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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >The interactions of soil- and stem-water potentials with crop level, fruit size and stomatal conductance of field-grown 'Black Amber' Japanese plum
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The interactions of soil- and stem-water potentials with crop level, fruit size and stomatal conductance of field-grown 'Black Amber' Japanese plum

机译:土壤和茎水潜力与田间种植的“黑琥珀”日本李子的作物水平,果实大小和气孔导度的相互作用

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The interactions of crop level with soil and stem water potentials and water relations of field-grown Japanese plum were studied during two successive years. Four irrigation levels were applied in stage III of fruit growth, and their effects on soil-and stem water potentials and fruit size were examined. The relationships between stomatal conductance, leaf water potential and stem water potential were constructed from diurnal measurements of the three parameters. Yield of large fruit increased withincreasing stem water potential, but did not level off towards the highest stem water potential values, indicating that additional increase in yield of large fruit is expected with further increase in stem water potential. Average fruit weight and relative yield >55 mm were better correlated with midday stem water potential than with soil matric potential due to the higher variability of soil matric potential compared with midday stem water potential readings. Yield of large fruit was more responsive tomidday stem water potential in 2002 than in 2001 probably because of lower potential fruit size or a limitation of assimilates availability due to the higher temperatures in 2001 than in 2002. Midday stem water potential of the low irrigation treatmentsdecreased with increasing crop level, indicating that stomatal conductance increased with crop level, probably due to limitation of assimilates. Stomatal conductance was highly correlated with stem water potential; the correlation was higher than that of stomatal conductance with leaf water potential in both years, irrespective of whether the leaves were covered by a plastic bag prior to, or immediately after, their detachment.
机译:连续两年研究了作物水平与土壤和茎水势的相互作用以及田间种植的李子的水分关系。在果实生长的第三阶段采用了四个灌溉水平,并研究了它们对土壤和茎干水势以及果实大小的影响。气孔导度,叶片水势和茎水势之间的关系是通过对三个参数的每日测量得出的。大果产量增加,茎水势也随之增加,但并未趋于最高茎水势,这表明随着干水势的进一步增加,大果产量有望进一步增加。平均果实重量和相对产量> 55 mm与中午茎水势比与土壤基质势更好相关,这是因为与中午茎水势读数相比,土壤基质势的变异性更高。与2001年相比,2002年的大果产量对中午干水潜力的响应要强于2001年,这可能是由于2001年的温度高于2002年,原因是潜在的果实大小较小或同化物质的供应受到限制。作物水平的增加,表明气孔导度随作物水平的增加而增加,可能是由于同化物的限制。气孔导度与茎水势高度相关。在这两个年份中,相关性均高于气孔导度与叶片水势的相关性,而与叶片分离之前或之后是否被塑料袋覆盖无关。

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