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Physiological mechanisms contributing to increased water-use efficiency in winter wheat under organic fertilization

机译:有机肥下提高冬小麦水分利用效率的生理机制

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摘要

Improving the efficiency of resource utilization has received increasing research attention in recent years. In this study, we explored the potential physiological mechanisms underlying improved grain yield and water-use efficiency of winter wheat (Triticum aestivum L.) following organic fertilizer application. Two wheat cultivars, ChangHan58 (CH58) and XiNong9871 (XN9871), were grown under the same nitrogen (N) fertilizer rate (urea-N, CK; and manure plus urea-N, M) and under two watering regimes (WW, well-watered; and WS, water stress) imposed after anthesis. The M fertilizer treatment had a higher Pn and lower gs and Tr than CK under both water conditions, in particular, it significantly increased WRC and Ψw, and decreased EWLR and MDA under WS. Also, the M treatment increased post-anthesis N uptake by 81.4 and 16.4% under WS and WW, thus increasing post-anthesis photosynthetic capacity and delaying leaf senescence. Consequently, the M treatment increased post-anthesis DM accumulation under WS and WW by 51.5 and 29.6%, WUEB by 44.5 and 50.9%, grain number per plant by 11.5 and 12.2% and 1000-grain weight by 7.3 and 3.6%, respectively, compared with CK. The grain yield under M treatment increased by 23 and 15%, and water use efficiency (WUEg) by 25 and 23%, respectively. The increased WUE under organic fertilizer treatment was due to elevated photosynthesis and decreased Tr and gs. Our results suggest that the organic fertilizer treatment enabled plants to use water more efficiently under drought stress.
机译:近年来,提高资源利用效率受到了越来越多的研究关注。在这项研究中,我们探讨了施用有机肥后冬小麦(Triticum aestivum L.)谷物产量提高和水分利用效率提高的潜在生理机制。在相同的氮(N)施肥速率(尿素-N,CK;和肥料加尿素-N,M)下,在两种灌溉方式(WW,好)下,种植了两个小麦品种ChangHan58(CH58)和XiNong9871(XN9871)。 -浇水;花后施加WS,水分胁迫)。在两种水条件下,M肥处理均具有比CK高的Pn和较低的gs和Tr,特别是在WS下显着提高了WRC和Ψw,并降低了EWLR和MDA。此外,在WS和WW下,M处理使花后氮吸收增加81.4%和16.4%,从而增加了花后光合能力并延迟叶片衰老。因此,在WS和WW下,M处理使花后DM积累分别增加51.5和29.6%,WUEB分别增加44.5和50.9%,单株籽粒数分别增加11.5和12.2%和1000粒重7.3和3.6%,与CK相比。 M处理下的谷物产量分别提高了23%和15%,水分利用效率(WUEg)分别提高了25%和23%。有机肥处理下WUE的增加是由于光合作用的提高和Tr和gs的降低。我们的结果表明,有机肥料处理可使植物在干旱胁迫下更有效地利用水。

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