Cassava (Manihot esculenta Crantz) is the third largest source of calories in tropical countries and the sixth most important food crop in the World. However, the short shelf life of its storage roots after harvest du...Cassava (Manihot esculenta Crantz) is the third largest source of calories in tropical countries and the sixth most important food crop in the World. However, the short shelf life of its storage roots after harvest due to a rapid post-harvest physiological deterioration (PPD) makes the roots to be considered as a risky product to market. The objectives of this work were to investigate the influence of two harvest periods on cassava agronomic parameters and their physiological response to PPD. Three cassava cultivars 96/1414, I070593 and LMR were selected for the experiment and harvested at 10 and 12 months after planting (MAP). The response to PPD was assessed during storage at 0, 3, 8 and 15 days after harvest (DAH). Total proteins content, soluble sugars and starch, total polyphenols compounds, polyphenoloxidase and peroxidase activities were recorded during storage. Results showed large variation among the parameters at the two harvest periods across the cultivars. High number of tubers was recorded in all the cultivars at 12 MAP and a significant increase in storage roots length was observed in 96/1414 and LMR from 10 MAP to 12 MAP (25 ± 5.1 to 41.3 ± 5.9 and 22.6 ± 3.3 to 27.9 ± 4.8) respectively. A reduction of about 49% of tubers weight was observed in I070593 from 10 to 12 MAP while an increase of about 36% and 11% were recorded in LMR and 96/1414 respectively. Tubers from I070593 showed less susceptibility to PPD when harvested at 10 MAP compared to those from LMR and 96/1414 where less susceptibility to PPD were recorded at 12 MAP. An increase in soluble sugars content, total proteins content and peroxidase activity subsequently to a decrease in starch content were recorded during storage from 8 to 15 days after harvest especially at 10 MAP in I070593 and at 12 MAP in LMR and 96/1414. High content of total phenolic compounds and less activity of polyphenol oxidase were correlated to PPD susceptibility. This work opens a new insight issue of the consideration of the appropriate harvest time of the cultivars as a tool to better control the onset of postharvest physiological deterioration.展开更多
After harvest,cassava(Manihot esculenta Crantz)storage roots undergo rapid postharvest physiological deterioration,producing blue-brown discoloration in the vasculature due to the production of polyphenolics(mainly qu...After harvest,cassava(Manihot esculenta Crantz)storage roots undergo rapid postharvest physiological deterioration,producing blue-brown discoloration in the vasculature due to the production of polyphenolics(mainly quinonesand coumarins)by enzymes such as polyphenol oxidase(PPO).Here,we report the application of hen egg-white lysozyme(HEWL),a natural PPO inhibitor,in transgenic cassava to repress the symptoms of postharvest physiological deterioration.The HEWL-expressing transgenic plants had lower levels of the two main cassava coumarins tested,scopoletin and scopolin,compared with wild type.HEWL-expressing cassava also showed increased tolerance of oxidative stress.Overall,the lysozyme-PPO system proved to be functional in plants for repressing PPO-mediated commercial product browning.展开更多
The effects of treatment of chlorine dioxide (C1Oz) gas on postharvest physiology and preservation quality of green bell peppers were studied. Green bell peppers were collected in bags and treated with 0, 5, 10, 20,...The effects of treatment of chlorine dioxide (C1Oz) gas on postharvest physiology and preservation quality of green bell peppers were studied. Green bell peppers were collected in bags and treated with 0, 5, 10, 20, and 50 mg L^-1 ClO2 gas at 10±0.5℃ for over 40 d, and the changes in postharvest physiology and preservation quality of the peppers were evaluated during the storage. The inhibition of rot of the peppers was observed for all the tested ClO2 gas treatments. The rot rates of the treated samples were 50% lesser than those of the control after day 40 of storage. The highest inhibitory effect was obtained after 50 mg L^-1 