首页> 外文期刊>Functional Plant Biology >The high fruit soluble sugar content in wild Lycopersicon species and their hybrids with cultivars depends on sucrose import during ripening rather than on sucrose metabolism.
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The high fruit soluble sugar content in wild Lycopersicon species and their hybrids with cultivars depends on sucrose import during ripening rather than on sucrose metabolism.

机译:野生番茄品种及其与栽培种的杂种中较高的水果可溶性糖含量取决于成熟期间蔗糖的进口而不是蔗糖代谢。

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摘要

Soluble sugar content has been studied in relation to sucrose metabolism in the hexose-accumulating cultivated tomato Lycopersicon esculentum Mill, the wild relative species Lycopersicon cheesmanii Riley, in the sucrose-accumulating wild relative species Lycopersicon chmielewskii Rick, Kesicky, Fobes & Holle. and in two hexose-accumulating interspecific F1 hybrids (L. esculentum x L. cheesmanii; L. esculentum x L. chmielewskii), cultivated under two irrigation regimes (control: EC=2.1 and saline: EC=8.4 dS m-1). Under control conditions the total soluble sugar content (as hexose equivalents) in the ripe fruits of L. cheesmanii was 3-fold higher than in L. esculentum, while L. chmielewskii and both F1 hybrids contained twice as much as the cultivar. With the exception of L. esculentum x L. cheesmanii, salinity increased the sugar content by 1.3 (wild species) and 1.7 times (cultivar and L. esculentum x L. chmielewskii) with respect to control fruits. Wild germplasm or salinity provided two different mechanisms for the increases in fruit sugar content. The hexoses accumulated in ripe fruits were strongly influenced by those accumulated at the start of ripening, but the hydrolysed starch before start of ripening only partially explained the final hexose levels and especially the increase under salinity. The early cell wall acid invertase and the late neutral invertase activities appeared to be related to the amount of hexoses accumulated in ripe fruits. However, no metabolic parameter was positively related to the amount of sugar accumulated (including sucrose). The major differences between genotypes appeared in ripe fruits, in which up to 50% of the total amount of sugars accumulated in the wild species (mainly in L. cheesmanii) and hybrids cannot be explained by the sugars accumulated and the starch hydrolysed before the start of ripening stage. As a consequence, the higher fruit quality of the wild species compared with L. esculentum may depend more on the continuation of sucrose import during ripening than on osmotic or metabolic particularities such as the hexose/sucrose-accumulator character or specific enzyme activities..
机译:在积累了蔗糖的栽培番茄Lycopersicon esculentum Mill(野生近缘种Lycopersicon cheesmanii Riley)中,研究了与蔗糖代谢有关的可溶性糖含量。并在两个积累了糖分的种间F1杂种中(esculentum x L. cheesmanii; esculentum x L. chmielewskii),在两种灌溉制度下进行栽培(对照:EC = 2.1和盐水:EC = 8.4 dS m-1)。在对照条件下,cheesmanii的成熟果实中的总可溶性糖含量(以己糖当量计)比L. esculentum高3倍,而L. chmielewskii和两个F1杂种所含的含量是品种的两倍。除番茄和切氏乳杆菌外,盐度相对于对照果实的含糖量分别增加了1.3(野生种)和1.7倍(品种和番茄和切米勒斯基)。野生种质或盐度为增加水果糖含量提供了两种不同的机制。成熟果实中积累的己糖受到成熟开始时积累的淀粉的强烈影响,但是成熟开始前的水解淀粉仅部分解释了最终己糖的含量,尤其是盐度下的升高。早期细胞壁酸性转化酶和晚期中性转化酶活性似乎与成熟果实中己糖的积累量有关。但是,代谢参数与糖(包括蔗糖)的累积量没有正相关。基因型之间的主要差异出现在成熟的果实中,其中野生物种(主要是cheesmanii)和杂种中积累的糖总量的多达50%不能用开始前积累的糖和水解的淀粉来解释。成熟阶段。结果,与食用番茄相比,野生物种较高的果实品质可能更多地取决于成熟过程中蔗糖进口的持续,而不是取决于渗透或代谢特性,例如己糖/蔗糖蓄积特性或特定酶活性。

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