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玉米-大豆间作系统中倒伏胁迫管理的农艺技术——综述

Agro-Techniques for Lodging Stress Management in Maize-Soybean Intercropping System-A Review.

作者信息

Raza Ali, Asghar Muhammad Ahsan, Ahmad Bushra, Bin Cheng, Iftikhar Hussain M, Li Wang, Iqbal Tauseef, Yaseen Muhammad, Shafiq Iram, Yi Zhang, Ahmad Irshan, Yang Wenyu, Weiguo Liu

机构信息

Key Laboratory of Crop Ecophysiology and Farming System in Southwest China, Ministry of Agriculture, Sichuan Agricultural University, Chengdu 611130, China.

Institute of Ecological Agriculture, Sichuan Agricultural University, Chengdu 611130, China.

出版信息

Plants (Basel). 2020 Nov 17;9(11):1592. doi: 10.3390/plants9111592.

Abstract

Lodging is one of the most chronic restraints of the maize-soybean intercropping system, which causes a serious threat to agriculture development and sustainability. In the maize-soybean intercropping system, shade is a major causative agent that is triggered by the higher stem length of a maize plant. Many morphological and anatomical characteristics are involved in the lodging phenomenon, along with the chemical configuration of the stem. Due to maize shading, soybean stem evolves the shade avoidance response and resulting in the stem elongation that leads to severe lodging stress. However, the major agro-techniques that are required to explore the lodging stress in the maize-soybean intercropping system for sustainable agriculture have not been precisely elucidated yet. Therefore, the present review is tempted to compare the conceptual insights with preceding published researches and proposed the important techniques which could be applied to overcome the devastating effects of lodging. We further explored that, lodging stress management is dependent on multiple approaches such as agronomical, chemical and genetics which could be helpful to reduce the lodging threats in the maize-soybean intercropping system. Nonetheless, many queries needed to explicate the complex phenomenon of lodging. Henceforth, the agronomists, physiologists, molecular actors and breeders require further exploration to fix this challenging problem.

摘要

倒伏是玉米-大豆间作系统中最长期存在的限制因素之一,对农业发展和可持续性构成严重威胁。在玉米-大豆间作系统中,遮荫是一个主要的致病因素,它由玉米植株较高的茎长引发。许多形态学和解剖学特征以及茎的化学结构都与倒伏现象有关。由于玉米遮荫,大豆茎会产生避荫反应,导致茎伸长,从而引发严重的倒伏胁迫。然而,为实现可持续农业而探索玉米-大豆间作系统中倒伏胁迫所需的主要农业技术尚未得到精确阐明。因此,本综述试图将概念性见解与先前发表的研究进行比较,并提出可用于克服倒伏破坏性影响的重要技术。我们进一步探讨发现,倒伏胁迫管理依赖于多种方法,如农艺、化学和遗传学方法,这些方法有助于减少玉米-大豆间作系统中的倒伏威胁。尽管如此,仍有许多问题需要阐明倒伏这一复杂现象。从今以后,农学家、生理学家、分子研究人员和育种者需要进一步探索以解决这一具有挑战性的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12ba/7698466/cdcf4c1448bc/plants-09-01592-g001.jpg

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