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首页> 外文期刊>Journal American Pomological Society >Growth and yield of 'Honeycrisp' apple trees with preplant inoculation with mycorrhizae and soil-incorporated compost.
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Growth and yield of 'Honeycrisp' apple trees with preplant inoculation with mycorrhizae and soil-incorporated compost.

机译:在种植前接种菌根和土壤混合堆肥的“蜜脆”苹果树的生长和产量。

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摘要

Preplant soil-incorporated compost, mycorrhizal inoculation (MI) at planting and the combination of the two (compost+MI) were tested over nine years for growth, yield and foliar analysis of 'Honeycrisp' apple (Malus x domestica) trees on two rootstocks, M.26 EMLA and G.16 planted in a site with mild replant disease. Mycorrhizal inoculation, measured in years 1, 5, 7 and 8, had no effect on foliar levels of most nutrients. Foliar Zn was increased by MI in year 5 from 14 to 17 mg.kg-1 in G.16 rootstock, but not with M.26 compared to an untreated control. In year 7, foliar Cu was increased from 7 to 8 mg.kg-1 by MI. Leaf N was higher with compost amended soil in years 2 and 3, lower in year 4, and similar to an untreated control in years 5 to 8. Leaf P and K. were generally greater with compost until years 4 to 5 when they were similar to the untreated control. Levels of Ca, Mg, B, Mn and Fe were inconsistently affected by compost from year to year. Compost increased shoot growth in year 2, but not when combined with MI. In years 1 and 3, compost had no effect on shoot growth. MI did not affect shoot growth in years 1 or 2, but increased it in year 3 in G.16 trees, but not M.26. In the first three years, trees produced very sparse bloom. In year 4, compost increased the number of flower clusters in both rootstocks, but not in M.26 rootstock when compost was combined with MI. In year 5, compost did not increase bloom. MI did not affect bloom in years 4 and 5. MI did not affect trunk cross sectional area (TCA) of G.16 in any year when compared to the untreated control. Compost increased TCA of G.16 in years 3 and 5, but not when combined with MI, and this combined treatment reduced TCA in year 4 compared to compost alone. MI increased TCA of M.26 in years 3, 4, 5, 7, 8 and 9. Compost increased TCA of M.26 in years 3, 4, and 5, and when combined with MI, increased TCA in years 3 and 5, but not in year 4. MI did not affect yield until year 8 for G.16 when it was reduced compared to the control. MI increased yield of M.26 in year 9, but had no effect in other years. Compost and compost+MI increased yield in years 6 and 8 in both rootstocks, and had reduced yield in trees on G.16 rootstock in years 7 and 9 as a result of biennial bearing. Compost and compost+MI trees on M.26 rootstock had reduced yield in year 9. Cumulative yield from years 4 through 9 was not affected by rootstock, compost or MI. The addition of compost or MI was found to increase tree growth and yield, but these effects were inconsistent between the two rootstocks and did not occur consistently in every year.
机译:在九年的时间里测试了种植前土壤结合的堆肥,菌根接种(MI)以及两者的结合(compost + MI)在两种砧木上对'Honeycrisp'苹果(Malus x domestica)树的生长,产量和叶片分析的测试。 ,M.26 EMLA和G.16种植在有轻度移植病的地方。在第1、5、7和8年进行的菌根接种对大多数营养素的叶面水平没有影响。与未经处理的对照相比,在第5年中,MI使G.16砧木中的锌含量从14 mg.kg -1 增加到17 mg.kg -1 ,而M.26则没有。在第7年,MI将叶面铜含量从7 mg.kg -1 增加到8 mg.kg -1 。在第2年和第3年,堆肥改良土壤的叶N较高,在第4年降低,而在第5至8年与未经处理的对照相似。在堆肥相似的第4至5年,叶片P和K.通常较高。到未经处理的对照。每年堆肥对Ca,Mg,B,Mn和Fe的含量影响均不一致。堆肥在第2年增加了枝条的生长,但与MI混合使用却没有。在第1年和第3年,堆肥对芽生长没有影响。 MI在第1年或第2年不影响苗的生长,但在G.16树中对第3年的苗增加,但对M.26没有影响。在头三年中,树木产生了非常稀疏的花朵。在第4年,当堆肥与MI混合时,堆肥增加了两种砧木的花簇数量,但没有增加M.26砧木的花簇数量。在第5年,堆肥没有增加开花。与未经处理的对照组相比,MI在任何年份都没有影响4和5年的开花。MI在任何一年都没有影响G.16的躯干横截面积(TCA)。堆肥在第3年和第5年增加了G.16的TCA,但与MI联合使用则没有,并且与单独堆肥相比,这种联合治疗在第4年降低了TCA。 MI在第3、4、5、7、8和9年增加了M.26的TCA,堆肥在第3、4、5和5年增加了M.26的TCA,当与MI结合使用时,第3和5年增加了TCA。 ,但在第4年则没有。MI直到G.16的第8年(与对照组相比降低)才影响产量。 MI在第9年提高了M.26的产量,但在其他年份没有影响。由于两年生一次,堆肥和堆肥+ MI在两种砧木的第6年和第8年均增加了产量,而在G.16砧木的第7年和第9年降低了树木的产量。 M.26砧木上的堆肥和堆肥+ MI树在第9年降低了产量。第4至9年的累计产量不受砧木,堆肥或MI的影响。发现添加堆肥或MI可以增加树木的生长和产量,但是这些影响在两种砧木之间并不一致,并且每年都没有发生。

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