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首页> 外文期刊>Journal of the American Society for Horticultural Science >Sucrose accumulation and related metabolizing enzyme activities in seededand induced parthenocarpic muskmelons
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Sucrose accumulation and related metabolizing enzyme activities in seededand induced parthenocarpic muskmelons

机译:种子和诱导单性结实甜瓜中的蔗糖积累和相关的代谢酶活性

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To clarify the cause of low sucrose accumulation in seedless I Crest Earl's' netted muskmelon [Cucumis melo L. (Reticulatus Group)] fruit induced by CPPU, the activity level of sucrose metabolizing enzymes was compared between seeded and seedless fruit. CPPU promoted growth of the ovary in both pollinated and nonpollinated flowers until 10 days after anthesis (DAA), and thereafter the growth rate of nonpollinated fruit was lower than in the controls. Sucrose accumulation of seedless fruit remained lower than in seeded fruit, but there was no difference in fructose and glucose content between seeded and seedless fruit. Acid invertase activity declined sharply 20 DAA in seeded and seedless fruit, and was hardly detectable at 35 DAA, when sucrose accumulation began. Neutral invertase (NI) activity in both seeded and seedless fruit decreased from 20 DAA until 35 DAA; thereafter, NI activity in seeded fruit remained relatively constant, with a small but insignificant increase in maturity. Sucrose synthase (SS-c: sucrose cleavage direction) activity in seeded fruit decreased from 20 to 30 DAA, and then increased as fruit matured, while SS-c activity in seedless fruit did not change during development. Sucrose phosphate synthase (SPS) activity in seeded fruit increased from 25 to 30 DAA and remained relatively constant until harvest. SPS activity in seedless fruit declined gradually from 30 to 45 DAA, then remained at a low level. Sucrose synthase (SS-s: sucrose synthesis direction) activity in seeded fruit increased rapidly after 30 DAA, concomitant with sucrose accumulation. In contrast, SS-s activity in seedless fruit increased only slightly after 30 DAA indicating levels of SS-s activity are closely related to sucrose accumulation in parthenocarpic seedless muskmelons. Chemical name used: [1-(2-chloro-4-pyridyl)-3-phenylurea] (CPPU).
机译:为了弄清CPPU诱导的无籽I Crest Earl的网状甜瓜[Cucumis melo L.(网状菌群)]中蔗糖积累低的原因,比较了有籽和无籽水果中蔗糖代谢酶的活性水平。 CPPU促进授粉和未授粉花中子房的生长,直到开花后10天(DAA),此后未授粉果实的生长速度低于对照组。无核果的蔗糖积累仍然低于有籽果,但无核果果糖和葡萄糖含量没有差异。蔗糖开始积累时,有籽和无核果中的酸性转化酶活性急剧下降20 DAA,在35 DAA几乎检测不到。种子和无核果实中的中性转化酶(NI)活性从20 DAA降低到35 DAA。此后,种子果实中的NI活性保持相对恒定,成熟度略有增加,但微不足道。种子果实中的蔗糖合酶(SS-c:蔗糖裂解方向)活性从20 DAA降低到30 DAA,然后随着果实成熟而增加,而无核果实中的SS-c活性在发育过程中没有变化。种子果实中的蔗糖磷酸合酶(SPS)活性从25 DAA增加到30 DAA,并保持相对恒定直至收获。无核果实中的SPS活性从30 DAA逐渐下降到45 DAA,然后保持在较低水平。 30 DAA后,种子果实中的蔗糖合酶(SS-s:蔗糖合成方向)活性迅速增加,并伴随蔗糖积累。相反,无籽果实中SS-s活性仅在30 DAA后才略有增加,这表明SS-s活性水平与单性结实无核甜瓜中的蔗糖积累密切相关。使用的化学名称:[1-(2-氯-4-吡啶基)-3-苯基脲](CPPU)。

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