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土壤干旱条件下谷物的灌浆

Grain filling of cereals under soil drying.

作者信息

Yang Jianchang, Zhang Jianhua

机构信息

Key Laboratory of Crop Genetics and Physiology of Jiangsu Province, Yangzhou University, Yangzhou, Jiangsu, China.

出版信息

New Phytol. 2006;169(2):223-36. doi: 10.1111/j.1469-8137.2005.01597.x.

Abstract

Monocarpic plants require the initiation of whole-plant senescence to remobilize and transfer assimilates pre-stored in vegetative tissues to grains. Delayed whole-plant senescence caused by either heavy use of nitrogen fertilizer or adoption of lodging-resistant cultivars/hybrids that remain green when the grains are due to ripen results in a low harvest index with much nonstructural carbohydrate (NSC) left in the straw. Usually, water stress during the grain-filling period induces early senescence, reduces photosynthesis, and shortens the grain-filling period; however, it increases the remobilization of NSC from the vegetative tissues to the grain. If mild soil drying is properly controlled during the later grain-filling period in rice (Oryza sativa) and wheat (Triticum aestivum), it can enhance whole-plant senescence, lead to faster and better remobilization of carbon from vegetative tissues to grains, and accelerate the grain-filling rate. In cases where plant senescence is unfavorably delayed, such as by heavy use of nitrogen and the introduction of hybrids with strong heterosis, the gain from the enhanced remobilization and accelerated grain-filling rate can outweigh the loss of reduced photosynthesis and the shortened grain-filling period, leading to an increased grain yield, better harvest index and higher water-use efficiency.

摘要

一年生植物需要启动全株衰老,以便将预先储存在营养组织中的同化物转运到籽粒中。大量施用氮肥或采用抗倒伏品种/杂交种导致全株衰老延迟,在籽粒成熟时仍保持绿色,这会导致收获指数较低,秸秆中残留大量非结构性碳水化合物(NSC)。通常,灌浆期的水分胁迫会诱导早期衰老,降低光合作用,并缩短灌浆期;然而,它会增加NSC从营养组织向籽粒的转运。如果在水稻(Oryza sativa)和小麦(Triticum aestivum)灌浆后期适当控制轻度土壤干燥,它可以增强全株衰老,使碳从营养组织更快、更好地转运到籽粒中,并加快灌浆速率。在植物衰老不利延迟的情况下,例如大量施用氮肥和引入具有强大杂种优势的杂交种,增强的转运和加快的灌浆速率带来的收益可能超过光合作用降低和灌浆期缩短的损失,从而导致籽粒产量增加、收获指数提高和水分利用效率提高。

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