Intrigliolo D S, Castel J R
Instituto Valenciano Investigaciones Agrarias (IVIA), Dpt. Recursos Naturales, Apartado oficial 46113, Moncada, Valencia, Spain.
Tree Physiol. 2007 Jan;27(1):89-96. doi: 10.1093/treephys/27.1.89.
We studied the effects of low fruit load (3-4 fruits cm(-2) of trunk cross-sectional area (TCSA), and high fruit load (6-7 fruits cm(-2) TCSA) on maximum daily trunk shrinkage (MDS) and trunk growth rates (TGR) over two seasons in plum (Prunus salicina Lindell) trees receiving full irrigation or deficit irrigation. Seasonal changes in MDS and TGR were compared with those in midday stem water potential (Psi(s)) and leaf stomatal conductance (g (s)). Crop load increased g (s) in fully irrigated trees approaching harvest. Although crop load did not affect plant water status in either watering regime, there were considerable differences in both MDS and TGR as a function of crop load. Compared with low-cropping [corrected] trees, MDS was 34% higher and TGR was 48% lower in high-cropping [corrected] trees. The differential responses of MDS and Psi(s) to crop load were a consequence of a higher MDS for a given Psi(s) in the high-cropping trees compared with the low-cropping trees. There was a linear increase in MDS with crop load, with a slope of 15.2 microm MPa(-1) per unit increment of crop load. In the fully irrigated trees, day-to-day variations in MDS were related to evaporative demand; however, the slope of the relationship between MDS and evaporative demand increased with crop load, indicating that different reference equations must be used to adjust for tree crop load when using MDS to determine plant water status and irrigation requirements.
我们研究了低果负载量(每平方厘米树干横截面积(TCSA)有3 - 4个果实)和高果负载量(每平方厘米TCSA有6 - 7个果实)对接受充分灌溉或亏缺灌溉的李树(Prunus salicina Lindell)在两个季节中的最大日树干收缩量(MDS)和树干生长速率(TGR)的影响。将MDS和TGR的季节性变化与午间茎水势(Ψs)和叶片气孔导度(gs)的变化进行了比较。在接近收获期时,作物负载量增加了充分灌溉树体的gs。尽管在两种灌溉方式下作物负载量均未影响植株水分状况,但MDS和TGR随作物负载量均有显著差异。与低负载量[校正后]树相比,高负载量[校正后]树的MDS高34%,TGR低48%。高负载量树与低负载量树相比,在给定Ψs时具有更高的MDS,这导致了MDS和Ψs对作物负载量的不同响应。MDS随作物负载量呈线性增加,每单位作物负载量增加的斜率为15.2微米·MPa-1。在充分灌溉的树体中,MDS的日变化与蒸发需求相关;然而,MDS与蒸发需求之间关系的斜率随作物负载量增加,这表明在使用MDS确定植株水分状况和灌溉需求时,必须使用不同的参考方程来校正树体作物负载量。