Chlorophyll and Protein Changes Observed Post Co-Cultivation of Explants with Agrobacterium Tumefaciens in Soybean (Glycine max L. Merr.)

Q4 Biochemistry, Genetics and Molecular Biology American Journal of Biochemistry and Biotechnology Pub Date : 2022-04-01 DOI:10.3844/ajbbsp.2022.456.464
P. Mangena
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Abstract

: Although, Agrobacterium -mediated genetic transformation represents a major milestone in agricultural biotechnology for crop improvement against biotic and abiotic stresses. Further insights on the interactions between this bacterium and explants required for in vitro plant regeneration remain scant. This study investigated the changes in chlorophyll content and protein profiles of cotyledonary node explants co-cultivated with A. tumefaciens in soybean. Soybean seeds were germinated on MS medium supplemented with 4.0 mgL -1 6-BA to develop seedlings used for explant preparation and infection with Agrobacterium . The results indicated that 6-BA decelerated germination, inhibiting normal seedling development and resulting in stout seedlings with stunted epicotyls and reduced primary roots without lateral roots. According to these results, Agrobacterium co-cultured explants gave the mean chlorophyll content (mg g -1 ) ranging between 13.2±0.892 to 18.7±1.478 in all cultivars, compared to the controls at 14.2±0.113 to 50.5±18.04. Protein lysates derived from these explants contained a combination of high and low molecular weight proteins, in which expressed predominant protein concentration ranged between 10-100 kDa for control explants and 10-120+ kDa for Agrobacterium infected and co-cultured cotyledonary tissues. This study revealed changes in chlorophyll and protein profile post-co-cultivation of explants with Agrobacterium , thus, providing further insights on the role of this bacterium on explant response for subsequent in vitro genetic transformation in soybean
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大豆外植体与农杆菌共培养后叶绿素和蛋白质的变化
尽管如此,农杆菌介导的遗传转化代表了农业生物技术中作物抗生物和非生物胁迫改良的一个重要里程碑。进一步了解这种细菌和外植体之间的相互作用需要体外植株再生仍然不足。研究了大豆子叶结外植体与瘤胃芽胞杆菌共培养后叶绿素含量和蛋白质谱的变化。将大豆种子在添加4.0 mg -1 6-BA的MS培养基上萌发,形成用于外植体制备和农杆菌侵染的幼苗。结果表明,6-BA抑制了发芽,抑制了幼苗的正常发育,导致幼苗粗壮,上胚轴发育不良,原生根减少,无侧根。结果表明,农杆菌共培养外植体的平均叶绿素含量(mg g -1)为13.2±0.892 ~ 18.7±1.478,而对照为14.2±0.113 ~ 50.5±18.04。从这些外植体中提取的蛋白溶出物含有高分子量和低分子量的蛋白,其中表达的优势蛋白浓度在10-100 kDa之间,在农杆菌感染和共培养的子叶组织中表达的优势蛋白浓度在10-120+ kDa之间。本研究揭示了与农杆菌共培养后外植体叶绿素和蛋白质谱的变化,从而进一步了解农杆菌在大豆外植体反应中的作用,为随后的离体遗传转化提供依据
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来源期刊
American Journal of Biochemistry and Biotechnology
American Journal of Biochemistry and Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
0.70
自引率
0.00%
发文量
27
期刊介绍: :: General biochemistry :: Patho-biochemistry :: Evolutionary biotechnology :: Structural biology :: Molecular and cellular biology :: Molecular medicine :: Cancer research :: Virology :: Immunology :: Plant molecular biology and biochemistry :: Experimental methodologies
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