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Seasonal patterns of vegetative growth and competition with reproductive sinks in peach (Prunus persica)

机译:桃(桃)的营养生长和繁殖汇竞争的季节性模式

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Growth of leaves, wood, and stems were studied over an entire growing season on four year old peach (Prunus persica (L.) Batsch.) trees having no crop, commercial crop loads, or heavy crop loads. Leaf, wood, and stem growth were reduced on croppingtrees relative to defruited trees. The presence of fruit reduced leaf biomass growth during Stage I and II of fruit growth but not thereafter. Wood biomass growth was reduced by the presence of fruit during all stages of fruit growth. Stem biomass growthwas most strongly affected by fruit during Stage III of fruit growth. Carbon partitioning to stems appeared to be influenced by both fruit sink demands and set developmental capacity for secondary radial growth. Total above-ground biomass production wassimilar in all three treatments, despite significantly greater leaf area in defruited trees. The total carbohydrate cost of the above ground biomass (the sum of biomass costs, calculated growth and maintenance respiration costs) was estimated to be similar for all three treatments. Cropping reduced root starch content and flowering density but did not influence percent fruit set during the subsequent growing season relative to non-cropped trees.
机译:在没有农作物,商业作物负载或重作物负载的四岁桃树(Prunus persica(L.)Batsch。)树上,研究了整个生长季节的叶片,木材和茎的生长。与去果树相比,种植树上的叶片,木材和茎的生长减少。水果的存在降低了水果生长的第一阶段和第二阶段的叶片生物量的生长,但此后没有降低。在果实生长的所有阶段中,由于果实的存在,木材生物量的生长减少。在果实生长的第三阶段,果实对茎生物量的生长影响最大。茎上的碳分配似乎受到果实汇的需求以及次生径向生长的发育能力的影响。尽管去果树的叶面积明显增加,但在所有三种处理中,地上生物量的总产量均相似。地上生物质的总碳水化合物成本(生物质成本,计算出的生长量和维持呼吸成本的总和)在所有三种处理方法中均相似。与非农作物相比,农作物减少了根淀粉含量和开花密度,但并未影响随后生长季节的坐果率。

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