首页> 美国卫生研究院文献>Springer Open Choice >Characterization of callase (β-13-d-glucanase) activity during microsporogenesis in the sterile anthers of Allium sativum L. and the fertile anthers of A. atropurpureum
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Characterization of callase (β-13-d-glucanase) activity during microsporogenesis in the sterile anthers of Allium sativum L. and the fertile anthers of A. atropurpureum

机译:大蒜不育花药和紫菜可育花药小孢子发生过程中Callase(β-13-d-葡聚糖酶)活性的表征

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摘要

We examined callase activity in anthers of sterile Allium sativum (garlic) and fertile Allium atropurpureum. In A. sativum, a species that produces sterile pollen and propagates only vegetatively, callase was extracted from the thick walls of A. sativum microspore tetrads exhibited maximum activity at pH 4.8, and the corresponding in vivo values ranged from 4.5 to 5.0. Once microspores were released, in vitro callase activity peaked at three distinct pH values, reflecting the presence of three callase isoforms. One isoform, which was previously identified in the tetrad stage, displayed maximum activity at pH 4.8, and the remaining two isoforms, which were novel, were most active at pH 6.0 and 7.3. The corresponding in vivo values ranged from pH 4.75 to 6.0. In contrast, in A. atropurpureum, a sexually propagating species, three callase isoforms, active at pH 4.8–5.2, 6.1, and 7.3, were identified in samples of microsporangia that had released their microspores. The corresponding in vivo value for this plant was 5.9. The callose wall persists around A. sativum meiotic cells, whereas only one callase isoform, with an optimum activity of pH 4.8, is active in the acidic environment of the microsporangium. However, this isoform is degraded when the pH rises to 6.0 and two other callase isoforms, maximally active at pH 6.0 and 7.3, appear. Thus, factors that alter the pH of the microsporangium may indirectly affect the male gametophyte development by modulating the activity of callase and thereby regulating the degradation of the callose wall.
机译:我们检查了无菌大蒜(大蒜)和可育大蒜素的花药中花药的酶活性。在不育花粉中仅产生营养性花粉的物种中,从厚实小孢子四倍体的厚壁中提取出愈伤组织,在pH 4.8时显示出最大的活性,相应的体内值在4.5至5.0的范围内。一旦释放了小孢子,体外愈伤组织活性在三个不同的pH值达到峰值,反映了三种愈伤组织同工型的存在。一种先前在四联体阶段鉴定出的同工型,在pH 4.8时显示出最大的活性,其余两种新的同工型在pH 6.0和7.3时活性最高。相应的体内值在pH 4.75至6.0之间。相比之下,在Atropurpureum中,有性繁殖的物种在释放出微孢子的小孢子囊样品中鉴定出了三种在pH 4.8-5.2、6.1和7.3下有活性的愈伤组织亚型。该植物的相应体内值是5.9。愈伤组织壁在A. sativum减数分裂细胞周围持续存在,而在酸性孢子囊的酸性环境中,只有一种具有最佳活性pH值4.8的愈伤组织同工酶是有活性的。但是,当pH升高至6.0时,该同工型会降解,并且会出现另外两种在pH 6.0和7.3下具有最大活性的愈伤组织同工酶。因此,改变微孢子囊pH的因素可通过调节call酶的活性从而调节regulating壁的降解而间接影响雄配子体的发育。

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