首页> 美国卫生研究院文献>Journal of Experimental Botany >Oilseed rape seeds with ablated defence cells of the glucosinolate–myrosinase system. Production and characteristics of double haploid MINELESS plants of Brassica napus L.
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Oilseed rape seeds with ablated defence cells of the glucosinolate–myrosinase system. Production and characteristics of double haploid MINELESS plants of Brassica napus L.

机译:油菜籽具有芥子油苷-黑芥子酶系统消融的防御细胞。甘蓝型油菜双单倍体MINLESS植物的生产及特性

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摘要

Oilseed rape and other crop plants of the family Brassicaceae contain a unique defence system known as the glucosinolate–myrosinase system or the ‘mustard oil bomb’. The ‘mustard oil bomb’ which includes myrosinase and glucosinolates is triggered by abiotic and biotic stress, resulting in the formation of toxic products such as nitriles and isothiocyanates. Myrosinase is present in specialist cells known as ‘myrosin cells’ and can also be known as toxic mines. The myrosin cell idioblasts of Brassica napus were genetically reprogrammed to undergo controlled cell death (ablation) during seed development. These myrosin cell-free plants have been named MINELESS as they lack toxic mines. This has led to the production of oilseed rape with a significant reduction both in myrosinase levels and in the hydrolysis of glucosinolates. Even though the myrosinase activity in MINELESS was very low compared with the wild type, variation was observed. This variability was overcome by producing homozygous seeds. A microspore culture technique involving non-fertile haploid MINELESS plants was developed and these plants were treated with colchicine to produce double haploid MINELESS plants with full fertility. Double haploid MINELESS plants had significantly reduced myrosinase levels and glucosinolate hydrolysis products. Wild-type and MINELESS plants exhibited significant differences in growth parameters such as plant height, leaf traits, matter accumulation, and yield parameters. The growth and developmental pattern of MINELESS plants was relatively slow compared with the wild type. The characteristics of the pure double haploid MINELESS plant are described and its importance for future biochemical, agricultural, dietary, functional genomics, and plant defence studies is discussed.
机译:油菜科的油菜和其他农作物含有独特的防御系统,称为芥子油苷-黑芥子酶系统或“芥末油炸弹”。 “芥末油炸弹”包括黑芥子酶和芥子油苷,是由非生物和生物压力触发的,导致形成有毒产品,例如腈和异硫氰酸盐。黑芥子酶存在于称为“黑芥子细胞”的专业细胞中,也可以称为有毒地雷。基因改造甘蓝型油菜的黑芥子细胞成纤维细胞,使其在种子发育过程中受到控制的细胞死亡(消融)。这些无黑素的无细胞植物因缺乏有毒的地雷而被命名为MINELESS。这导致油菜籽的生产同时降低了黑芥子酶水平和芥子油苷的水解。尽管MINELESS中的黑芥子酶活性与野生型相比非常低,但仍观察到变异。通过产生纯合种子克服了这种变异性。开发了一种涉及非能育单倍体MINELES植物的小孢子培养技术,并用秋水仙碱处理了这些植物,从而产生了具有完全育性的双重单倍体MINELES植物。双单倍体MINELESS植物显着降低了黑芥子酶水平和芥子油苷水解产物。野生型和MINELESS植物在生长参数(例如植物高度,叶片性状,物质积累和产量参数)上表现出显着差异。与野生型相比,MINELESS植物的生长和发育模式相对较慢。描述了纯双单倍体MINELESS植物的特性,并讨论了其在未来生化,农业,饮食,功能基因组学和植物防御研究中的重要性。

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