首页|不同油梨品种果面蜡质超微结构和组分分析

不同油梨品种果面蜡质超微结构和组分分析

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[目的]明确不同油梨品种果面蜡质的微观结构和化学组成,为深入研究蜡质功能提供基础数据.[方法]以5个不同油梨品种(Peterson、RKYYL6-2、Pollock、Walter Hole和RKYYL8-13)为研究材料,利用阿拉伯树胶分离果实外蜡,通过三氯甲烷提取果实内蜡,利用扫描电镜、GC-MS和GC-F1D对油梨果面蜡质的超微结构、化学成分及含量进行研究.[结果]油梨蜡质的晶体结构主要为相互堆叠的片状和颗粒状.油梨外蜡的化学成分由六大类物质组成,分别为烷烃、醛类、酸类、醇类、甾醇和单酰甘油;除以上物质外,油梨内蜡的化学成分还包括生育酚.5个油梨品种的外蜡含量为0.17~0.87 µg·cm 2,内蜡含量为2.00~8.22 µg·cm-2;其中,RKYYL6-2的外蜡、内蜡含量最低,而Walter Hole的外蜡、内蜡含量最高.进一步对外蜡、内蜡各组分含量在不同品种间进行统计分析,结果表明,Walter Hole外蜡、内蜡中的烷烃(C27除外)、醛类、酸类和醇类含量高于其他品种,且Walter Hole内蜡中的生育酚含量在5个品种中最高:Peter-son外蜡、内蜡中的甾醇含量在所有品种中最高;Peterson外蜡中的单酰甘油含量显著高于其他品种,而Walter Hole内蜡中的单酰甘油含量在5个品种中最高.[结论]油梨蜡质的晶体结构通常为片状和颗粒状,不同油梨品种的果实在外蜡、内蜡的含量和化学组成上差异明显.研究结果为进一步明确油梨蜡质的生物学功能奠定了基础.
Ultramicrostructural and compositional analyses of fruit cuticular wax in different avocado varieties
[Objective]The fruit surface is covered with the cuticular wax layer composed of very long-chain fatty acids(VLCFA)and their derivatives and alicyclic compounds.The fruit cuticular wax can re-duce postharvest water loss,and prevent the invasion of microorganisms and pathogens,playing an im-portant role in the growth,development and post-harvest storage of fruit.Avocado(Persea americana Mill.)is one of the typical climacteric fruit,and postharvest water loss and rot of fruit often occur,caus-ing huge economic losses.However,there have been few reports on the study of avocado fruit cuticular wax.This study aimed to clarify the microstructure and chemical composition of the fruit cuticular wax in different avocado varieties,and provide basic data for further research on the cuticular wax functions.[Methods]In this work,5 avocado varieties(Peterson,RKYYL6-2,Pollock,Walter Hole and RKYYL8-13)were used for the analysis of the fruit cuticular wax.Firstly,we observed the ultrastruc-ture of the avocado fruit cuticular wax using the scanning electron microscope,and then separated and extracted the epicuticular wax and intracuticular wax of the avocado fruit.The extraction methods of the epicuticular wax and intracuticular wax were as follows:firstly the gum arabic was applied evenly on the surface of the avocado fruits to separate the epicuticular wax;then,the fruits were immersed to extract the intracuticular wax of the fruits.The chemical composition and content of epicuticular wax and intracuticular wax of avocado fruit were further analyzed by GC-MS and GC-FID.[Results]The observation of scanning electron microscope showed that the cuticular wax crystals on the avocado fruit surface were mainly plates and granules.At ×30 000 and × 100 000 magnification,the plates wax crys-tals were clearly found on the fruit surface on Peterson and RKYYL6-2.The crystals of the cuticular wax of Pollock were relatively small,but the plates structure could also be observed at × 100 000 magni-fication.The crystals of the cuticular wax of Walter Hole was relatively large,and the continuous cuticu-lar wax crystals could be observed at ×5000 magnification,and the crystal structure of cuticular wax of Walter Hole was also plates at ×30 000 and ×100 000 magnification.The crystal structure of the cuticu-lar wax of RKYYL8-13 was different from those of the above-mentioned varieties.At ×30 000 and × 100 000 magnification,the crystals of the cuticular wax of RKYYL8-13 appeared granular and closely stacked.Subsequently,we analyzed the content and chemical composition of the epicuticular wax and intracuticular wax of the 5 avocado varieties.The chemical composition of the avocado epicuticular wax consisted of six types of compounds,namely alkanes,aldehydes,fatty acids,alcohols,steroids and monoacylglycerols;besides the above compounds,the chemical composition of the avocado intracuticu-lar wax also included tocopherols.In terms of the carbon chain distribution of each component of the epicuticular wax,the carbon chain numbers of the alkanes included C23,C25,C27,C29 and C31,and the aldehydes were C30 and C32,the fatty acids were C28,C30 and C32,and the alcohols were C26,C28,C30,C32 and C34,the steroids included stigmasterol and β-Sitosterol,and monoacylglycerols in-cluded 1-Monopalmitin and 1-Monostearin.Besides the above wax components of the different carbon chain lengths,the intracuticular wax also contained C26 fatty acid,C34 fatty acid,δ-tocopherol,y-to-copherol and α-tocopherol.In terms of the cuticular wax content,the epicuticular wax content of the 5 avocado varieties ranged from 0.17 to 0.87 μg·cm-2,and the intracuticular wax content ranged from 2.00 to 8.22 μg·cm-2;the content of epicuticular wax and intracuticular wax of the RKYYL6-2 was the lowest among the 5 varieties,while Walter Hole was the highest.In most varieties,the alkane had the highest content among the components of the epicuticular wax and intracuticular wax.The intracuticu-lar wax embedded in the cutin and the epicuticular wax covered the outermost layer and together formed the cuticular wax.In terms of the total cuticular wax(the sum of epicuticular wax and intracutic-ular wax),the variety with the lowest total cuticular wax content was RKYYL6-2,only 2.17 μg·cm-2;Walter Hole had the highest total wax content,up to 9.09 μg·cm-2;and Peterson,Pollock and RKYYL8-13 had similar total cuticular wax content of 4.13,4.29 and 4.73 μg·cm-2,respectively.In terms of the proportion of the fruit epicuticular wax and intracuticular wax in the total cuticular wax,among the 5 avocado varieties,the content of the epicuticular wax of avocado only accounted for 8.02%-12.81%of the total wax content,while the content of the intracuticular wax accounted for 87.19%-91.99%.There-fore,the proportion of the intracuticular wax in the total cuticular wax was much higher than that of the epicuticular wax.[Conclusion]The crystal structure of avocado wax was usually plates or granular,and different avocado varieties apparently differed in the content and chemical composition of the epicu-ticular wax and intracuticular wax.The research results would be helpful for further clarification of the biological functions of the cuticular wax of avocado fruits.

AvocadoFruitCuticular wax

薛唯佳、张佳丽、李艳霞、马蔚红、刘进平、王甲水、杨宏宾

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海南大学热带农林学院,海南儋州 571737

中国热带农业科学院热带作物品种资源研究所,海口 571101

油梨 果实 表皮蜡质

中央级公益性科研院所基本科研业务费专项海南省重点研发计划

1630092023006ZDYF2024XDNY236

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(5)