Department of Biochemistry, Punjab Agricultural University, Ludhiana, India.
Department of Biochemistry, Punjab Agricultural University, Ludhiana, India.
Comput Biol Chem. 2019 Dec;83:107144. doi: 10.1016/j.compbiolchem.2019.107144. Epub 2019 Oct 15.
Heat shock proteins are an important class of molecular chaperones known to impart tolerance under high temperature stress. sHSP26, a member of small heat shock protein subfamily is specifically involved in protecting plant's photosynthetic machinery. The present study aimed at identifying and characterizing sequence and structural variations in sHSP26 from genetically diverse progenitor and non-progenitor species of wheat. In silico analysis identified three paralogous copies of TaHSP26 to reside on short arm of chromosome 4A while one homeologue each was localized on long arm of chromosome 4B and 4D of cultivated bread wheat. Wild DD-genome donor Aegilops tauschii carried an additional sHSP26 gene (AET4Gv20569400) which was absent in the cultivated DD genome of bread wheat. In vitro amplification of this novel gene in wild accessions of Ae. tauschii and synthetic hexaploid wheat but not in cultivated bread wheat validated this finding. Further, significant length polymorphism could be identified in exon1 from diverse sHSP26 sequences. Multiple sequence alignment of procured sequences revealed numerous sSNPs and nsSNPs. D3A, P125 L, Q242 K were designated as homeolog specific- while A49 G as non-progenitor specific amino acid replacements. A 9-bp indel in TmHSP26-1(GA) translated into a deletion of SPM amino acid segment in chloroplast specific conserved consensus region III. High degree of divergence in nucleotide sequence between cultivated and wild species appeared in the form of higher ω values (Ka/Ks >1) indicating positive selection during the course of evolution. Phylogenetic analysis elucidated ancestral relationships between wheat sHSP26 proteins and orthologous proteins across plant kingdom. Overall, data mining approach may be employed as an effective pre-breeding strategy to identify and mobilize novel stress responsive genes and distinct allelic variants from wider germplasm collections of wheat to enhance climate resilience of present day elite wheat cultivars.
热休克蛋白是一类重要的分子伴侣,已知它们能在高温胁迫下赋予耐受性。sHSP26 是小热休克蛋白亚家族的成员,专门参与保护植物的光合作用机制。本研究旨在鉴定和描述来自小麦遗传多样性的亲本组和非亲本组物种中 sHSP26 的序列和结构变异。通过计算机分析,鉴定出 TaHSP26 的三个基因同源物位于 4A 染色体的短臂上,而每个同源物在栽培面包小麦的 4B 和 4D 染色体的长臂上各有一个。野生 DD 基因组供体粗山羊草携带一个额外的 sHSP26 基因(AET4Gv20569400),而栽培 DD 基因组的面包小麦中没有这个基因。在野生粗山羊草和合成六倍体小麦中扩增这个新基因,但在栽培面包小麦中没有扩增,验证了这一发现。此外,还可以从不同 sHSP26 序列的外显子 1 中识别出显著的长度多态性。获得序列的多重序列比对揭示了许多 sSNP 和 nsSNP。D3A、P125L、Q242K 被指定为同源物特异性,而 A49G 被指定为非亲本组特异性的氨基酸替换。TmHSP26-1(GA)中的 9 个碱基插入/缺失导致叶绿体保守共识区 III 中 SPM 氨基酸片段的缺失。栽培和野生种之间核苷酸序列的高度差异表现为更高的 ω 值(Ka/Ks >1),表明在进化过程中存在正选择。系统发育分析阐明了小麦 sHSP26 蛋白与植物界同源蛋白之间的祖先关系。总的来说,数据挖掘方法可以作为一种有效的预育策略,从小麦更广泛的种质资源中识别和动员新型应激响应基因和独特的等位变异,以提高当今优质小麦品种的气候适应能力。