首页> 外文期刊>Brazilian Journal of Biology >Germina??o de sementes de Crotalaria e Lupinus (Fabaceae) submetidas a diferentes tratamentos pré-germinativos e o efeito da atividade enzimática na fase inicial da germina??o
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Germina??o de sementes de Crotalaria e Lupinus (Fabaceae) submetidas a diferentes tratamentos pré-germinativos e o efeito da atividade enzimática na fase inicial da germina??o

机译:猪屎豆和羽扇豆种子的发芽经历了不同的发芽前处理以及发芽初期酶活性的影响

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Most of the wild and native legume seeds has a hard and impermeable testa, which causes physical dormancy and prevents them from germinating even when environmental conditions are favorable. The study evaluated the effect of scarification treatments on germination and enzymatic activity of Crotalaria longirostrata ( Cl ) and Lupinus exaltatus ( Le ) seeds. After scarification treatments, germination percentage (GP) and rate (GR) were assessed during 30 days after seeding (DAS); and water absorption (WA) and specific enzymatic activity (SEA) during early germination (0, 6, 18, 36, 72, 120 h) in a growing chamber at 25 °C and photoperiod of 12 h. Scarification with 98% H 2 SO 4 15 min increased GP and GR in both species. At 30 DAS, GP and GR of Le seeds were 34% and 0.97 seeds day -1 , respectively. In Cl seeds, GP was 64% and GR 0.90 seeds day -1 . Scarification with H 2 O at 80 °C 1 min also promoted germination in Cl (52%). At 120 h after seeding, Le and Cl seeds showed already a high GP with acid scarification (31% and 48%, respectively). In seeds of both species, scarification treatments affected WA and SEA during early germination. During this period, scarification treatments that increased GP also showed a higher α-D-galactosidase activity. The maximum enzyme activity was observed 72 h after hot water scarification in Cl (82.6 U/mg total protein), followed by acid scarification (54.5 U/mg total protein). In Le , the activity peak was 36 h after acid scarification (9.5 U/mg total protein). No relationship was observed between β-glucosidase activity and GP in both species. In conclusion, during early germination of both species, the increase in GP is accompanied by a rise in α-D-galactosidase activity between 36 and 72 h after seeding; and in Cl seeds, an alternative scarification treatment to increase GP may be the use of hot water.
机译:大多数野生和本土豆类种子具有坚硬且不可渗透的种皮,即使在有利的环境条件下,也可导致身体休眠并阻止其发芽。该研究评估了划痕处理对猪屎豆(Ctalalaria longirostrata(Cl))和羽扇豆(Lupinus exaltatus(Le))种子发芽和酶活性的影响。划痕处理后,评估播种后30天内的发芽率(GP)和发芽率(GR);以及在25°C和12 h的光周期下的生长室中的早期萌发期间(0、6、18、36、72、120 h)的吸水率(WA)和比酶活性(SEA)。在两种物种中,使用98%H 2 SO 4进行的划痕15分钟均会增加GP和GR。在第30天DAS时,Le种子第-1天的GP和GR分别为34%和0.97种子。在Cl种子中,第-1天GP为64%,GR 0.90种子。在80°C下1分钟用H 2 O划痕也促进了Cl的发芽(52%)。播种后120小时,Le和Cl种子已经显示出高GP,带有酸稀疏性(分别为31%和48%)。在这两种物种的种子中,在早期发芽过程中,稀少化处理都会影响WA和SEA。在此期间,增加GP的松散处理也显示出较高的α-D-半乳糖苷酶活性。在热水中,Cl清除(82.6 U / mg的总蛋白质)后72小时观察到最大的酶活性,然后酸清除(54.5 U / mg的总蛋白质)。在Le中,活性峰出现在酸蚀后36小时(9.5 U / mg总蛋白)。在两个物种中都没有观察到β-葡萄糖苷酶活性和GP之间的关系。总之,在两个物种的早期发芽过程中,GP的增加伴随着种子播种后36至72小时内α-D-半乳糖苷酶活性的增加。在Cl种子中,增加GP的替代划痕疗法可能是使用热水。

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