Genome-wide in silico identification of phospholipase D (PLD) gene family from Corchorus capsularis and Corchorus olitorius: reveals their responses to plant stress.

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Md Abu Sadat, Md Wali Ullah, Md Sabbir Hossain, Borhan Ahmed, Kazi Khayrul Bashar
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引用次数: 5

Abstract

Background: Plant grows in nature facing various types of abiotic stresses for their normal growth and development. During abiotic stress, plants evolve different types of mechanisms to survive in a hostile environment. Phospholipase D (PLD) plays important role in the regulation of diverse cellular processes including stress responses in plants. Member of PLD genes are well studied in different model plants; however, their functions in the jute are not clear yet.

Result: In the present study, a total of 12 and 11 PLD genes were identified in the genome of C. capsularis and C. olitorius, respectively. The presence of the two conserved HKD motifs in PLD genes except for CoPLDδ-2 in jute suggests their strong lipase activity. Twenty different motifs were found in the identified PLD genes, and PLD-β1, PLD-γ1, and all members of PLD-δ1 of both jute species contained the highest number of motifs. Phylogenetic analysis showed the close evolutionary relationship among the five groups of jute PLD proteins along with the PLD proteins from Arabidopsis. Tissue-specific expression pattern of PLDα1-2, PLD-α2, PLDβ1, PLDγ1, and PLDδ1 of two jute species suggested their involvement in plant growth and development. However, the expression pattern of PLDα1-2, PLDα1-3, PLD-α4, PLDδ1, and PLDδ3 indicated their association during waterlogging stress. In addition, PLD-α2, PLDβ1, and PLDδ2 seemed to be involved in drought stress as well as salinity stress.

Conclusion: This genome-wide identification of jute PLD genes from C. capsularis and C. olitorius will help to further functional characterization of the PLD genes for developing stress-tolerant jute variety.

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Abstract Image

荚膜corcorus和石竹corcorus磷脂酶D (PLD)基因家族的全基因组pcr鉴定揭示了它们对植物胁迫的响应。
背景:植物在自然界中生长,为了正常生长发育而面临着各种各样的非生物胁迫。在非生物胁迫中,植物进化出不同类型的机制来在恶劣的环境中生存。磷脂酶D (Phospholipase D, PLD)在植物胁迫应答等多种细胞过程中起着重要的调控作用。PLD基因成员在不同的模式植物中得到了很好的研究;然而,它们在黄麻中的作用尚不清楚。结果:本研究在荚膜C.荚膜C. olitorius基因组中分别鉴定出12个和11个PLD基因。黄麻PLD基因中除CoPLDδ-2外,其余两个保守的HKD基序均存在,表明它们具有较强的脂肪酶活性。在鉴定的PLD基因中发现了20个不同的基序,其中PLD-β1、PLD-γ1和两种黄麻PLD-δ1的所有成员的基序数量最多。系统发育分析表明,5组黄麻PLD蛋白与拟南芥PLD蛋白具有密切的进化关系。两种黄麻中PLDα1-2、PLD-α2、PLDβ1、PLDγ1和PLDδ1的组织特异性表达模式提示其参与植物生长发育。而PLDα1-2、PLDα1-3、PLD-α4、PLDδ1和PLDδ3在涝渍胁迫下的表达表现出相关性。此外,PLD-α2、PLDβ1和PLDδ2似乎参与了干旱胁迫和盐胁迫。结论:荚膜黄麻PLD基因的全基因组鉴定将有助于黄麻PLD基因的功能鉴定,为培育耐胁迫黄麻品种奠定基础。
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