ClO2 gas treatment, where the peppers did not decay until day 30 and showed only one-fourth of the rot rate of the control at day 40 of storage. The respiratory activity of the peppers was significantly (P〈0.05) inhibited by 20 and 50 mg L^-1 ClO2 treatments, whereas no significant effects on respiratory activity were observed with 5 and 10 mg L^-1 ClO2 treatments (P〉0.05). Except for 50 mg L^-1 ClO2, malondialdenyde (MDA) contents in the peppers treated with 5, 10, or 20 mg L^-1 ClO2 were not significantly (P〉0.05) different from those in the control. Degradation of chlorophyll in the peppers was delayed by 5 mg L-1ClO2, but promoted by 10, 20, or 50 mg L^-1 ClO2. The vitamin C content, titratable acidity, and total soluble solids of the peppers treated by all the tested ClO2 gas did not significantly change during the storage. The results suggested that ClO2 gas treatment effectively delayed the postharvest physiological transformation of green peppers, inhibited decay and respiration, maintained some nutritional and sensory quality, and retarded MDA accumulation.展开更多
采后失水是百香果果实在贮运流通和销售环节最显著的品质劣变特征之一,严重影响其商品价值。本文利用低场核磁共振技术(Low Field Nuclear Magnetic Resonance,LF-NMR)研究采后黄金百香果果实在贮藏过程中的失水过程,并解析失水规律与...采后失水是百香果果实在贮运流通和销售环节最显著的品质劣变特征之一,严重影响其商品价值。本文利用低场核磁共振技术(Low Field Nuclear Magnetic Resonance,LF-NMR)研究采后黄金百香果果实在贮藏过程中的失水过程,并解析失水规律与品质劣变的关系。LF-NMR结果显示,黄金百香果在贮藏过程中,果浆和果皮的质子密度大幅下降,与外观严重失水表现一致;此外,果实失水以自由水为主,其含量下降了14.98%,结合水在贮藏后期显著减少,失水程度与果实采后成熟和衰老进程有关。进一步研究表明,黄金百香果采后成熟期有两个呼吸高峰,此时失水及其引起的失重较小,果皮叶绿素减少和类胡萝卜素增加促进了亮度和色调升高,果浆可溶性固形物保持在较高含量,可滴定酸含量和果实硬度均下降,果实正常完成后熟,极少出现腐烂;而在果实衰老期,呼吸速率下降,失水和失重加剧,果皮类胡萝卜素的迅速减少降低了表面亮度和色泽,果浆可溶性固形物和可滴定酸含量以及果实硬度下降,腐烂率迅速升高。因此认为,黄金百香果完熟后严重失水,不仅造成果实失重、失鲜,还可加剧其生理代谢以及细胞和组织结构变化,降低果实耐贮性,加快品质劣变。本研究可为百香果采后失水劣变机制和相应保鲜控制技术研究提供参考,并为果蔬采后水分状态的无损检测提供借鉴。展开更多
研究新麦草(P sa thy rostachy s juncea Bozo isky)种子在自然老化和人工老化过程中的生理生化变化。结果表明:在自然和人工老化过程中,种子发芽率、发芽指数、脱氢酶和酸性磷酸酯酶活性降低;发芽指数和酸性磷酸酯酶活性的变化先于发芽...研究新麦草(P sa thy rostachy s juncea Bozo isky)种子在自然老化和人工老化过程中的生理生化变化。结果表明:在自然和人工老化过程中,种子发芽率、发芽指数、脱氢酶和酸性磷酸酯酶活性降低;发芽指数和酸性磷酸酯酶活性的变化先于发芽率,这是种子质量的敏感指标;种子可溶性糖泄漏随着老化程度的增加而增加;电导率与种子劣变程度的相关不显著。展开更多
文摘Cassava (Manihot esculenta Crantz) is the third largest source of calories in tropical countries and the sixth most important food crop in the World. However, the short shelf life of its storage roots after harvest due to a rapid post-harvest physiological deterioration (PPD) makes the roots to be considered as a risky product to market. The objectives of this work were to investigate the influence of two harvest periods on cassava agronomic parameters and their physiological response to PPD. Three cassava cultivars 96/1414, I070593 and LMR were selected for the experiment and harvested at 10 and 12 months after planting (MAP). The response to PPD was assessed during storage at 0, 3, 8 and 15 days after harvest (DAH). Total proteins content, soluble sugars and starch, total polyphenols compounds, polyphenoloxidase and peroxidase activities were recorded during storage. Results showed large variation among the parameters at the two harvest periods across the cultivars. High number of tubers was recorded in all the cultivars at 12 MAP and a significant increase in storage roots length was observed in 96/1414 and LMR from 10 MAP to 12 MAP (25 ± 5.1 to 41.3 ± 5.9 and 22.6 ± 3.3 to 27.9 ± 4.8) respectively. A reduction of about 49% of tubers weight was observed in I070593 from 10 to 12 MAP while an increase of about 36% and 11% were recorded in LMR and 96/1414 respectively. Tubers from I070593 showed less susceptibility to PPD when harvested at 10 MAP compared to those from LMR and 96/1414 where less susceptibility to PPD were recorded at 12 MAP. An increase in soluble sugars content, total proteins content and peroxidase activity subsequently to a decrease in starch content were recorded during storage from 8 to 15 days after harvest especially at 10 MAP in I070593 and at 12 MAP in LMR and 96/1414. High content of total phenolic compounds and less activity of polyphenol oxidase were correlated to PPD susceptibility. This work opens a new insight issue of the consideration of the appropriate harvest time of the cultivars as a tool to better control the onset of postharvest physiological deterioration.
