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Determination of Crop Water Stress Index by Infrared Thermometry in Grapefruit Trees Irrigated with Saline Reclaimed Water Combined with Deficit Irrigation

机译:用盐水再生水与缺陷灌溉灌注葡萄柚树上红外温度测定作物水分应激指数。

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摘要

Water is not always accessible for agriculture due to its scarcity. In order to successfully develop irrigation strategies that optimize water productivity characterization of the plant, the water status is necessary. We assessed the suitability of thermal indicators by infrared thermometry (IRT) to determine the water status of grapefruit in a commercial orchard with long term irrigation using saline reclaimed water (RW) and regulated deficit irrigation (RDI) in Southeastern Spain. The results showed that Tc-Ta differences were positive in a wide range of vapor pressure deficits (VPD), and the major Tc-Ta were found at 10.00 GMT, before and after the highest daily values of VPD and solar radiation, respectively, were reached. In addition, we evaluated the relationships between Tc-Ta and VPD to establish the Non-Water Stressed Baselines (NWSBs), which are necessary to accurately calculate the crop water stress index (CWSI). Two important findings were found, which include i) the best significant correlations (p < 0.005) found at 10.00 GMT and their slopes were positive, and ii) NWSBs showed a marked hourly and seasonal variation. The hourly shift was mainly explained by the variation in solar radiation since both the NWSB-slope and the NWSB-intercept were significantly correlated with a zenith solar angle (θZ) (p < 0.005). The intercept was greater when θZ was close to 0 (at midday) and the slope displayed a marked hysteresis throughout the day, increasing in the morning and decreasing in the afternoon. The NWSBs determination, according to the season improved most of their correlation coefficients. In addition, the relationship significance of Tc-Ta versus VPD was higher in the period where the intercept and Tc-Ta were low. CWSI was the thermal indicator that showed the highest level of agreement with the stem water potential of the different treatments even though Tc and Tc-Ta were also significantly correlated. We highlight the suitability of thermal indicators measured by IRT to determine the water status of grapefruits under saline (RW) and water stress (RDI) conditions.
机译:由于其稀缺性,农业并不总是可供农业访问。为了成功开发优化植物水生产率表征的灌溉策略,需要水位。我们评估了红外线温度(IRT)的热指示器的适用性,以确定商业果园中葡萄柚的水位,并在西班牙东南部的盐水再生水(RW)和调节缺陷灌溉(RDI)进行长期灌溉。结果表明,TC-TA差异在各种蒸气压缺损(VPD)中是阳性的,并且在GMT 10.00的GMT中发现主要的TC-TA,分别在VPD和太阳辐射的最高值之​​前和之后到达。此外,我们评估了TC-TA和VPD之间的关系,以建立非水胁迫基线(NWSB),这是准确计算作物水分应激指数(CWSI)所必需的。发现了两个重要的发现,其中包括I)在10.00 GMT和它们的斜率下发现的最佳显着相关性(P <0.005),并且II)NWSB显示出标记的每小时和季节性变化。每小时换档主要通过太阳辐射的变化来解释,因为NWSB斜率和NWSB截距都与Zenith太阳角(θz)显着相关(P <0.005)。该拦截了较大时θZ接近0(中午)和斜率显示的标记滞后全天,上午增加,下午减小。根据本季度的NWSB测定改善了大多数相关系数。此外,截距和TC-TA低的时期,TC-TA对VPD的关系意义较高。 CWSI是热指示器,即使TC和TC-TA也显着相关,也显示出与不同处理的茎水潜力的最高级别。我们突出了IRT测量的热指示器的适用性,以确定盐水(RW)和水分胁迫下葡萄柚的水状况和水分胁迫(RDI)条件。

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