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中国陕西省 20 世纪 40 年代至 21 世纪 10 年代旱地小麦粒重对绿色器官的贡献。

Contribution of green organs to grain weight in dryland wheat from the 1940s to the 2010s in Shaanxi Province, China.

机构信息

Key Laboratory of Degraded and Unused Land Consolidation Engineering the Ministry of Natural Resources of China, Shaanxi Provincial Land Engineering Construction Group Co., Ltd., Xi'an, 710075, China.

State Key Laboratory of Soil Erosion and Dryland Farming On the Loess Plateau, Northwest A&F University, 26# Xinong Road, Yangling, 712100, China.

出版信息

Sci Rep. 2021 Feb 9;11(1):3377. doi: 10.1038/s41598-021-82718-y.

Abstract

Eight dryland winter wheat cultivars (Triticum aestivum L.), which were widely cultivated from the 1940s to the 2010s in Shaanxi Province, China, were selected and grown in plots, and two water treatments (irrigation and drought) were used to identify the contribution of ears, leaves and stems to grain weight and grain number associated with cultivar replacement. The plant height and stem dry weight of the dryland wheat decreased significantly during the cultivar replacement process, but there was a remarkable increase in the dry matter translocation of stems under irrigation. Shaded-ear and defoliation treatment could decrease the grain number and grain weight, and the grain weight was more influenced. Both the leaf and ear are important photosynthetic sources for dryland wheat, and the contribution of ear assimilates showed a significant increase over time; however, the contribution of leaf assimilates showed a negative correlation with cultivation over time. The accumulation of stem assimilates and ear photosynthesis both increased the grain weight potential. In the future breeding process, cultivars with more assimilates stored in the stem and greater assimilative capacity of ears, especially a greater contribution of ear assimilates, are expected to increase the grain yield.

摘要

选取了 1940 年代至 2010 年代期间在中国陕西省广泛种植的 8 个旱地冬小麦品种,在田间进行种植,并采用两种水分处理(灌溉和干旱),以确定品种更替与粒重和粒数相关的穗部、叶片和茎部的贡献。旱地小麦的株高和茎干重在品种更替过程中显著下降,但在灌溉条件下茎部干物质的转移显著增加。遮荫穗和去叶处理会降低粒数和粒重,粒重的影响更大。叶片和穗部都是旱地小麦的重要光合源,穗部同化产物的贡献随时间显著增加;然而,叶片同化产物的贡献随时间呈负相关。茎部同化产物的积累和穗部光合作用均增加了粒重潜力。在未来的育种过程中,预计具有更多茎部储存同化产物和更强的穗部同化能力的品种,特别是穗部同化产物的贡献更大,将提高粒重。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bec0/7873244/40cf90836851/41598_2021_82718_Fig1_HTML.jpg

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