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将金瓜与越南非甜瓜品种杂交,以提高甜瓜(Cucumis melo L.)的生长性能和果实品质。

Hybridization Between the Canary Melon and a Vietnamese Non-sweet Melon Cultivar Aiming to Improve the Growth Performance and Fruit Quality in Melon (Cucumis melo L.).

机构信息

Faculty of Biotechnology, Ho Chi Minh City Open University, 35-37 Ho Hao Hon Street, District 1, Ho Chi Minh City, Vietnam.

出版信息

Mol Biotechnol. 2024 Jul;66(7):1673-1683. doi: 10.1007/s12033-023-00806-y. Epub 2023 Jul 5.

Abstract

Canary melon has been widely consumed as a dessert fruit due to its fragrance, sweetness, and flavorful taste. However, the cultivation of this cultivar has been challenged in Vietnam because of its weak growth performance and high susceptibility to local pathogens. In this study, we aim to generate the hybrid melon lines between the Canary melon and a local non-sweet melon that are expected to produce good quality fruits as well as to show better growth performance in the local cultivation conditions. Two crossing pairs including (1) MS hybrid (♂ non-sweet melon × ♀ Canary melon) and (2) MN-S hybrid (♂ Canary melon × ♀ non-sweet melon) were carried out and two hybrid lines were subsequently obtained. Next, different phenotypic and physiological parameters such as stem length, stem diameter, 10th leaf diameter, fruit size, fruit weight, and fruit sweetness (pH, °Brix, and soluble sugar contents) were examined and compared between the parental lines (Canary melon and non-sweet melon) and the hybrid lines (MS and MN-S). The results showed that the stem length and fruit size and weight of MS and MN-S hybrids were higher than those of Canary melon. Basically, the content of sugars (sucrose, glucose, and fructose) is a primary and important factor in determining the sweetness of the melon. The pH, °Brix, sucrose and glucose contents of MS hybrid and Canary melon fruits were higher in comparison to MN-S and non-sweet melon fruits. Accordingly, the transcript levels of different sugar metabolism-related genes including SUCROSE SYNTHASE 1 (SUS1), SUS2, UDPGLC EPIMERASE 3 (UGE3), and SUCROSE-P SYNTHASE 2 (SPS2) were examined in all studied lines. In the fruits, the expression levels of these genes were found to be highest in the Canary melon, average in the MS hybrid, and relatively low in the MN-S hybrid and non-sweet melons. Taken together, the heterosis in terms of plant and fruit size was obviously observed in this crossing approach. The relatively high fruit sweetness in the MS hybrid (the mother is Canary melon) also implies that the choice of the mother for crossing is very important since it can determine the fruit quality of the offspring.

摘要

香瓜因其香味、甜味和美味而被广泛用作甜点水果。然而,由于其生长性能较弱且对当地病原体高度敏感,这种品种在越南的种植受到了挑战。在这项研究中,我们旨在生成香瓜和当地非甜瓜之间的杂交瓜系,预计这些瓜系既能生产出高质量的果实,又能在当地的种植条件下表现出更好的生长性能。进行了两个杂交对,包括(1)MS 杂种(♂非甜瓜×♀香瓜)和(2)MN-S 杂种(♂香瓜×♀非甜瓜),随后获得了两个杂种系。接下来,比较了亲本系(香瓜和非甜瓜)和杂种系(MS 和 MN-S)之间不同的表型和生理参数,如茎长、茎直径、第 10 叶直径、果实大小、果实重量和果实甜度(pH 值、°Brix 和可溶性糖含量)。结果表明,MS 和 MN-S 杂种的茎长和果实大小及重量均高于香瓜。基本上,糖(蔗糖、葡萄糖和果糖)的含量是决定瓜甜度的一个主要和重要因素。与 MN-S 和非甜瓜果实相比,MS 杂种和香瓜果实的 pH 值、°Brix、蔗糖和葡萄糖含量更高。因此,在所有研究的系中,检查了不同糖代谢相关基因(包括蔗糖合酶 1(SUS1)、SUS2、UDPGLC 差向异构酶 3(UGE3)和蔗糖磷酸合酶 2(SPS2))的转录水平。在果实中,发现这些基因在香瓜中的表达水平最高,在 MS 杂种中表达水平中等,而在 MN-S 杂种和非甜瓜中表达水平相对较低。总之,在这种杂交方法中,观察到植物和果实大小的杂种优势明显。MS 杂种(母本为香瓜)果实的相对较高甜度也意味着杂交时母本的选择非常重要,因为它可以决定后代果实的质量。

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