Wheeler R M, Berry W L, Mackowiak C, Corey K A, Sager J C, Heeb M M, Knott W M
NASA Biomedical Operations and Research Office, Kennedy Space Center, FL 32890, USA.
J Plant Nutr. 1993;16(10):1881-915. doi: 10.1080/01904169309364659.
A data set is given describing the daily nutrient uptake, gas exchange, environmental conditions, and carbon (C), and nutrient partitioning at harvest for the entire canopy and root system of a wheat crop (Triticum aestivum, cv. Yecora Rojo). The data were obtained from a 20 m2 stand of wheat plants grown from planting to maturity in a closed, controlled environment, and include daily nutrient uptake [macronutrients, nitrogen (N), phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg), and sulfur (S); and micronutrients, iron (Fe), boron (B), manganese (Mn), zinc (Zn), copper (Cu), and molybdenum (Mo)], canopy carbon dioxide (CO2) exchange rates, and transpiration. Environmental factors such as relative humidity, air temperature, nutrient solution temperature, pH and electrical conductivity, and photoperiod were controlled in the chamber to specific set points. A detailed description of biomass yield for each of the 64 plant growth trays comprising the 20 m2 of growth area is also provided, and includes dry weights of grain, straw, chaff, and roots, along with the concentration of nutrients in different plant tissues and the percent carbohydrate, fat, and protein. To our knowledge, this information represents one of the most extensive data sets available for a canopy of wheat grown from seed to maturity under controlled environmental and nutritional conditions, and thus may provide useful information for model development and validation. A methods section is included to qualify any assumptions that might be required for the use of the data in plant growth models, along with a daily event calendar indicating when adjustments in set points and occasional equipment or sensor failures occurred.
给出了一个数据集,描述了小麦作物(普通小麦,品种为Yecora Rojo)整个冠层和根系在收获时的每日养分吸收、气体交换、环境条件以及碳(C)和养分分配情况。这些数据来自于在封闭的可控环境中从种植到成熟生长的20平方米小麦植株,包括每日养分吸收情况[大量元素,氮(N)、磷(P)、钾(K)、钙(Ca)、镁(Mg)和硫(S);以及微量元素,铁(Fe)、硼(B)、锰(Mn)、锌(Zn)、铜(Cu)和钼(Mo)]、冠层二氧化碳(CO₂)交换率和蒸腾作用。室内控制了相对湿度、气温、营养液温度、pH值和电导率以及光周期等环境因素,使其达到特定设定点。还提供了构成20平方米生长区域的64个植物生长托盘各自的生物量产量详细描述,包括籽粒、秸秆、谷壳和根系的干重,以及不同植物组织中的养分浓度和碳水化合物、脂肪及蛋白质的百分比。据我们所知,这些信息代表了在可控环境和营养条件下从种子生长到成熟的小麦冠层可用的最广泛数据集之一,因此可能为模型开发和验证提供有用信息。其中包含一个方法部分,以限定在植物生长模型中使用这些数据可能需要的任何假设,同时还有一个每日事件日历,表明设定点调整以及偶尔的设备或传感器故障发生的时间。