基金supported by the National Key R&D Program of China(2018YFD1000500)China Agriculture Research System(CARS-11)。
文摘After harvest,cassava(Manihot esculenta Crantz)storage roots undergo rapid postharvest physiological deterioration,producing blue-brown discoloration in the vasculature due to the production of polyphenolics(mainly quinonesand coumarins)by enzymes such as polyphenol oxidase(PPO).Here,we report the application of hen egg-white lysozyme(HEWL),a natural PPO inhibitor,in transgenic cassava to repress the symptoms of postharvest physiological deterioration.The HEWL-expressing transgenic plants had lower levels of the two main cassava coumarins tested,scopoletin and scopolin,compared with wild type.HEWL-expressing cassava also showed increased tolerance of oxidative stress.Overall,the lysozyme-PPO system proved to be functional in plants for repressing PPO-mediated commercial product browning.
文摘The effects of treatment of chlorine dioxide (C1Oz) gas on postharvest physiology and preservation quality of green bell peppers were studied. Green bell peppers were collected in bags and treated with 0, 5, 10, 20, and 50 mg L^-1 ClO2 gas at 10±0.5℃ for over 40 d, and the changes in postharvest physiology and preservation quality of the peppers were evaluated during the storage. The inhibition of rot of the peppers was observed for all the tested ClO2 gas treatments. The rot rates of the treated samples were 50% lesser than those of the control after day 40 of storage. The highest inhibitory effect was obtained after 50 mg L^-1 ClO2 gas treatment, where the peppers did not decay until day 30 and showed only one-fourth of the rot rate of the control at day 40 of storage. The respiratory activity of the peppers was significantly (P〈0.05) inhibited by 20 and 50 mg L^-1 ClO2 treatments, whereas no significant effects on respiratory activity were observed with 5 and 10 mg L^-1 ClO2 treatments (P〉0.05). Except for 50 mg L^-1 ClO2, malondialdenyde (MDA) contents in the peppers treated with 5, 10, or 20 mg L^-1 ClO2 were not significantly (P〉0.05) different from those in the control. Degradation of chlorophyll in the peppers was delayed by 5 mg L-1ClO2, but promoted by 10, 20, or 50 mg L^-1 ClO2. The vitamin C content, titratable acidity, and total soluble solids of the peppers treated by all the tested ClO2 gas did not significantly change during the storage. The results suggested that ClO2 gas treatment effectively delayed the postharvest physiological transformation of green peppers, inhibited decay and respiration, maintained some nutritional and sensory quality, and retarded MDA accumulation.
文摘采后失水是百香果果实在贮运流通和销售环节最显著的品质劣变特征之一,严重影响其商品价值。本文利用低场核磁共振技术(Low Field Nuclear Magnetic Resonance,LF-NMR)研究采后黄金百香果果实在贮藏过程中的失水过程,并解析失水规律与品质劣变的关系。LF-NMR结果显示,黄金百香果在贮藏过程中,果浆和果皮的质子密度大幅下降,与外观严重失水表现一致;此外,果实失水以自由水为主,其含量下降了14.98%,结合水在贮藏后期显著减少,失水程度与果实采后成熟和衰老进程有关。进一步研究表明,黄金百香果采后成熟期有两个呼吸高峰,此时失水及其引起的失重较小,果皮叶绿素减少和类胡萝卜素增加促进了亮度和色调升高,果浆可溶性固形物保持在较高含量,可滴定酸含量和果实硬度均下降,果实正常完成后熟,极少出现腐烂;而在果实衰老期,呼吸速率下降,失水和失重加剧,果皮类胡萝卜素的迅速减少降低了表面亮度和色泽,果浆可溶性固形物和可滴定酸含量以及果实硬度下降,腐烂率迅速升高。因此认为,黄金百香果完熟后严重失水,不仅造成果实失重、失鲜,还可加剧其生理代谢以及细胞和组织结构变化,降低果实耐贮性,加快品质劣变。本研究可为百香果采后失水劣变机制和相应保鲜控制技术研究提供参考,并为果蔬采后水分状态的无损检测提供借鉴。
文摘研究新麦草(P sa thy rostachy s juncea Bozo isky)种子在自然老化和人工老化过程中的生理生化变化。结果表明:在自然和人工老化过程中,种子发芽率、发芽指数、脱氢酶和酸性磷酸酯酶活性降低;发芽指数和酸性磷酸酯酶活性的变化先于发芽率,这是种子质量的敏感指标;种子可溶性糖泄漏随着老化程度的增加而增加;电导率与种子劣变程度的相关不显著。