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首页> 外文期刊>Saudi Journal of Biological Sciences >Minimization of post-harvest sucrose losses in drought affected sugarcane using chemical formulation
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Minimization of post-harvest sucrose losses in drought affected sugarcane using chemical formulation

机译:使用化学制剂最小化干旱受影响甘蔗的收获后蔗糖损失

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摘要

Sugarcane is a significant crop for production of sugar and ethanol in the world. In present perspective, drought is one of the frequently occurring abiotic stresses hampering the productivity of sugarcane causing heavy losses in sugar recovery. Post-harvest sugarcane deterioration attains more importance. Measures have been recommended in harvested canes to prevent these losses in general and under drought conditions but application of chemical formulation has not yet been tested over drought effected ones. Thus, we tried to investigate the efficacy of chemical formulation [Benzalkonium chloride (BKC)?+?Sodium metasilicate (SMS)] on sucrose losses occurring in harvested canes grown under drought and normal conditions. Results showed that application of chemical formulation had higher effect on drought canes in comparison to normal grown canes. Loss in cane weight was reduced to 8.25% and 11% in drought treated and normal treated grown canes, respectively, after 240?h of harvest in comparison to their respective control. In sucrose content and Commercial cane sugars %, drought treated canes showed an effect of BKC?+?SMS by reducing the losses to 1.26 units and 1.42 units, respectively, whereas in normal ones, reduction was of 0.38 units and 0.10 units, respectively. Biochemical analysis revealed that in reducing sugars, reduction in increase were of 44.51% and 25.50% in drought and normal grown canes, respectively, after 240?h of harvest. Dextran and soluble acid invertase estimations revealed that after application of BKC?+?SMS, reduction of dextran and invertase activity were of 49.74%, 66.84%, respectively, and 33.92%, 42.75%, respectively, in drought and normal grown canes, respectively. Total microbial load, showed effectiveness of 25.01% in drought grown canes while 14.41% in normal grown ones after 240?h of harvest. Our study was planned to use the anti-bacterial efficiency of both the chemicals over harvested canes so that the major sucrose losses occurring due to microbial deterioration could be inhibited. The use of this chemical formulation proves to be an effective one over post-harvest sucrose losses, particularly in drought grown canes.
机译:甘蔗是在世界上生产糖和乙醇的重要作物。目前,干旱是经常发生的非生物胁迫之一,阻碍甘蔗生产率导致糖恢复的重损失。收获后甘蔗恶化达到更多重要性。已经建议在收获的罐中建议采取措施,以防止这些损失一般,在干旱条件下,但尚未在干旱效果中进行化学制剂的应用。因此,我们尝试研究化学制剂[苯甲磺酸氯化物(BKC)吗(BKC)+ +?辛基酸钠(SMS)]在干旱和正常条件下发生的收获罐中发生的蔗糖损失的疗效。结果表明,与正常种植的孔相比,化学制剂的应用对干旱罐的影响较高。与它们各自的对照相比,甘蔗重量损失减少到干旱处理和正常处理的生长罐中的8.25%和11%。在蔗糖含量和商业蔗糖含量%中,干旱处理的罐分别通过将损失降低至1.26单位和1.42个单位,而在正常情况下,分别为1.26单位和1.42个单位的损失显示出BKC + +αsms的效果。分别为0.38单位和0.10单位。生物化学分析显示,在还原糖中,在收获240℃后,干旱和正常生长的罐子的增加减少44.51%和25.50%。葡聚糖和可溶性酸转化酶估计表明,在施用BKC + + +ΔSMS后,分别在干旱和正常生长的罐中分别为49.74%,66.84%,分别为49.74%,66.84%,分别为33.92%,42.75% 。总微生物载荷,干旱种植罐中的效果25.01%,而在收获240℃后,正常成长后14.41%。我们的研究计划利用所收获的罐的化学品的抗细菌效率,使得由于微生物劣化而发生的主要蔗糖损失可以抑制。这种化学制剂的使用证明是在收获后蔗糖损失的有效蔗糖损失,特别是在干旱种植的罐中。

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