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Heat Sensitivity in a Bentgrass Variant. Failure to Accumulate a Chloroplast Heat Shock Protein Isoform Implicated in Heat Tolerance

机译:Bentgrass变体中的热敏感性。未能积累与耐热性有关的叶绿体热激蛋白同工型

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摘要

Two variants of creeping bentgrass (Agrostis stolonifera cv palustris), developed using tissue culture, have been used to determine the roles of chloroplast-localized small heat shock proteins (CP-sHSPs) in heat tolerance. Results from previous research indicate that the heat-tolerant variant expressed two additional CP-sHSP isoforms not expressed in the heat-sensitive variant, that accumulation of the additional CP-sHSP isoforms was genetically linked to thermotolerance, and that the presence of the additional isoforms in the heat-tolerant variant provided greater protection to photosystem II during heat stress. To determine the basis of the differential expression, we isolated the genes encoding the CP-sHSPs from both variants and characterized their structure and expression. Two genes, ApHsp26.2 and ApHsp26.7a, were isolated from the heat-tolerant variant, and three genes, ApHsp26.2m, ApHsp26.8, and ApHsp26.7b, were isolated from the heat-sensitive variant. The sequence of ApHsp26.2m from the heat-sensitive variant was identical to ApHsp26.2, except for a point mutation that generated a premature stop codon. Therefore, the protein product of ApHsp26.2m did not accumulate in the heat-sensitive line. Mass spectrometry analysis confirmed that ApHsp26.2 encoded for the CP-sHSP isoforms unique to the heat-tolerant variant. An identical mutation was detected in one of the three parental lines used to develop the creeping bentgrass variants. This suggests that ApHsp26.2m was inherited from this parent and did not arise from a mutation that occurred during tissue culture. The presence of two isoforms encoded by the same gene might be due to differential processing of the N-terminal amino acids during or after import into the chloroplast.
机译:利用组织培养开发的蠕动草的两种变种(草rosAgrostis stolonifera cv palustris)已用于确定叶绿体定位的小热激蛋白(CP-sHSPs)在耐热性中的作用。先前研究的结果表明,耐热变异体表达了在热敏变异体中未表达的另外两个CP-sHSP同工型,另外CP-sHSP同工型的积累与耐热性遗传相关,并且存在其他同工型在热应力下,耐高温型式中的“热”对光系统II提供了更大的保护。为了确定差异表达的基础,我们从两个变体中分离了编码CP-sHSPs的基因,并对其结构和表达进行了表征。从耐热变体中分离出两个基因ApHsp26.2和ApHsp26.7a,并且从热敏变体中分离出三个基因ApHsp26.2m,ApHsp26.8和ApHsp26.7b。来自热敏变体的ApHsp26.2m的序列与ApHsp26.2相同,除了点突变产生了过早的终止密码子。因此,ApHsp26.2m的蛋白质产物没有在热敏线中积聚。质谱分析证实,ApHsp26.2编码为耐热型独特的CP-sHSP亚型。在用于发育bent本草的三个亲本系之一中检测到相同的突变。这表明ApHsp26.2m是从该亲本遗传而来的,而不是来自组织培养期间发生的突变。由同一基因编码的两个同工型的存在可能是由于在导入叶绿体期间或之后对N末端氨基酸的不同处理。

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