首页> 外文期刊>Annals of Botany >Selection for low dormancy in annual ryegrass (Lolium rigidum) seeds results in high constitutive expression of a glucose-responsive -amylase isoform
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Selection for low dormancy in annual ryegrass (Lolium rigidum) seeds results in high constitutive expression of a glucose-responsive -amylase isoform

机译:在一年生黑麦草(黑麦草)种子中选择低休眠度会导致葡萄糖反应性淀粉酶同工型的高组成型表达

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Background and Aims: alpha -Amylase in grass caryopses (seeds) is usually expressed upon commencement of germination and is rarely seen in dry, mature seeds. A heat-stable alpha -amylase activity was unexpectedly selected for expression in dry annual ryegrass (Lolium rigidum) seeds during targeted selection for low primary dormancy. The aim of this study was to characterize this constitutive activity biochemically and determine if its presence conferred insensitivity to the germination inhibitors abscisic acid and benzoxazolinone. Methods: alpha -Amylase activity in developing, mature and germinating seeds from the selected (low-dormancy) and a field-collected (dormant) population was characterized by native activity PAGE. The response of seed germination and alpha -amylase activity to abscisic acid and benzoxazolinone was assessed. Using an alginate affinity matrix, alpha -amylase was purified from dry and germinating seeds for analysis of its enzymatic properties. Key Results: The constitutive alpha -amylase activity appeared late during seed development and was mainly localized in the aleurone; in germinating seeds, this activity was responsive to both glucose and gibberellin. It migrated differently on native PAGE compared with the major activities in germinating seeds of the dormant population, but the enzymatic properties of alpha -amylase purified from the low-dormancy and dormant seeds were largely indistinguishable. Seed imbibition on benzoxazolinone had little effect on the low-dormancy seeds but greatly inhibited germination and alpha -amylase activity in the dormant population. Conclusions: The constitutive alpha -amylase activity in annual ryegrass seeds selected for low dormancy is electrophoretically different from that in germinating seeds and its presence confers insensitivity to benzoxazolinone. The concurrent selection of low dormancy and constitutive alpha -amylase activity may help to enhance seedling establishment under competitive conditions.
机译:背景和目的:草圆头虾(种子)中的α-淀粉酶通常在发芽开始时表达,在干燥成熟的种子中很少见。意外地选择了一种热稳定的α-淀粉酶活性,以在低度初级休眠的目标选择期间在干燥的一年生黑麦草(刚性黑麦草)种子中表达。这项研究的目的是通过生物化学方法表征这种组成活性,并确定其存在是否对发芽抑制剂脱落酸和苯并恶唑啉酮不敏感。方法:通过天然活性PAGE对来自选定(低休眠)和田间采集(休眠)种群的发育,成熟和发芽种子中的α-淀粉酶活性进行表征。评估了种子发芽和α-淀粉酶活性对脱落酸和苯并恶唑啉酮的响应。使用藻酸盐亲和基质,从干燥和发芽的种子中纯化α-淀粉酶,以分析其酶学性质。关键结果:本构α-淀粉酶活性在种子发育后期出现,主要位于糊粉层中。在发芽的种子中,这种活性对葡萄糖和赤霉素都有反应。与在休眠种群的萌发种子中的主要活性相比,它在天然PAGE上的迁移不同,但是从低休眠和休眠种子中纯化的α-淀粉酶的酶学性质在很大程度上没有区别。种子在苯并恶唑啉酮上的吸收对低休眠种子几乎没有影响,但在休眠种群中极大地抑制了发芽和α-淀粉酶活性。结论:在低休眠度下选择的一年生黑麦草种子的组成型α-淀粉酶活性与发芽种子在电泳上有所不同,并且它的存在赋予对苯并恶唑啉酮不敏感。同时选择低休眠和组成型α-淀粉酶活性可能有助于在竞争条件下增强幼苗的生长。

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