首页> 外文期刊>Postharvest Biology and Technology >Identification and characterization of two putative genes encoding acetyl-coenzyme A carboxylase subunits that are possibly associated with internal browning during cold storage of 'Hass' avocados (Persea americana Mill.).
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Identification and characterization of two putative genes encoding acetyl-coenzyme A carboxylase subunits that are possibly associated with internal browning during cold storage of 'Hass' avocados (Persea americana Mill.).

机译:鉴定和表征编码乙酰辅酶A羧化酶亚基的两个推定基因,这些基因可能与“ Hass”鳄梨冷藏期间的内部褐变有关(Persea americana Mill。)。

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Cold storage is widely used to extend the postharvest life of "Hass" avocados (Persea americana Mill.). However, prolonged low-temperature storage results in the development of chilling-induced physiological disorders. Additionally, the response of avocados to cold storage depends on their stage of maturity, as late-harvest avocados are more susceptible to developing physiological disorders than those that are harvested early in the season. To understand the molecular mechanisms that cause physiological disorders in cold-stored "Hass" avocados, we sought to identify and characterize the lipid metabolism-related genes. In this work, we focused our analysis on the genes that encode a multi-subunit acetyl-CoA carboxylase enzyme (MS-ACCase), which is one of the key enzymes in fatty acid biosynthesis. Two avocado MS-ACCase subunits were identified by in silico analysis, a biotin carboxylase (BC) and a biotin carboxyl carrier protein (BCCP). Transcriptional qPCR analyses of both identified gene subunits were performed in avocados that had been harvested both early and late in the season after 40 d of storage at 0 and 5 degrees C and subsequent ripening at 20 degrees C. For both harvest dates, PamACCase-BC and PamACCase-BCCP transcripts increased in ripe fruit after cold storage at 5 degrees C; this increase was significant for PamACCase-BCCP. A similar expression pattern was observed in ripe avocados from early-harvested fruit after cold storage at 0 degrees C; however, significant down-regulation of PamACCase-BC and PamACCase-BCCP expression was observed in ripe late-harvested avocados, suggesting that these fruit have senesced. A control study involving late-harvested avocados demonstrated that the expression of these genes did not change throughout ripening. Thus we suggest that the MS-ACCase BCCP subunit might be transcriptionally regulated during physiological disorder development in cold-stored "Hass" avocados
机译:冷藏广泛用于延长“ Hass”鳄梨的收获后寿命(Persea americana Mill。)。然而,长时间的低温储存导致了感冒引起的生理疾病的发展。此外,鳄梨对冷藏的反应取决于它们的成熟阶段,因为收获后期的鳄梨比本季节初收获的鳄梨更容易发生生理性疾病。为了了解在冷藏的“哈斯”鳄梨中引起生理失调的分子机制,我们试图鉴定和表征与脂质代谢相关的基因。在这项工作中,我们将分析重点放在编码多亚基乙酰辅酶A羧化酶(MS-ACCase)的基因上,该酶是脂肪酸生物合成中的关键酶之一。通过计算机分析确定了两个鳄梨MS-ACCase亚基,一个生物素羧化酶(BC)和一个生物素羧基载体蛋白(BCCP)。在鳄梨中进行了两个已鉴定基因亚基的转录qPCR分析,该鳄梨在0和5摄氏度下储存40 d,然后在20摄氏度下熟化后的季节的早晚收获。对于两个收获日期,PamACCase-BC冷藏5℃后成熟果实中PamACCase-BCCP转录产物增加;对于PamACCase-BCCP,这种增加是显着的。在0°C冷藏后,早期收获的果实中成熟的鳄梨中观察到类似的表达模式;然而,在成熟的后期收获的鳄梨中观察到PamACCase-BC和PamACCase-BCCP表达的显着下调,表明这些果实已衰老。一项涉及后期收获的鳄梨的对照研究表明,这些基因的表达在整个成熟过程中都没有改变。因此,我们建议MS-ACCase BCCP亚基可能在冷藏的“ Hass”鳄梨生理失调发生过程中受到转录调控。

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