首页> 外文期刊>Journal of Experimental Botany >The N-glycan processing enzymes alpha-mannosidase and beta-D-N-acetylhexosaminidase are involved in ripening-associated softening in the non-climacteric fruits of capsicum.
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The N-glycan processing enzymes alpha-mannosidase and beta-D-N-acetylhexosaminidase are involved in ripening-associated softening in the non-climacteric fruits of capsicum.

机译:N -聚糖加工酶α-甘露糖苷酶和β-D- N -乙酰基己糖胺酶参与辣椒的非更年期果实的成熟相关软化。

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Excessive softening of fruits during the ripening process leads to deterioration. This is of significant global importance as softening-mediated deterioration leads to huge postharvest losses. N-glycan processing enzymes are reported to play an important role during climacteric fruit softening: however, to date these enzymes have not been characterized in non-climacteric fruit. Two ripening-specific N-glycan processing enzymes, alpha-mannosidase ( alpha-Man) and beta-D-N-acetylhexosaminidase ( beta-Hex), have been identified and targeted to enhance the shelf life in non-climacteric fruits such as capsicum (Capsicum annuum). The purification, cloning, and functional characterization of alpha-Man and beta-Hex from capsicum, which belong to glycosyl hydrolase (GH) families 38 and 20, respectively, are described here. alpha-Man and beta-Hex are cell wall glycoproteins that are able to cleave terminal alpha-mannose and beta-D-N-acetylglucosamine residues of N-glycans, respectively. alpha-Man and beta-Hex transcripts as well as enzyme activity increase with the ripening and/or softening of capsicum. The function of alpha-Man and beta-Hex in capsicum softening is investigated through RNA interference (RNAi) in fruits. alpha-Man and beta-Hex RNAi fruits were approximately two times firmer compared with the control and fruit deterioration was delayed by approximately 7 d. It is shown that silencing of alpha-Man and beta-Hex enhances fruit shelf life due to the reduced degradation of N-glycoproteins which resulted in delayed softening. Altogether, the results provide evidence for the involvement of N-glycan processing in non-climacteric fruit softening. In conclusion, genetic engineering of N-glycan processing can be a common strategy in both climacteric and non-climacteric species to reduce the post-harvest crop losses.
机译:果实在成熟过程中过度软化会导致变质。这在全球范围内具有重要意义,因为软化介导的恶化会导致巨大的收获后损失。据报道,N i-聚糖加工酶在更年期水果软化过程中起着重要作用:然而,迄今为止,这些酶在非更年期水果中尚未得到表征。已鉴定出两种成熟特异性的 N -聚糖加工酶,α-甘露糖苷酶(α-Man)和β-D- N -乙酰基己糖胺酶(β-Hex),旨在延长非更年期水果(如辣椒( Capsicum annuum ))的货架期。此处描述了分别来自辣椒糖水解酶(GH)家族38和20的辣椒中α-Man和β-Hex的纯化,克隆和功能表征。 α-Man和β-Hex是细胞壁糖蛋白,能够切割N-聚糖的末端α-甘露糖和β-D-N-乙酰氨基葡糖残基。随着辣椒的成熟和/或软化,α -Man 和β -Hex 的转录本以及酶的活性增加。通过果实中的RNA干扰(RNAi)研究了α -Man 和β -Hex 在辣椒软化中的功能。与对照相比,α-Man和β-HexRNAi果实坚固约两倍,果实变质延迟了约7 d。结果表明,由于 N -糖蛋白的降解减少,导致α -Man 和β -Hex 沉默延长了水果的货架期,导致延迟软化。总之,结果提供了 N -聚糖加工参与非更年期水果软化的证据。总而言之,在更年期和非更年期的物种中, N -聚糖加工的基因工程都可以作为减少收获后作物损失的常见策略。

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