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首页> 外文期刊>Korean Journal of Horticultural Science & Technology >Effect of Tyvex Mulching and Trickle Irrigation on Fruit Quality in Satsuma Mandarin (Citrus unshiu Mark.)
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Effect of Tyvex Mulching and Trickle Irrigation on Fruit Quality in Satsuma Mandarin (Citrus unshiu Mark.)

机译:地勤和滴灌对萨摩柑(Sitrus unshiu Mark。)果实品质的影响

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摘要

This study was conducted to investigated effects of water relation of mulching and trickle irrigation on the external and internal fruit quality in Satsuma mandarin grafted on trifoliate orange rootstock in a orchard assigned to randomly three groups;whole period of Tyvex mulching [TM], Tyvex mulching with trickle irrigation once a week from October 22 to harvesting season (WM) and non-mulching treatment (NM). The average soil moisture content in the TM was lower than the WM during the time of trickle irrigation from Oct. 21 to Nov. 28. The leaf water potential was at the level of Wmax of -1.5 to -2.5 MPa during whole period of Tyvex mulching treatment but gradually increased at the point of supplement of water. The water and osmotic potential in juice vesicle was decreased by drought but increased again in response to the supply of water in WM. The total soluble solids (TSS) in fruit juice was increased by drought stress, but diminished in response to supply of water after drought. The content oftitratible acidity was increased by drought stress but gradually decreased due to supplement of water after drought, reached it at the level of 1%. It was suggested that the accumulation of the total soluble solids compensates the degree of active osmoregulation and the decrease in content of acidity accounts for the fast respiration and water uptake resulted of the water after drought.
机译:这项研究旨在调查随机分为三组的果园中,覆盖和滴灌的水关系对嫁接于三叶橙砧木的萨摩柑桔的内部和外部水果品质的影响。从10月22日到收割季节(WM)每周进行一次滴灌,并进行非覆盖处理(NM)。在10月21日至11月28日的滴灌期间,TM中的平均土壤水分含量低于WM。在整个特卫强期间,叶片水势处于-1.5至-2.5 MPa的Wmax水平。覆盖处理,但在补充水分时逐渐增加。干旱降低了果汁囊泡中的水和渗透势,但随着WM的供水而再次增加。干旱胁迫会增加果汁中的总可溶性固形物(TSS),但干旱后响应水的供应而减少。干旱胁迫使可处理酸的含量增加,但由于补充水分而逐渐降低,达到1%的水平。有人提出,总可溶性固形物的积累补偿了活性渗透作用的程度,而酸度含量的下降是干旱后水快速呼吸和吸水的原因。

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