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Water-Use Efficiency of Forage Crops in the Southeastern United States

机译:美国东南部饲料作物的水分利用效率

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摘要

Preparing agricultural producers to cope with volatile weather changes, specifically drought, requires a better understanding of forage water-use efficiency (WUE) potentials. Options to improve farm resiliency to drought may include the use of C4 annual and perennial forages, which have greater production efficiency during drought than commonly used C3 forages. Our objective was to measure WUE through real-time gas exchange measurements of photosynthesis and transpiration in (1) a greenhouse study and (2) under field-grazing conditions. Growth parameters, instantaneous water use efficiency (iWUE), and mass-based WUE (mWUE) data were collected under greenhouse conditions in Study 1 for the following species: crabgrass (Digitaria sanguinalis cv. ‘Red River’), switchgrass (Panicum virgatum cv. ‘Alamo’), big bluestem (Andropogon gerardii cv. ‘OZ-70’), indiangrass (Sorghastum nutans cv. ‘Rumsey’), eastern gamagrass (Tripsacum dactyloides cv. ‘Pete’), bermudagrass (Cynodon dactylon cv. ‘Vaughn’s #1’), sorghum-sudangrass (Sorghum bicolor (L.) × Sorghum sudanese (P.) cv. ‘Greengrazer’), and tall fescue (Schedonorus arundinaceus (Schreb.) Dumort). Study 2 occurred from 2014 to 2016, and evaluated iWUE of crabgrass, switchgrass, bermudagrass, eastern gamagrass, and a big bluestem/indiangrass mix under field conditions. Overall, in situ iWUE of crabgrass, switchgrass, eastern gamagrass, and bermudagrass did not differ, while iWUE of the big bluestem/indiangrass was less than switchgrass and crabgrass, an advantage for these species if the standardized precipitation index drops below zero. Bermudagrass, switchgrass, sorghum-sudangrass, pearl millet, and indiangrass had comparable mWUE values under greenhouse-simulated drought. These results will aid in the development of forage species recommendations for mitigating drought and improving resiliency.
机译:准备农业生产者应对阴晴不定的天气变化,特别是干旱,需要一个更好的饲料水分利用效率(WUE)的潜力的认识。选项以提高农业的弹性,干旱可能包括使用C4一年生和多年生牧草,其中干旱比常用C3牧草期间有更大的生产效率。我们的目标是场放牧的条件下通过在(1)温室研究和(2)的光合作用和蒸腾的实时气体交换测量来测量WUE。生长参数,瞬时水分利用效率(IWUE),和基于质量的WUE(mWUE)数据在温室条件下收集在研究1为下列物种:马唐(马唐CV“红河”),柳枝稷(柳枝稷品种'白杨'),大须芒草(芒草gerardii品种。 'OZ-70'),indiangrass(Sorghastum垂穗品种。 '林士'),东部gamagrass(摩擦禾野牛草品种。 '皮特'),狗牙根(狗牙根品种。“斯沃恩的#1' ),高粱-苏丹草(高粱(L.)×高粱苏丹(P.)CV。 'Greengrazer'),以及高羊茅(Schedonorus茅(茅)Dumort)。研究2发生2014至2016年,并评估马唐,柳枝稷,狗牙根,东部gamagrass的灌溉水利用效率和大须芒草/ indiangrass野外条件下混合。总体而言,马唐,柳枝稷,东部gamagrass,和狗牙根的原位IWUE没有差异,而大须芒草/ indiangrass的灌溉水利用效率低于柳枝稷和马唐,对于这些品种的优势,如果标准化降水指数低于零。狗牙根,柳枝稷,高粱,苏丹草,珍珠粟和indiangrass在温室模拟干旱具有相当的mWUE值。这些结果将在牧草建议发展援助减轻干旱和改善弹性。

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