陆地棉组织衰老相关有机物的鉴定基于GC-MS分析

Zhen-long XU , Cheng-jin GUO , Jun-tao GU , Wen-jing LU , Xiao-juan LI , Kai XIAO
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引用次数: 0

摘要

作物生产中的早衰,特别是发生在生长后期,通常会导致产量和质量的下降。因此,适当延缓植物发育后期组织的衰老,有利于提高产量和品质。在本研究中,我们观察到叶绿素含量和光合速率在叶片生长过程中逐渐降低,并且干旱促进了降低的速度。基于气相色谱-质谱(GC-MS)分析,分别在叶片、果枝、花瓣和萼片中鉴定出8种、5种、7种和5种推测与组织衰老进程相关的有机化合物。结果表明,不同组织中均存在a-蒎烯、β-蒎烯和戊烷等有机化合物。在鉴定出的与叶片衰老有关的10种有机物中,有一半是在干旱处理中检测到的。这些结果表明,干旱明显调控了一些与叶片衰老相关的生化途径。在所测组织中鉴定出的有机化合物含量随衰老进程表现出逐渐增加、减少和单峰曲线的三种性能模式。因此,在组织衰老过程中,一部分代谢物质在数量上发生变化,反映了通过衰老信号引发的复杂生化反应。对这些重要有机物质的进一步分析将有助于在生化水平上阐明棉花组织衰老机制,并为棉花衰老信号转导提供新的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of Organic Substances Associated with Tissue Senescence in Upland Cotton (Gossypium spp. L.) Based on GC-MS Analysis

Premature senescence in crop production, especially occurred at the late growth stage, generally results in a reduction in yield and quality. Therefore, it is beneficial for yield and quality to properly delay senescence of plant tissues during the late developmental stage. In this study, it was observed that the chlorophyll content and photosynthetic rate were gradually decreased along leaf growth progression, and the rates of reduction were promoted by drought. Based on gas chromatography-mass spectrometry (GC-MS) analysis, total eight, five, seven, and five kinds of organic compounds that putatively associated with the tissue senescent progression were identified in leaves, fruit branches, petals, and sepals, respectively. It was found that the identified organic compound, such as a-pinene, β-pinene, and pentadecane were present in different tissues. Among the total ten organic substances identified to be related with the leaf senescence, half were specifically detected in the drought treatment. These results suggest some biochemical pathways associated with the leaf senescence are distinctly regulated by drought. The identified organic compounds in the tested tissues showed three types on the performance pattern based on the contents along with the senescent progression, including gradually increasing, decreasing, and a curve with one single peak. Thus, during the senescence process in tissues, a subset of metabolic substances occur modifications on the quantities, reflecting a complicate biochemical reactions are initiated via the senescence signals. Further analysis of the important organic substances will be helpful for elucidation of the tissue senescence mechanism at the biochemical level and provide a new insight of the senescence signaling transductions in cotton.

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Agricultural Sciences in China
Agricultural Sciences in China AGRICULTURE, MULTIDISCIPLINARY-
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