Protein changes in response to heat stress in acclimated and nonacclimated creeping bentgrass

被引:21
|
作者
He, YL [1 ]
Liu, XZ [1 ]
Huang, BR [1 ]
机构
[1] Rutgers State Univ, Dept Plant Biol & Pathol, New Brunswick, NJ 08901 USA
关键词
Agrostis palustris; heat tolerance; heat shock proteins; protein contents;
D O I
10.21273/JASHS.130.4.521
中图分类号
S6 [园艺];
学科分类号
0902 ;
摘要
The acclimation of plants to moderately high temperature plays an important role in inducing plant tolerance to subsequent lethal high temperatures. This study was performed to investigate the effects of heat acclimation and sudden heat stress on protein synthesis and degradation in creeping bentgrass (Agrostis palustris Huds.). Plants of the cultivar Penncross were subjected to two temperature regimes in growth chambers: 1) heat acclimation-plants were exposed to a gradual increase in temperatures from 20 to 25, 30, and 35 degrees C for 7 days at each temperature level before being exposed to 40 degrees C for 28 days; and 2) sudden heat stress (nonacclimation)-plants were directly exposed to 40 degrees C for 28 days from 20 degrees C without acclimation through the gradual increase in temperatures. Heat acclimation increased plant tolerance to subsequent heat stress, as demonstrated by lower electrolyte leakage (relative EL) in leaves of heat-acclimated plants compared to nonacclimated plants at 40 degrees C. Heat acclimation induced expression of some heat shock proteins (HSPs), 57 and 54 kDa, detected in a salt-soluble form (cystoplasmic proteins), which were not present in unacclimated plants under heat stress. However, HSPs of 23, 36, and 66 kDa were induced by both sudden and gradual exposure to heat stress. In general, total protein content decreased under both heat acclimation and sudden heat stress. Cystoplasmic proteins was more sensitive to increasing temperatures, with a significant decline initiated at 25 degrees C, while sodium dodecyl sulphate (SDS)-soluble (membrane) protein content did not decrease significantly until temperature was elevated to 30 degrees C. The results demonstrated that both a gradual increase in temperature and sudden heat stress caused protein degradation and also induced expression of newly synthesized HSPs. Our results suggested that the induction of new HSPs during heat acclimation might be associated with the enhanced thermotolerance of creeping bentgrass, although direct correlation of these two factors is yet to be determined. This study also indicated that protein degradation could be associated with heat injury during either gradual increases in temperature or sudden heat stress.
引用
收藏
页码:521 / 526
页数:6
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