T. Seo, 서 태철, S. An, H. Jang, C. Nam, H. Chun, Young chul Kim, Taegu Kang, Sang Hee Lee, 안 세웅, 장 현우, 남 춘우, 김 영철, 강 태경, 이 상희
{"title":"通过DQI与短期相对生长率的关系分析确定纸筒盆栽番茄嫁接苗品质","authors":"T. Seo, 서 태철, S. An, H. Jang, C. Nam, H. Chun, Young chul Kim, Taegu Kang, Sang Hee Lee, 안 세웅, 장 현우, 남 춘우, 김 영철, 강 태경, 이 상희","doi":"10.12791/ksbec.2018.27.4.302","DOIUrl":null,"url":null,"abstract":"Using cylindrical paper pot nursery method, three kinds of commercial tomatoes ‘Dafnis’, ‘DOTAERANG DIA’ and ‘Maescala’ were grafted onto a commercial rootstock ‘B blocking’. From 10 to 40 days after graft-take, growth traits of seedlings were investigated by 0.5, 1.0 and 2.0S treatments of standard nutrient solution(S) for seedling growth, and top to root ratio(TRR), compactness(CP) and Dickson Quality Index(DQI) were calculated. Two weeks after transplanting of the seedlings under three different night temperature targeting to 10, 15, and 25C, which were not precisely controlled, the relative growth rate (RGR) was investigated. The quantitative growth traits of grafted seedlings increased with increasing fertilizer concentration, and various range of seedling size could be produced. Compactness and DQI were significantly regressed (Adj R = 0.9480). Short-term RGR after transplanting was higher at 1.0S treatment of standard nutrient solution at the seedling age of 30 days and 40 days after grafttake(DAGT). DQI and RGR were significantly regressed linearly at respective fertigation strength. Specially the diminishing slope of RGR was lower at 1.0S fertigation strength with the increase of DQI than others. The results indicate that DQI could be applied as a quality index of grafted tomato seedlings and the relation analysis between DQI and short-term RGR also could be used to determine the good quality seedlings of grafted tomato grown in cylindrical paper pot. 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引用次数: 4
摘要
采用圆柱形纸盆育苗方法,将“Dafnis”、“DOTAERANG DIA”和“Maescala”三种商业番茄嫁接到“B block”商业砧木上。在嫁接后10 ~ 40 d,分别用0.5、1.0和2.0S的标准营养液(S)处理幼苗生长,研究幼苗的生长性状,并计算顶根比(TRR)、密实度(CP)和Dickson质量指数(DQI)。苗木移栽2周后,在10、15、25℃3种夜间温度条件下进行相对生长率(RGR)测定。嫁接苗的数量生长性状随施肥浓度的增加而增加,可产生不同大小的苗。密实度和DQI显著回归(Adj R = 0.9480)。苗龄30 d和嫁接后40 d (DAGT)标准营养液处理1.0S时,移栽后短期RGR较高。DQI和RGR在不同施肥强度下呈显著线性回归。特别是在1.0S施肥强度下,随着DQI的增加,RGR的递减斜率较低。结果表明,DQI可作为番茄嫁接苗的质量指标,DQI与短期RGR的关系分析也可用于判断纸筒盆栽番茄嫁接苗的质量。附加关键词:育苗、测定、标准、性能、绝对生长率
An Approach to Determine the Good Seedling Quality of Grafted Tomatoes (Solanum Lycopersicum) Grown in Cylindrical Paper Pot Through the Relation Analysis between DQI and Short-Term Relative Growth Rate
Using cylindrical paper pot nursery method, three kinds of commercial tomatoes ‘Dafnis’, ‘DOTAERANG DIA’ and ‘Maescala’ were grafted onto a commercial rootstock ‘B blocking’. From 10 to 40 days after graft-take, growth traits of seedlings were investigated by 0.5, 1.0 and 2.0S treatments of standard nutrient solution(S) for seedling growth, and top to root ratio(TRR), compactness(CP) and Dickson Quality Index(DQI) were calculated. Two weeks after transplanting of the seedlings under three different night temperature targeting to 10, 15, and 25C, which were not precisely controlled, the relative growth rate (RGR) was investigated. The quantitative growth traits of grafted seedlings increased with increasing fertilizer concentration, and various range of seedling size could be produced. Compactness and DQI were significantly regressed (Adj R = 0.9480). Short-term RGR after transplanting was higher at 1.0S treatment of standard nutrient solution at the seedling age of 30 days and 40 days after grafttake(DAGT). DQI and RGR were significantly regressed linearly at respective fertigation strength. Specially the diminishing slope of RGR was lower at 1.0S fertigation strength with the increase of DQI than others. The results indicate that DQI could be applied as a quality index of grafted tomato seedlings and the relation analysis between DQI and short-term RGR also could be used to determine the good quality seedlings of grafted tomato grown in cylindrical paper pot. Additional key words : raising seedling, determination, criteria, performance, absolute growth rate