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土壤盐分对棉花纤维中蔗糖代谢的影响

Effects of Soil Salinity on Sucrose Metabolism in Cotton Fiber.

作者信息

Peng Jun, Zhang Lei, Liu Jingran, Luo Junyu, Zhao Xinhua, Dong Helin, Ma Yan, Sui Ning, Zhou Zhiguo, Meng Yali

机构信息

Key Laboratory of Crop Physiology & Ecology in Southern China, Ministry of Agriculture, Nanjing Agricultural University, Nanjing, China.

State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang, China.

出版信息

PLoS One. 2016 May 26;11(5):e0156398. doi: 10.1371/journal.pone.0156398. eCollection 2016.

Abstract

Cotton (Gosspium hirsutum L.) is classified as a salt tolerant crop. However, its yield and fiber quality are negatively affected by soil salinity. Studies on the enzymatic differences in sucrose metabolism under different soil salinity levels are lacking. Therefore, field experiments, using two cotton cultivars, CCRI-79 (salt-tolerant) and Simian 3 (salt-sensitive), were conducted in 2013 and 2014 at three different salinity levels (1.15 dS m-1 [low soil salinity], 6.00 dS m-1 [medium soil salinity], and 11.46 dS m-1 [high soil salinity]). The objective was to elucidate the effects of soil salinity on sucrose content and the activity of key enzymes that are related to sucrose metabolism in cotton fiber. Results showed that as the soil salinity increased, cellulose content, sucrose content, and sucrose transformation rate declined; the decreases in cellulose content and sucrose transformation rate caused by the increase in soil salinity were more in Simian 3 than those in CCRI-79. With increase in soil salinity, activities of sucrose metabolism enzymes sucrose phophate synthase (SPS), acidic invertase, and alkaline invertase were decreased, whereas sucrose synthase (SuSy) activity increased. However, the changes displayed in the SuSy and SPS activities in response to increase in soil salinity were different and the differences were large between the two cotton cultivars. These results illustrated that suppressed cellulose synthesis and sucrose metabolism under high soil salinity were mainly due to the change in SPS, SuSy, and invertase activities, and the difference in cellulose synthesis and sucrose metabolism in fiber for the two cotton cultivars in response to soil salinity was determined mainly by both SuSy and SPS activities.

摘要

棉花(陆地棉)被归类为耐盐作物。然而,其产量和纤维品质受到土壤盐分的负面影响。目前缺乏关于不同土壤盐分水平下蔗糖代谢酶差异的研究。因此,在2013年和2014年,使用两个棉花品种CCRI - 79(耐盐)和泗棉3号(盐敏感),在三种不同的盐分水平(1.15 dS m-1[低土壤盐分]、6.00 dS m-1[中等土壤盐分]和11.46 dS m-1[高土壤盐分])下进行了田间试验。目的是阐明土壤盐分对棉花纤维中蔗糖含量以及与蔗糖代谢相关的关键酶活性的影响。结果表明,随着土壤盐分增加,纤维素含量、蔗糖含量和蔗糖转化率下降;土壤盐分增加导致的纤维素含量和蔗糖转化率下降在泗棉3号中比在CCRI - 79中更明显。随着土壤盐分增加,蔗糖代谢酶蔗糖磷酸合酶(SPS)、酸性转化酶和碱性转化酶的活性下降,而蔗糖合酶(SuSy)活性增加。然而,SuSy和SPS活性随土壤盐分增加的变化不同,且两个棉花品种之间差异很大。这些结果表明,高土壤盐分下纤维素合成和蔗糖代谢受到抑制主要是由于SPS、SuSy和转化酶活性的变化,两个棉花品种纤维中纤维素合成和蔗糖代谢对土壤盐分响应的差异主要由SuSy和SPS活性共同决定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8924/4882063/3658680b5b5d/pone.0156398.g001.jpg

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