stolonifera)叶绿素合成和降解酶的影响来抑制热致叶片衰老。在无胁迫(22/17°C昼夜)或热胁迫(35/30°C昼夜)温度条件下,将植物置于环境控制的生长室内25天,测量草皮质量、电解质泄漏和叶绿素含量,以评估叶片衰老的程度。通过测定叶绿素合成酶和叶绿素降解酶的活性来确定AVG是否可能调节叶绿素代谢。在高温胁迫之前和期间,每隔7天对植株喷施25µm AVG。从热胁迫的第21天到第25天,avg处理的草皮质量和叶绿素含量显著高于未处理的对照,而电解质泄漏显著低于未处理的对照。在热胁迫21 d时,avg处理的植株叶绿素合成酶卟绿胆素原脱氨酶活性显著升高。在过氧化物酶热胁迫14 ~ 25 d、叶绿素酶热胁迫21 ~ 25 d和叶绿素酶热胁迫25 d, AVG处理植株叶绿素降解酶活性显著降低。AVG可能通过调节冷季牧草叶绿素代谢活性来抑制热致叶片衰老。
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来源期刊
CiteScore
3.80
自引率
0.00%
发文量
31
审稿时长
2 months
期刊介绍: The Journal of the American Society for Horticultural Science publishes papers on the results of original research on horticultural plants and their products or directly related research areas. Its prime function is to communicate mission-oriented, fundamental research to other researchers. The journal includes detailed reports of original research results on various aspects of horticultural science and directly related subjects such as: - Biotechnology - Developmental Physiology - Environmental Stress Physiology - Genetics and Breeding - Photosynthesis, Sources-Sink Physiology - Postharvest Biology - Seed Physiology - Postharvest Biology - Seed Physiology - Soil-Plant-Water Relationships - Statistics
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