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淀粉和蔗糖代谢在 茎发育中起着重要作用。

Starch and sucrose metabolism plays an important role in the stem development in .

机构信息

Technology Engineering Center of Drought and Cold-Resistant Grass Breeding in North of the National Forestry and Grassland Administration, College of Grassland, Resources and Environment, Inner Mongolia Agricultural University, Hohhot, China.

Technology Engineering Center of Drought and Cold-Resistant Grass Breeding in North of the National Forestry and Grassland Administration, College of Grassland, Resources and Environment, Inner Mongolia Agricultural University, Hohhot, China; and Key Laboratory of Grassland Resources of the Ministry of Education, College of Grassland, Resources and Environment, Inner Mongolia Agricultural University, Hohhot, China.

出版信息

Funct Plant Biol. 2024 May;51. doi: 10.1071/FP24073.

Abstract

The forage quality of alfalfa (Medicago sativa ) stems is greater than the leaves. Sucrose hydrolysis provides energy for stem development, with starch being enzymatically converted into sucrose to maintain energy homeostasis. To understand the physiological and molecular networks controlling stem development, morphological characteristics and transcriptome profiles in the stems of two alfalfa cultivars (Zhungeer and WL168) were investigated. Based on transcriptome data, we analysed starch and sugar contents, and enzyme activity related to starch-sugar interconversion. Zhungeer stems were shorter and sturdier than WL168, resulting in significantly higher mechanical strength. Transcriptome analysis showed that starch and sucrose metabolism were significant enriched in the differentially expressed genes of stems development in both cultivars. Genes encoding INV , bglX , HK , TPS and glgC downregulated with the development of stems, while the gene encoding was AMY upregulated. Weighted gene co-expression network analysis revealed that the gene encoding glgC was pivotal in determining the variations in starch and sucrose contents between the two cultivars. Soluble carbohydrate, sucrose, and starch content of WL168 were higher than Zhungeer. Enzyme activities related to sucrose synthesis and hydrolysis (INV, bglX, HK, TPS) showed a downward trend. The change trend of enzyme activity was consistent with gene expression. WL168 stems had higher carbohydrate content than Zhungeer, which accounted for more rapid growth and taller plants. WL168 formed hollow stems were formed during rapid growth, which may be related to the redistribution of carbohydrates in the pith tissue. These results indicated that starch and sucrose metabolism play important roles in the stem development in alfalfa.

摘要

紫花苜蓿(Medicago sativa)茎的饲用品质优于叶片。蔗糖水解为茎的发育提供能量,淀粉通过酶转化为蔗糖以维持能量平衡。为了了解控制茎发育的生理和分子网络,研究了两个紫花苜蓿品种(中苜 1 号和 WL168)茎的形态特征和转录组谱。基于转录组数据,分析了淀粉和糖含量以及与淀粉-糖相互转化相关的酶活性。中苜 1 号的茎比 WL168 的更短、更粗壮,导致机械强度显著提高。转录组分析表明,淀粉和蔗糖代谢在两个品种茎发育的差异表达基因中显著富集。INV、bglX、HK、TPS 和 glgC 基因的编码物随茎的发育而下调,而 AMY 基因的编码物上调。加权基因共表达网络分析表明,glgC 基因编码物在决定两个品种间淀粉和蔗糖含量的变化方面起关键作用。WL168 的可溶性碳水化合物、蔗糖和淀粉含量均高于中苜 1 号。与蔗糖合成和水解(INV、bglX、HK、TPS)相关的酶活性呈下降趋势。酶活性的变化趋势与基因表达一致。WL168 茎的碳水化合物含量高于中苜 1 号,这导致其生长更快、植株更高。WL168 在快速生长过程中形成空心茎,这可能与髓组织中碳水化合物的再分配有关。这些结果表明,淀粉和蔗糖代谢在紫花苜蓿茎发育中起重要作用。

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