Effect of storage conditions on seed quality of soybean (Glycine max L.) germplasm

被引:7
作者
Koskosidis, Avraam [1 ]
Khah, Ebrahim M. [1 ]
Pavli, Ourania, I [1 ]
Vlachostergios, Dimitrios N. [2 ]
机构
[1] Univ Thessaly, Sch Agr Sci, Dept Agr Crop Prod & Rural Environm, Lab Plant Breeding, Fytokou Str, Volos 38446, Greece
[2] Inst Ind & Forage Crops, Hellen Agr Org Demeter, Larisa 41335, Greece
关键词
soybean storage; longevity; germination; electric conductivity; free fatty acids; MOISTURE-CONTENT; ELECTRICAL-CONDUCTIVITY; TEMPERATURE; GERMINATION; DETERIORATION; PARAMETERS; LONGEVITY; VIABILITY; GENOTYPES; VIGOR;
D O I
10.3934/agrfood.2022025
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Soybean is one of the most important oil seed crops. However, soybean seed is structurally weak and inherently short-lived, making the crop vulnerable to long period storage. Thus, it is crucial to study the effect of storage conditions on the quality of soybean seeds (Glycine max L.). The genetic material consisted of 10 soybean varieties, whose seeds were stored under both cooling (refrigerator) and room temperature conditions and were subsequently subjected to germination test, electric conductivity test and estimation of free fatty acids percentage. In order to determine the long-term effects of storage on seed quality, all genotypes were subjected to accelerated ageing at 40 degrees C up to 48 days and viability equation was used to determine the Ki value. Overall findings revealed the significant effect of storage conditions on seed quality and, at the same time, underlined the beneficial effect of storage under cooling conditions, which is expressed as higher germination percentage, reduced electric conductivity and free fatty acids percentage and improved storage longevity. Further, our data provide conclusive evidence for the qualitative superiority of the varieties Adonai, Celina and Neoplanta, especially upon storage under cooling conditions, as they were characterized by higher germination percentage and improved tolerance to storage (storage potential).
引用
收藏
页码:387 / 402
页数:16
相关论文
共 46 条
[1]  
Abba EJ, 1999, SEED SCI TECHNOL, V27, P101
[2]  
Akter N., 2014, The Agriculturists, V12, P85
[3]  
Al-Yahya SA, 2001, J AGRON CROP SCI, V186, P273, DOI [10.1046/j.1439-037x.2001.00402.x, 10.1046/j.1439-037X.2001.00402.x]
[4]  
Ali I., 2017, INT J BIOSCI, V10, P372, DOI DOI 10.12692/ijb/10.5.372-381
[5]  
[Anonymous], 2016, INT J CURR MICROBIOL, DOI DOI 10.20546/IJCMAS.2016.507.053
[6]  
Balesevic-Tubic S., 2005, Helia, V28, P107, DOI 10.2298/HEL0542107B
[7]  
Balesevic-Tubic S., 2010, Helia, V33, P153, DOI 10.2298/HEL1052153B
[8]  
Bellaloui N., 2010, Agricultural Sciences, V1, P102, DOI 10.4236/as.2010.13013
[9]  
Binotti FFDS, 2008, ACTA SCI-AGRON, V30, P247, DOI 10.4025/actasciagron.v30i2.1736
[10]  
DELOUCHE J C, 1973, Seed Science and Technology, V1, P671